首页> 外文期刊>Journal of thermal stresses >FINAL SHAPE OF PRECISION MOLDED OPTICS:PART II-VALIDATION AND SENSITIVITY TO MATERIAL PROPERTIES AND PROCESS PARAMETERS
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FINAL SHAPE OF PRECISION MOLDED OPTICS:PART II-VALIDATION AND SENSITIVITY TO MATERIAL PROPERTIES AND PROCESS PARAMETERS

机译:精密模制光学器件的最终形状:PART II验证以及对材料特性和过程参数的敏感性

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In Part I of this study a coupled thermo-mechanical finite element model for the simulation of the entire precision glass lens molding process was presented. That study addressed the material definitions for the molding glass, L-BAL3S, computational convergence, and how the final deviation of the lens shape from the mold shape is achieved for both a bi-convex lens and a steep meniscus lens. In the current study, after validating the computational approach for both lens types, an extensive sensitivity analysis is performed to quantify the importance of several material and process parameters that affect deviation for both lens shapes. Such a computational mechanics approach has the potential to replace the current trial-and-error, iterative process of mold profile design to produce glass optics of required geometry, provided all the input parameters are known to sufficient accuracy. Some of the critical contributors to deviation include structural relaxation of the glass, thermal expansion of the molds, TRS and viscoelastic behavior of the glass and friction between glass and mold. The results indicate, for example, the degree of accuracy to which key material properties should be determined to support such modeling. In addition to providing extensive sensitivity results, this computational model also helps lens molderslmachine designers to understand the evolution of lens profile deviation for different lens shapes during the course of the process.
机译:在本研究的第一部分中,提出了用于模拟整个精密玻璃透镜成型过程的热机械有限元模型。该研究涉及成型玻璃,L-BAL3S的材料定义,计算收敛性,以及如何针对双凸透镜和陡弯月形透镜实现透镜形状与模具形状的最终偏差。在当前的研究中,在验证了两种镜片类型的计算方法之后,进行了广泛的灵敏度分析,以量化影响两种镜片形状偏差的几种材料和工艺参数的重要性。如果已知所有输入参数的精度足够高,这种计算力学方法就有可能替代当前的反复试验,反复进行的模具轮廓设计过程,以生产具有所需几何形状的玻璃光学器件。造成偏差的一些关键因素包括玻璃的结构松弛,模具的热膨胀,TRS和玻璃的粘弹性行为以及玻璃与模具之间的摩擦。结果表明,例如,应确定关键材料属性以支持此类建模的准确性。除了提供广泛的灵敏度结果外,该计算模型还有助于镜片成型机设计人员了解在加工过程中不同镜片形状的镜片轮廓偏差的演变。

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