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Edge effect in fluid jet polishing

机译:流体喷射抛光的边缘效应

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The edge effect is one of the most important subjects in optical manufacturing. The removal function at different positions of the sample in the process of fluid jet polishing (FJP) is investigated in the experiments. Furthermore, by using finite-element analysis (FEA), the distributions for velocity and pressure of slurry jets are simulated. Experimental results demonstrate that the removal function has a ring-shaped profile, except for a little change in the size at the operated area even if the nozzle extends beyond the edge of the sample. FEA simulations reveal a similar distribution of velocity with a cavity resulting in the ring-shaped profile of material removal at different impact positions. To a certain extent, therefore, the removal function at the edge of the surface of the sample appears similar to that inside of it, so that the classical edge effect can be neglected in FJP.
机译:边缘效应是光学制造中最重要的主题之一。实验研究了流体喷射抛光(FJP)过程中样品在不同位置的去除功能。此外,通过使用有限元分析(FEA),模拟了浆液射流的速度和压力分布。实验结果表明,该去除功能具有环形轮廓,除了即使喷嘴延伸到样品边缘之外,操作区域的尺寸也只有很小的变化。 FEA仿真显示腔体的速度分布相似,从而导致在不同的冲击位置去除材料的环形轮廓。因此,在一定程度上,样品表面边缘的去除功能看起来类似于样品内部的去除功能,因此在FJP中可以忽略传统的边缘效应。

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