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Tool wear in cryogenic turning of Ti-6Al-4V alloy

机译:Ti-6Al-4V合金低温车削时的刀具磨损

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摘要

Though titanium alloys are being increasingly sought in a wide variety of engineering and biomedical applications, their manufacturability, especially machining and grinding imposes lot of constraints. Rapid tool wear encountered in machining of titanium alloys is a challenge that needs to be overcome. Cryogenic machining with liquid nitrogen as coolant is being investigated by researchers to reduce the cutting zone temperatures and enhance the tool life. The effects of cryogenic cooling have been studied on growth and nature tool wear in the present investigation while turning Ti-6Al-4V alloy bars with microcrystalline uncoated carbide inserts under dry, wet and cryogenic cooling environments in the cutting velocity range of 70-100 m/min. Cryogenic cooling by liquid nitrogen jets enabled substantial improvement in tool life through reduction in adhesion-dissolution-diffusion tool wear through control of machining temperature desirably at the cutting zone.
机译:尽管钛合金在各种各样的工程和生物医学应用中越来越多地被寻求,但是它们的可制造性,特别是机加工和磨削施加了很多限制。在钛合金加工中遇到的快速刀具磨损是需要克服的挑战。研究人员正在研究以液氮作为冷却剂的低温加工,以降低切削区域的温度并延长刀具寿命。在本研究中,研究了低温冷却对生长和自然工具磨损的影响,同时在70-100 m的切削速度范围内,在干燥,湿润和低温冷却环境下转动带有微晶无涂层硬质合金刀片的Ti-6Al-4V合金棒时,将其旋转/分钟。液氮喷嘴的低温冷却可通过控制切削区域的加工温度来减少粘着-溶解-扩散工具的磨损,从而大大提高工具的使用寿命。

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