首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Addition of molybdenum disulfide solid lubricant to WC-12Ni thermal spray cemented carbide powders through electroless Ni-MoS2 co-deposition
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Addition of molybdenum disulfide solid lubricant to WC-12Ni thermal spray cemented carbide powders through electroless Ni-MoS2 co-deposition

机译:通过化学镀Ni-MOS2共沉积加入钼二硫化物固体润滑剂至WC-12NI热喷涂碳化物粉末

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Molybdenum disulfide solid lubricant was added to thermal spray WC-12Ni powders through electroless Ni-MoS2 co-deposition. With varying the concentration of WC-12Ni and MoS(2 )particles in the plating bath, varied concentration of MoS(2 )can be controlled in the powder surface layer and the incorporation mechanism of MoS2 into the shell was discussed as well. The thickness of the Ni-MoS2 coatings as well as the MoS2 distribution structure were characterized with a scanning electron microscope (SEM) equipped with an energy dispersive spectrometer (EDS). The phase structure of the co-deposited coatings was characterized with X-ray diffraction (XRD). It is found that MoS2 particles can be co-deposited with Ni to form a Ni-MoS2 composite layer on WC-12Ni powders when effective Ni electroless deposition occurs, since Ni or Ni2+ can encapsulate MoS2 particles to facilitate its incorporation. The content of MoS(2 )in the coating increases with increasing the concentration of MoS2 in the plating bath, or with decreasing the concentration of WC-12Ni powders in the bath which results in increased thickness of deposited Ni-MoS2 layers. The Ni-MoS2 coated WC-12Ni powders obtained with the electroless co-deposition process can be used for high velocity oxy-fuel spraying (HVOF) with a proper size and adequate fluidity, and are expected to suppress desulfurization and decarburization effectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过化学镀Ni-MOS2共沉积加入钼二硫化物固体润滑剂至热喷涂WC-12NI粉末。通过改变电镀浴中WC-12NI和MOS(2)颗粒的浓度,可以在粉末表面层中控制变化的MOS(2),并且还讨论了MOS2进入壳体的掺入机构。使用配备有能量分散光谱仪(EDS)的扫描电子显微镜(SEM),表征了Ni-MOS2涂层的厚度以及MOS2分布结构。共沉积涂层的相结构具有X射线衍射(XRD)。发现MOS2颗粒可以在发生有效的Ni无电沉积时在WC-12NI粉末上形成Ni-MOS2复合层,因为Ni或Ni2 +可以包封MOS2颗粒以促进其掺入。涂层中的MOS(2)的含量随着电镀浴中的MOS2的浓度而增加,或者通过降低浴中的WC-12NI粉末的浓度,这导致沉积的Ni-MOS2层的厚度增加。用无电沉积工艺获得的Ni-MOS2涂覆的WC-12NI粉末可用于具有适当尺寸和足够的流动性的高速氧 - 燃料喷涂(HVOF),并且预期有效地抑制脱硫和脱碳。 (c)2019 Elsevier B.v.保留所有权利。

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