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提高铝合金板料成形极限的新型可控压边力技术
引用本文:王武荣,陈关龙,林忠钦.提高铝合金板料成形极限的新型可控压边力技术[J].中国机械工程,2007,18(19):0-2312.
作者姓名:王武荣  陈关龙  林忠钦
作者单位:上海交通大学,上海,200030
摘    要:提出了一种可随位置和行程同步优化压边力的新型控制策略,并将其用于不等深铝合金阶梯盒零件的冲压,在零件成形过程中按照优化策略在不同压边圈位置随冲压行程施加最优压边力,使其冲压深度从恒定压边力下的45mm提高到60mm。在多点变压边力压机上的实验验证了这种优化策略的有效性,从而提高了可控压边力技术的鲁棒性和实用性。

关 键 词:压边力  成形极限  板料成形  铝合金
文章编号:1004-132X(2007)19-2374-05
修稿时间:2006-04-20

A New Strategy to Optimize Variable Blank Holder Forces towards Improving the Forming Limits of Aluminum Sheet Metal Forming
Wang Wurong,Chen Guannong,Lin Zhongqing.A New Strategy to Optimize Variable Blank Holder Forces towards Improving the Forming Limits of Aluminum Sheet Metal Forming[J].China Mechanical Engineering,2007,18(19):0-2312.
Authors:Wang Wurong  Chen Guannong  Lin Zhongqing
Affiliation:Shanghai Jiao Tong University,Shanghai, 200030
Abstract:This paper proposed a new strategy to optimize the variable BHF. The optimization strategy was based on the analysis of BHF formability window and integrated into FEM code to obtain time or/and spatial optimal BHF that applied on binders. And then a stepped rectangular box of 60 mm drawing height with segmented binders was adopted to validate the optimization strategy. Firstly, constant BHF FEM simulations through careful experimental design were conducted to discover the drawing limit height under maximum constant BHF. Secondly, FEM simulation combining the new BHF optimization strategy was carried out and the optimal profile of variable BHF was determined for both step box and cylinder cup during the whole punch stroke. The result shows this stepped box can be formed successfully using 5754-0 aluminum alloy sheet, while the maximum drawing height under constant BHF is 45mm.
Keywords:blank holder force  forming limit  sheet metal forming  aluminum alloy
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