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Effect of Temperature Distribution in Ultrasonically Welded Joints of Copper Wire and Sheet Used for Electrical Contacts

机译:温度分布对电触点用铜线和板的超声焊接接头的影响

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摘要

The temperature distribution occurring at the interface while joining a simple electrical contact comprising of a copper wire and a copper sheet using ultrasonic metal welding was analyzed using finite element method. Heat flux due to plastic deformation and friction was calculated and provided as input load for simulation of temperature distribution. The results of temperature obtained from simulation are found to be in good agreement with the results of temperature from experiments measured using thermocouple. Special focus was given to how the heat generated at the wire–sheet interface affect the strength of the joint in tension. With the knowledge of heat generated at the interface while welding, it is possible to control the strength of the joint and produce defect free joints. Based on the results from finite element analysis and experiments, it is observed that the influence of heat developed due to friction and plastic deformation of metallic specimens has a significant effect on the progress of welding and strength of the joint.
机译:使用有限元方法分析了在使用超声波金属焊接连接包括铜线和铜片的简单电触点时,在界面处发生的温度分布。计算了由塑性变形和摩擦引起的热通量,并将其作为输入负载提供给温度分布模拟。从仿真获得的温度结果与使用热电偶测量的实验结果非常吻合。特别关注的是线材-板界面处产生的热量如何影响接头在拉力下的强度。了解焊接时界面处产生的热量,可以控制接头的强度并产生无缺陷的接头。根据有限元分析和实验的结果,可以观察到由于金属试样的摩擦和塑性变形而产生的热量对焊接的进展和接头的强度有重大影响。

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