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Investigation of machinability in turning of difficult-to-cut materials using a new cryogenic cooling approach

机译:新型低温冷却方法对难以切割材料转动的可加工性研究

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摘要

A new cooling technique is proposed to improve effectiveness of the minimum quantity lubrication (MQL) and cryogenic carbon dioxide (CO2) cooling in high performance machining of hard-to-cut materials. The combination of minimum quantity carbon dioxide and oil (CMQL) supplied from the rake face are compared with CO2 and MQL supplied from rake and flank faces, respectively, as well as only CO2 supplied from rake face, in turning of Ti6Al4V and Inconel 718. Tool wear, surface roughness and temperature measurements were performed to quantify the cooling impact of the various methods. Based on the systematical test results, CMQL was identified as the most favorable cooling method considering environmental impact, tool wear, surface finish, chip formation and cutting forces.
机译:提出了一种新的冷却技术,以提高耐磨材料高性能加工中最小量润滑(MQL)和低温二氧化碳(CO2)冷却的有效性。 将由耙面提供的最小量二氧化碳和油(CMQ1)的组合与从耙子和侧面供应的CO 2和MQL进行比较,以及仅在Rake面上提供的CO 2,转向Ti6Al4V和Inconel 718。 进行工具磨损,表面粗糙度和温度测量以量化各种方法的冷却冲击。 基于系统测试结果,CMQL被识别为考虑环境冲击,工具磨损,表面光洁度,芯片形成和切割力的最有利的冷却方法。

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