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Experimental Study on the Characteristics of Surface Roughness in Ultrasonic Aided High-speed Lapping of Engineering Ceramics

机译:超声波辅助高速研磨中表面粗糙度特性的实验研究

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摘要

The surface roughness of machined surface is one of the important indicators to evaluate the workpiece machining quality. In order to clarify the change law of surface roughness in ultrasonic aided high-speed lapping with solid diamond abrasive, a series of ultrasonic and conventional lapping experiments of different engineering ceramics, such as Al_2O_3, ZrO_2 and ZTA, were carried out on precision lathe with self-made high-speed ultrasonic lapping device. The research results show that the value of surface roughness in ultrasonic aided lapping is lower than that in conventional lapping. With the assistance of ultrasonic vibration, the surface quality can be improved obviously. In ultrasonic aided lapping, there is an optimum lapping pressure from which a better surface roughness value can be obtained. Because of different physical and mechanical properties, material removal mechanisms of the three kinds of engineering ceramics present different characteristics, which lead to the different surface roughness even though under the same lapping conditions. The research of the paper is helpful to optimize lapping technique and improve the surface quality.
机译:机加工表面的表面粗糙度是评估工件加工质量的重要指标之一。为了澄清用固体金刚石磨料的超声波辅助高速研磨中表面粗糙度的变化规律,在精密车床上进行了一系列超声波和常规研磨实验,例如Al_2O_3,ZrO_2和ZTA。自制造高速超声波研磨装置。研究结果表明,超声波辅助研磨中的表面粗糙度值低于传统研磨中的表面粗糙度。随着超声波振动的辅助,表面质量可以明显提高。在超声波辅助研磨中,有一个最佳研磨压力,可以获得更好的表面粗糙度值。由于具有不同的物理和机械性能,三种工程陶瓷的材料去除机制存在不同的特性,即使在相同的研磨条件下也导致不同的表面粗糙度。本文的研究有助于优化研磨技术,提高表面质量。

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