文章摘要
铝合金发动机罩内板充液成形工艺研究
Hydroforming for the Aluminium Alloy Inner Panel of Automotive Engine Hood
Received:June 23, 2016  Revised:September 10, 2016
DOI:10.3969/j.issn.1674-6457.2016.05.007
中文关键词: 铝合金  发动机罩内板  充液成形  液室压力  加载路径
英文关键词: aluminium alloy  automotive engine inner panel  hydroforming  cavity pressure  loading path
基金项目:国家科技重大专项(2014ZX04002041)
Author NameAffiliation
WANG Yao Beihang University, Beijing 100191, China 
LANG Li-hui Beihang University, Beijing 100191, China 
SUN Zhi-ying Beihang University, Beijing 100191, China 
ZHANG Chun Tianjin Tianduan Press Co., Ltd., Tianjin 300142, China 
CUI Li-chun Anhui Jianghuai Automobile Co., Ltd., Hefei 230022, China 
SHE Wei Anhui Jianghuai Automobile Co., Ltd., Hefei 230022, China 
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中文摘要:
      目的 研究铝合金发动机罩内板充液拉深-局部关键特征刚性整形复合成形工艺。 方法 在Dynaform 中建立有限元模型,优化液室压力及加载路径等关键工艺参数,并进行试验验证。 结果 液室压力及加载路径对充液成形零件质量的影响较大, 成形所需的最大液室压力为 10 MPa,并且液室压力不宜加载过早,当凸模行程在 30~40 mm 之间时,进行合理的液室压力加载可较好地成形该铝合金内板件。 结论 对于文中研究的大型多特征铝合金发动机罩内板,采用充液拉深-局部关键特征刚性整形复合成形工艺更有利于其成形,可得到合格零件。
英文摘要:
      To study the compound technology process combining hydroforming and local key features stamping for the aluminium alloy inner panel of automotive engine. The finite element model was created in Dynaform. The key process parameters were optimized, such as the cavity pressure and loading paths. Meanwhile, the experiment was done to verify the result of numerical simulations. The cavity pressure and loading paths had great effects on the quality of the part. The needed maximum cavity pressure was 10 MPa. And the cavity pressure should not be loaded prematurely. The aluminium alloy inner panel part could be better formed through loading the reasonable cavity pressure when the punch stroke was among the 30~40 mm. For the large multi-feature aluminium alloy inner panel of automotive engine researched in this paper, the adopted compound technology process combining hydroforming and local key features stamping was more benefit for its forming. The qualified part could be obtained.
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