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Performance evaluation of deep cryogenic processed carbide inserts during dry turning of Nimonic 90 aerospace grade alloy

机译:深层低温加工碳化物插入碳化碳化碳化碳化碳化物刀片的性能评价

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摘要

Nickel based alloys are very difficult to machine under dry environment due to its low thermal conductivity and high chemical affinity. Generation of high temperature and friction during machining of nickel alloys results in extremely high tool wear. In order to improve the effectiveness of the cutting inserts under dry environment, deep cryogenic treatment of coated and uncoated carbide has been carried out. Comparison of the performance of the cryogenically treated and non-treated inserts has been conducted during the turning of Nimonic 90 alloy. The results demonstrated that the cryogenic treatment has improved scratch resistance of the cutting inserts. Appreciable reductions in flank wear over tool nose, cutting forces and chip tool contact length have also been noticed for the treated inserts.
机译:由于其低导热率和高化学亲和力,镍基合金非常难以在干燥环境下机器。 在加工镍合金时产生高温和摩擦导致极高的工具磨损。 为了提高干燥环境下切削刀片的有效性,已经进行了涂覆和未涂覆的碳化物的深度低温处理。 在弯曲90合金的转动期间已经进行了低温处理和未处理的插入物的性能的比较。 结果表明,低温处理改善了切削刀片的耐刮擦性。 对于处理的插入物也已经注意到刀尖的侧面磨损,切割力和芯片工具接触长度的可观减少。

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