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Tribological Properties of Ni-P/Si

机译:Ni-P / SI的摩擦学特性

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摘要

The article presents the results of tribological tests of Ni-P/Si3N4 nanocomposite and Ni-P nickel layers deposited on the AW-7075 aluminum alloy by chemical reduction method, and the AW-7075 alloy without coating. Nanocomposite layers were produced using Si3N4 siliconnitride in the form of a polydisperse powder whose particle sizes ranged from 20 to 25 nm. The influence of the content of the dispersion phase layer material on the abrasive wear, which was determined as the “ball on disc” method, was analyzed. Surface topography was examined by the contact method using a profilometer. The purpose of introducing Si3N4 particles into the Ni-P layer was to increase the wear resistance of AW-7075 aluminum alloy parts with an embedded nanocomposite coating. Based on the obtained test results, it was found that the Ni-P/Si3N4 layers are more resistant to wear than the Ni-P layers and the AW-7075 alloy layers, and are a good barrier against abrasive wear at various loads and environmental conditions.
机译:该物品通过化学还原方法介绍了沉积在AW-7075铝合金上的Ni-P / Si3N4纳米复合材料和Ni-P镍层的摩擦学检测结果,以及无涂层的AW-7075合金。使用Si3N4硅氮化物以多分散粉末的形式制备纳米复合材料层,其粒度范围为20至25nm。分析了分散相层材料对磨料磨损的影响,该磨料被确定为“圆盘上”方法。通过使用型材计的接触方法检查表面形貌。将Si3N4颗粒引入Ni-P层的目的是增加AW-7075铝合金部件与嵌入纳米复合涂层的耐磨性。基于所获得的测试结果,发现Ni-P / Si3N4层比Ni-P层和AW-7075合金层更耐磨,并且是针对各种负荷和环境的磨料磨损的良好屏障使适应。

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