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An Integrated Modeling Approach for Management of Process-InducedProperties in Friction Stir Welding Processes

机译:搅拌搅拌焊接过程过程性能管理的集成建模方法

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Numerical and physical modeling techniques are used to predict process behavior in friction stir welding (FSW) high strength aluminum alloys. The numerical approach uses a non-linear finite element method to characterize thermal and deformation behavior along the welded structure during FSW. Coupled temperature-displacement analysis is applied in order to determine temperature, displacement, and mechanical responses simultaneously. The physical modeling approach uses the response surface methodology (RSM) to evaluate the effects of the process controlling parameters on the properties of the welded joints. The results obtained, offer insights into the effects of the major process parameters in establishing successful FSW joints that satisfy further processing requirements and product service conditions.
机译:数值和物理建模技术用于预测搅拌摩擦焊(FSW)高强度铝合金中的工艺行为。数值方法使用非线性有限元方法来表征FSW期间沿焊接结构的热和变形行为。应用耦合温度-位移分析,以便同时确定温度,位移和机械响应。物理建模方法使用响应表面方法(RSM)来评估过程控制参数对焊接接头性能的影响。获得的结果为建立成功的FSW接头(满足进一步的加工要求和产品服务条件)提供了主要工艺参数的影响的见解。

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