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基于有限元法的硫系玻璃衍射光学元件精密玻璃模压成型过程中玻璃预制棒的变形分析

Deformation Analysis of the Glass Preform in the Progress of Precision Glass Molding for Fabricating Chalcogenide Glass Diffractive Optics with the Finite Element Method.

作者信息

Liu Yue, Xing Yintian, Fu Hang, Li Chuang, Yang Chao, Cao Bo, Xue Changxi

机构信息

School of Optoelectronic Engineering, Changchun University of Science and Technology, Changchun 130022, China.

Key Laboratory of Advanced Optical System Design and Manufacturing Technology of the Universities of Jilin Province, Changchun University of Science and Technology, Changchun 130022, China.

出版信息

Micromachines (Basel). 2021 Dec 11;12(12):1543. doi: 10.3390/mi12121543.

Abstract

Precision glass molding (PGM) technology is a cost-efficient process for the production of micro/nanostructured glass components with complex surface geometries. The stress distribution, surface profile, and reduced refractive index of the molded lens are based on the lens being fully formed. The process of the deformation of the glass preform is rarely discussed, especially in the case of multi-machining parameters in the experiment. The finite element method (FEM) was adopted to analyze the glass preform deformation. Due to the phenomenon of incomplete deformation of the glass preforms in the experiments, two groups of finite element simulations with different boundary conditions were carried out with MSC.Marc software, to reveal the relationship between the deformation progress and the parameters settings. Based on the simulation results, a glass preform deformation model was established. The error between the model result and the simulation result was less than 0.16. The establishment method of the glass preform deformation model and the established model can be used as a reference in efficiently optimizing PGM processing parameters when the designed lens has two different base radii of curvature.

摘要

精密玻璃模制(PGM)技术是一种用于生产具有复杂表面几何形状的微/纳米结构玻璃部件的经济高效工艺。模制透镜的应力分布、表面轮廓和降低的折射率基于透镜完全成型的情况。玻璃预成型件的变形过程很少被讨论,特别是在实验中存在多加工参数的情况下。采用有限元方法(FEM)分析玻璃预成型件的变形。由于实验中玻璃预成型件存在不完全变形的现象,使用MSC.Marc软件进行了两组具有不同边界条件的有限元模拟,以揭示变形过程与参数设置之间的关系。基于模拟结果,建立了玻璃预成型件变形模型。模型结果与模拟结果之间的误差小于0.16。当设计的透镜具有两个不同的基曲率半径时,玻璃预成型件变形模型的建立方法和所建立的模型可作为有效优化PGM加工参数的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/194b/8707495/22d8463b465c/micromachines-12-01543-g001.jpg

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