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Monitoring torque and traverse force in friction stir welding from input electrical signatures of driving motors

机译:通过驱动电机的输入电信号监控搅拌摩擦焊中的扭矩和横向力

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摘要

Experimental measurements of torque, traverse force and thermal cycles in friction stir welding (FSW) are challenging due to the simultaneous rotational and linear motions of the tool and the deformation of workpiece material around the tool pin. We propose here a methodology to measure the torque and the traverse force by monitoring the current and power transients of the electrical motors that drive the rotational and linear motions of the FSW tool respectively. The measured values of torque and traverse force in FSW of AA 7075-T6 and AA 2524-T351 at different combinations of tool rotational speed and tool shoulder diameter are validated with the corresponding computed results from a well tested numerical model. The proposed method alleviates the need to use expensive torque and force dynamometers, and provides an economical and robust route for indirect measurement of real time torque and traverse force in FSW.
机译:搅拌摩擦焊(FSW)中扭矩,横向力和热循环的实验测量具有挑战性,这是因为工具同时旋转和直线运动以及工件材料在工具销周围变形。我们在这里提出一种方法,通过监视分别驱动FSW工具的旋转和线性运动的电动机的电流和功率瞬变来测量转矩和横向力。使用经过良好测试的数值模型的相应计算结果,可以验证在不同转速的刀具转速和刀肩直径组合下,AA 7075-T6和AA 2524-T351在FSW中的扭矩和横向力的测量值。所提出的方法减轻了使用昂贵的扭矩和力测功机的需要,并为间接测量FSW中的实时扭矩和横向力提供了一种经济而可靠的途径。

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