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A comparison of dry and wet machining of SiC particle-reinforced aluminum metal matrix composites

机译:SiC粒子增强铝金属基复合材料干燥湿加工的比较

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This paper explains and demonstrates the machinability of dry and wet machining of SiC particle-reinforced aluminum metal matrix composites based on the experiments. The plunge surface experiments with mill-grinding method under wheel peripheral speed of up to 14.13m/s, feed rate 80mm/min and depth of cutting 50um were carried out on a vertical CNC milling machine. The comparisons of dry and wet machining on the force composites and surface roughness (Ra) versus material removal volume were studied. The material removal volume was gained with the same machining parameters after an equal period of time, m most cases, the tangential mill-grinding force values are greater in wet machining condition than that in dry condition. But for normal mill-grinding force, the Fn values are much greater in dry machining condition than that in wet condition. And the normal mill-grinding force in wet machining increased quickly with increasing material removal volume. A better surface finish can be produced in dry machining than that produced by wet machining. The surface roughness decreased slowly with the increasing material removal volume and the surface roughness shows an insignificant decreasing trend in wet machining.
机译:本文介绍了基于实验的SiC粒子增强铝金属基复合材料的干燥和湿加工的可加工性。在垂直的CNC铣床上,在车轮外周速度下具有轧机磨削方法的轧机磨削方法,进给速率为80mm / min和切割深度。研究了在力复合材料和表面粗糙度(Ra)上的干燥和湿加工的比较与材料去除体积相比。在相等的时间段,M大多数情况下,在相等的时间内,在湿加工条件下比在干燥条件下更大,在相同的加工参数中获得材料去除体积。但是对于正常磨削力,在干加工条件下,FN值远大于潮湿条件。随着材料去除量的增加,湿式加工中的正常轧机磨力迅速增加。可以在干燥加工中生产更好的表面光洁度,而不是通过湿式加工生产。随着材料去除量的增加,表面粗糙度缓慢降低,表面粗糙度显示出湿加工的微不足道的降低趋势。

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