Review of Experimental Investigations in Friction Welding Technique

G. Shinde, P. S. Dabeer
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引用次数: 7

Abstract

Friction welding is a solid state welding processes in which the weld is obtained by the heat generated due to forging and friction. Now a day’s eco-friendly joining of dissimilar materials is the need of the industries. The advantages of friction welding process are reduction in production time and cost saving. Friction welding is classified into two types. One type is Inertia drive friction welding and the other is Continuous drive friction welding. In continuous drive friction welding one of the work pieces is held stationary while the other is held for a certain rotating speed. The two work pieces are brought together under certain friction pressure for a certain period of time known as friction time. Then, the rotation is stopped and upset pressure is applied for a certain upset time. Then, the spindle is disengaged and the component is unloaded. In Inertia drive friction welding one part is held stationary while the other is clamped in the chuck which is attached to the flywheel. The flywheel and chuck is rotated for a certain seed to store a predetermined energy. In this paper, review of friction welding on different materials and their weld ability has been discussed in brief.
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摩擦焊接技术实验研究综述
摩擦焊是一种利用锻造和摩擦产生的热量获得焊缝的固态焊接工艺。如今,异种材料的环保连接是各行各业的需要。摩擦焊工艺的优点是缩短了生产时间,节约了成本。摩擦焊分为两种。一种是惯性驱动摩擦焊,另一种是连续驱动摩擦焊。在连续驱动摩擦焊接中,一个工件保持静止,另一个工件保持一定的旋转速度。在一定的摩擦压力下,两个工件在一定的时间内接触在一起,称为摩擦时间。然后,停止旋转并施加加厚压力以达到一定的加厚时间。然后,主轴脱离,组件卸载。在惯性驱动摩擦焊接中,一部分保持静止,而另一部分夹在附在飞轮上的卡盘中。飞轮和卡盘为一定的种子旋转,以储存预定的能量。本文简要介绍了摩擦焊在不同材料上的研究进展及其焊接性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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