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Influence of cryogenic cooling on tool wear and chip formation in turning of titanium alloy

机译:低温冷却对钛合金转向工具磨损和芯片形成的影响

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Machining of high performance materials such as titanium alloy keeps growing especially in the aerospace and medical industries. Due to the low thermal conductivity property of titanium material, there is thermal-related challenge which causes poor machinability and productivity. In this paper, influence of cryogenic cooling on tool wear and chip formation was investigated for turning titanium alloy at high speed cuttings. The results showed that tool wear resistance increases when using the developed cryogenic modular compared to oil-based coolant. In addition, a study on chip morphology showed different chip formations and thicker secondary deformation zone when machining under oil-based coolant condition compared to cryogenic condition.
机译:高性能材料的加工如钛合金,特别是在航空航天和医疗行业中的生长。由于钛材料的低导热性,存在与热相关的攻击,从而导致可差的可加工性和生产率。本文研究了高速切割下钛合金的钛合金研究了低温冷却对工具磨损和芯片形成的影响。结果表明,与油基冷却剂相比,使用开发的低温模块时,刀具耐磨性增加。此外,与低温条件相比,芯片形态学的研究表明,加工油基冷却剂条件下加工时厚度较厚的二级变形区。

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