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Wear and corrosion resistance of laser-cladded Fe-based composite coatings on AISI 4130 steel

机译:AISI 4130钢上激光包覆FS基复合涂料的磨损和耐腐蚀性

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摘要

The wear and corrosion resistance of Fe72.2Cr16.8Ni7.3Mo1.6Mn0.7C0.2Si1.2 and Fe77.3Cr15.8Ni3.9Mo1.1Mn0.5C0.2Si1.2 coatings laser-cladded on AISI 4130 steel were studied. The coatings possess excellent wear and corrosion resistance despite the absence of expensive yttrium, tungsten, and cobalt and very little molybdenum. The microstructure mainly consists of dendrites and eutectic phases, such as duplex (gamma+alpha)-Fe and the Fe-Cr (Ni) solid solution, confirmed via energy dispersive spectrometry and X-ray diffraction. The cladded Fe-based coatings have lower coefficients of friction, and narrower and shallower wear tracks than the substrate without the cladding, and the main wear mechanism is mild abrasive wear. Electrochemical test results suggest that the soft Fe72.2Cr16.8Ni7.3Mo1.6Mn0.7C0.2Si1.2 coating with high Cr and Ni concentrations has high passivation resistance, low corrosion current, and positive corrosion potential, providing a better protective barrier layer to the AISI 4130 steel against corrosion.
机译:研究了AISI 4130钢上的磨损和耐腐蚀性Fe72.2CR16.8NI7.3MO1.6MN0.7C0.2SI1.2和FE77.3CR15.8NI3.9MO1.1MN0.5C0.2SI1.2涂层。尽管没有昂贵的钇,钨和钴和非常小的钼,但涂层具有优异的磨损和耐腐蚀性。微观结构主要由树突和共晶相组成,例如双链体(γ+α)-Fe和Fe-Cr(Ni)固溶体,通过能量分散光谱和X射线衍射确认。包覆的Fe基涂层具有较低系数的摩擦系数,并且比没有包层的基板更窄,易磨损轨道,并且主磨损机构温和的研磨磨损。电化学测试结果表明,具有高Cr和Ni浓度的软FE72.2CR16.8NI7.3MO1.6Mn0.7C0.2SI1.2涂层具有高钝化电阻,低腐蚀电流和正腐蚀电位,提供更好的防护屏障层AISI 4130钢腐蚀。

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