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Research on the Force Characteristics in Ultrasonic Grinding Nano-Zirconia Ceramics

机译:超声波磨削纳米氧化锆陶瓷力特性研究

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摘要

Nano-ceramics possessed ascendant mechanical property and physical characteristics contrast with traditional engineering ceramics, and its machining with ultrasonic assistance has been considered one of the most efficient methods. In the present paper a novel ultrasonic grinding vibration device has been developed and the theoretical model of grinding force has been created for ultrasonic vibration grinding. The influences of grinding parameters on grinding forces were tested with self-designd acoustic system based on local resonance. According to the test data, the effect of depth of cut and wheel velocity on the grinding force with/without ultrasonic assistance was analyzed. Both in common and ultrasonic grinding the normal grinding force and tangential grinding force descend against the wheel velocity, while ascend along with the depth of cut. In any case the grinding force in ultrasonic grinding was not more that that in common grinding.
机译:纳米陶瓷具有传统工程陶瓷的上升力学性和物理特性,其用超声辅助的加工被认为是最有效的方法之一。在本文中,已经开发了一种新型超声波研磨振动装置,并且已经为超声波振动研磨产生了研磨力的理论模型。基于局部共振的自塑声系统测试研磨参数对研磨力的影响。根据试验数据,分析了与/不具有超声辅助的磨削力的切割和车轮速度深度的影响。共同和超声波研磨的普通研磨力和切向研磨力抵靠车轮速度,同时提升随着切割深度。在任何情况下,超声波研磨中的研磨力并不多于常见的研磨。

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