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Prediction of birefringence distribution for optical glass lens

机译:光学玻璃镜片的双折射分布预测

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Based on the viscoelastic theory, simulations were carried out on glass-lens forming processes. In addition, the birefringence distribution was calculated by stress-optic relation. First, to verify this viscoelastic simulation, FEM analysis was performed with the same material properties and process conditions used in the Bruckner's experiment. The result of the analysis was compared with Nadai's and Bruckner's results. The simulation results were in good agreement with the deformation and birefringence distribution in the experimental results. Finally, the FEM simulation technique was applied to actual LD-lens. The simulation was performed for each different cooling rate and the results were compared to each other in terms of birefringence. To investigate the effect of initial preform shape to optical property, a simulation was performed by using the new-proposed-shape-preform and the results were compared to the present shape in terms of birefringence.
机译:基于粘弹性理论,对玻璃透镜的成型过程进行了仿真。另外,通过应力-光学关系来计算双折射分布。首先,为了验证这种粘弹性模拟,在布鲁克纳实验中使用相同的材​​料特性和工艺条件进行了有限元分析。分析的结果与Nadai和Bruckner的结果进行了比较。仿真结果与实验结果的变形和双折射分布吻合良好。最后,将有限元仿真技术应用于实际的LD镜头。针对每个不同的冷却速率进行了仿真,并且将结果在双折射方面进行了比较。为了研究初始瓶坯形状对光学性能的影响,使用新提出的形状瓶坯进行了模拟,并将结果与​​当前形状进行了双折射比较。

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