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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Simulation study on effect of cutting parameters and cooling mode on bone-drilling temperature field of superhard drill
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Simulation study on effect of cutting parameters and cooling mode on bone-drilling temperature field of superhard drill

机译:切削参数和冷却方式对超硬钻头钻削温度场影响的仿真研究

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摘要

To overcome strong drilling force and significantly high temperature during orthopedic surgery, two medical drills with different geometrical shapes were designed by using superhard materials. The bone-drilling temperature fields under different cutting parameters and cooling modes were simulated by using a brazed step drill and a brazed twist drill. Results showed that given a fixed feed speed, the maximum bone-drilling temperature using the brazed step drill under 500 rpm was 33.5 A degrees C, which increased to 58 A degrees C under 2000 rpm. Meanwhile, the maximum bone-drilling temperature using the brazed twist drill under 500 rpm was 42.9 A degrees C, which increased to 70.1 A degrees C under 2000 rpm. Given a fixed drill speed, the maximum bone-drilling temperatures of both drills varied as feed speed first increased and then decreased. When the feed speed increased from 0.5 to 1.7 mm/s, the maximum bone-drilling temperature of the brazed step drill was proportional to the feed speed. With the further increase in the feed speed from 1.7 to 2.0 mm/s, the maximum bone-drilling temperature decreased. The bone-drilling temperature of the brazed twist drill varied similarly, except for reaching the peak at 1.4 mm/s. The bone-drilling temperature of the brazed step drill was always lower than that of the brazed twist drill under all cutting parameters. The normal saline spray cooling had the best cooling effect, followed by the normal saline pouring cooling and air cooling. The maximum temperatures of these three cooling modes were 43.8, 52.6, and 70.1 A degrees C using the brazed step drill.
机译:为了克服整形外科手术过程中强大的钻孔力和明显的高温,使用超硬材料设计了两种具有不同几何形状的医用钻。利用钎焊阶梯钻和钎焊麻花钻模拟了不同切削参数和冷却方式下的骨钻温度场。结果表明,在给定的进给速度下,钎焊阶梯钻在500 rpm下的最高骨骼钻探温度为33.5 A摄氏度,在2000 rpm下达到了58 A摄氏度。同时,使用钎焊麻花钻在500 rpm下的最高骨骼钻孔温度为42.9 A摄氏度,在2000 rpm下升高至70.1 A摄氏度。在给定固定钻速的情况下,两个钻的最大骨骼钻温度随进给速度先升高然后降低而变化。当进给速度从0.5增至1.7 mm / s时,钎焊阶梯钻的最高骨骼钻孔温度与进给速度成正比。随着进给速度从1.7到2.0 mm / s的进一步增加,最高骨骼钻孔温度降低。钎焊麻花钻的钻骨温度类似地变化,除了以1.4 mm / s达到峰值。在所有切削参数下,钎焊阶梯钻的接骨钻温度始终低于钎焊麻花钻的接骨钻温度。普通盐水喷雾冷却具有最佳的冷却效果,其次是普通盐水浇注冷却和空冷。使用钎焊阶梯钻时,这三种冷却模式的最高温度分别为43.8、52.6和70.1 A摄氏度。

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