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带扩展腔的纯铝及铝钛硼合金连续挤压力的分析与实验研究(英文)
引用本文:曹富荣,温景林,丁桦,王昭东,李英龙,管仁国,侯辉.带扩展腔的纯铝及铝钛硼合金连续挤压力的分析与实验研究(英文)[J].中国有色金属学会会刊,2013,23(1):201-207.
作者姓名:曹富荣  温景林  丁桦  王昭东  李英龙  管仁国  侯辉
作者单位:东北大学材料与冶金学院;东北大学轧制与连轧自动化国家重点实验室
基金项目:Projects(51034002,50974038,50274020) supported by the National Natural Science Foundation of China
摘    要:将CONFORM挤压的变形区划分成初始夹紧区、夹紧区、圆锥形扩展腔区、圆柱形挤压筒区和定径区,采用主应力法建立各区力平衡方程,获得了带扩展腔的任意包角连续挤压过程的变形力公式。在自行设计的连续挤压机上对纯铝和铝钛硼合金(Al-5%Ti-1%B)进行实验。采用Gleeble-1500热模拟实验机实测得到铝钛硼合金在变形温度400℃、应变速率3.07s-1条件下的变形抗力为50MPa。计算得到纯铝和铝钛硼合金带扩展腔连续挤压的变形力。实验用的连续挤压径向力与理论计算的连续挤压径向力一致。

关 键 词:  铝合金  连续挤压  扩展腔  变形抗力
收稿时间:9 November 2011

Force analysis and experimental study of pure aluminum and Al-5%Ti-1%B alloy continuous expansion extrusion forming process
Fu-rong CAO,Jing-lin WEN,Hua DING,Zhao-dong WANG,Ying-long LI,Ren-guo GUAN,Hui HOU.Force analysis and experimental study of pure aluminum and Al-5%Ti-1%B alloy continuous expansion extrusion forming process[J].Transactions of Nonferrous Metals Society of China,2013,23(1):201-207.
Authors:Fu-rong CAO  Jing-lin WEN  Hua DING  Zhao-dong WANG  Ying-long LI  Ren-guo GUAN  Hui HOU
Affiliation:1.College of Materials and Metallurgy,Northeastern University,Shenyang 110819,China;2.State Key Laboratory of Rolling and Automation,N ortheastern University,Shenyang 110819,China
Abstract:The deformation zone of CONFORM extrusion was divided into primary gripping zone, gripping zone, conical expansion chamber zone, cylindrical zone and sizing zone of die, and corresponding force equilibrium equations were established using the Slab method. The deformation force formulae of CONFORM machine at any wrapping angle with an expansion chamber were obtained. Experiment on pure aluminum and Al–5%Ti–1%B alloy was conducted on the CONFORM machine self-designed. The resistance to deformation of Al–5%Ti–1%B alloy at the deformation temperature of 400 °C and the strain rate of 3.07 s?1 was measured to be 50 MPa using Gleeble–1500 thermal simulation machine. The calculation results of deformation forces for CONFORM process with an expansion chamber for pure aluminum and Al–5%Ti–1%B alloy were given. The experimental CONFORM radial force is in agreement with the radial force obtained by theoretical formula.
Keywords:
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