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Mechanisms Involved in the Formation of Secondary Structures on the Friction Surface of Experimental Aluminum Alloys for Monometallic Journal Bearings

机译:在单金属期轴承的实验铝合金摩擦表面上形成二次结构的机制

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摘要

The processes taking place on the friction surface of high-alloyed aluminum alloys working with steel whilst replacing bronze journal bearings with aluminum are investigated. In this regard, eight experimental aluminum alloys with an Sn content from 5.4% to 11.0%, which also included Pb, Zn, Si, Mg, and Cu, were cast. The surface and subsurface layer of experimental aluminum bearings were studied before and after tribological tests with a 38HN3MA steel counterbody by scanning electron microscopy including energy-dispersive analysis. The best aluminum alloy, which had an Sn content of 5.8% after the friction tests, showed 6.5-times better wear resistance and steel counterbody wear rate than the bronze reference. Both structural and compositional changes in the surface layer were observed. It was revealed that secondary structures formed on the surface during the friction process and included all of the chemical elements in the tribosystem, which is a consequence of its self-organization. Generally, the secondary structures are thin metal-polymer films generated as a result of the high carbon and oxygen content. The interaction behavior of some of the chemical elements in the tribosystem is shown and discussed. In addition, the influence that Sn, Pb, Cu, and C content in the secondary structures has on the tribological properties of low-tin and medium-tin alloys is shown.
机译:研究了用钢的高合金铝合金摩擦表面进行的过程,同时用铝更换青铜轴颈轴承。在这方面,施放了八个具有5.4%至11.0%的SN含量的八个实验铝合金,其中还包括Pb,Zn,Si,Mg和Cu。通过扫描电子显微镜通过扫描电子显微镜,在摩擦学检测前后研究了实验铝轴承的表面和地下层,包括能量分散分析。最佳铝合金,在摩擦试验后的SN含量为5.8%,表现出6.5倍的耐磨性和钢靶磨损比青铜器更好。观察到表面层的结构和组成变化。据透露,在摩擦过程中形成的二级结构并包括摩擦系统中的所有化学元素,这是其自组织的结果。通常,二次结构是由于高碳和氧含量产生的薄金属 - 聚合物膜。展示和讨论了摩擦系统中一些化学元素的相互作用行为。此外,显示了SN,Pb,Cu和C含量对二锡和中锡合金的摩擦学性质的影响。

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