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3-D Finite Element Simulation of Friction Stir Welding Process of Non Similar Aluminum-Copper Sheets

机译:非相似铝铜板摩擦搅拌焊接过程的三维有限元模拟

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摘要

The Friction Stir Welding (FSW), a relatively new welding process, was developed in 1991 at the Welding Institute near Cambridge, England. There are two tool speeds to be considered in friction-stir welding; how fast the tool rotates and how quickly it traverses the interface. These two parameters have considerable importance and must be chosen with care to ensure a successful and efficient welding cycle. The relationship between the welding speeds and the heat input during welding is complex. In this paper the friction stir welding (FSW) process of stainless steel alloys has been modeled using a three dimensional finite element method. A coupled thermal viscoplastic model was used for the simulation. Tool speeds and temperature distribution are coupled and solved together using this method. The relationship between the welding speeds and the heat input during welding is obtained by numerical analysis, and the stress contour occurred by temperature field and tool force is surveyed. In addition, the effects of FSW process conditions on heating mainly near the tool pin are investigated in this paper.
机译:搅拌摩擦焊(FSW)是一种相对较新的焊接工艺,于1991年在英国剑桥附近的焊接学院开发。搅拌摩擦焊需要考虑两种工具速度:工具旋转的速度以及其穿过界面的速度。这两个参数非常重要,必须谨慎选择以确保成功且有效的焊接周期。焊接速度和焊接过程中的热量输入之间的关系很复杂。本文采用三维有限元方法对不锈钢合金的搅拌摩擦焊(FSW)过程进行了建模。耦合热粘塑性模型用于仿真。使用这种方法可以将刀具速度和温度分布耦合在一起并求解。通过数值分析获得了焊接速度与焊接热量之间的关系,并对由温度场和工具力产生的应力轮廓进行了测量。此外,本文还研究了FSW工艺条件对主要在工具销附近加热的影响。

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