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Thermo-viscoelastic Modeling of Nonequilibrium Material Behavior of Glass in Nonisothermal Glass Molding

机译:玻璃非等热玻璃成型玻璃非凝结材料行为的热粘弹性造型

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Nonisothermal Glass Molding (NGM) has become a viable replicative manufacturing technology for the cost-efficient production of complex precision optical components made of glass. During the pressing stage in NGM, glass materials undergo a huge temperature change in the glass transition range. In this range, glass exhibits thermo-viscoelastic responses, and the temperature drop through the glass transition leads glass structure to depart from an equilibrium to a nonequilibrium state. Thermo-viscoelastic properties of the nonequilibrium glass material greatly depend on temperature and thermal history. This paper presents a phenomenological constitutive model developed for modeling the thermo-viscoelastic responses of nonequilibrium glass. We propose a direct incorporation of the temperature -and thermal history effects into each parameter of the phenomenological model. This novelty allows the model to describe the nonequilibrium phenomena and to study temperature-dependent viscoelasticity of glass without assuming thermo-rheologically simple characteristics. Furthermore, the phenomenological model enables the coupling of structural -and stress relaxation phenomena. The model validation conducted for creep experiments demonstrates an enhancement in numerical predictions of the nonequilibrium material behaviors of glass over wide ranges of temperature and thermal history.
机译:非吸管玻璃成型(NGM)已成为可实现的复制制造技术,可实现由玻璃制成的复杂精密光学元件的成本效益生产。在NGM的压制阶段,玻璃材料在玻璃转变范围内经历巨大的温度变化。在该范围内,玻璃表现出热粘弹性响应,并且通过玻璃化转变的温度降低导致玻璃结构以偏离平衡到非纤维纤维状态。非凝固玻璃材料的热粘弹性大大依赖于温度和热历史。本文介绍了一种开发的现象学组成型模型,用于建模非纤维玻璃的热粘弹性响应。我们提出直接将温度掺入 - 和热历史效应到现象学模型的每个参数中。这种新奇允许模型描述非QuiLibriaM现象,并研究玻璃的温度依赖性粘弹性,而不假设热流变学特性。此外,现象学模型能够实现结构 - 压力松弛现象的耦合。对蠕变实验进行的模型验证表明,在宽温度和热历史范围内的玻璃的非预测材料行为的数值预测中的增强。

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