prÄzision g ewerbestrasse 6 habain stahl und aluminium

52
Platten Vierkant Stempel/Erodier-Klötze Rundstäbe P-Platten Normstäbe HABA PRÄZISIONS- FLACHSTÄHLE

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SCHWEIZ HABA AG – Administration Gewerbestrasse 6 6330 Cham / ZG Tel. +41 41 748 88 88 [email protected] www.haba.ch
HABA AG – Produktion Speckstrasse 19 8330 Pfäffikon / ZH Tel. +41 44 950 40 00 [email protected] www.haba.ch
DEUTSCHLAND HABA PlattenService GmbH Einsteinstrasse 7 71083 Herrenberg Tel. +49 7032 9757 0 [email protected] www.haba-gmbh.de
HABA Engineering GmbH Wilhelm-Maybach-Str. 31/1 72108 Rottenburg a.N. Tel. +49 7032 9757 70 [email protected] www.haba-gmbh.de
ITALIEN HABA ServizioPiastre s.r.l. Via Emilia 27/29 24052 Azzano San Paolo (BG) Tel. +39 035 899 190 [email protected] www.haba.it
ÖSTERREICH HABA GmbH IZ NÖ-Süd, Straße 2a Objekt M40 2355 Wiener Neudorf Tel. +43 722 867 488 [email protected] www.haba-gmbh.at
TSCHECHIEN HABA s.r.o Ulice HABA .e. 419 CZ - 696 66 Sudomice Tel. +42 515 225 121 [email protected] www.haba-sro.cz
Weitere Informationen über HABA und die Produkte finden Sie auf unserer Webseite.
HABA Imagebroschüre.indd 20 31.01.18 07:09
SCHWEIZ HABA AG – Administration Gewerbestrasse 6 6330 Cham / ZG Tel. +41 41 748 88 88 [email protected] www.haba.ch
HABA AG – Produktion Speckstrasse 19 8330 Pfäffikon / ZH Tel. +41 44 950 40 00 [email protected] www.haba.ch
DEUTSCHLAND HABA PlattenService GmbH Einsteinstrasse 7 71083 Herrenberg Tel. +49 7032 9757 0 [email protected] www.haba-gmbh.de
HABA Engineering GmbH Wilhelm-Maybach-Str. 31/1 72108 Rottenburg a.N. Tel. +49 7032 9757 70 [email protected] www.haba-gmbh.de
ITALIEN HABA ServizioPiastre s.r.l. Via Emilia 27/29 24052 Azzano San Paolo (BG) Tel. +39 035 899 190 [email protected] www.haba.it
ÖSTERREICH HABA GmbH IZ NÖ-Süd, Straße 2a Objekt M40 2355 Wiener Neudorf Tel. +43 722 867 488 [email protected] www.haba-gmbh.at
TSCHECHIEN HABA s.r.o Ulice HABA .e. 419 CZ - 696 66 Sudomice Tel. +42 515 225 121 [email protected] www.haba-sro.cz
Weitere Informationen über HABA und die Produkte finden Sie auf unserer Webseite.
HABA Imagebroschüre.indd 20 31.01.18 07:09Haba_Preisliste_2018_m.indd 52 16.11.2018 09:28:38
PRÄZISION IN STAHL UND ALUMINIUM
HABA Imagebroschüre.indd 1 31.01.18 07:08
Platten Vierkant Stempel/Erodier-Klötze Rundstäbe P-Platten Normstäbe
Abmessungen und Preise.
HABA PRÄZISIONS- FLACHSTÄHLE
schlagen_FzB g: 1
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
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Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Yellow__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
51
„HABA – das sind 50 Jahre Erfahrung und ein Ziel: Wir vereinfachen die Arbeit für unsere Kunden.“
31.01.18 07:09Haba_Preisliste_2018_m.indd 51 16.11.2018 09:28:38
2
1.0570 S355J2 G3 X X
1.1730 C 45 X X X
1.2083 X 42 Cr 13 X X
1.2099 X 5CrS 13 X X
1.2162 21 MnCr 5 X X
1.2312 40 CrMnMoS 8-6 X X X
1.2343 X 37 CrMoV 5-1 X X X X X X
1.2363 X 100 CrMoV 5-1 X X
1.2379 X 155 CrVMo 12-1 X X X X X X X X
1.2436 X 210 CrW 12 X X X X X
1.2510 100 MnCrW 4 X X X X X
1.2767 X 45 NiCrMo 4 X X X X X
1.2842 90 MnCrV 8 X X X X X X X
1.3343 HS 6-5-2 C X
MATERIALÜBERSICHT
Mindestbestellwert € 100.– Preisgültigkeit 01.11.2018
Irrtümer und Druckfehler vorbehalten.
