Investigation of the clinching process combines with hot stamping process for high-strength steel sheets

The mechanical clinching process combining with hot stamping process for high-strength steel sheets is investigated in this study. Finite elements analysis method and experimental method are applied to analyse the formation of high-strength steel sheet. The connecting strength between two sheets is...

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Main Authors: Chen Li-Wei, Huang Jian-Ming, Hsu Yuan-Chuan
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20152105004
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spelling doaj-d7fc60b37b8d4386b3c66d648959e42f2021-04-02T06:57:23ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01210500410.1051/matecconf/20152105004matecconf-icnft2015_05004Investigation of the clinching process combines with hot stamping process for high-strength steel sheetsChen Li-WeiHuang Jian-MingHsu Yuan-ChuanThe mechanical clinching process combining with hot stamping process for high-strength steel sheets is investigated in this study. Finite elements analysis method and experimental method are applied to analyse the formation of high-strength steel sheet. The connecting strength between two sheets is discussed via the relation between neck thickness and undercut, and the Vickers hardness. The results indicated that the cooling water channels of hot stamping die provided efficiently temperature exchange to control the temperature of sheets. The 15B22 sheet, after being hot stamping process, obtained higher connecting strength than S15C and S45C. At high temperature, the materials properties of 15B22 are similar to that of the S15C. However, due to the hardness of 15B22 is higher than that of S15C and S45C, the undercut is also higher. Hot stamping process means to rapid cooling hot metal, which change the structure from austenite to martensite, so that the hardness will be increased. Hence, the connecting strength of 15B22 is stronger than S15C and S45C.http://dx.doi.org/10.1051/matecconf/20152105004
collection DOAJ
language English
format Article
sources DOAJ
author Chen Li-Wei
Huang Jian-Ming
Hsu Yuan-Chuan
spellingShingle Chen Li-Wei
Huang Jian-Ming
Hsu Yuan-Chuan
Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
MATEC Web of Conferences
author_facet Chen Li-Wei
Huang Jian-Ming
Hsu Yuan-Chuan
author_sort Chen Li-Wei
title Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
title_short Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
title_full Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
title_fullStr Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
title_full_unstemmed Investigation of the clinching process combines with hot stamping process for high-strength steel sheets
title_sort investigation of the clinching process combines with hot stamping process for high-strength steel sheets
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2015-01-01
description The mechanical clinching process combining with hot stamping process for high-strength steel sheets is investigated in this study. Finite elements analysis method and experimental method are applied to analyse the formation of high-strength steel sheet. The connecting strength between two sheets is discussed via the relation between neck thickness and undercut, and the Vickers hardness. The results indicated that the cooling water channels of hot stamping die provided efficiently temperature exchange to control the temperature of sheets. The 15B22 sheet, after being hot stamping process, obtained higher connecting strength than S15C and S45C. At high temperature, the materials properties of 15B22 are similar to that of the S15C. However, due to the hardness of 15B22 is higher than that of S15C and S45C, the undercut is also higher. Hot stamping process means to rapid cooling hot metal, which change the structure from austenite to martensite, so that the hardness will be increased. Hence, the connecting strength of 15B22 is stronger than S15C and S45C.
url http://dx.doi.org/10.1051/matecconf/20152105004
work_keys_str_mv AT chenliwei investigationoftheclinchingprocesscombineswithhotstampingprocessforhighstrengthsteelsheets
AT huangjianming investigationoftheclinchingprocesscombineswithhotstampingprocessforhighstrengthsteelsheets
AT hsuyuanchuan investigationoftheclinchingprocesscombineswithhotstampingprocessforhighstrengthsteelsheets
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