首页> 外文期刊>Journal of Micromechanics and Microengineering >Fabrication of a miniature diamond grinding tool using a hybrid process of micro-EDM and co-deposition
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Fabrication of a miniature diamond grinding tool using a hybrid process of micro-EDM and co-deposition

机译:使用微型EDM和共沉积的混合工艺制造微型金刚石磨具

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摘要

A novel miniature diamond grinding tool usable for the precise micro-grinding of miniature parts is presented. A hybrid process that combines 'micro-EDM' with 'precision co-deposition' is proposed. The metal substrate is micro-EDMed to a 50 mu m diameter and micro diamonds with 0 - 2 mu m grains are 'electroformed' on the substrate surface, producing a miniature multilayered grinding tool. Nickel and diamond act as binders and cutters, respectively. A partition plate with an array of drilled holes is designed to ensure good convection in the electroforming solution. The dispersion of diamond grains and displacement of nickel ions are noticeably improved. A miniature funnel mould enables the diamond grains to converge towards the cathode to increase their deposition probability on the substrate, thereby improving their distribution on the substrate surface. A micro ZrO2 ceramic ferrule is finely ground by the developed grinding tool and then yields a surface roughness of R-a=0.085 mu m. The proposed approach is applied during the final machining process.
机译:提出了一种可用于微型零件的精密微研磨的新型微型金刚石研磨工具。提出了一种将“微型EDM”与“精密共沉积”相结合的混合工艺。金属基板经过微型电火花加工,直径为50微米,具有0-2微米晶粒的微金刚石在基板表面“电铸”,从而生产出微型多层磨削工具。镍和钻石分别充当粘合剂和刀具。设计有一系列钻孔的隔板,以确保电铸溶液中的良好对流。金刚石晶粒的分散和镍离子的置换得到了明显改善。微型漏斗模具可使金刚石晶粒向阴极会聚,从而增加其在基材上的沉积概率,从而改善其在基材表面上的分布。用发达的研磨工具将微ZrO2陶瓷套圈精细研磨,然后产生R-a = 0.085μm的表面粗糙度。建议的方法在最终加工过程中应用。

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