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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Numerical Simulation and Experimental Study of Residual Stresses in Compression Molding of Precision Glass Optical Components
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Numerical Simulation and Experimental Study of Residual Stresses in Compression Molding of Precision Glass Optical Components

机译:精密玻璃光学组件压缩成型残余应力的数值模拟和实验研究

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摘要

Compression molding of glass optical components is a high volume near net-shape precision fabrication method. Residual stresses incurred during postmolding cooling are an important quality indicator for these components. In this research, residual stresses frozen inside molded glass lenses under different cooling conditions were investigated using both experimental approach and numerical simulation with a commercial finite element method program. In addition, optical birefringence method was also' employed to verify the residual stress distribution in molded glass lenses. Specifically, optical retardations caused by the residual stresses in the glass lenses that were molded with different cooling rates were measured using a plane polariscope. The measured residual stresses of the molded glass lenses were compared with numerical simulation as a validation of the modeling approach. Furthermore, a methodology for optimizing annealing process was proposed using the residual stress simulation results.
机译:玻璃光学部件的压缩成型是一种大体积的接近净形的精密制造方法。成型后冷却过程中产生的残余应力是这些组件的重要质量指标。在这项研究中,使用实验方法和使用商业有限元方法程序进行的数值模拟,研究了在不同冷却条件下模压玻璃镜片内部冻结的残余应力。另外,还采用光学双折射方法来验证模制玻璃透镜中的残余应力分布。具体地,使用平面偏振镜测量由以不同冷却速率模制的玻璃透镜中的残余应力引起的光学延迟。将模制玻璃透镜的测得残余应力与数值模拟进行比较,以验证建模方法的有效性。此外,利用残余应力仿真结果提出了一种优化退火工艺的方法。

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