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Influence of WC particle behavior on the wear resistance properties of Ni-WC composite coatings

机译:WC颗粒行为对Ni-WC复合涂层耐磨性能的影响

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摘要

Nickel-based and tungsten carbide (WC) composite coatings were prepared by laser cladding under different laser beam powers. The microscopic morphology and distribution of WC particles in a laser-clad Ni-WC coatings were characterized by scanning electron microscopy (SEM). Two effective methods to avoid the stress concentration and cracks were used. One is the gradient coating with WC hard phase varied gradually from the substrate to the top of the coating using three-step laser cladding. The other is the coating where WC particles, with a marked gradient distribution at interface between the matrix and WC, were uniformly incorporated in the coating by optimizing WC particle concentration, laser power and thickness of the layer. The wear test results show that three-step laser-clad gradient layer is not recommended especially for long-term wear applications because of the complicated laser processing and poorer interface between the matrix and WC particles.
机译:通过在不同的激光束功率下进行激光熔覆来制备镍基和碳化钨(WC)复合涂层。通过扫描电子显微镜(SEM)表征了激光熔覆Ni-WC涂层中WC颗粒的微观形态和分布。使用了两种避免应力集中和开裂的有效方法。一种是具有WC硬相的梯度涂层,使用三步激光熔覆从基材到涂层顶部逐渐变化。另一个是涂层,其中通过优化WC颗粒浓度,激光功率和涂层厚度,在基体和WC之间的界面处具有明显梯度分布的WC颗粒均匀地掺入涂层中。磨损测试结果表明,不建议使用三步激光熔覆梯度层,特别是对于长期磨损应用,这是因为激光加工复杂且基体与WC颗粒之间的界面较差。

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