Liang Ying
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Paper Publications
Numerical Investigation for Formability of Aluminum 6016 Alloy under Non-isothermal Warm Forming Process
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Indexed by:会议论文

Date of Publication:2013-01-01

Included Journals:CPCI-S、Scopus

Volume:1532

Page Number:464-470

Key Words:Warm Forming; 6000 Aluminum Alloy; Non-isothermal; Isotropic explicit Model; FEM Simulation

Abstract:The warm forming technology of aluminum alloy has attracted attention from worldwide automotive engineering sector in recent years, with which the complex geometry parts can be realized at elevated temperature. A non-isothermal warm forming process for the heat treatable aluminum can quickly carry out its application on traditional production line by adding a furnace to heat up the aluminum alloy sheet. The 6000 aluminum alloy was investigated by numerical simulation and experiment using the Nakajima test model in this paper. A modified Fields-Backofen model was introduced into numerical simulation process to describe the thermo-mechanical flow behavior of a 6000 series aluminum alloy. The experimental data was obtained by conducting thermal-mechanical uniaxial tensile experiment in temperatures range of 25 similar to 400 degrees C to guarantee the numerical simulation more accurate. The numerical simulation was implemented with LS_DYNA software in terms of coupled dynamic explicit method for investigating the effect of initial forming temperature and the Binder Holder Force (BHF), which are critical process parameters in non-isothermal warm forming. The results showed that the optimal initial forming temperature range was 300 C similar to 350 degrees C. By means of conducting numerical simulation in deep drawing box model, the forming window of BHF and temperature around the optimal initial forming temperature (275 degrees C, 300 degrees C and 325 degrees C) are investigated, which can provide guidance to actual experiment.

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Supervisor of Doctorate Candidates
Supervisor of Master's Candidates

Gender:Male

Alma Mater:Dalian University of Technology

Degree:Doctoral Degree

School/Department:School of Automotive Engineering

Discipline:Vehicle Engineering

Business Address:Room,A305,The Vehicle Experiment Center of SAE, DUT.

Contact Information:yingliang@dlut.edu.cn

办公邮箱 : yingliang@dlut.edu.cn

办公地点 : 汽车基础实验教学中心A305

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