首页> 外文期刊>Surface & Coatings Technology >Comparative study on the friction-wear property of As-plated, Nd-YAG laser treated, and heat treated electroless Nickel-Phosphorus/Crab shell particle composite coatings on mild steel
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Comparative study on the friction-wear property of As-plated, Nd-YAG laser treated, and heat treated electroless Nickel-Phosphorus/Crab shell particle composite coatings on mild steel

机译:镀镀,Nd-yAG激光处理的摩擦磨损性能和热处理化电镍 - 磷/蟹壳颗粒复合涂料对低碳钢的比较研究

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摘要

Nickel-Phosphorus/Crab shell particle (NiP/CSP) composite coatings were prepared with different weight dispersions of CSP (0.5 g/l, 1.0 g/l, 1.5 g/l, 2.0 g/l, 2.5 g/l and 3.0 g/l) on mild steel using electroless coating process. Fabricated coatings were post treated with heat treatment and Nd:YAG laser treatment process and followed by a comparative study on surface morphology, surface hardness, phase structure, and friction-wear property with as-plated NiP and NiP/CSP composite coatings. The result showed the relative changes in the surface morphology of NiP/CSP composite coatings after Nd:YAG laser treatment. Dendrite structure was observed for laser treated coatings and its formation was affected by the incorporation of CSP in the NiP matrix. FeNi2P phase was formed for laser treated coatings in addition to the Ni3P and Ni12P5 phases. Higher surface hardness of 966 Hv(0.05) and 941 Hv(0.05) was achieved for laser treated NiP and NiP/CSP composite coatings compared to the heat treatment process and as-plated condition. On comparison with various weight dispersions, higher surface hardness of 941 Hv(0)(.05) was obtained for NiP/CSP (2.5 g/l) composite coatings as a result of the high diffusion of Fe element from substrate to the surface. Low friction coefficient was seen for the heat treatment process followed by the as-plated and laser treatment process. The formation of FeNi2P phase caused an increase in the friction coefficient for laser treated NiP and NiP/CSP composite coatings. However, there was an improvement in the wear resistance of laser treated coatings compared to the as-plated and heat treated coatings.
机译:用CSP的不同重量分散体制备镍 - 磷/蟹壳颗粒(NIP / CSP)复合涂层(0.5g / L,1.0g / L,1.5g / L,2.0g / L,2.5g / L和3.0g / L)使用无电镀过程在温和的钢上。用热处理和Nd:YAG激光处理过程处理制造的涂料,然后用镀辊辊隙和NIP / CSP复合涂层的表面形态,表面硬度,相结构和摩擦磨损性能进行比较研究。结果表明,Nd:YAG激光处理后NIP / CSP复合涂层表面形态的相对变化。观察到激光处理涂层的树突结构,其形成受辊隙基质中CSP的掺入影响。除了Ni3P和Ni12P5相外,还形成用于激光处理涂层的FENI2P相。与热处理过程和镀涂的条件相比,对激光处理的辊隙和NIP / CSP复合材料涂料实现了966HV(0.05)和941HV(0.05)的较高表面硬度。与各种重量分散体的比较,由于Fe元素与表面的高分子扩散,得到941HV(0.05)的较高表面硬度为NIP / CSP(2.5g / L)复合涂层。看到热处理过程的低摩擦系数,然后看到镀涂和激光处理过程。 FENI2P相的形成导致激光处理的辊隙和NIP / CSP复合涂层的摩擦系数增加。然而,与镀涂层和热处理的涂层相比,激光处理涂层的耐磨性有所改善。

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