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Structural-Phase State of the Diamond-Matrix Transition Zone in Hard-Alloy Diamond-Containing Composites with Diffusion Metallization of Diamonds during Sintering with Impregnation

机译:含浸金刚石烧结过程中含金刚石扩散金属化的硬质合金含金刚石复合材料中金刚石基体过渡区的结构相态。

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摘要

The conducted study belongs to a field of fundamental and application-oriented issues of interphase interaction and formation of interfacial layers between a filler and matrix during the synthesis of composite systems. The factors determining the strength of the diamonds retention in a hard-alloy matrix of abrasive composites obtained by the hybrid synthesis technology with thermal diffusion metallization of diamond particles and sintering by a scheme of the self-metering impregnation were studied. Chemical composition, morphology and distribution of the reaction products, the nature of the resulting carbon phases in the contact zone between the diamond and matrix were investigated using scanning electron microscopy, X-ray phase analysis, Raman spectroscopy and atomic force microscopy. It was found that the increase of physical and chemical adhesion of diamond with the matrix during the synthesis of composites by the developed technology occurs due to the formation of high nano- and submicronic roughness of the diamond surface, formation of island-type metallized coating, dense filling of gaps by nanoscale layers of metal-infiltrate. Free carbon (graphite) was found in small quantities in the form of micron dimension separate inclusions. The revealed multilevel hierarchy of the high-structured morphological forms of the elements of the transitional layers has provided the solidity and strength of the joint between diamond and matrix.
机译:进行的研究属于复合系统合成过程中,相间相互作用以及填料和基体之间界面层形成的基本问题和面向应用的问题。研究了决定因素的因素,这些因素决定了通过混合合成技术对金刚石颗粒进行热扩散金属化并通过自计量浸渍方案进行烧结而获得的磨料复合物在硬质合金基体中的金刚石固位强度。使用扫描电子显微镜,X射线相分析,拉曼光谱和原子力显微镜研究了化学成分,反应产物的形态和分布,在金刚石与基体之间的接触区中所得碳相的性质。发现通过先进技术合成复合材料时,金刚石与基体之间的物理和化学粘附性增加是由于形成了金刚石表面的高纳米和亚微米粗糙度,形成了岛状金属化涂层,纳米级金属渗透层致密填充缝隙。发现少量的游离碳(石墨)以微米尺寸的夹杂物形式存在。所揭示的过渡层元素的高结构形态形式的多层层次结构,为金刚石与基体之间的结合提供了牢固性和强度。

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