Haba_Preisliste_2018_m.indd 2 16.11.2018 09:28:19
schlagen_FzB g: 1
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
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C M
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C M
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Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_Yellow__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Cover_Einzelform Umschlagen_1_Rückenstich-Heftung_$[SchemeName]_16.11.2018_10:40:02_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
Eigenschaften
Temperatur: 20 °C Wärmeleitfähigkeit: 30 - 45 W/mK
Temperatur: 20 °C 210
L % C Si Mn W 1.0570 ≤0.22 ≤ 0.55 ≤ 0.16 ≤ 0.035
P ≤ 0.035
1.0 57
100 200 300 400 500 20 21 22 34 43
Wärmebehandlung Beim Werkstoff 1.0570 ist eine Wärmebehandlung in der Regel nicht erforderlich. Bei schwerer Zerspanung und komplexen Geometrien empfehlen wir ein Spannungsarmglühen.
E-Modul 10-3 N/mm2:
Wärmeausdehnung 10-6/(m*K):
Schnitt-, Stanz- und Prägewerkzeuge Messer und Hämmer Scheren und Beile Kunststoffformenbau Vorrichtungsbau
Eigenschaften
Schalenhärter mit ausreichender Oberflächenhärte Hohe Schlagzähigkeit Sehr gute Zerspanbarkeit Naturhärte ca. 190 HB Geeignet für Flamm - und Induktionshärten
Warmumformen: 1050 - 850 °C langsame Abkühlung Weichglühen: 680 - 710 °C max. 190 HB, max. 640 N/mm2
4 - 6 Std. langsame Ofenabkühlung
Spannungsarmglühen: 600 - 650 °C im vergüteten Zustand unterhalb der letzten Anlasstemperatur, langsame Abkühlung
Vorwärmen: 350 °C je nach Abmessungen Härten: 800 - 830 °C (57 HRC) Anlassen: 180 °C niedrigste Anlasstemperatur, Haltezeit: mind. 1 h
Abschrecken: Wasser (Öl 60 - 70 °C)
11.1 - 13.9 bei 25 - 500 °C 35 - 45
Streckgrenze: 370 - 480 m N/mm2
Bruchdehnung: A5 % 20 ca. 650 N/mm 2
L % C Si Mn S 1.1730 0.45 0.30 0.70 0.04
Härtewerte 820 °C 2 mal angelassen
Erzielbare Härte HRC 56 - 57
100 °C 57 + / - 1 HRC 200 °C 54 + / - 1 HRC 300 °C 48 + / - 1 HRC
40
42
44
46
48
50
52
54
56
58
°C
HRc
Zugfestigkeit Rm:
2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
ST 52-3 BA S 355 J2 G3
4.2 5.2 6.2 8.2 10.4 12.4 15.4 20.4 25.4 30.4 40.4 50.4 60.4 70.4 80.4 100.4 11 14 15 16 17 18
25.3 12 15 15 16 17 19 21 26 30.3 15 16 16 18 19 22 26 30 36 40.3 16 17 18 21 24 27 30 36 40 45 50.3 20 20 22 24 29 31 35 41 46 55 60 60.3 24 24 27 30 32 34 37 46 52 61 66 79 70.3 37 41 47 53 59 67 74 96 106 80.3 31 33 35 37 41 47 53 61 67 73 82 102 117 134
100.3 37 39 41 44 48 59 61 71 74 89 107 126 141 160 185 120.3 52 58 67 74 81 87 102 123 141 165 184 217 271 125.3 43 49 54 62 70 77 86 91 110 132 146 163 221 282 140.3 68 73 81 87 101 107 121 141 162 185 216 251 305 150.3 54 61 70 76 85 93 102 112 126 148 169 202 228 263 324 160.3 60 69 74 82 91 97 107 115 135 155 182 240 267 342 180.3 90 96 103 112 121 143 173 198 230 266 303 200.3 81 91 99 103 111 123 135 162 186 219 251 292 344 413 250.3 95 110 115 128 136 146 163 188 228 274 314 355 407 506 300.3 135 145 160 171 194 219 271 318 376 407 480 615 350.3 169 183 198 219 237 259 303 386 433 563 699 400.3 195 205 219 235 253 277 341 411 490 505.3 204 219 235 256 282 339 438 532 615
• Dicke vorgeschliffen / feinstgefräst • Breite vorgeschliffen / feinstgefräst • Länge gesägt
Vorbearbeitet mit Bearbeitungsaufmass
Lagerlänge 1000 mm Dicke (mm)
