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Parametric analysis on plastic deformation of materials during ultrasonic spot welding with different anvil geometries

机译:不同铁杆菌几何形状超声波焊接期间材料塑性变形的参数分析

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>Ultrasonic metal welding (USMW) has received noteworthy attention during recent years for its application to join lightweight materials. To improve the understanding of USMW process and to enhance the weld strength as well as quality, the present work is focused on the parametric study and its influence on the weld strength with various types of anvil tip geometries. It is observed that at higher weld time, an excessive amount of heat is produced at weld zone. Thus, a heavy plastic deformation occurs which is the major reason for over welding and lowering the weld strength. The temperature profiles for different types of anvils during the welding process are also examined at various weld conditions. The numbers of critical weld attributes are also identified to characterise the quality of weld formation over time. Microstructure study and microhardness measurement also have been employed to prove the severe plastic deformation in the interface layer as well as to establish a relationship between weld performance and physical weld attributes. As the weld time increases, the weld interface has been changed from planner to wavy morphology and the SEM micrographs proved the weld strength increments with the increase of waviness of the interface.
机译:>超声波金属焊接(USMW)近年来近年来接受了值得注意的关注,以便应用加入轻量级材料。为了提高对USMW过程的理解和提高焊接力量以及质量,本作本作的重点是参数研究及其对各种类型的砧尖几何形状的焊接强度的影响。观察到,在较高的焊接时间下,在焊接区产生过量的热量。因此,发生重塑性变形,这是过焊接和降低焊接强度的主要原因。在各种焊接条件下也检查了在焊接过程中不同类型砧座的温度曲线。还识别关键焊接属性的数量,以表征焊缝质量随时间。显微结构研究和显微硬度测量也已采用界面层中的严重塑性变形以及建立焊接性能和物理焊接属性之间的关系。随着焊接时间的增加,焊接界面已从策划仪改变为波浪形态,SEM显微照片通过界面波动的增加证明了焊接强度的增量。

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