Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报(英文版)

Transactions of Nonferrous Metals Society of China

Vol. 22    No. 12    December 2012

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Multi-field dynamic modeling and numerical simulation of aluminum alloy resistance spot welding
TAO Jian-feng 1, GONG Liang 1, LIU Cheng-liang1, ZHAO Yang1,2

1. Institute of Mechatronics, School of Mechanical Engineering, Shanghai Jiao Tong University,
Shanghai 200240, China;
2. Shanghai Infomass Information Technology Co., Ltd., Shanghai 200130, China

Abstract:In order to explore the influence of welding parameters and to investigate the Al alloy (AA) nugget formation process, a comprehensive model involving electrical-thermal-mechanical and metallurgical analysis was established to numerically display the resistance spot welding (RSW) process within multiple fields and understand the AA-RSW physics. A multi-disciplinary finite element method (FEM) framework and a empirical sub-model were built to analyze the affecting factors on weld nugget and the underlying nature of welding physics with dynamic simulation procedure. Specifically, a counter-intuitive phenomenon of the resistance time-variation caused by the transient inverse virtual variation (TIVV) effect was highlighted and analyzed on the basis of welding current and temperature distribution simulation. The empirical model describing the TIVV phenomenon was used for modifying the dynamic resistance simulation during the AA spot welding process. The numerical and experimental results show that the proposed multi-field FEM model agrees with the measured AA welding feature, and the modified dynamic resistance model captures the physics of nugget growth and the electrical-thermal behavior under varying welding current and fluctuating heat input.

 

Key words: resistance spot welding; aluminum alloy; multi-field modeling; simulation; finite element method; dynamic resistance; transient inverse virtual variation effect

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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