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Fundamental Investigation of Diamond Cutting of Micro V-Shaped Grooves on a Polycrystalline Soft-Brittle Material

机译:多晶软脆性材料上微V形凹槽金刚石切割的基础研究

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摘要

Fabricating micro-structures on optical materials has received great interest in recent years. In this work, micro-grooving experiments were performed on polycrystalline zinc selenide (ZnSe) to investigate the feasibility of surface micro-structuring on polycrystalline soft-brittle material by diamond turning. A photosensitive resin was coated on the workpiece before cutting, and it was found that the coating was effective in suppressing brittle fractures at the edges of the grooves. The effect of tool feed rate in groove depth direction was examined. Results showed that the defect morphology on the groove surface was affected by the tool feed rate. The crystallographic orientation of grains around the groove was characterized by electron backscatter diffraction (EBSD), and it was found that the formation of defects was strongly dependent on the angle of groove surface with respect to the cleavage plane of grain. The stress distribution of the micro-grooving process was investigated by the finite element method. Results showed that the location of tensile stresses in the coated workpiece was farther from the edge of the groove compared with that in the uncoated workpiece, verifying the experimental result that brittle fractures were suppressed by the resin coating.
机译:在光学材料制造微结构在近几年已经获得了极大的兴趣。在这项工作中,微开槽实验是在多晶硒化锌(硒化锌)以研究表面微结构的多晶软的脆性材料通过金刚石车削的可行性。一种感光性树脂涂覆在切割前在工件上,并且发现该涂层是有效地在槽的边缘抑制脆性断裂。检查在槽深方向的工具进给速度的效果。结果表明,该槽表面上的缺陷形态受刀具的进给速率。围绕该槽的晶粒的晶体取向是其特征在于,电子背散射衍射(EBSD),它被发现的缺陷的形成强烈依赖于凹槽表面的相对于颗粒的解理面的角度。微槽加工的应力分布是通过有限元法分析。结果表明,拉伸应力在涂覆的工件的位置是从所述槽的边缘更远与在未涂布的工件相比,验证实验结果是脆性断裂是由树脂涂层抑制。

著录项

  • 作者

    Weihai Huang; Jiwang Yan;

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  • 年度 2021
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  • 原文格式 PDF
  • 正文语种 eng
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