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Multilayer injection molding of high-profile convex lens

机译:多层注射成型高调凸透镜

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The use of injection molding to produce a convex lens of a high thickness and a high proportion of the component thickness requires not only a long cooling time but also results in a low production efficiency and a low yield. In particular, the heat concentration in thick regions can create high shrinkage and create poor surface geometry in these lenses. Multilayer injection molding (MIM) has reduced the cycle time and also improved the geometrical accuracy of thick parts, and thus it has drawn attention in recent years. This study evaluated the feasibility of MIM to produce a convex lens having a high thickness and a high thickness ratio, in which a thick optical lens would be made of a plurality of thin layers. In this study, conventional injection molding (CIM), two-layer IM, and three-layer IM were evaluated empirically to explore the effects of various molding combinations on surface contours accuracy, cycle time, residual stress, and lens transmittance. In the comparison, the three-layer IM significantly reduced the surface profile error to 0.015 mm (CIM was 0.1 mm) and reduced the surface profile error to 30%. Moreover, uniformity of the shrinkage distribution and good surface profile accuracy can be obtained. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48600.
机译:注射成型以产生高厚度的凸透镜和高比例的部件厚度,不仅需要长冷却时间,而且还导致低的生产效率和低产量。特别地,厚地区的热浓度可以产生高收缩率并在这些镜片中产生差的表面几何形状。多层注射成型(MIM)降低了循环时间,并且还提高了厚部件的几何精度,因此近年来引起了关注。该研究评估了MIM产生具有高厚度和高厚度比的凸透镜的可行性,其中厚光学透镜将由多个薄层制成。在该研究中,经验对常规的注射成型(CIM),双层IM和三层IM进行评估,以探讨各种模制组合对表面轮廓精度,循环时间,残余应力和透镜透射率的影响。在比较中,三层IM显着降低到0.015mm(CIM为0.1mm)并将表面轮廓误差降低至30%。此外,可以获得收缩分布和良好的表面轮廓精度的均匀性。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,137,48600。

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