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Tungsten-coated diamond powders prepared by microwave-heating salt-bath plating

机译:通过微波加热盐浴镀制备的钨涂层金刚石粉末

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Because of its excellent thermal properties, including a low thermal expansion coefficient and high thermal conductivity, diamond has great potential use in industry for application in heat sinks, packaging materials, and as a substrate in integrated circuits. When preparing diamond metal-matrix composites, it is usually necessary to coat the surface of the diamond particle with a metallic layer to improve the interfacial properties. In this study, diamond particles were surface-coated with tungsten using the microwave-heatingsalt-bath plating (MHSBP) method. The composition and morphology of the coatings were analyzed by X-ray diffraction, scanning electron microscopy, and energy dispersive spectroscopy. The results show that the coatings on the diamond surfaces become homogeneous and dense when the plating temperature is increased from 1050 degrees C to 1200 degrees C, and the diamond surfaces are fully coated when deposition is performed at 1200 degrees C for 20 min. There is a strong interfacial bond between the diamond particle and the tungsten coating. It is also found that the diamond particles maintain their original crystal morphology and there is a gradual change in tungsten content across the coating layer, with pure tungsten on the outermost layer and two tungsten carbides (W2C and WC) present at the interface between the tungsten layer and diamond. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于其优异的热性能,包括低热膨胀系数和高导热系数,钻石在工业中具有很大的潜在用途,以在散热器,包装材料和集成电路中作为基板应用。制备金刚石金属 - 基质复合材料时,通常需要用金属层涂覆金刚石颗粒的表面以改善界面性质。在该研究中,使用微波炉炉(MHSBP)方法用钨的金刚石颗粒表面涂覆。通过X射线衍射,扫描电子显微镜和能量分散光谱分析涂层的组成和形态。结果表明,当镀层温度从1050℃升高到1200℃时,金刚石表面上的涂层变得均匀和密集,并且当沉积在1200℃下进行20分钟时,金刚石表面完全涂覆。金刚石颗粒和钨涂层之间存在强烈的界面键。还发现金刚石颗粒保持原始晶体形态,并且涂层层面的钨含量逐渐变化,最外层上的纯钨和存在于钨之间的界面处的两种碳化物(W2C和WC)层和钻石。 (c)2018 Elsevier B.v.保留所有权利。

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