首页> 外文期刊>Journal of thermal stresses >FINAL SHAPE OF PRECISION MOLDED OPTICS: PART I-COMPUTATIONAL APPROACH, MATERIAL DEFINITIONS AND THE EFFECT OF LENS SHAPE
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FINAL SHAPE OF PRECISION MOLDED OPTICS: PART I-COMPUTATIONAL APPROACH, MATERIAL DEFINITIONS AND THE EFFECT OF LENS SHAPE

机译:精密模制光学器件的最终形状:第一部分-计算方法,材料定义和透镜形状的影响

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Coupled thermomechanical finite element models were developed in ABAQUS to simulate the precision glass lens molding process, including the stages of heating, soaking, pressing, cooling and release. The aim of the models was the prediction of the deviation of the final lens profile from that of the mold, which was accomplished to within one-half of a micron. The molding glass was modeled as viscoelastic in shear and volume using an n-term, prony series; temperature dependence of the material behavior was taken into account using the assumption of thermal rheological simplicity (TRS); structural relaxation as described by the Tool-Narayanaswamy-Moynihan (TNM)-model was used to account for temperature history dependent expansion and contraction, and the molds were modeled as elastic taking into account both mechanical and thermal strain. In Part I of this two-part series, the computational approach and material definitions are presented. Furthermore, in preparation for the sensitivity analysis presented in Part II, this study includes both a bi-convex lens and a steep meniscus lens, which reveals a fundamental difference in how the deviation evolves for these different lens geometries. This study, therefore, motivates the inclusion of both lens types in the validations and sensitivity analysis of Part II. It is shown that the deviation of the steep meniscus lens is more sensitive to the mechanical behavior of the glass, due to the strain response of the newly formed lens that occurs when the pressing force is removed.
机译:在ABAQUS中开发了耦合的热机械有限元模型,以模拟精密玻璃镜片成型过程,包括加热,浸泡,加压,冷却和释放的阶段。这些模型的目的是预测最终透镜轮廓与模具的偏差,该偏差可以做到半微米。使用n项prony级数将成型玻璃的剪切强度和体积建模为粘弹性;使用热流变简单性(TRS)的假设考虑了材料行为的温度依赖性;使用Tool-Narayanaswamy-Moynihan(TNM)模型描述的结构松弛来考虑温度历史相关的膨胀和收缩,并且考虑到机械应变和热应变,将模具建模为弹性模型。在这个由两部分组成的系列的第一部分中,介绍了计算方法和材料定义。此外,为准备在第二部分中介绍的灵敏度分析,本研究同时包括双凸透镜和陡弯月形透镜,这揭示了对于这些不同的透镜几何形状,偏差如何演变的根本差异。因此,这项研究促使在第二部分的验证和灵敏度分析中包括两种镜片。可以看出,由于去除压力时新形成的透镜的应变响应,陡弯月形透镜的偏差对玻璃的机械性能更为敏感。

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