The experiment results show that the temperature of grinding chips thermal flow is a useful signal source.
实验结果表明,磨屑热辐射流温度信号是较好的辨识砂轮磨钝的信号源。
When grinding softer metals, larger void space are needed to facilitate the flow of the removed chips.
当磨削较软金属时,需要较大的空隙以便去除切屑的流动。
It is shown that the cutting chips are shorter and the cutting route is longer in ultrasonic vibration assisted grinding along tangential direction than that in conventional grinding.
分析表明:切向超声振动辅助磨削可以得到更短的切屑,更长的切削路径长度。
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