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Removal mechanism of ultrasonic vibration and ELID composite plane grinding based on ultrasonic vibration of nano-ceramic workpiece

机译:基于纳米陶瓷工件超声振动的超声振动和ELID复合平面研磨的去除机理

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摘要

To realize the high efficiency mirror surface grinding of hard brittle materials (such as nano-ceramic material), this work firstly constructs an experimental platform for workpiece ultrasonic vibration and ELID combined plane grinding according to the processing mechanism of ultrasonic vibration assisted grinding and ELID grinding; then, based on the removal mechanism of hard brittle material, this work analyzes the kinematics of single abrasive grit with workpiece ultrasonic vibration plane grinding, and studies the effect of ELID plane grinding on the grinding depth; finally, based on the above work, this work proposes the mathematical model of material removal rate for the workpiece ultrasonic vibration and ELID combined plane grinding. Experimental results show that the material removal rate of combined plane grinding increases with the increase of the cutting depth and workpiece speed, the material removal rate of ultrasonic vibration and ELID combined grinding is higher than that of ELID grinding under the same conditions.
机译:为了实现高效率的镜面磨削的硬的脆性材料(如纳米陶瓷材料),此工作首先构建磨削根据辅助磨削和ELID磨削超声波振动的处理机构,用于工件超声波振动和ELID组合面的实验平台;然后,基于硬的脆性材料的除去机构,这项工作分析单个磨料砂砾与工件超声波振动平面磨削运动学,研究ELID平面磨削在磨削深度的效果;最后,基于上述工作,这项工作提出了材料去除速率用于工件超声波振动和ELID组合面磨削的数学模型。实验结果表明,与切削深度和工件速度,超声波振动的材料去除速率和ELID的增加组合面磨削增加了材料去除速率联合粉磨比ELID在相同条件下研磨的高。

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