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A novel indirect cryogenic cooling system for improving surface finish and reducing cutting forces when turning ASTM F-1537 cobalt-chromium alloys

机译:用于改进表面光洁度的新型间接低温冷却系统,降低切削力时转动ASTM F-1537钴 - 铬合金

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摘要

This paper presents a novel indirect cryogenic cooling system, employing liquid nitrogen (LN2) as a coolant for machining the difficult-to-cut ASTM F-1537 cobalt-chromium (CoCr) alloy. The prototype differs from the already existing indirect cooling systems by using a modified cutting insert that allows a larger volume of cryogenic fluid to flow under the cutting zone. For designing the prototype analytical and finite element, thermal calculations were performed; this enabled to optimize the heat evacuation of the tool from the rake face without altering the stress distribution on the insert when cutting material. Turning experiments on ASTM F-1537 CoCr alloys were performed under different cutting conditions and employing indirect cryogenic cooling and dry machining, to test the performance of the developed system. The results showed that the new system improved surface roughness by 12%, and cutting forces were also reduced by 12% when compared with the existing indirect cryogenic cooling technique.
机译:本文介绍了一种新型间接低温冷却系统,采用液氮(LN2)作为加工难以切割的ASTM F-1537钴 - 铬(COCR)合金的冷却剂。原型通过使用改进的切削刀片与已经存在的间接冷却系统不同,该切削刀片允许较大体积的低温流体在切割区下流。为了设计原型分析和有限元,进行热量计算;这使得能够优化工具的热量排出从耙面时,而不会在切割材料时改变插入物上的应力分布。在不同的切割条件下进行ASTM F-1537 COLD合金的转向实验,采用间接低温冷却和干加工,以测试发达系统的性能。结果表明,与现有的间接低温冷却技术相比,新系统改善了12%,切割力也减少了12%。

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