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Tribological Behavior of Pulsed Electrodeposited Ni-W/SiC Nanocomposites

机译:脉冲电沉积Ni-W / SiC纳米复合材料的摩擦学行为

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摘要

Ni-14?at.% W/SiC nanocomposite coatings containing 0-6?vol.% of submicron size (0.35?μm) SiC particles were obtained using pulsed electrodeposition technique on mild steel substrate. The coatings were subsequently characterized for uniformity of SiC distribution, grain size and mechanical properties (hardness and elastic modulus) using SEM, XRD and nanoindentation techniques, respectively. It was observed that the SiC particulates were uniformly distributed within the coating. The coating matrix (Ni-W) also exhibited nanograin size. Tribological behavior of?Ni-14?W/SiC nanocomposite was analyzed under dry sliding wear test conditions using pin on disk method. The interrelationship between SiC content, interparticle spacing, mechanical properties and wear behavior was analyzed. The results suggest that whereas hardness and modulus of nanocomposite coatings varied with SiC content as per Rule of Mixtures, wear mechanism can be best explained on the basis of Inverse Rule of Mixtures.
机译:Ni-14?At。含有0-6℃的%w / siC纳米复合涂层涂层0-6μl。使用温和的电沉积技术在温和的钢基板上获得亚微米尺寸(0.35Ωμm)SiC颗粒的百分比。 随后将涂层特征在于使用SEM,XRD和纳米狭窄技术的SiC分布,晶粒尺寸和机械性能(硬度和弹性模量)的均匀性。 观察到SiC颗粒均匀地分布在涂层内。 涂层基质(Ni-W)也表现出纳米簇大小。 在盘状方法上在干式滑动磨损试验条件下分析了摩擦培训的培训行为。 分析了SIC含量,颗粒间距,机械性能和磨损行为之间的相互关系。 结果表明,纳米复合涂层的硬度和模量随着混合物规则而变化,耐磨机构可以基于逆规则解释。

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