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A Modified Analytical Heat Source Model for Numerical Simulation of Temperature Field in Friction Stir Welding

机译:摩擦搅拌焊接温度场数值模拟改进的分析热源模型

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摘要

In the conventional analytical model used for heat generation in friction stir welding (FSW), the heat generated at the pin/workpiece interface is assumed to distribute uniformly in the pin volume, and the heat flux is applied as volume heat. Besides, the tilt angle of the tool is assumed to be zero for simplicity. These assumptions bring about simulating deviation to some extent. To better understand the physical nature of heat generation, a modified analytical model, in which the nonuniform volumetric heat flux and the tilt angle of the tool were considered, was developed. Two analytical models are then implemented in the FEM software to analyze the temperature fields in the plunge and traverse stage during FSW of AA6005A-T6 aluminum hollow extrusions. The temperature distributions including the maximum temperature and heating rate between the two models are different. The thermal cycles in different zones further revealed that the peak temperature and temperature gradient are very different in the high-temperature region. Comparison shows that the modified analytical model is accurate enough for predicting the thermal cycles and peak temperatures, and the corresponding simulating precision is higher than that of the conventional analytical model.
机译:在摩擦搅拌焊接(FSW)用于发热常规的分析模型中,在销/工件界面产生的热被假定为在销体积均匀分布,和热通量被施加为体积热量。此外,工具的倾斜角度被假定为为简单起见为零。这些假设带来模拟偏差在一定程度上。为了更好地理解发热,修饰的分析模型,其中所述非均匀体积热通量和工具的倾斜角被认为是物理性质,被开发。两个分析模型然后在FEM软件实现来分析AA6005A-T6铝中空挤压的FSW期间,在切入和横动阶段中的温度场。的温度分布,包括的最高温度和在两个模型之间的加热速率是不同的。在不同的区域中的热循环还表明,峰值温度和温度梯度是在高温区域很大的不同。比较表明,改性分析模型是用于预测热循环和峰值温度,以及相应的模拟精度比传统的分析模型的更高准确足够。

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