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Structural State Scale-Dependent Physical Characteristics and Endurance of Cermet Composite for Cutting Metal

机译:用于切割金属的结构状态尺度依赖性物理特性及金属陶瓷复合材料的耐久性

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摘要

A structural-phase state developed on the surface of a TiC/Ni–Cr–Al cermet alloy under superfast heating and cooling produced by pulse electron beam melting has been presented. The effect of the surface’s structural state multimodality on the temperature dependencies of the friction and endurance of the cermet tool in cutting metal has been investigated. The high-energy flux treatment of subsurface layers by electron beam pulses in argon-containing gas discharge plasma serves to improve the endurance of metal cutting tools manifold (by a factor of 6), to reduce the friction via precipitation of secondary 200 nm carbides in binder interlayers. It is possible to improve the cermet tool endurance for cutting metal by a factor of 10–12 by irradiating the cermet in a reactive nitrogen-containing atmosphere with the ensuing precipitation of nanosize 50 nm AlN particles in the binder interlayers.
机译:已经介绍了通过脉冲电子束熔化的超高速加热和冷却的TiC / Ni-Cr-Al Cermet合金的表面上显影的结构相状态。研究了表面结构状态多模对切割金属中金属陶瓷工具的摩擦和耐久性的温度依赖性的影响。通过电子束脉冲在含氩气体排出等离子体中的电子束脉冲的高能量通量处理用于改善金属切削工具歧管的耐久性(通过6倍),以通过沉淀二次200nm碳化物的摩擦力粘合剂层间。通过在含有反应性氮气气氛中辐射金属陶瓷,可以通过在粘合剂中间层中的纳米化50nm Aln颗粒中的沉淀中辐射金属陶瓷来改善用于切割金属的金属的金属仪的耐久性为10-12。

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