Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate

To solve problems encountered in manufacturing forging die used on large-scale hydraulic press with traditional method, such as poor forging penetration, long cycle, high cost, etc, a new method of mold making was put forward, which adopted casting steel as substrate and used two surfacing layers– t...

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Main Authors: Zhang Jiansheng, Zhou Jie, Gao Fei, Su Zhu, Lu Shun
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20152108001
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spelling doaj-f6ecec4ff8c0470493becd436c19b8b62021-02-02T02:25:51ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01210800110.1051/matecconf/20152108001matecconf-icnft2015_08001Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrateZhang JianshengZhou JieGao FeiSu ZhuLu ShunTo solve problems encountered in manufacturing forging die used on large-scale hydraulic press with traditional method, such as poor forging penetration, long cycle, high cost, etc, a new method of mold making was put forward, which adopted casting steel as substrate and used two surfacing layers– the bimetal-gradient-layer(BGL)– on the working area of die cavity to make forging die. Firstly, the processes and materials were chosen according to the operating requirements of equipment and BGL surfacing samples were prepared. Then, properties analyses of samples were conducted. The application experiment was done on 50MN hydraulic press. The results showed that this method could shorten the manufacturing cycle and reduce cost apparently; properties between substrate and surfacing layers transited smoothly; the properties of die manufactured by BGL surfacing method could meet the requirements of 50 MN hydraulic press well, which justified the new method's effectiveness.http://dx.doi.org/10.1051/matecconf/20152108001
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Jiansheng
Zhou Jie
Gao Fei
Su Zhu
Lu Shun
spellingShingle Zhang Jiansheng
Zhou Jie
Gao Fei
Su Zhu
Lu Shun
Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
MATEC Web of Conferences
author_facet Zhang Jiansheng
Zhou Jie
Gao Fei
Su Zhu
Lu Shun
author_sort Zhang Jiansheng
title Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
title_short Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
title_full Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
title_fullStr Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
title_full_unstemmed Bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
title_sort bimetal-gradient-layer surfacing of forging die manufacturing based on cast-steel substrate
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2015-01-01
description To solve problems encountered in manufacturing forging die used on large-scale hydraulic press with traditional method, such as poor forging penetration, long cycle, high cost, etc, a new method of mold making was put forward, which adopted casting steel as substrate and used two surfacing layers– the bimetal-gradient-layer(BGL)– on the working area of die cavity to make forging die. Firstly, the processes and materials were chosen according to the operating requirements of equipment and BGL surfacing samples were prepared. Then, properties analyses of samples were conducted. The application experiment was done on 50MN hydraulic press. The results showed that this method could shorten the manufacturing cycle and reduce cost apparently; properties between substrate and surfacing layers transited smoothly; the properties of die manufactured by BGL surfacing method could meet the requirements of 50 MN hydraulic press well, which justified the new method's effectiveness.
url http://dx.doi.org/10.1051/matecconf/20152108001
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AT zhoujie bimetalgradientlayersurfacingofforgingdiemanufacturingbasedoncaststeelsubstrate
AT gaofei bimetalgradientlayersurfacingofforgingdiemanufacturingbasedoncaststeelsubstrate
AT suzhu bimetalgradientlayersurfacingofforgingdiemanufacturingbasedoncaststeelsubstrate
AT lushun bimetalgradientlayersurfacingofforgingdiemanufacturingbasedoncaststeelsubstrate
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