Studying the adhesion strength of plasma powder metal coatings on the surface of graphite

Yu. V. Nikolin, D. Vichuzhanin, N. Pugacheva, F. I. Mezin
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Abstract

Coatings applied onto the surface of specimens made of UHP electrode graphite are studied. Coatings are applied by thermal spraying in two stages: spraying of a sublayer (layer I) of the powder materials being tested; spraying of the main layer of the plasma coating, consisting of a mechanical mixture of fine spherical aluminum (Al) and copper (CuCr1) powders in an equal volume ratio. The adhesion strength between the coating and the graphite surface is studied as dependent on the following factors: sublayer thickness; the type of preliminary surface preparation; the chemical composition of the powder material of the sublayer. It has been found that the highest adhesion strength between the coating and the graphite base is achieved when the sublayer thickness is 80 µm, when a thread with a depth of 1.0 mm is cut on the base surface, and when Al powder is used as a sublayer.
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研究了等离子体粉末金属涂层在石墨表面的附着力
研究了超高压电极石墨试样表面涂层的制备方法。涂层通过热喷涂的方式分两个阶段进行:喷涂被测粉末材料的一个子层(第一层);等离子体涂层的主层喷涂,由细球形铝(Al)和铜(CuCr1)粉末按等体积比的机械混合物组成。研究了涂层与石墨表面的结合强度取决于以下因素:层厚度;初步表面处理的类型;亚层粉末材料的化学成分。实验发现,当亚层厚度为80µm、在基体表面切割深度为1.0 mm的螺纹、以Al粉作为亚层时,涂层与石墨基体的粘附强度最高。
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