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Microstructure Analysis in Friction Welding of Copper and Aluminum

机译:铜铝摩擦焊接的微观结构分析

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The Friction welding is a welding method with utilizing heat generated due to friction. Surfaces of two materials to be joined, one rotates the other being idle, is contacted by a pressure force. Friction on the second contact surface is done continuously so that the heat generated by the continuous friction will continue to rise. With the heat and the pressure force on the second surface to the second meeting of the material reaches its melting temperature then there is the process of welding. This paper examines the influence of the pressure force, rotational speed and contact time on friction welding of Aluminum (Al) and Copper (Cu) to the quality of welded joints. Friction welding process is performed on a friction welding machine that is equipped with the loading mechanism. The parameters used are the pressure force, rotational speed and friction time. Determination of the quality of welding is done by testing the tensile strength, hardness, and micro structure on the weld joint areas. The results showed that the friction welding quality is very good, this is evidenced by the results of a tensile strength test where the fault occurs outside the weld joint and increased violence in the weld joint. On the results visually cuts the welding area did not reveal any porosity so that it can be concluded that each metal contacts have melted perfectly and produce a connection with good quality.
机译:摩擦焊接是一种利用由于摩擦引起的热量的焊接方法。待连接的两种材料的表面,一个旋转另一个空转,通过压力接触。第二接触表面上的摩擦是连续完成的,使得通过连续摩擦产生的热量将继续上升。通过热量和第二表面上的压力达到材料的第二次会议达到其熔化温度,然后存在焊接过程。本文研究了压力,转速和接触时间对铝(Al)和铜(Cu)摩擦焊接至焊接接头质量的影响。在配备有装载机构的摩擦焊接机上进行摩擦焊接工艺。所用的参数是压力,转速和摩擦时间。通过在焊接接合区域上测试拉伸强度,硬度和微结构来确定焊接质量。结果表明,摩擦焊接质量非常好,这是通过拉伸强度试验的结果证明,其中故障发生在焊接接头之外并增加焊接接​​头中的暴力。在视觉上切割的结果,焊接区域没有透露任何孔隙度,因此可以得出结论,每个金属触点都完全熔化并产生质量好的连接。

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