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Preparation and performance of diamond coatings on cemented carbide inserts with cobalt boride interlayers

机译:具有硼化钴中间层的硬质合金刀片上金刚石涂层的制备和性能

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摘要

A novel two-step process has been developed, with a view to improving the reproducibility of techniques for preparing diamond-coated cemented carbide inserts. Firstly, diffusing boron into WC-6 percent Co inserts produced an interlayer of cobalt boride, and then diamond films were deposited on this interlayer using a DC arcjet plasma system. Investigations showed that the formation of the cobalt boride interlayer favored the growth of high quality diamond films, and the interlayer functioned effectively as a diffusion barrier layer, inhibiting outward Co migrations from the insert interior to the surface. Adhesion of the boronized interlayers as well as the composite coatings was evaluated by using Rockwell A indentation and end-milling tests, respectively. It was demonstrated that both the Co-B interlayer and the diamond coating thereon were very adherent to the substrates, and a 10-fold increase in tool life could be expected with the coated inserts compared with uncoated ones.
机译:为了改善制备金刚石涂层硬质合金刀片的技术的可重复性,已经开发了一种新颖的两步法。首先,将硼扩散到WC-6%的Co刀片中,生成一层硼化钴,然后使用DC arcjet等离子系统将金刚石膜沉积在该层上。研究表明,硼化钴中间层的形成有利于高质量金刚石膜的生长,并且中间层有效地充当了扩散阻挡层,从而抑制了Co从嵌入物内部向表面的向外迁移。分别使用Rockwell A压痕和端铣测试评估了硼化中间层以及复合涂层的粘附性。事实证明,Co-B中间层和其上的金刚石涂层都非常牢固地粘附在基材上,与未涂层刀片相比,涂层刀片的刀具寿命有望提高10倍。

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