ST 52-3 BA S 355 J2 G3
Breite (mm)
Breit e
+0. 50/
0m m
Dicke +0.20/0mm Länge 1000 - 1030 mm
10.4 12.4 15.4 20.4 25.4 30.4 40.4 50.4 60.4 70.4 80.4 100.4 120.4 150.4 18 20 21 22 34 43 55 76 101 120 153 230 318 503
mm
Vierkantstähle
1.1730 C 45
4 5 6 8 10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100
20 13 14 15 16 17 18 19 20 25 14 15 16 17 18 19 21 24 26 30 15 16 17 18 19 22 23 30 36 32 16 17 18 19 21 24 26 30 32 37 40 17 18 20 21 23 27 28 32 35 38 45 51 50 18 20 22 24 29 31 35 37 38 43 56 60 65 60 22 24 27 30 32 35 38 43 49 61 69 80 63 23 25 29 32 35 37 38 47 48 54 62 67 72 92 105 70 26 28 33 35 37 38 41 48 52 55 65 72 80 96 108 120 80 30 33 36 38 40 48 53 55 61 65 73 79 88 102 117 128 133 90 33 37 40 42 44 54 57 65 69 80 89 96 113 129 140 150 172
100 37 40 42 45 51 59 61 68 73 74 89 93 107 126 144 152 160 184 214
120 48 52 58 67 74 83 88 104 120 141 167 183 214 246 271 125 43 47 52 58 65 73 77 84 86 91 108 117 128 151 176 191 201 231 288
140 58 68 73 82 88 97 103 124 132 138 162 188 215 251 280 303 150 53 57 61 70 76 85 93 98 103 114 128 140 145 169 200 215 228 261 292 326
160 55 59 65 76 82 94 98 103 108 117 137 147 155 180 217 240 261 292 318 376
180 79 86 91 102 105 119 129 149 157 167 200 232 277 307 355 396
200 84 88 95 106 112 122 134 136 162 169 188 226 257 271 297 339 386 417
250 110 119 122 135 144 149 154 173 201 213 240 276 315 326 355 405 469 511
300 121 128 139 150 166 172 177 202 233 247 282 331 387 401 430 494 575 624
350 131 157 173 190 207 215 230 248 271 282 311 386 446 469 522 834
400 157 167 178 188 198 213 223 246 261 274 308 324 367 442 485 558 605
450 285 320 351 347 399 488 542 581 630 913 500 214 225 240 292 336 376 448 553 631
120
110 67 82 87 102 112 116 136
130 74 80 94 102 120 136 157
156 92 110 131 145 165 205 257
175 72 83 89 99 104 118 116 126 144 154 163 190 227 261 305 387
196 104 142 161 175 202 238 312
246 128 177 191 234 259 299 405 225 95 110 114 125 137 145 146 165 194 198 224 263 275 293 384 458 220 126 135 157 180 211 242
296 146 193 227 250 268 358 532
315 123 137 153 168 184 186 203 224 259 260 296 345 401 428 502 778
396 264 270 305 386 460 588
405* 161 174 190 198 216 231 238 267 279 294 319 327 338 457 511 532 565 615 889
505* 193 200 202 229 245 250 297 300 341 343 381 398 423 488 542 596 642 690 712 722 761 794 924 1011
Dicke vorgeschliffen / feinstgefräst Breite vorgeschliffen / feinstgefräst Länge gesägt *Dicke Tol.: +0,6/0 *Breite Tol.: +3.0/0
Vorbearbeitet mit Bearbeitungsaufmass
Lagerlänge 1000 mm Dicke (mm)
1.1730 C 45
Dicke +0.20/0mm Länge 1000 - 1030 mm
10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100 120 150 200 18 20 21 22 24 34 45 51 55 76 102 111 120 157 188 235 309 486 839
Tol: +0.2/0 mm
Lagerlänge 1000 mm
Lagerlänge 1000 mm
o s_
00 2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Yellow__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
Eigenschaften
Temperatur: 20 °C Wärmeleitfähigkeit: 30 - 45 W/mK
Temperatur: 20 °C 210
L % C Si Mn W 1.0570 ≤0.22 ≤ 0.55 ≤ 0.16 ≤ 0.035
P ≤ 0.035
1.0 57
100 200 300 400 500 20 21 22 34 43
Wärmebehandlung Beim Werkstoff 1.0570 ist eine Wärmebehandlung in der Regel nicht erforderlich. Bei schwerer Zerspanung und komplexen Geometrien empfehlen wir ein Spannungsarmglühen.
