首页> 外文期刊>Journal of thermal stresses >CHARACTERIZATION OF THE THERMO-VISCOELASTIC PROPERTY OF GLASS AND NUMERICAL SIMULATION OF THE PRESS MOLDING OF GLASS LENS
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CHARACTERIZATION OF THE THERMO-VISCOELASTIC PROPERTY OF GLASS AND NUMERICAL SIMULATION OF THE PRESS MOLDING OF GLASS LENS

机译:玻璃的热-粘弹性特性的表征和玻璃透镜压制成型的数值模拟

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摘要

A measurement technique for obtaining the thermo-viscoelastic properties of glass with high accuracy is discussed. An unidirectional compression creep test was employed to measure the relaxation modulus of the glass specimens. The creep function derived from the experimental creep test is approximated by a generalized Voigt model, and then converted into a relaxation modulus expressed by a generalized Maxwell model using the Laplace transform and its inversion. Relaxation moduli and shift factors of the glass specimens BK-7 and TaF-3 were estimated according to the presented procedure, and the accuracy of the relaxation modulus was verified by a numerical demonstration using finite element analysis. A fundamental numerical simulation of the press molding of glass lenses was carried out to illustrate the validity of the thermo-viscoelastic properties obtained by the presented approach. Residual stresses under processing conditions were estimated, and the optimal conditions for residual stress minimization are discussed.
机译:讨论了一种用于以高精度获得玻璃的热粘弹性的测量技术。使用单向压缩蠕变测试来测量玻璃样品的松弛模量。由实验蠕变测试得出的蠕变函数由广义Voigt模型近似,然后使用Laplace变换及其反演将其转换为由广义Maxwell模型表示的松弛模量。根据提出的程序估算了玻璃样品BK-7和TaF-3的弛豫模量和位移因子,并通过有限元分析的数值演示验证了弛豫模量的准确性。进行了玻璃透镜压模的基本数值模拟,以说明通过所提出的方法获得的热-粘弹性的有效性。估计了加工条件下的残余应力,并讨论了最小化残余应力的最佳条件。

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