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DURABILITY IMPROVEMENT OF A CYLINDER HEAD IN CONSIDERATION OF MANUFACTURING PROCESS

机译:考虑制造过程的气缸盖的耐用性改进

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摘要

The durability of a cylinder head is influenced by the thermal and mechanical history during the manufacturing process, as well as engine operation. In order to improve the durability of cylinder head, both load from engine operation and the preload conditions from the manufacturing process must be considered. The aluminum cylinder head used for a HSDI diesel engine is investigated to reduce the possibility of high cycle fatigue crack in this study. FE analysis is performed to elucidate the mechanism of high cycle fatigue crack in the HSDI diesel cylinder head. Two separate approaches to increase the durability of the cylinder head are discussed: reducing load from engine operation and re-arranging preload conditions from the manufacturing process at the critical location of the cylinder head. Local design changes of the cylinder head and modification of pretension load in the cylinder head bolt were investigated using FE analysis to relieve load at the critical location during engine operation. Residual stress formed at the critical location during the manufacturing process is measured and heat treatment parameters are changed to re-arrange the distribution of residual stress. Results of FE analysis and experiments showed that thorough consideration of the manufacturing process is necessary to enhance the durability of the cylinder head.
机译:汽缸盖的耐用性受制造过程中的热和机械历史以及发动机运转的影响。为了提高气缸盖的耐用性,必须同时考虑发动机运转的负荷和制造过程的预负荷条件。在本研究中,对用于HSDI柴油发动机的铝制缸盖进行了研究,以减少发生高周疲劳裂纹的可能性。进行了有限元分析以阐明HSDI柴油缸盖中的高周疲劳裂纹的机理。讨论了两种增加汽缸盖耐用性的方法:减少来自发动机运转的负荷和在汽缸盖的关键位置重新安排制造过程中的预负荷条件。使用有限元分析来研究发动机运转过程中关键位置的负荷,研究了汽缸盖的局部设计变化和汽缸盖螺栓中预紧载荷的变化。测量在制造过程中在关键位置处形成的残余应力,并更改热处理参数以重新排列残余应力的分布。有限元分析和实验的结果表明,必须充分考虑制造过程,以提高气缸盖的耐用性。

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