E-Modul 10-3 N/mm2:
Wärmeausdehnung 10-6/(m*K):
Schnitt-, Stanz- und Prägewerkzeuge Messer und Hämmer Scheren und Beile Kunststoffformenbau Vorrichtungsbau
Eigenschaften
Schalenhärter mit ausreichender Oberflächenhärte Hohe Schlagzähigkeit Sehr gute Zerspanbarkeit Naturhärte ca. 190 HB Geeignet für Flamm - und Induktionshärten
Warmumformen: 1050 - 850 °C langsame Abkühlung Weichglühen: 680 - 710 °C max. 190 HB, max. 640 N/mm2
4 - 6 Std. langsame Ofenabkühlung
Spannungsarmglühen: 600 - 650 °C im vergüteten Zustand unterhalb der letzten Anlasstemperatur, langsame Abkühlung
Vorwärmen: 350 °C je nach Abmessungen Härten: 800 - 830 °C (57 HRC) Anlassen: 180 °C niedrigste Anlasstemperatur, Haltezeit: mind. 1 h
Abschrecken: Wasser (Öl 60 - 70 °C)
11.1 - 13.9 bei 25 - 500 °C 35 - 45
Streckgrenze: 370 - 480 m N/mm2
Bruchdehnung: A5 % 20 ca. 650 N/mm 2
L % C Si Mn S 1.1730 0.45 0.30 0.70 0.04
Härtewerte 820 °C 2 mal angelassen
Erzielbare Härte HRC 56 - 57
100 °C 57 + / - 1 HRC 200 °C 54 + / - 1 HRC 300 °C 48 + / - 1 HRC
40
42
44
46
48
50
52
54
56
58
°C
HRc
Zugfestigkeit Rm:
Präzisionsplatten
Preise in €/Stk.; exkl. MWST; Mindestbestellwert € 100.-, Preisgültigkeit 01.09.2018
1.1730 C 45
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 21 26 28 35 44 48 64 72 150.3 29 33 36 44 61 65 83 97 200.3 37 40 46 57 72 80 100 120
15.4
Breite (mm)
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 29 33 35 44 55 61 80 97 150.3 35 40 47 58 79 85 105 127 200.3 50 58 62 75 91 105 134 162 250.3 58 64 71 89 111 127 163 196 300.3 64 71 80 102 128 142 187 226
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 40 42 46 57 61 74 98 120 150.3 57 59 62 72 95 102 130 160 200.3 75 77 84 87 113 129 162 203 250.3 77 80 89 111 139 153 197 247 300.3 80 84 96 128 158 187 231 289 400.3 101 116 130 165 200 228 295 371
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 55 59 64 77 86 100 132 163 150.3 74 85 96 112 128 139 177 225 200.3 95 109 122 145 164 177 227 281 250.3 112 130 146 174 196 225 279 350 300.3 123 144 161 188 217 258 326 405 400.3 135 171 177 234 279 324 419 531
15.4
Länge : 300.3 mm
Länge : 400.3 mm
Länge : 600.3 mm
Haba_Preisliste_2018_m.indd 7 16.11.2018 09:28:21
2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
ST 52-3 BA S 355 J2 G3
4.2 5.2 6.2 8.2 10.4 12.4 15.4 20.4 25.4 30.4 40.4 50.4 60.4 70.4 80.4 100.4 11 14 15 16 17 18
25.3 12 15 15 16 17 19 21 26 30.3 15 16 16 18 19 22 26 30 36 40.3 16 17 18 21 24 27 30 36 40 45 50.3 20 20 22 24 29 31 35 41 46 55 60 60.3 24 24 27 30 32 34 37 46 52 61 66 79 70.3 37 41 47 53 59 67 74 96 106 80.3 31 33 35 37 41 47 53 61 67 73 82 102 117 134
100.3 37 39 41 44 48 59 61 71 74 89 107 126 141 160 185 120.3 52 58 67 74 81 87 102 123 141 165 184 217 271 125.3 43 49 54 62 70 77 86 91 110 132 146 163 221 282 140.3 68 73 81 87 101 107 121 141 162 185 216 251 305 150.3 54 61 70 76 85 93 102 112 126 148 169 202 228 263 324 160.3 60 69 74 82 91 97 107 115 135 155 182 240 267 342 180.3 90 96 103 112 121 143 173 198 230 266 303 200.3 81 91 99 103 111 123 135 162 186 219 251 292 344 413 250.3 95 110 115 128 136 146 163 188 228 274 314 355 407 506 300.3 135 145 160 171 194 219 271 318 376 407 480 615 350.3 169 183 198 219 237 259 303 386 433 563 699 400.3 195 205 219 235 253 277 341 411 490 505.3 204 219 235 256 282 339 438 532 615
• Dicke vorgeschliffen / feinstgefräst • Breite vorgeschliffen / feinstgefräst • Länge gesägt
Vorbearbeitet mit Bearbeitungsaufmass
Lagerlänge 1000 mm Dicke (mm)
ST 52-3 BA S 355 J2 G3
Breite (mm)
Breit e
+0. 50/
0m m
Dicke +0.20/0mm Länge 1000 - 1030 mm
10.4 12.4 15.4 20.4 25.4 30.4 40.4 50.4 60.4 70.4 80.4 100.4 120.4 150.4 18 20 21 22 34 43 55 76 101 120 153 230 318 503
mm
Vierkantstähle
1.1730 C 45
4 5 6 8 10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100
20 13 14 15 16 17 18 19 20 25 14 15 16 17 18 19 21 24 26 30 15 16 17 18 19 22 23 30 36 32 16 17 18 19 21 24 26 30 32 37 40 17 18 20 21 23 27 28 32 35 38 45 51 50 18 20 22 24 29 31 35 37 38 43 56 60 65 60 22 24 27 30 32 35 38 43 49 61 69 80 63 23 25 29 32 35 37 38 47 48 54 62 67 72 92 105 70 26 28 33 35 37 38 41 48 52 55 65 72 80 96 108 120 80 30 33 36 38 40 48 53 55 61 65 73 79 88 102 117 128 133 90 33 37 40 42 44 54 57 65 69 80 89 96 113 129 140 150 172
