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Analysis of optical properties in injection-molded and compression-molded optical lenses

机译:注射成型和压缩成型光学镜片的光学性能分析

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摘要

Numerical mold-flow simulations and experimental measurements for injection-molded lenses have been investigated in form accuracy on a two-cavity mold with various process conditions. First, form profiles of the molded lenses have been measured together with the corresponding simulated mold-temperature distribution and displacement distribution of the lens in the z direction. A flow-through type layout of cooling channels has been devised for balance of mold-temperature distribution in mold cavities with various parametric distances for assessments in uniformity of temperature distribution. Finally, a compression-molding process is proposed for the post-process of birefringence relaxation as well as adequate form accuracy of lenses. In conclusion, optimization of process parameters to achieve good form accuracy in a multicavity mold with symmetric geometry but nonuniform cooling conditions is difficult. A good design of cooling channels plus optimized process conditions could provide uniform mold-temperature distribution so that molded lenses of good quality would be possible. Then, the profile deviation of lenses could be further compensated by profile geometry corrections. In conclusion, the post-compression-molding process could make birefringence-free plastic lenses with good form accuracy.
机译:在具有不同工艺条件的双腔模具上,以成型精度研究了数值模拟的注塑成型镜片的模流仿真和实验测量。首先,已经测量了模制镜片的形状轮廓以及镜片在z方向上的相应的模拟模具温度分布和位移分布。已经设计了冷却通道的流通型布局,以平衡具有各种参数距离的型腔中的模具温度分布,以评估温度分布的均匀性。最后,提出了一种压缩成型工艺,用于双折射松弛的后处理以及足够的镜片成型精度。总之,在具有对称几何形状但冷却条件不均匀的多腔模具中,优化工艺参数以获得良好的成型精度非常困难。良好的冷却通道设计以及优化的工艺条件可以提供均匀的模具温度分布,从而可以提供高质量的模制镜片。然后,可以通过轮廓几何形状校正来进一步补偿镜片的轮廓偏差。总而言之,后压缩成型工艺可以制造出无双折射塑料透镜,并且具有良好的形状精度。

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