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Design of Friction Stir Spot Welding Tools by Using a Novel Thermal-Mechanical Approach

机译:采用新型热机械方法设计摩擦搅拌点焊工具

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A simple thermal-mechanical model for friction stir spot welding (FSSW) was developed to obtain similar weld performance for different weld tools. Use of the thermal-mechanical model and a combined approach enabled the design of weld tools for various sizes but similar qualities. Three weld tools for weld radii of 4, 5, and 6 mm were made to join 6061-T6 aluminum sheets. Performance evaluations of the three weld tools compared fracture behavior, microstructure, micro-hardness distribution, and welding temperature of welds in lap-shear specimens. For welds made by the three weld tools under identical processing conditions, failure loads were approximately proportional to tool size. Failure modes, microstructures, and micro-hardness distributions were similar. Welding temperatures correlated with frictional heat generation rate densities. Because the three weld tools sufficiently met all design objectives, the proposed approach is considered a simple and feasible guideline for preliminary tool design.
机译:开发了一种简单的摩擦搅拌点焊(FSSW)的热机械模型,以获得不同焊接工具的类似焊接性能。使用热电机械模型和组合方法使得焊接工具的设计适用于各种尺寸但相似的品质。采用4,5和6mm的焊接半径的三种焊接工具加入6061-T6铝板。三种焊接工具的性能评估比较了膝盖剪切样品焊缝的裂缝行为,微观结构,微硬度分布和焊接温度。对于在相同的加工条件下三种焊接工具制成的焊缝,故障载荷率差别与刀具尺寸成比例。失效模式,微观结构和微硬度分布是相似的。焊接温度与摩擦发热速率密度相关。由于三种焊接工具充分满足了所有设计目标,所以提出的方法被认为是初步工具设计的简单而可行的准则。

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