100 37 40 42 45 51 59 61 68 73 74 89 93 107 126 144 152 160 184 214
120 48 52 58 67 74 83 88 104 120 141 167 183 214 246 271 125 43 47 52 58 65 73 77 84 86 91 108 117 128 151 176 191 201 231 288
140 58 68 73 82 88 97 103 124 132 138 162 188 215 251 280 303 150 53 57 61 70 76 85 93 98 103 114 128 140 145 169 200 215 228 261 292 326
160 55 59 65 76 82 94 98 103 108 117 137 147 155 180 217 240 261 292 318 376
180 79 86 91 102 105 119 129 149 157 167 200 232 277 307 355 396
200 84 88 95 106 112 122 134 136 162 169 188 226 257 271 297 339 386 417
250 110 119 122 135 144 149 154 173 201 213 240 276 315 326 355 405 469 511
300 121 128 139 150 166 172 177 202 233 247 282 331 387 401 430 494 575 624
350 131 157 173 190 207 215 230 248 271 282 311 386 446 469 522 834
400 157 167 178 188 198 213 223 246 261 274 308 324 367 442 485 558 605
450 285 320 351 347 399 488 542 581 630 913 500 214 225 240 292 336 376 448 553 631
120
110 67 82 87 102 112 116 136
130 74 80 94 102 120 136 157
156 92 110 131 145 165 205 257
175 72 83 89 99 104 118 116 126 144 154 163 190 227 261 305 387
196 104 142 161 175 202 238 312
246 128 177 191 234 259 299 405 225 95 110 114 125 137 145 146 165 194 198 224 263 275 293 384 458 220 126 135 157 180 211 242
296 146 193 227 250 268 358 532
315 123 137 153 168 184 186 203 224 259 260 296 345 401 428 502 778
396 264 270 305 386 460 588
405* 161 174 190 198 216 231 238 267 279 294 319 327 338 457 511 532 565 615 889
505* 193 200 202 229 245 250 297 300 341 343 381 398 423 488 542 596 642 690 712 722 761 794 924 1011
Dicke vorgeschliffen / feinstgefräst Breite vorgeschliffen / feinstgefräst Länge gesägt *Dicke Tol.: +0,6/0 *Breite Tol.: +3.0/0
Vorbearbeitet mit Bearbeitungsaufmass
Lagerlänge 1000 mm Dicke (mm)
1.1730 C 45
Dicke +0.20/0mm Länge 1000 - 1030 mm
10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100 120 150 200 18 20 21 22 24 34 45 51 55 76 102 111 120 157 188 235 309 486 839
Tol: +0.2/0 mm
Lagerlänge 1000 mm
Lagerlänge 1000 mm
o s_
00 2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Yellow__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
Schnitt-, Stanz- und Prägewerkzeuge Messer und Hämmer Scheren und Beile Kunststoffformenbau Vorrichtungsbau
Eigenschaften
Schalenhärter mit ausreichender Oberflächenhärte Hohe Schlagzähigkeit Sehr gute Zerspanbarkeit Naturhärte ca. 190 HB Geeignet für Flamm - und Induktionshärten
Warmumformen: 1050 - 850 °C langsame Abkühlung Weichglühen: 680 - 710 °C max. 190 HB, max. 640 N/mm2
4 - 6 Std. langsame Ofenabkühlung
Spannungsarmglühen: 600 - 650 °C im vergüteten Zustand unterhalb der letzten Anlasstemperatur, langsame Abkühlung
Vorwärmen: 350 °C je nach Abmessungen Härten: 800 - 830 °C (57 HRC) Anlassen: 180 °C niedrigste Anlasstemperatur, Haltezeit: mind. 1 h
Abschrecken: Wasser (Öl 60 - 70 °C)
11.1 - 13.9 bei 25 - 500 °C 35 - 45
Streckgrenze: 370 - 480 m N/mm2
Bruchdehnung: A5 % 20 ca. 650 N/mm 2
L % C Si Mn S 1.1730 0.45 0.30 0.70 0.04
Härtewerte 820 °C 2 mal angelassen
Erzielbare Härte HRC 56 - 57
100 °C 57 + / - 1 HRC 200 °C 54 + / - 1 HRC 300 °C 48 + / - 1 HRC
40
42
44
46
48
50
52
54
56
58
°C
HRc
Zugfestigkeit Rm:
Präzisionsplatten
Preise in €/Stk.; exkl. MWST; Mindestbestellwert € 100.-, Preisgültigkeit 01.09.2018
1.1730 C 45
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 21 26 28 35 44 48 64 72 150.3 29 33 36 44 61 65 83 97 200.3 37 40 46 57 72 80 100 120
15.4
Breite (mm)
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 29 33 35 44 55 61 80 97 150.3 35 40 47 58 79 85 105 127 200.3 50 58 62 75 91 105 134 162 250.3 58 64 71 89 111 127 163 196 300.3 64 71 80 102 128 142 187 226
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 40 42 46 57 61 74 98 120 150.3 57 59 62 72 95 102 130 160 200.3 75 77 84 87 113 129 162 203 250.3 77 80 89 111 139 153 197 247 300.3 80 84 96 128 158 187 231 289 400.3 101 116 130 165 200 228 295 371
