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Kinetics and oxidation behavior of laser clad WC-Co and Ni/WC-Co coatings

机译:激光包层WC-CO和Ni / WC-CO涂层的动力学和氧化行为

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摘要

In this study, the oxidation behavior of WC-12Co and electroless Ni/WC-Co coatings is investigated by Thermogravimetric analysis (TGA), X-Ray Diffraction (XRD), and scanning electron microscope (SEM). Time dependence of weight gain showed a linear behavior for WC-Co coating and a parabolic-like behavior for Ni/WC-Co coating. This behavior is related to the reaction-controlled and diffusion-controlled oxidation processes in the WC-Co and Ni/WC-Co coatings, respectively. Oxidation resistance of coatings was determined by phase composition and formation mechanism of the protective oxide layer. The results demonstrated that the use of Ni/WC-Co powder could reduce significantly the porosity and cracks and lead to a compact and protective (Ni, Co) WO 4 layer. The apparent activation energy was measured to be about 98.3 and 229.4 kJ/mol for WC-Co and Ni/WC-Co coatings, respectively.
机译:在该研究中,通过热重分析(TGA),X射线衍射(XRD)和扫描电子显微镜(SEM)研究了WC-12CO和化学镀Ni / WC-Co涂层的氧化行为。 重量增益的时间依赖性显示WC-Co涂层的线性行为和用于Ni / WC-Co涂层的抛物线样行为。 该行为分别与WC-CO和Ni / WC-CO涂层中的反应控制和扩散控制氧化方法有关。 通过保护氧化物层的相组合物和形成机制测定涂层的氧化抗性。 结果表明,使用Ni / WC-Co粉末可以显着降低孔隙率和裂缝,并导致紧凑和保护(Ni,Co)WO 4层。 对于WC-CO和Ni / WC-CO涂层,测量表观活化能量为约98.3和229.4kJ / mol。

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