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An integrated model for analysing the effects of ultrasonic vibration on tool torque and thermal processes in friction stir welding

机译:用于分析超声振动对摩擦搅拌焊接工具扭矩和热过程影响的集成模型

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摘要

An integrated model of ultrasonic vibration enhanced friction stir welding (UVeFSW) is developed by integrating the thermal-fluid model with the ultrasonic field model and tool torque model. The tool torque and the heat generation rate at tool/workpiece contact interfaces are coupled with the interfacial temperature, strain rate and ultrasonic energy density. The model is used in quantitatively analysing the effects of ultrasonic vibration on tool torque and thermal processes in friction stir welding (FSW). The results show that ultrasonic vibration reduces the flow stress, which results in a decreasing of tool torque, interfacial heat generation rate and interfacial temperature. The complicated interaction of ultrasonic energy with the thermal processes in FSW leads to a gentle thermal gradient and an enhanced plastic material flow in UVeFSW. The model is validated by a comparison of the calculated thermal cycles and tool torque at various welding parameters with the experimentally measured ones.
机译:通过将热流体模型与超声波场模型和刀具扭矩模型集成,开发了超声波振动增强摩擦搅拌焊接(UVEFSW)的集成模型。工具/工件接触界面处的刀具扭矩和发热速率与界面温度,应变率和超声能量密度相结合。该模型用于定量分析超声波振动对摩擦搅拌焊接(FSW)中的刀具扭矩和热过程的影响。结果表明,超声波振动降低了流量应力,导致刀具扭矩,界面发热率和界面温度的降低。超声能量与FSW中的热处理的复杂相互作用导致uvefsw中的温和热梯度和增强的塑料材料流。通过通过实验测量的焊接参数的计算的热循环和工具扭矩进行验证,验证模型。

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