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 55 59 64 77 86 100 132 163 150.3 74 85 96 112 128 139 177 225 200.3 95 109 122 145 164 177 227 281 250.3 112 130 146 174 196 225 279 350 300.3 123 144 161 188 217 258 326 405 400.3 135 171 177 234 279 324 419 531
15.4
Länge : 300.3 mm
Länge : 400.3 mm
Länge : 600.3 mm
Haba_Preisliste_2018_m.indd 7 16.11.2018 09:28:21
1.2083 X 42 Cr 13 1.2083 X 42 Cr 13
Korrosionsbeständiger Kunststoffformenstahl
Eigenschaften Hochhärtbarer rost- und säurebeständiger Stahl Höchste Verschleissfestigkeit Gute Masshaltigkeit und Druckfestigkeit Beste Schneidhaltigkeit Gute Härtbarkeit Gute Zerspanbarkeit Weichgeglüht ca. 225 HB Gute Anlassbeständigkeit Sehr gut polierbar Äusserst Verzugsarm
Warmumformen: 1050 - 800 °C langsame Abkühlung Weichglühen: 760 - 800 °C max. 230 HB, max. 755 N/mm2
4 - 6 Std. langsame Ofenabkühlung
Spannungsarmglühen: 650 - 680 °C im vergüteten Zustand unterhalb der letzten Anlasstemperatur, langsame Abkühlung Vorwärmen: 350 + 600 + 850 °C je nach Abmessungen Härten: 1020 - 1050 °C (58 HRC) Anlassen: 200 - 250 °C (53 - 55 HRC), siehe Abbildung 2h Abschrecken: Öl, Warmbad 500 °C, Wirbelbett Gas bei ca. 60 °C abbrechen und anlassen
10.5 - 11.5 bei 25 - 400 °C
L % C Si Mn Cr V S 1.2083 0.4 0.4 0.3 13.5 0.3 0.03
Bei hoher Luftfeuchtigkeit werden z. B. Kühlkanäle nicht vom Rost befallen. Beste Korrosionseigenschaften bei 250 °C angelassen und poliert.
40
42
44
46
48
50
52
54
56
HRc
Härtewerte 1040 °C 2 mal angelassen 100 °C 56 + / - 1 HRC 400 °C 51 + / - 1 HRC 200 °C 55 + / - 1 HRC 500 °C 52 + / - 1 HRC 300 °C 52 + / - 1 HRC
1.2 08
28 29
HA BA
-F or
m at
2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Schöndruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:03_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
1.1730 C 45
4 5 6 8 10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100
20 13 14 15 16 17 18 19 20 25 14 15 16 17 18 19 21 24 26 30 15 16 17 18 19 22 23 30 36 32 16 17 18 19 21 24 26 30 32 37 40 17 18 20 21 23 27 28 32 35 38 45 51 50 18 20 22 24 29 31 35 37 38 43 56 60 65 60 22 24 27 30 32 35 38 43 49 61 69 80 63 23 25 29 32 35 37 38 47 48 54 62 67 72 92 105 70 26 28 33 35 37 38 41 48 52 55 65 72 80 96 108 120 80 30 33 36 38 40 48 53 55 61 65 73 79 88 102 117 128 133 90 33 37 40 42 44 54 57 65 69 80 89 96 113 129 140 150 172
100 37 40 42 45 51 59 61 68 73 74 89 93 107 126 144 152 160 184 214
120 48 52 58 67 74 83 88 104 120 141 167 183 214 246 271 125 43 47 52 58 65 73 77 84 86 91 108 117 128 151 176 191 201 231 288
140 58 68 73 82 88 97 103 124 132 138 162 188 215 251 280 303 150 53 57 61 70 76 85 93 98 103 114 128 140 145 169 200 215 228 261 292 326
160 55 59 65 76 82 94 98 103 108 117 137 147 155 180 217 240 261 292 318 376
180 79 86 91 102 105 119 129 149 157 167 200 232 277 307 355 396
200 84 88 95 106 112 122 134 136 162 169 188 226 257 271 297 339 386 417
250 110 119 122 135 144 149 154 173 201 213 240 276 315 326 355 405 469 511
300 121 128 139 150 166 172 177 202 233 247 282 331 387 401 430 494 575 624
350 131 157 173 190 207 215 230 248 271 282 311 386 446 469 522 834
400 157 167 178 188 198 213 223 246 261 274 308 324 367 442 485 558 605
450 285 320 351 347 399 488 542 581 630 913 500 214 225 240 292 336 376 448 553 631
120
110 67 82 87 102 112 116 136
130 74 80 94 102 120 136 157
156 92 110 131 145 165 205 257
175 72 83 89 99 104 118 116 126 144 154 163 190 227 261 305 387
196 104 142 161 175 202 238 312
246 128 177 191 234 259 299 405 225 95 110 114 125 137 145 146 165 194 198 224 263 275 293 384 458 220 126 135 157 180 211 242
296 146 193 227 250 268 358 532
315 123 137 153 168 184 186 203 224 259 260 296 345 401 428 502 778
396 264 270 305 386 460 588
405* 161 174 190 198 216 231 238 267 279 294 319 327 338 457 511 532 565 615 889
505* 193 200 202 229 245 250 297 300 341 343 381 398 423 488 542 596 642 690 712 722 761 794 924 1011
Dicke vorgeschliffen / feinstgefräst Breite vorgeschliffen / feinstgefräst Länge gesägt *Dicke Tol.: +0,6/0 *Breite Tol.: +3.0/0
Vorbearbeitet mit Bearbeitungsaufmass
Lagerlänge 1000 mm Dicke (mm)
1.1730 C 45
Dicke +0.20/0mm Länge 1000 - 1030 mm
