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Effect of rare earth cerium on the synthesis and wear-resistance of electroless Ni-P-PTFE coatings

机译:稀土铈对电镀Ni-P-PTFE涂层合成及耐磨性的影响

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By adding various concentrations of rare earth cerium into the acidic hypophosphite plating baths, electroless Ni-P-PTFE coatings have been successfully deposited on the surface of shaft made of mild steel. Surface morphology, microhardness and interfacial adhesion of the coatings were characterized by scanning electron microscope equipped with energy dispersive spectrometer, vicker microhardness meter and WS-92 scrape instrument, respectively. Ring-plate wear test was applied to study the friction coefficient and wear resistance of Ni-P-PTFE coating. Results revealed that Ni-P-PTFE coatings deposited with 10 ppm or 20 ppm cerium in the plating baths show low friction coefficient and high interfacial adhesion, leading to its perfect wear resistance. However, both the interfacial adhesion and wear resistance of the Ni-P-PTFE coatings were decreased drastically as the cerium concentration in the plating baths was exceeds 50 ppm.
机译:通过将各种浓度的稀土铈添加到酸性次磷酸酯镀浴中,已经成功地沉积在温和钢制成的轴的表面上的化学镜片。 通过分别配备有能量分散光谱仪,维氏微硬度计和WS-92 Scrape仪器的扫描电子显微镜,表征了涂层的表面形态,显微硬度和界面粘附。 施用环板磨损试验研究Ni-P-PTFE涂层的摩擦系数和耐磨性。 结果表明,镀敷浴中沉积10ppm或20ppm铈的Ni-p-PTFE涂层显示出低摩擦系数和高界面粘附,导致其完美的耐磨性。 然而,随着电镀浴中的铈浓度超过50ppm,Ni-P-PTFE涂层的界面粘附和耐磨性均急剧下降。

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