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Title:Study on plane strain physical compression technology
Authors: PAN Hong-bo TANG Di HU Shui-ping WANG Xiao-xiao (National Engineering Research Center for Advanced Rolling Technology University of Science and Technology Beijing 100083 China) 
Unit:  
KeyWords: large sample plane strain data acquisition hot rolling strip micro-analysis mechanical property analysis 
ClassificationCode:TG115.53
year,vol(issue):pagenumber:2008,33(2):75-79
Abstract:
A new kind of large sample plane strain compression technology was introduced.Based on summarizing the shortage of present simulation technology,the experimention method was put forward for large sample plane strain compression technology. The machinery was designed,and the characteristic and function were clarified.Accoding to data of temperature,pressure and displacement were collected by industry control computer,which could be used for simulating different processing parameters of hot rolling strip.Large sample multi-pass plane strain compression was realized by using malleable cast-iron.The results show that large sample plane strain can satisfy with the requests of both micro-analysis and mechanical property analysis for developping new materials and process optimization.
Funds:
教育部211工程重点资助项目
AuthorIntro:
Reference:
[1]Duckham A,Knutsen R D.Asymmetric flow during planestrain compression testing of aluminum alloy[J],MaterialsScience and Engineering,1998,(A256):220-226.
[2]Wong S F,Hodson P D,Thomson P F.Comparison of tor-sion and plane-strain compression for predicting mean yieldstrengthin single and multiple-pass flat rolling using lead tomodel hot steel[J].Jornal of Materials Processing Technolo-gy,1995,(53):601-616.
[3]Oskar Pawelski,Radko Kaspar,D櫣sseldorf.Laboratorysi mulation of the thermomechanical processing of steel[J].Materialpr櫣fung,1988,(30):357-360.
[4]牛济泰.材料和热加工领域的物理模拟技术[M].北京:国防工业出版社,1999.
[5]刘雅政,材料成形理论基础(下册)[M].北京:北京科技大学出版社,2002.
[6]张少军,代宗岭,周纪华.铝合金冷态流动应力数学模型[J].北京科技大学学报,1997,19(1):65-68.
[7]代宗岭,周纪华,张少军.铜合金冷态流动应力数学模型[J].有色金属,1997,49(2):88-90.
[8]崔忠圻.金属学与热处理[M].北京:机械工业出版社,2002.
[9]俞新陆.液压机[M].北京:机械工业出版社,1982.
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