标题: 非球面玻璃透镜模造成形之模仁形状补偿与玻璃残留应力探讨
Mold Shape Compensation and Residual Stress Analysis in Molding Process of Aspherical Glass Lenes
作者: 苏致豪
Su, Chih-Hao
洪景华
Hung, Ching-Hua
机械工程学系
关键字: 玻璃模造成形;有限元素分析;最佳化分析;残留应力;Glass forming;Finite element analysis;Optimization analysis;Residual stress
公开日期: 2011
摘要: 玻璃模造技术相较于传统研磨抛光技术具节省成本、量产、制程简化等优势,但仍有困难需克服,包括模仁寿命、玻璃成品与原设计的形状有所偏差、玻璃内部的残留应力等。
而影响玻璃透镜成像品质的原因主要为模造后形状的偏差以及透镜内部的残留应力,因此本研究利用有限元素分析就已知详尽材料性质的 L-BAL42 玻璃,加入热传的效应提升此有限元素模型的精度,并透过实验结果的玻璃形状验证此模型,之后利用此模型进行模仁形状的补偿使成形后之玻璃透镜符合原设计的形状。另一方面,透过模拟与光弹实验观察玻璃的残留应力分布并相互验证,最后利用最佳化方法求出增进制程效率的制程参数。
Compared to traditional grinding and polishing technique, glass molding process have many advantages in producing optical elements, such as cost savings, mass production, process simplification and so on, but there are still some difficulties must be overcame including mold life, shape deviation between the formed lens and the original design and residual stress inside the molded lens.
The shape deviation and the internal residual stress are significant factor affect the image quality. Therefore, this research adapt finite element analysis with detailed L-BAL42 glass properties and thermal conductivity to improve the accuracy of the finite element model. Afterward, this model is verified with the glass shapes from experimental results. Then, the mold shapes are compensated to produce molded glass lenes with shape meet the requirement of original design. On the other
hand, simulated residual stress distribution is compared with the results observed by photoelastic experiment, and optimization analysis is used to get the optimized parameter for glass molding process to enhance the process efficiency.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079914505
http://hdl.handle.net/11536/49410
显示于类别:Thesis


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