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The mechanical response of cold bent monolithic glass plates during the bending process

机译:冷弯整体玻璃板弯曲过程中的机械响应

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Cold bending of glass involves the straining of relatively thin glass components, (typically plates), at ambient temperatures, and is a low energy and cost effective manner of creating curvilinear forms required in modern glass applications. Cold bending is also popular because it is thought to eliminate the optical imperfections in curved glass plates that arise during alternative and more conventional thermal bending techniques. Experimental and numerical investigations on the cold bending of monolithic glass plates into anticlastic shapes are undertaken and described in this paper. The aim is to characterise the cold bending behaviour during the bending process and to evaluate the surface/optical quality of the curved plates. Two distinct phenomena of interest are observed: (i) a change in the deformation mode that under particular boundary and loading conditions lead to snap-through buckling and; (ii) a local instability termed "cold bending distortion" that appears on curved plates when certain applied displacement limits are exceeded. This cold bending distortion is found to occur at stresses significantly below the fracture strength of the glass plate, but the distortions can be sufficiently large to breach optical serviceability requirements. An optical quality evaluation procedure for predicting the cold bending response and the resulting optical quality of monolithic glass plates are provided at the end of this paper. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:玻璃的冷弯涉及在环境温度下使相对较薄的玻璃组件(通常是板)变形,并且是产生现代玻璃应用所需的曲线形式的低能耗且经济高效的方式。冷弯也很流行,因为它被认为可以消除弯曲玻璃板在替代和更传统的热弯技术中出现的光学缺陷。本文对单块玻璃板冷弯成抗塑性形状进行了实验和数值研究。目的是表征弯曲过程中的冷弯曲行为,并评估弯曲板的表面/光学质量。观察到了两个有趣的现象:(i)变形模式的变化,在特定的边界和载荷条件下会导致快速弯曲,并且; (ii)当超过某些施加的位移极限时,在弯曲板上出现的称为“冷弯曲变形”的局部不稳定性。发现这种冷弯曲变形发生在明显低于玻璃板的断裂强度的应力处,但是该变形可能足够大以致违反光学可维修性要求。本文最后提供了一种光学质量评估程序,用于预测冷弯响应以及由此产生的整体式玻璃板的光学质量。 (C)2016作者。由Elsevier Ltd.发布

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