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首页> 外文期刊>Procedia CIRP >Comparative Study of High Speed Machining of Inconel 718 in Dry Condition and by Using Compressed Cold Carbon Dioxide Gas as Coolant
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Comparative Study of High Speed Machining of Inconel 718 in Dry Condition and by Using Compressed Cold Carbon Dioxide Gas as Coolant

机译:Inconel 718在干燥条件下和压缩二氧化碳气体作为冷却剂的高速加工的比较研究

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摘要

Difficult-to-cut materials like Inconel 718 are used for aerospace, steam turbine, bearing industry, nuclear and automotive applications. In machining, friction and heat generation at the cutting zone are the frequent problems, which affect the tool life and surface finish. Heat generation pose limitations during the turning of such modern materials due to their peculiar characteristics such as poor thermal conductivity, high strength at elevated temperature, resistance to wear and chemical degradation. A good understanding of the methods of lubrication/cooling at the cutting zone, reduction of heat generation will lead to efficient and economic machining of these modern materials. This paper presents use of compressed cold carbon dioxide for cooling at machined affected zone. Effect of cold compressed carbon dioxide as coolant on process forces, surface roughness, micro hardness, specific cutting pressure has been studied in comparison to dry turning for same set of cutting parameters.
机译:像Inconel 718这样的难切削材料可用于航空航天,蒸汽轮机,轴承行业,核能和汽车应用。在机械加工中,切削区域的摩擦和发热是经常出现的问题,会影响刀具寿命和表面光洁度。由于这种现代材料的特殊特性,例如导热性差,高温下的高强度,耐磨损性和化学降解性,在这种现代材料的车削过程中产生热量受到限制。充分了解切削区域的润滑/冷却方法,减少热量的产生,将导致对这些现代材料进行高效而经济的加工。本文介绍了使用压缩冷二氧化碳在机加工受影响区域进行冷却的方法。与相同切削参数下的干车削相比,已研究了冷压缩二氧化碳作为冷却剂对加工力,表面粗糙度,显微硬度,比切削压力的影响。

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