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用数值模拟方法对调速器盖压铸件进行致密性评价

Compactness Evaluation of Pressure Die Castings of Speed Governor Heads by Numerical Simulation Method
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摘要 本文用数值模拟方法对调速器盖压铸件进行的致密性评价结果可在总体上预测评估缩松缩孔缺陷分布状况,为压铸工艺设计提供参考。 Using of numerical simulation method to evaluate the soundness of governor heads by pressure die casting can predict on the whole the distribution of shrinkage and porosity defects in the castings with compactness evaluation.It can also offer a helpful reference to design of foundry technology.
出处 《中国铸造装备与技术》 CAS 2010年第1期43-45,共3页 China Foundry Machinery & Technology
关键词 调速器盖 压铸 数值模拟 致密性 Pressure die casting of governor heads Numerical simulation Compactness evaluation
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  • 1乐书华,林敏,张一峰.压铸型温度场有限元法数值模拟及其软件研究[J].铸造,1993,42(3):5-10. 被引量:8
  • 2陶玉兰.模具温度对压铸件质量的影响[J].特种铸造及有色合金,1995,15(1):23-24. 被引量:23
  • 3丁根宝.铸造工艺学[M].北京:机械工业出版社,1985..
  • 4陶文铨.数值传热学[M].西安:西安交通大学出版社,1998..
  • 5Li Y B,Zhou W.Numerical simulation of filling process in die casting[J].Materials Technology,2003,18(1):36-41.
  • 6Hu B H,Tong K K,NiuX P,et al.Design and optimisation of runner and gating systems for the die casting of thin-walled magnesium telecommunication parts through numerical simulation[J].Journal of Materials Processing Technology,2000,105(1):128-133.
  • 7Weiβ K,Pinwill C I.Influence of physical data and cooling conditions on the solidification in Mg die castings[C]//Magnesium Technology 2003.Kaplan:TMS (The Minerals,Metals & Materials Society),2003:109-114.
  • 8Tannehill J C,Anderson D A,Pletcher R H.Computational cluid mechanics and heat transfer[M].2nd ed.Washington,DC:Taylor & Francis,1997.
  • 9Launder B E,Spalding D B.The numerical computation of turbulent flows[J].Computer Methods in Applied Mechanics and Engineering,1974,2 (3):269 -289.
  • 10LIU Bai-cheng,QIU Wei,SHEN Hou-fa,et al.Study and application of mold filling simulation of shaped castings[J].Journal of Materials Science and Technology,1993,13(2):22-29.

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