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Tribological characteristics of composite coatings formed by laser cladding of powders of nickel self-fluxing alloy and bronze

机译:激光熔覆镍自熔合金和青铜粉末形成的复合涂层的摩擦学特性

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摘要

Microstructures, coefficients of friction, and relative wear of composite coatings based on the PG-12N-01 nickel self-fluxing alloy and PG-19M-01 bronze have been considered. It has been found that composite coatings have a complex structure. The bronze coating, which is deposited on the fillets of the nickel alloy, crystallizes in a form of dendrites with axes arranged under an angle of 45A degrees. The nickel alloy has a globular-dendritic structure with the eutectic component crystallizing between its branches. Momentary coefficients of friction in conditions of the concentrated load are independent of the cladding rate, and their values are 0.08-0.12 depending on the load. In this case, the wear rate of coatings depends substantially on the laser cladding. Under conditions of the distributed contact, bilayer coatings have a considerable advantage, and the relative wear is reduced by several tens of times compared with single-layer ones.
机译:已经考虑了基于PG-12N-01镍自熔合金和PG-19M-01青铜的复合涂层的组织,摩擦系数和相对磨损。已经发现,复合涂层具有复杂的结构。沉积在镍合金圆角上的青铜涂层以枝晶形式结晶,其晶轴排列成45A度角。镍合金具有球状树枝状结构,共晶成分在其分支之间结晶。集中载荷条件下的瞬时摩擦系数与包层速率无关,取决于载荷,其值为0.08-0.12。在这种情况下,涂层的磨损率基本上取决于激光熔覆。在分布式接触的条件下,双层涂层具有相当大的优势,与单层涂层相比,相对磨损降低了数十倍。

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