Technological effect of hole calibration under conditions of ultrasonic impact on part

Y. Torop
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Abstract

A technological scheme for calibrating holes in parts such as a bushing, discs, a gear wheel, in the conditions of applying ultrasonic effects on the part it has been experimentally established that, the accumulation of holes in critical parts with the imposition of ultrasonic vibrations on the part significantly reduces the surface roughness, the scattering field of the diameter of the holes and the dorning force.
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超声冲击条件下零件孔标定的工艺效果
本文提出了一种在超声作用下对轴套、盘、齿轮等零件进行孔位标定的工艺方案,通过实验证明,超声振动作用下关键零件孔位的积累可显著降低零件表面粗糙度、孔直径的散射场和回转力。
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