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Novel pretreatment of hard metal substrate for better performance of diamond coated cutting tools

机译:新型的硬质金属基材预处理可提高金刚石涂层刀具的性能

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摘要

A surface engineering approach for a novel pretreatment of hard metal tool substrate for optimum adhesion of diamond coatings is presented. Firstly, an alkaline solution was used to etch the WC grains to generate a rough surface for better mechanical interlocking. Subsequently, surface Co was removed by etching in acid solution. Then the hard metal substrate was boronized to form a compound interlayer which acted as an efficient diffusion barrier to prevent the outward diffusion of Co. Novel nano-microcrystalline composite diamond film coatings with a very smooth surface was deposited on the surface engineering pretreated hard metal surface. Promising results of measurement in adhesion strength as well as field cutting tests have been obtained.
机译:提出了一种表面工程方法,用于对硬质金属工具基材进行新颖的预处理,以最佳地粘附金刚石涂层。首先,使用碱性溶液蚀刻WC晶粒以生成粗糙表面,以实现更好的机械互锁。随后,通过在酸溶液中蚀刻来去除表面Co。然后,对硬质金属基材进行硼化处理,以形成化合物中间层,该层起到有效的扩散阻挡层的作用,防止Co向外扩散。将具有非常光滑表面的新型纳米微晶复合金刚石薄膜涂层沉积在表面工程预处理的硬质金属表面上。粘合强度的测量以及现场切割测试均获得了令人鼓舞的结果。

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