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Evaluation of residual stress distribution inside a tempered thick glass plate using photo-elastic modulator

机译:使用光弹调制器评估钢化厚玻璃板内部的残余应力分布

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摘要

Glass is well-known example a brittle material. In many products made i)f glass. such automobile windshields and glass panels for flat-screen TV-tubes, high compressive residual stresses are often induced artificially at the surface in an attemptto avoid incidental fracture. Residual stress in a glass sheet arises due to the temperature gradient during rapid cooling across the transition range. When those products are subjected to large external forces, the superposition of the induced residualstress can sometimes result in a dangerous situation. Although very high compressive residual stresses are induced into the latest flat-screen TV-tubes to confer a high withstand strength in the face of external pressure caused by the vacuum inside, it is sometimes difficult to measure and estimate the safety limits of the residual stresses. It is, therefore, very important to he able to accurately and quantitatively measure such residual stresses inside glass products. The current non-contact method for measuring residual stresses uses transmitted or scattered photoelasticity and total reflection for this purpose. In this study, the authors adopt a system based on a Photo-Elastic Modulator (PEM) to evaluate the distribution (if redidual stresses at thesurface and inside a tempered thick glass plate.
机译:玻璃是脆性材料的众所周知的例子。在许多产品中,玻璃是制成的。诸如用于平板电视管的汽车挡风玻璃和玻璃面板,通常在表面上人为地引起高压缩残余应力,以试图避免偶然的破裂。玻璃板中的残余应力是由于在过渡范围内快速冷却期间的温度梯度而产生的。当这些产品承受较大的外力时,所引起的残余应力的叠加有时会导致危险情况。尽管在最新的平板电视管中会产生很高的压缩残余应力,以面对内部真空导致的外部压力赋予较高的承受强度,但有时很难测量和估算残余应力的安全极限。因此,能够准确,定量地测量玻璃产品内部的此类残余应力非常重要。用于测量残余应力的当前非接触方法为此使用透射或散射的光弹性和全反射。在这项研究中,作者采用了一种基于光弹调制器(PEM)的系统来评估分布(如果在钢化厚玻璃板的表面和内部存在重复应力)。

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