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Structural-Phase State of the Interphase Boundary at Thermal Diffusion Metallization of Diamond Grains by Cr and Ti

机译:CR和TI的金刚石颗粒热扩散金属间间界面的结构相位

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Structural-phase state of the diamond-metallized coating interphase boundary after thermal diffusion metallization of diamond grains by transition metals Cr, Ti were studied. Metallization were conducted under temperature-time mode corresponding to the sintering of cemented carbide matrices with Cu impregnation. The structural-phase state of the metallized coating and diamond-coating interphase boundary was studied by scanning electron microscopy, X-ray phase analysis and Raman spectroscopy. It was found that a thin continuous metal carbide coating chemically bonded to the diamond and consisting of the corresponding metal, their carbides and small amount of graphite phases is formed during thermal diffusion metallization of diamond by Cr and Ti under the conditions specified in the experiment. It was shown that graphite is formed not by a continuous layer, but in the form of local inclusions. This ensures a strong adhesion of the metallized coating to the diamond through the carbides of the corresponding metals. The results can be useful in the development of compositions and technological methods that provide an increased level of diamond retention in the matrices of tools based on cemented carbide powder mixtures.
机译:研究了通过过渡金属Cr,Ti的金刚石晶粒热扩散金属化后的金刚石金属化涂层间界面的结构相位。在对应于具有Cu浸渍的硬质合金基质烧结的温度 - 时间模式下进行金属化。通过扫描电子显微镜,X射线相分析和拉曼光谱研究了金属化涂层和金刚石涂层间界界的结构相位状态。发现在实验中规定的条件下,在金刚石的热扩散金属化期间形成与金刚石的薄连续金属碳化物涂层和由相应的金属,它们的碳化物和少量石墨相组成。结果表明,石墨不是由连续层形成的,而是以局部夹杂物的形式形成。这确保了通过相应金属的碳化物的金属化涂层对金刚石的强烈粘附。结果可用于开发组合物和技术方法,该技术方法在基于硬质合金粉末混合物的工具基质中提供增加的金刚石潴留水平。

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