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Numerical Simulation of Friction Stir Spot Welding

机译:摩擦搅拌点焊的数值模拟

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Friction Stir Spot Welding (FSSW) is a solid state joining process that relies on frictional heating and plastic deformation realized at the interaction between a non-consumable welding tool that rotates on the contact surfaces of the workpieces. Friction Stir Spot Welding (FSSW) is an evolving technique that has received considerable attention from automotive industries to replace electric resistance spot welding, which shows poor weldability for advanced high-strength steels as well as aluminium alloys. Because of the interest shown by the industry towards this process, an attempt to optimize it is imperative. But the experiments are often time consuming and costly. To overcome these problems, numerical analysis has frequently been used in the last years. The purpose of this paper is to develop a three-dimensional fully coupled thermal-stress finite element (FE) model of FSSW process for thin aluminium alloy Al 6061-T6. Numerical simulation being helpful for better understanding and observation of the influence of input parameters on the resulting phenomena. It is described the algorithm and are presented the activities needed to be performed in order to develop a valid numerical model for FSSW. The validation of the numerical model being achieved by comparing the resulted temperatures from the numerical simulation with the experimentally determined temperatures for the same material.
机译:摩擦搅拌点焊(FSSW)是固态连接过程,其依赖于在旋转工件的接触表面上的不可耗材焊接工具之间的相互作用中实现的摩擦加热和塑性变形。摩擦搅拌点焊(FSSW)是一种不断发展的技术,可以从汽车行业获得相当大的关注以取代电阻点焊,这表明先进的高强度钢以及铝合金的可焊性差。由于行业表现出这个过程的兴趣,试图优化它是必要的。但实验往往是耗时和昂贵的。为了克服这些问题,在过去几年中经常使用数值分析。本文的目的是为薄铝合金Al 6061-T6开发FSSW工艺的三维全耦合热应力有限元(FE)模型。数值模拟有助于更好地理解和观察输入参数对所得现象的影响。描述该算法并呈现要执行的活动,以便为FSSW开发有效的数字模型。通过将所得温度与同一材料的实验确定的温度与实验确定的温度进行比较来实现数值模型的验证。

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