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Tribological viewpoint of the cutting force in rotary ultrasonic vibration-assisted side milling (RUVSM)

机译:旋转超声振动辅助铣刀中切割力的摩擦学观(RUVSM)

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摘要

This study proposed a novel method to explain the reduction of cutting force in rotary ultrasonic vibration-assisted side milling (RUVSM) from the angle of tribology. Experiments, including practical machining and cutting simulation, were carried out to study the relationship among ultrasonic power, friction coefficient and cutting force. Specifically, cutting force and sonic signal were measured during machining and the cutting forces were calculated under different friction coefficients in the cutting simulation. Furthermore, an analytical method was developed to estimate the reduction of friction coefficient with ultrasonic vibration and further to predict the reduction of cutting force to some degree under different machining parameters. Specifically, the coulomb static model was introduced for the calculation and the vibration characteristics of the spiral milling tool were obtained by the finite element method (FEM).
机译:本研究提出了一种从摩擦学角度解释旋转超声振动辅助侧铣(RUVSM)切削力降低的新方法。通过实际加工和切削模拟实验,研究了超声功率、摩擦系数和切削力之间的关系。具体来说,在切削模拟中,测量了切削力和声信号,并计算了不同摩擦系数下的切削力。此外,还发展了一种分析方法来估计超声振动对摩擦系数的降低,并进一步预测在不同加工参数下切削力的降低程度。具体而言,采用库仑静态模型进行计算,并通过有限元法(FEM)获得螺旋铣刀的振动特性。

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