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Transformation of metal surface to cermet by plasma processing and powder/granular material holder for ion implantation

机译:等离子体加工和粉末/颗粒材料支架将金属表面转化为金属表面,用于离子注入

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摘要

This experimental study is concerned with the fabrication of "cermets" at a sub-surface layer of metal by reactive plasma processing at high temperatures. Samples of Ti and Zr were carbonized or nitrided with use of CH{sub}4 gas or a gas mixtureof N{sup}2 and H{sub}2, respectively. Experiments were done below 1300°C for less than 3h. Thickness and hardness of modified layers were increased with the modifying time and temperature, especially, at temperature over 900°C. The maximum Vicker'shardness of TiC based cermet was about 5000Hv (kg/mm{sup}2) and the maximum thickness of ZrN reached about 50μm for only 2 h, both at 1300°C. For the next step aiming to decrease the activation energy of atomic diffusion and the modifying temperature,the effects of pre-irradiation processing before the main processing were reviewed for the nitriding of pure aluminium. In addition, relating to the application of ion implantation to the fabrication of cermets by sintering, "a powder/granular materialholder" was newly designed.
机译:该实验研究涉及通过在高温下通过反应等离子体加工在金属的副表面层中制造“金属膜”。用CH {Sub} 4气体或N {SUP} 2和H {Sub} 2的气体混合物,Ti和Zr的样品分别碳化或氮化。实验在1300℃以下完成小于3h。改性时间和温度,特别是在900℃超过900℃的温度下增加改性层的厚度和硬度。基于TiC的CERMET的最大VICKER'SCHERSHARD约为5000HV(kg / mm {sup} 2),并且在1300℃下,Zrn的最大厚度仅达到约50μm。对于旨在降低原子扩散的激活能量和改性温度的下一步,对纯铝的氮化进行了预防加工前的预照射处理的影响。此外,与通过烧结制造金属陶瓷的离子注入有关,“粉末/颗粒材料效果”是新设计的。

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