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Wear behavior of plasma electrolytic oxidation (PEO) and hybrid coatings of PEO and laser on MRI 230D magnesium alloy

机译:等离子体电解氧化(PEO)以及PEO和激光的混合涂层在MRI 230D镁合金上的磨损行为

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摘要

Wear resistant coatings were produced on a permanent mould cast MRI 230D Mg alloy by (a) PEO in silicate based electrolyte, (b) PEO in phosphate based electrolyte, (c) hybrid coatings of silicate PEO followed by laser surface alloying (LSA) with Al and Al(2)O(3), and (d) hybrid coatings of phosphate PEO followed by LSA with Al and Al(2)O(3). Microstructural characterization of the coatings was carried out by scanning electron microscopy (SEM) and X(ray diffraction. The tribological behavior of the coatings was investigated under dry sliding condition using linearly reciprocating ball-on-flat wear test. Both the PEO coatings exhibited a friction coefficient of about 0.8 and hybrid coatings exhibited a value of about 0.5 against the AISI 52100 steel ball as the friction partner, which were slightly reduced with the increase in applied load. The PEO coatings sustained the test without failure at 2 N load but failed at 5 N load due to micro-fracture caused by high contact stresses. The hybrid coatings did not get completely worn off at 2 N load but were completely removed exposing the substrate at 5 N load. The PEO coatings exhibited better wear resistance than the hybrid coatings and silicate PEO coatings exhibited better wear resistance than the phosphate PEO coatings. Both the PEO coatings melted/decomposed on laser irradiation and all the hybrid coatings exhibited similar microstructure and wear behavior irrespective of the nature of the primary PEO coating or laser energies. SEM examination of worn surfaces indicated abrasive wear combined with adhesive wear for all the specimens. The surface of the ball exhibited a discontinuous transfer layer after the wear test. (C) 2011 Elsevier B.V. All rights reserved.
机译:耐磨涂层是通过(a)硅酸盐基电解质中的PEO,(b)磷酸盐基电解质中的PEO,(c)硅酸盐PEO的混合涂层,然后进行激光表面合金化(LSA)在永久铸模MRI 230D镁合金上生产的Al和Al(2)O(3),以及(d)磷酸盐PEO的混合涂层,然后是带有Al和Al(2)O(3)的LSA。通过扫描电子显微镜(SEM)和X射线衍射对涂层进行微观结构表征,在干滑动条件下使用线性往复式平底滚珠磨损试验研究了涂层的摩擦学性能,两种PEO涂层均显示出摩擦系数约为0.8,混合涂层相对于AISI 52100钢球作为摩擦伙伴表现出约0.5的值,随施加载荷的增加而略有降低; PEO涂层在2 N载荷下仍能承受试验,但没有失败在5 N负荷下,由于高接触应力引起的微裂纹,杂化涂层在2 N负荷下并没有完全磨损,但在5 N负荷下被完全去除,使基材暴露在外,PEO涂层的耐磨性比杂化涂层好PEO涂层和硅酸盐PEO涂层比磷酸盐PEO涂层具有更好的耐磨性,两种PEO涂层都在激光辐照下熔化/分解不论初级PEO涂层的性质或激光能量如何,所有混合涂层均表现出相似的微观结构和磨损行为。 SEM对磨损表面的检查表明所有样品的磨料磨损和粘合剂磨损相结合。磨损测试后,球的表面呈现出不连续的转移层。 (C)2011 Elsevier B.V.保留所有权利。

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