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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological behavior of 316L stainless steel fabricated by micro powder injection molding
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Tribological behavior of 316L stainless steel fabricated by micro powder injection molding

机译:微粉注射成型316L不锈钢的摩擦学行为

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摘要

In this paper, 316L stainless steel micro-mixers were fabricated by micro powder injection molding. The tribological behavior of the stainless steel micro-mixer sliding against AISI 52100 steel at low loads was investigated using a ball-on-disk tribometer. The morphologies and compositions of the worn surfaces were analyzed by SEM, Raman and XPS. The results showed that the wear mechanism of stainless steel depended strongly on the microstructure which was influenced by the sintering atmosphere. The friction coefficients and wear rates of the stainless steel sintered in vacuum were lower than that in hydrogen, due to the formation of carbide phase in the former matrix. Tribo-oxidation together with the formation and delamination of tribo-layer were the dominant wear mechanisms for stainless steel sintered in vacuum. The tribo-layer composed of various iron oxides, such as Fe_3O_4, α-Fe_2O_3, γ-Fe_2O_3, and γ-FeOOH, which were favorable and caused mild wear. In the case of the stainless steel sintered in hydrogen, the worn surfaces were very rough with more wear debris entrapped. Adhesive wear was responsible for the material transfer from the stainless steel to the AISI 52100 steel, which led to the transition from mild to severe wear.
机译:本文通过微粉注射成型制造了316L不锈钢微混合器。使用圆盘球式摩擦计研究了不锈钢微混合器在低负载下相对于AISI 52100钢滑动的摩擦学行为。通过SEM,拉曼和XPS分析磨损表面的形态和组成。结果表明,不锈钢的磨损机理很大程度上取决于受烧结气氛影响的组织。在真空中烧结的不锈钢的摩擦系数和磨损率低于在氢气中的摩擦系数和磨损率,这是由于在前者基体中形成了碳化物相。摩擦氧化以及摩擦层的形成和分层是真空烧结不锈钢的主要磨损机理。由各种铁氧化物组成的摩擦层,如Fe_3O_4,α-Fe_2O_3,γ-Fe_2O_3和γ-FeOOH,均有利并引起轻度磨损。在用氢气烧结不锈钢的情况下,磨损的表面非常粗糙,残留了更多的磨损碎屑。粘着磨损是造成材料从不锈钢向AISI 52100钢转移的原因,这导致了从轻度到严重磨损的转变。

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