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首页> 外文期刊>Surface & Coatings Technology >The effect of Mo content in plasma-sprayed Mo-NiCrBSi coating on the tribological behavior
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The effect of Mo content in plasma-sprayed Mo-NiCrBSi coating on the tribological behavior

机译:等离子喷涂Mo-NiCrBSi涂层中的Mo含量对摩擦学行为的影响

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摘要

NiCrBSi is a material popularly used as a hard thermal sprayed coating. The coating performs well as a wear resistant coating under low stress. At higher stress in metal-to-metal sliding wear condition, however, the NiCrBSi starts to experience surface deformation, which will inevitably lead to seizure as the stress increases. In order to improve the tribological properties of the NiCrBSi plasma-sprayed coating, Mo is added to the coating to reduce the friction between the coating and other metal contacting surface, thus, improving its dry sliding wear resistance. In this study, various amounts of Mo were mixed with NiCrBSi at 0, 25, 50, 75 and 100 wt.%. The powders were sprayed using an air plasma spraying technique onto stainless steel samples to form coatings, which were ground to achieve flat surfaces and a thickness of 350-400 μm. The mechanical properties of the coatings were determined. The coating samples were then tested using a reciprocation ball-on-flat tribometer. It was found that as the Mo/NiCrBSi ratio increases, the wear mechanism changes. Coatings containing 75%Mo and 25%NiCrBSi exhibit the highest wear depths corresponding to the cracking of the thin NiCrBSi splats. On the other hand, coatings containing 25%Mo and 75%NiCrBSi possess the lowest wear depths with no surface cracks. The presence of Mo covering the coating surface hinders the metal seizure between NiCrBSi and steel counter surface.
机译:NiCrBSi是一种普遍用作硬质热喷涂涂层的材料。该涂层在低应力下作为耐磨涂层表现良好。但是,在金属与金属之间的滑动磨损条件下,如果应力较高,则NiCrBSi会开始发生表面变形,随着应力的增加,不可避免地会导致咬合。为了改善NiCrBSi等离子喷涂涂层的摩擦学性能,将Mo添加到涂层中以减少涂层与其他金属接触表面之间的摩擦,从而提高其抗干滑磨损性。在这项研究中,各种含量的Mo以0、25、50、75和100 wt。%的百分比与NiCrBSi混合。使用空气等离子喷涂技术将这些粉末喷涂到不锈钢样品上以形成涂层,然后对其进行研磨以形成平坦的表面并形成350-400μm的厚度。确定了涂层的机械性能。然后使用往复式球形测振仪测试涂层样品。发现随着Mo / NiCrBSi比的增加,磨损机理改变。含有75%Mo和25%NiCrBSi的涂层表现出最高的磨损深度,对应于薄NiCrBSi片的开裂。另一方面,含有25%Mo和75%NiCrBSi的涂层具有最低的磨损深度,并且没有表面裂纹。 Mo覆盖涂层表面的存在阻碍了NiCrBSi和钢对置表面之间的金属咬合。

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