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首页> 外文期刊>Journal of Thermal Spray Technology >Synthesis of Tribologically Favorable Coatings for Hot Extrusion Tools by Suspension Plasma Spraying
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Synthesis of Tribologically Favorable Coatings for Hot Extrusion Tools by Suspension Plasma Spraying

机译:悬浮等离子喷涂合成热挤压工具的摩擦学有利涂层

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Up to now, no coating systems have been marketed in the field of direct hot extrusion, which provide both surface protection of the parts in contact with the billet (i.e., container and die) as well as a significant reduction of the frictional losses induced by the billet passing over the container walls. To dispense with the use of lubricants and to enhance the usable forming capacity and therefore the efficiency of the process, different oxide ceramics were prepared in one suspension and plasma sprayed to produce coatings. The aim was to reach a sufficient level of feedstock mixing to obtain deterministic solid solutions of the oxide phases in coatings resulting in a reduction of their coefficient of friction under dry sliding conditions. To achieve this objective, the high specific surface area of nanosized feedstock with primary particle sizes below 100 nm was used. By means of x-ray diffraction it could be proven, that the desired phases could be synthesized to varying ratios regarding the different coating systems considered here. Besides the experimental work, the fundamentals of the mixing process of different oxides are discussed with regard to the crystallographic aspects.
机译:迄今为止,尚无直接热挤压领域的涂层系统在市场上销售,该系统既可提供与坯料接触的零件(即容器和模具)的表面保护,又可显着降低由钢坯引起的摩擦损失。穿过容器壁的钢坯。为了省去使用润滑剂并提高可用的成型能力并因此提高工艺效率,在一种悬浮液中制备了不同的氧化物陶瓷,并进行了等离子喷涂以产生涂层。目的是达到足够的原料混合水平,以获得涂层中氧化物相的确定性固溶体,从而降低其在干式滑动条件下的摩擦系数。为了实现该目的,使用了具有小于100nm的初级粒径的纳米级原料的高比表面积。通过X射线衍射可以证明,关于这里考虑的不同涂层体系,可以以不同的比例合成期望的相。除实验工作外,还针对晶体学方面讨论了不同氧化物混合过程的基本原理。

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