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Birefringence techniques for the characterization of residual stresses in injection-moulded micro-lens arrays

机译:双折射技术用于表征注塑微透镜阵列中的残余应力

摘要

The presence or absence of residual stresses is a major concern in the injection moulding of plastic products used in precision optical and medical applications. Micro-lens arrays are critical components of LED displays that are produced by micro-injection moulding. Due to their small size, residual stresses in these micro-lens arrays are difficult to measure and characterize. The birefringence method was used in this paper to evaluate residual stresses in injection-moulded micro-lens arrays and the finite element simulation method was also employed to predict their distribution. Comparable results from both experiments and simulation were obtained. It is found that the mould temperature is the most significant processing parameter. The value of maximum residual stress is smaller when the mould temperature is higher. The birefringence method is applicable and efficient for the measurement of residual stress in injection-moulded plastic micro-optics.
机译:在精密光学和医疗应用中使用的塑料产品的注塑成型中,是否存在残余应力是一个主要问题。微透镜阵列是通过微注射成型生产的LED显示器的关键组件。由于其尺寸小,这些微透镜阵列中的残余应力难以测量和表征。本文采用双折射方法评估注模微透镜阵列中的残余应力,并采用有限元模拟方法预测其分布。从实验和模拟都获得了可比的结果。发现模具温度是最重要的加工参数。模具温度越高,最大残余应力的值越小。双折射方法适用于测量注塑塑料微光学器件中的残余应力。

著录项

  • 作者

    Weng C; Lee WB; To S;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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