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Synthesis of polishing fluid and novel approach for nanofinishing of copper using ball-end magnetorheological finishing process

机译:球形磁流学整理工艺合成抛光液和铜纳米粉末纳米植物的新方法

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摘要

Ball-end magnetorheological (MR) finishing process utilizes the magnetically controlled stiffened ball of an MR fluid for finishing purposes. Copper is a mechanically soft and chemically reactive material, so it is difficult tojinish up to the nanometer-order level by traditional and most of the advanced finishing processes. In this research work, the problems associated with ball-end MR finishing of copper have been explored and a fluid composition suitable for the finishing of copper has been developed. A novel approach using two opposite magnetic poles has been used to enhance the magnetic flux density distribution between the tool tip and the copper workpiece surface. The same has been magnetically simulated and verified experimentally. The effect of fluid composition parameters has been analyzed by the statistical model developed by response surface. After 30 minutes of finishing time, a nano-finished surface with very few shallow scratches was achieved.
机译:球端磁流变(MR)精加工过程利用MR流体的磁控加强球进行整理。 铜是一种机械柔软和化学的反应性材料,因此通过传统和大部分先进的精加工方法,难以纳米级级难以纳入纳米级。 在这项研究工作中,已经探索了与铜的球端前表面相关的问题,并且已经开发出适合于铜的整理的流体组合物。 使用了一种使用两个相对磁极的新方法,用于增强工具尖端和铜工件表面之间的磁通密度分布。 同样的是通过实验磁性模拟和验证。 通过响应表面开发的统计模型分析了流体组成参数的效果。 完成后30分钟后,实现了纳米成品表面,具有很少的浅层划痕。

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