10 12 15 16 20 25 30 32 40 50 60 63 70 80 90 100 120 150 200 18 20 21 22 24 34 45 51 55 76 102 111 120 157 188 235 309 486 839
Tol: +0.2/0 mm
Lagerlänge 1000 mm
Lagerlänge 1000 mm
1.2083 X 42 Cr 13
Dicke vorgeschliffen / feinstgefräst Breite vorgeschliffen / feinstgefräst Länge gesägt
Vorbearbeitet mit Bearbeitungsaufma ss
Vierkantstähle Lagerlänge 1000 mm
mm
8.2 10.4 12.4 15.4 20.4 25.4 30.4 40.4 50.4 60.4 20.3 33 37 42 45 25.3 34 39 45 48 58 30.3 41 43 53 63 70 99
40.3 45 51 61 75 85 113 124 50.3 52 62 69 85 101 124 139 179 60.3 59 66 77 97 118 136 152 198 227
70.3 69 77 87 107 127 150 161 215 255 289 80.3 80 90 98 123 134 162 193 241 271 316 90.3 90 94 109 135 154 182 213 271 310 374
100.3 100 111 122 147 172 201 235 307 367 425
120.3 144 156 171 201 241 294 378 443 516 130.3 155 166 180 220 261 314 402 475 562 140.3 168 175 194 238 278 333 429 506 589 150.3 162 178 184 204 259 298 350 443 537 604
200.3 177 224 253 301 378 431 494 596 675 795
250.3 217 270 310 356 452 523 591 723 817 974
300.3 336 373 448 523 614 700 784 986 1.180
16.4 46 49 64
32.3 42 44 58 68 69 72 87 101 107
63.3 61 70 79 98 101 119 133 137 159 184 201 238 265
110.3 198 232 290 300 368 414 497
196.3 381 413 549 613 732 952 180.3 252 285 349 395 450 472 582 721 807 931 160.3 219 275 319 353 426 459 549 156.3 319 352 442 532 612 788
246.3 435 499 683 744 868 1.128 220.3 393 448 506 560 617 744
296.3 563 836 869 1.092 1.472
350.3 556 627 754 789 971 396.3 821 1.023 1.256 1.471 1.882 405* 329 447 468 481 514 581 693 850 939 1.056 1.185 1.364 1.660 1.889 505* 357 486 548 643 671 777 939 1.101 1.169 1.269 1.398 1.661 1.862 1.989
Lagerlänge 1000 mm Dicke (mm) Breite (mm)
15.4 20.4 25.4 30.4 32.4 40.4 50.4 60.4 63.4 70.4 80.4 90.4 100.4
47 57 87 108 116 141 204 253 287 436 534 631
Preise in €/Stk.; exkl. MWST; Mindestbestellwert € 100.-, Preisgültigkeit 01.09.2018
Breit e
+0. 50/
0m m
* Breite Tol.:+5.0/0 mm
o s_
00 2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−−− 8 −−−−−−−−−−−−−−− 9 −−−−−−−−−−−−−−− 10 −−−−−−−−−−−−− B = ... −−−−−−−−−−−−− 12 −−−−−−−−−−−−− C = ... −−−−−−−−−−−−− 14 −−−−−−−−−−−−− M = ... −−−−−−−−−−−−− 16 −−−−−−−−−−−−− Y = ... −−−−−−−−−−−−− 18 −−−−−−−−−−−−− X = ... −−−−−−−−−−−−− 20 −−−−−−−−−−−−−− Z = ... −−−−−−−−−−−−−− 22 −−−−−−−−−−−−−−− 23 −−−−−−−−−−−−−−− 24 −−−−−−−−−−−−−−− 25 −−−−−−−−−−−−−−− 26 −−−−−−−−−−−−−−− 27 −−−−−−−−−−−−−−− 28 −−−−−−−−−−−−−−− 29 −−−−−−−−−−−−−−− 30 −−−−−−−−−−−−−−− 31 −−−−−−−−−−−−−−− 32
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
C M
Y X
C M
Y Z
Prinect Micro−6i Format 102/105 Dipco 12.0f (pdf) © 2012 Heidelberger Druckmaschinen AGB C M Y X Z slurZ slurB B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z C 20 C 40 C 80 B C M Y X Z slurC slurM B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurY slurX B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY X 20 X 40 X 80 B C M Y X Z CM CY MY CMY B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY CM CY MY CMY B C M Y X Z 0 B 20 B 40 B 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z CMY C 20 C 40 C 80 B C M Y X Z slurZ slurB B C M Y X Z 0 B C M Y X Z B C M Y X Z CMY M 20 M 40 M 80 B C M Y X Z slurC slurM B C M Y X Z 0 Y 20 Y 40 Y 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z X 20 X 40 X 80 B C M Y X Z slurY slurX B C M Y X Z 0 Z 20 Z 40 Z 80 B C M Y X Z CMY CMY CMY CMY B C M Y X Z
72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Black__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Cyan__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Magenta__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_Yellow__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 285 CVC__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1375 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$72438V_Haba_PL_Praezisions_DT____Inhalt_48S_Widerdruck_1_Lose Blattsammlung_$[SchemeName]_16.11.2018_10:40:04_PANTONE 1797 C__$[Frequenz] lpi_Lin: $[LinearizationCurve]_Kal: $[KalKurve]$
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
60.0 lpi
Plate Control Strip Suprasetter - V2.0a 20060112 (pdf)
Fujifilm Brillia LH-PJE © Heidelberger Druckmaschinen 2006 99 98 97 96 95
1 2 3 4 5 uncal.
