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首页> 外文期刊>International Journal of Precision Technology >Magneto-rheological nano-finishing of polycarbonate
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Magneto-rheological nano-finishing of polycarbonate

机译:聚碳酸酯的磁流变纳米整理

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In recent days, optical industries are in a great demand of super polished polycarbonate for making optical lenses because of its light weight, optical clarity and higher toughness over glass. Most of the currently available plastic polishing methods are not suitable for polishing of polycarbonate. In this research work, ball end magneto-rheological finishing (BEMRF) process is used to polish the polycarbonate up to nanometre order level surface roughness with cerium oxide, alumina and diamond as the abrasives. Best polishing results are achieved with diamond abrasive (final surface roughness R_a as 30.5 nm and percentage improvement in surface roughness as 54%). The polishing results of alumina and diamond are almost same. For alumina, analysis of variance (ANOVA) is done to see the factors' effect and their percentage contributions.
机译:近年来,光学行业由于其重量轻,光学透明性和相对于玻璃的更高韧性而对用于制造光学透镜的超抛光聚碳酸酯有很大的需求。当前大多数可用的塑料抛光方法都不适合聚碳酸酯的抛光。在这项研究工作中,采用球形末端磁流变精加工(BEMRF)工艺,以氧化铈,氧化铝和金刚石作为磨料将聚碳酸酯抛光至纳米级的表面粗糙度。使用金刚石磨料可获得最佳抛光效果(最终表面粗糙度R_a为30.5 nm,表面粗糙度提高的百分比为54%)。氧化铝和金刚石的抛光结果几乎相同。对于氧化铝,进行方差分析(ANOVA)来查看因素的影响及其百分比贡献。

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