Tsai Kuo-Ming, Wang He-Yi
Appl Opt. 2014 Aug 20;53(24):5264-74. doi: 10.1364/AO.53.005264.
This study focuses on injection molding process window determination for obtaining optimal imaging optical properties, astigmatism, coma, and spherical aberration using plastic lenses. The Taguchi experimental method was first used to identify the optimized combination of parameters and significant factors affecting the imaging optical properties of the lens. Full factorial experiments were then implemented based on the significant factors to build the response surface models. The injection molding process windows for lenses with optimized optical properties were determined based on the surface models, and confirmation experiments were performed to verify their validity. The results indicated that the significant factors affecting the optical properties of lenses are mold temperature, melt temperature, and cooling time. According to experimental data for the significant factors, the oblique ovals for different optical properties on the injection molding process windows based on melt temperature and cooling time can be obtained using the curve fitting approach. The confirmation experiments revealed that the average errors for astigmatism, coma, and spherical aberration are 3.44%, 5.62%, and 5.69%, respectively. The results indicated that the process windows proposed are highly reliable.
本研究聚焦于注塑成型工艺窗口的确定,以通过塑料透镜获得最佳成像光学性能、像散、彗差和球差。首先采用田口实验方法来确定影响透镜成像光学性能的参数优化组合及显著因素。然后基于这些显著因素进行全因子实验,以建立响应面模型。基于表面模型确定具有优化光学性能的透镜的注塑成型工艺窗口,并进行验证实验以验证其有效性。结果表明,影响透镜光学性能的显著因素是模具温度、熔体温度和冷却时间。根据显著因素的实验数据,采用曲线拟合方法可得到基于熔体温度和冷却时间的注塑成型工艺窗口上不同光学性能的斜椭圆。验证实验表明,像散、彗差和球差的平均误差分别为3.44%、5.62%和5.69%。结果表明所提出的工艺窗口具有高度可靠性。