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Influence of processing history on microstructure,mechanical properties,and electrical conductivity of Cu−0.7Mg alloy
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作者 Alireza KALHOR Kinga RODAK +6 位作者 Marek TKOCZ Bartosz CHMIELA Ivo SCHINDLER Łukasz POLOCZEK Krzysztof RADWAŃSKI Hamed MIRZADEH Marian KAMPIK 《Transactions of Nonferrous Metals Society of China》 2025年第4期1197-1211,共15页
The effects of forward extrusion as well as extrusion combined with reversible torsion(KoBo extrusion),followed by additional deformation via the MaxStrain module of the Gleeble thermomechanical simulator,on the micro... The effects of forward extrusion as well as extrusion combined with reversible torsion(KoBo extrusion),followed by additional deformation via the MaxStrain module of the Gleeble thermomechanical simulator,on the microstructure,mechanical properties,and electrical conductivity of a Cu−0.7Mg(wt.%)alloy,were investigated.The simulation results highlighted the critical influence of processing history on determining the equivalent strain distribution.The sample subjected to forward extrusion at 400℃and subsequent MaxStrain processing(FM sample),possessed 76%lower grain size compared to the sample processed solely with MaxStrain(AM sample).Likewise,the KoBo-extruded and MaxStrain-processed sample(KM sample)exhibited 66%smaller grain size compared to the AM sample.Tensile test results revealed that the AM,FM,and KM samples,respectively,possessed 251%,288%,and 360%higher yield strength,and 95%,121%,and 169%higher tensile strength compared to the initial annealed alloy,as a result of grain refinement as well as deformation strengthening.Finally,the electrical conductivity measurements revealed that AM,FM,and KM samples,respectively,possessed electrical conductivity values of 37.9,35.6,and 32.0 MS/m,which,by considering their mechanical properties,makes them eligible to be categorized as high-strength and high-conductivity copper alloys. 展开更多
关键词 KoBo extrusion maxstrain processing equivalent strain calculation grain refinement tensile properties electrical conductivity
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用热模拟机多轴变形系统研究超细组织结构 被引量:1
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作者 李桂艳 敖列哥 +1 位作者 张健 马惠霞 《物理测试》 CAS 2006年第5期14-18,共5页
本文利用Gleeble-3800热模拟机多轴大变形系统,对管线钢进行了几组不同热变形制度的多道次大应变热压缩试验,配合控轧后冷却速度,得到了1~2μm的超细晶组织。通过金相显微镜观察,扫描电镜观察及透射电镜分析,研究其微观组织形态... 本文利用Gleeble-3800热模拟机多轴大变形系统,对管线钢进行了几组不同热变形制度的多道次大应变热压缩试验,配合控轧后冷却速度,得到了1~2μm的超细晶组织。通过金相显微镜观察,扫描电镜观察及透射电镜分析,研究其微观组织形态、精细结构特征、析出相特征,从中找出不同热变形参数变化对其微观组织的影响及析出物析出的影响规律。 展开更多
关键词 热模拟 多轴变形系统 超细组织
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