Lai Huai En, Wang Pei Jen
Department of Power Mechanical Enginneering, National Tsing Hua University, Hsinchu, Taiwan, Republic of China.
Appl Opt. 2008 Apr 20;47(12):2017-27. doi: 10.1364/ao.47.002017.
Numerical simulations for mold-flow analysis and experimental measurements of injection-molded plastic lenses have been conducted for investigation of optical qualities, residual birefringence, and form accuracy resulting from various pertinent process conditions. First, residual birefringence distributions on the lens have been predicted and verified experimentally. Furthermore, full-scale factorial design of experiments was conducted to comprehend the influences of qualities, such as shear stresses, form accuracy, and volumetric deviation, on the measured primary or Seidel aberrations. In conclusion, residual birefringence induced by stresses represented by photoelasticity measurements agrees well with the numerical predictions and the experimental results indicate that the residual birefringence is mainly generated during the mold-filling stage. In addition, spherical aberration of the injection-molded plastic lenses is more sensitive to the pertinent qualities as compared to coma and astigmatism.
为了研究各种相关工艺条件对注塑塑料透镜光学质量、残余双折射和形状精度的影响,已进行了注塑成型塑料透镜的模流分析数值模拟和实验测量。首先,对透镜上的残余双折射分布进行了预测并通过实验进行了验证。此外,还进行了全因子实验设计,以了解诸如剪切应力、形状精度和体积偏差等质量因素对测量的初级像差或赛德尔像差的影响。总之,光弹性测量所表征的应力引起的残余双折射与数值预测结果吻合良好,实验结果表明残余双折射主要在充模阶段产生。此外,与彗差和像散相比,注塑塑料透镜的球差对相关质量因素更为敏感。