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Diamond coatings on electrical-discharge machined hardmetals

机译:放电加工硬质合金上的金刚石涂层

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摘要

The influence of electrical-discharge machining (EDM) of WC Co cemented carbides on the structural features and adhesion strength of subsequently deposited chemical vapor deposition (CVD) diamond coatings is investigated. Two different surface conditions are analyzed for a low binder-content hardmetal substrate. One variant corresponds to multi-pass sequential EDM, whereas the second one, used here as a reference, is attained through grinding and polishing. In all the cases, identical substrate chemical etching and arc-plasma CVD standard diamond deposition processes are applied. It is found that fine-executed EDM of hardmetals allows the deposition of diamond coatings exhibiting similar structural and adhesion characteristics to those obtained on conventionally machined cemented carbides substrates. Although surface integrity of the substrate together with quality and residual stresses of the diamond film are slightly affected by EDM, adhesion strength corresponding to this surface condition is retained because EDM-induced isotropically rough surfaces enhance mechanical interlocking of the diamond coating to the hardmetal substrate.
机译:研究了WC Co硬质合金的放电加工(EDM)对随后沉积的化学气相沉积(CVD)金刚石涂层的结构特征和附着强度的影响。对于低粘合剂含量的硬质合金基材,分析了两种不同的表面条件。一个变体对应于多道次电火花加工,而第二个变体通过研磨和抛光获得,此处用作参考。在所有情况下,均采用相同的基板化学蚀刻和电弧等离子体CVD标准金刚石沉积工艺。已发现,对硬质合金进行精细加工的电火花加工可使金刚石涂层的沉积表现出与在常规机加工硬质合金基体上获得的结构和粘合特性相似的结构和粘合特性。尽管基体的表面完整性以及金刚石膜的质量和残余应力会受到电火花加工的轻微影响,但由于电火花加工引起的各向同性粗糙表面会增强金刚石涂层与硬质金属基体的机械互锁,因此保留了与该表面条件相对应的粘合强度。

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