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横梁位移速率对细铜线力学性能的影响
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作者 刘志英 王磊 +1 位作者 章新亮 孙雄飞 《光纤与电缆及其应用技术》 2021年第3期19-22,46,共5页
为探究横梁位移速率变化对不同细铜线力学性能测试结果的影响,对常见的TR-0.100、TR-0.150、TR-0.200、TY-1.504种型号规格细铜线,分别采用7种横梁位移速率(5~300mm/min)进行室温拉伸试验,每组取11次重复性试验的均值为测试结果。分析... 为探究横梁位移速率变化对不同细铜线力学性能测试结果的影响,对常见的TR-0.100、TR-0.150、TR-0.200、TY-1.504种型号规格细铜线,分别采用7种横梁位移速率(5~300mm/min)进行室温拉伸试验,每组取11次重复性试验的均值为测试结果。分析试验结果可知:细铜线的力学性能具有明显的拉伸速率相关性;抗拉强度值均随横梁位移速率增大而增大,测试结果的标准偏差先减小后小幅震荡,横梁位移速率150mm/min为拐点;抗拉强度值增速先快速减小,至最低后缓慢增大;细铜线线径越大,拉伸速率对抗拉强度测试值影响越小,测量精密度越高;抗拉强度随拉伸速率变化关系可用对数函数拟合;横梁位移速率对试样断口形貌有影响,速率越大韧窝尺寸越大。上述结果可为研究拉伸速率对细铜线力学性能测试结果的影响规律、解决因不同拉伸速率导致的结果差异、分析断裂失效提供参考。 展开更多
关键词 细铜线 力学性能 抗拉强度 横梁位移速率 断口形貌
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Effect of wire diameter compression ratio on drawing deformation of micro copper wire
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作者 Tao HUANG Han-jiang WU +3 位作者 Ke-xing SONG Yan-min ZHANG Yan-jun ZHOU Shao-lin LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2605-2618,共14页
A crystal plasticity finite element model was developed for the drawing deformation of pure copper micro wire,based on rate-dependent crystal plasticity theory.The impact of wire diameter compression ratio on the micr... A crystal plasticity finite element model was developed for the drawing deformation of pure copper micro wire,based on rate-dependent crystal plasticity theory.The impact of wire diameter compression ratio on the micro-mechanical deformation behavior during the wire drawing process was investigated.Results indicate that the internal deformation and slip of the drawn wire are unevenly distributed,forming distinct slip and non-slip zones.Additionally,horizontal strain concentration bands develop within the drawn wire.As the wire diameter compression ratio increases,the strength of the slip systems and the extent of slip zones inside the deformation zone also increase.However,the fluctuating stress state,induced by contact pressure and frictional stress,results in a rough and uneven wire surface and diminishes the stability of the drawing process. 展开更多
关键词 micro copper wire drawing deformation crystal plasticity finite element slip mode
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