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Fuzzy control of grinding force in ultrasonic aided ceramic grinding process

机译:超声辅助陶瓷磨削过程中磨削力的模糊控制

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Grinding method is an effective way to process hard and brittle materials, such as ceramics. However, it is necessary to control the grinding force to achieve the desired surface quality and dimensional precision of ceramics parts. In this paper, we present the study results of the influence of machining parameters on the grinding force and its influence on machining performance such as machining speed and surface roughness. To improve machining efficiency and surface quality, the grinding process is aided with ultrasonic vibration. To control the grinding force, the fuzzy control strategy is used in this study. The effect of grinding force control on stability is studied. It has been found that the machining process is more stable with ultrasonic vibration than that without it. Ultrasonic vibration enhances machining speed and surface quality.
机译:研磨方法是处理坚硬和脆性材料(例如陶瓷)的有效方法。但是,必须控制磨削力以达到所需的陶瓷零件的表面质量和尺寸精度。在本文中,我们介绍了加工参数对磨削力的影响及其对加工性能(如加工速度和表面粗糙度)的影响的研究结果。为了提高加工效率和表面质量,超声振动辅助了研磨过程。为了控制磨削力,本研究采用了模糊控制策略。研究了磨削力控制对稳定性的影响。已经发现,在没有超声波振动的情况下,加工过程比没有超声波振动的情况下更稳定。超声波振动可提高加工速度和表面质量。

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