cal.
// //72 72
60.0 45.0
V12.0f (pdf)
Suprasetter Fujifilm
Times 4P
Times 2P
Times 1P
Times
0.5P
0/100% 1% 2% 3% 5% 10% 20% 25% 30% 40% 50% 60% 70% 75% 80% 90% 95% 97% 98% 99%
Lin+ Process
Präzisionsplatten
Preise in €/Stk.; exkl. MWST; Mindestbestellwert € 100.-, Preisgültigkeit 01.09.2018
1.1730 C 45
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 21 26 28 35 44 48 64 72 150.3 29 33 36 44 61 65 83 97 200.3 37 40 46 57 72 80 100 120
15.4
Breite (mm)
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 29 33 35 44 55 61 80 97 150.3 35 40 47 58 79 85 105 127 200.3 50 58 62 75 91 105 134 162 250.3 58 64 71 89 111 127 163 196 300.3 64 71 80 102 128 142 187 226
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 40 42 46 57 61 74 98 120 150.3 57 59 62 72 95 102 130 160 200.3 75 77 84 87 113 129 162 203 250.3 77 80 89 111 139 153 197 247 300.3 80 84 96 128 158 187 231 289 400.3 101 116 130 165 200 228 295 371
15.4
20.4 25.4 30.4 40.4 50.4 60.4 80.4 100.4
100.3 55 59 64 77 86 100 132 163 150.3 74 85 96 112 128 139 177 225 200.3 95 109 122 145 164 177 227 281 250.3 112 130 146 174 196 225 279 350 300.3 123 144 161 188 217 258 326 405 400.3 135 171 177 234 279 324 419 531
15.4
Länge : 300.3 mm
Länge : 400.3 mm
Länge : 600.3 mm
Haba_Preisliste_2018_m.indd 7 16.11.2018 09:28:21
1.2083 X 42 Cr 13 1.2083 X 42 Cr 13
Korrosionsbeständiger Kunststoffformenstahl
Eigenschaften Hochhärtbarer rost- und säurebeständiger Stahl Höchste Verschleissfestigkeit Gute Masshaltigkeit und Druckfestigkeit Beste Schneidhaltigkeit Gute Härtbarkeit Gute Zerspanbarkeit Weichgeglüht ca. 225 HB Gute Anlassbeständigkeit Sehr gut polierbar Äusserst Verzugsarm
Warmumformen: 1050 - 800 °C langsame Abkühlung Weichglühen: 760 - 800 °C max. 230 HB, max. 755 N/mm2
4 - 6 Std. langsame Ofenabkühlung
Spannungsarmglühen: 650 - 680 °C im vergüteten Zustand unterhalb der letzten Anlasstemperatur, langsame Abkühlung Vorwärmen: 350 + 600 + 850 °C je nach Abmessungen Härten: 1020 - 1050 °C (58 HRC) Anlassen: 200 - 250 °C (53 - 55 HRC), siehe Abbildung 2h Abschrecken: Öl, Warmbad 500 °C, Wirbelbett Gas bei ca. 60 °C abbrechen und anlassen
10.5 - 11.5 bei 25 - 400 °C
L % C Si Mn Cr V S 1.2083 0.4 0.4 0.3 13.5 0.3 0.03
Bei hoher Luftfeuchtigkeit werden z. B. Kühlkanäle nicht vom Rost befallen. Beste Korrosionseigenschaften bei 250 °C angelassen und poliert.
40
42
44
46
48
50
52
54
56
HRc
Härtewerte 1040 °C 2 mal angelassen 100 °C 56 + / - 1 HRC 400 °C 51 + / - 1 HRC 200 °C 55 + / - 1 HRC 500 °C 52 + / - 1 HRC 300 °C 52 + / - 1 HRC
1.2 08
28 29
HA BA
-F or
m at
2
−−−−−−−−−−−−−−− 1 −−−−−−−−−−−−−−− 2 −−−−−−−−−−−−−−− 3 −−−−−−−−−−−−−−− 4 −−−−−−−−−−−−−−− 5 −−−−−−−−−−−−−−− 6 −−−−−−−−−−−−−−− 7 −−−−−−−−−−−−−&minus