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Formation Mechanism and Properties of Thickness-Controllable Tungsten Coating on Diamond Surface by Salt Bath Plating

机译:盐浴镀金刚石表面可控钨镀层的形成机理及性能

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The fabrication of porous diamond preforms is a key step for obtain diamond/metal copposites with high proporties by liquid infiltration. In order to prepare porous diamond preforms with high strength and excellent compatibility with liquid metal. The diamond metallization should be treated first usually.In this paper, the microstructure, composition, phase structure and bond strength of tungsten coating on diamond surface by using salt-bath method were observed and analyzed experimentally including scanning electron microscope (SEM), energy spectrometer analysis (EDS), X-ray diffraction (XRD). The results show that tungsten start to react with carbon atoms on the surface of diamond at 1100°C while a dense and completely covered coating can be obtained at the temperature of 1150°C with 10-120 minutes dwell time. With this process, the layer on diamond surface can be regulated in the range of 1.18 to 3.24μm. The phase structure of coating from outside to inside is W, W2C and WC phase, respectively. Thermal shock experiments also show that the coatings on diamond surface have excellent bond strength as well as high temperature resistance.
机译:多孔金刚石预成型件的制造是通过液体渗透获得具有高比例的金刚石/金属复合材料的关键步骤。为了制备具有高强度和与液态金属的优异相容性的多孔金刚石预成型坯。通常应首先对金刚石金属化层进行处理。本文通过扫描电镜,能谱仪等观察和实验分析了盐浴法对金刚石表面钨涂层的显微组织,组成,相结构和结合强度的影响。分析(EDS),X射线衍射(XRD)。结果表明,钨在1100°C时开始与金刚石表面的碳原子反应,而在1150°C的温度下停留10-120分钟可得到致密且完全覆盖的涂层。通过该方法,可以将金刚石表面上的层调节在1.18至3.24μm的范围内。涂层从外到内的相结构分别为W,W2C和WC相。热冲击实验还表明,金刚石表面的涂层具有出色的粘结强度以及耐高温性。

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