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首页> 外文期刊>Diamond and Related Materials >The failure mechanism of chromium as the interlayer to enhance the adhesion of nanocrystalline diamond coatings on cemented carbide
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The failure mechanism of chromium as the interlayer to enhance the adhesion of nanocrystalline diamond coatings on cemented carbide

机译:铬作为中间层增强纳米晶金刚石涂层在硬质合金上附着力的破坏机理

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摘要

Chromium as an interlayer has been developed to enhance the adhesion of nanocrystalline diamond (NCD) coatings to cemented carbide cutting tool materials. This study showed that Cr did not play the expected role and that the NCD coating delaminated during the Rockwell C indentation test. A systematic study of the morphologies, composition, and phase components of the failed samples showed that although Cr prevented the outward diffusion of Co to the diamond interface, the chromium carbides formed during the NCD deposition contained microcracks, which provided a path for delamination in the presence of high tensile thermal stresses generated when cooling the coating to room temperature. This work provides additional criteria to choose an appropriate interlayer to enhance the adhesion of diamond coatings to cutting tool materials.
机译:已经开发了铬作为中间层,以增强纳米晶金刚石(NCD)涂层对硬质合金切削刀具材料的附着力。这项研究表明,Cr没有发挥预期的作用,并且在Rockwell C压痕测试过程中,NCD涂层分层。对失效样品的形态,组成和相成分进行的系统研究表明,尽管Cr阻止了Co向金刚石界面的向外扩散,但在NCD沉积过程中形成的碳化铬含有微裂纹,为微晶中的分层提供了一条途径。冷却至室温时会产生高拉伸热应力。这项工作为选择合适的中间层以增强金刚石涂层对切削刀具材料的附着力提供了其他标准。

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