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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >A Study of Processing Conditions on the Properties of Diffraction Optical Elements by Injection/Compression Molding Process
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A Study of Processing Conditions on the Properties of Diffraction Optical Elements by Injection/Compression Molding Process

机译:注射/压缩成型工艺对衍射光学元件特性的加工条件研究

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摘要

The purpose of this work is to develop manufacturing techniques of diffraction optical elements (DOE) and compare the performance of micro injection (/compression) molded products. The DOE mod was fabricated by LIGA-like lithography technique. The optical performance of molded products strongly depends on the replication degree of micro patterns on the surface of DOE. Because of the complex micro patterns on the surface of the DOE, it is very difficult to measure the degree of duplication by traditional microscope measurement like SEM or AFM etc. In this work, a laser computer imaging system was developed to evaluate otpical performace of molded parts direclty .To achieve better duplication degree and properties of molded DOE, Taguchi's method was employed in the experiments to examine the effects of processing conditions on the performance of molded DOE. Residual stresses of different molded products were measured by a photo-elasticity system. Experimental results reveals that residual stresses of micro injection compression molded elements are much less than those of the micro injection molded ones. This is because compression process provides a higher and more uniform pressure distribution inside the cavity and it can help reduce the unbalanced shrikage and residual stresses. Comrpession speed dominates the cavity pressure distribution and becomes the most important factor of final DOE's optical properties.
机译:这项工作的目的是开发衍射光学元件(DOE)的制造技术,并比较微注射(/压缩)成型产品的性能。 DOE mod是通过类LIGA光刻技术制造的。模塑产品的光学性能在很大程度上取决于DOE表面上微图案的复制程度。由于DOE表面上的微细图案复杂,因此很难通过SEM或AFM等传统显微镜测量来测量重复程度。在这项工作中,开发了激光计算机成像系统来评估成型品的典型性能。为了获得更好的重复度和成型DOE的性能,在实验中采用了Taguchi方法研究了加工条件对成型DOE性能的影响。通过光弹性系统测量不同模制品的残余应力。实验结果表明,微注射压缩成型元件的残余应力远小于微注射成型元件的残余应力。这是因为压缩过程在腔体内提供了更高且更均匀的压力分布,并且可以帮助减少不平衡的刮擦和残余应力。推进速度主导着腔体压力分布,并成为最终DOE光学性能的最重要因素。

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