玻璃板在反弹性冷弯过程中的机械特性

Xiaohan Hao, Suwen Chen
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摘要

反弹性玻璃表面在自由形态玻璃外墙中发挥着重要作用。与传统的热弯曲方法相比,通过在板角加载进行冷弯曲来实现反弹性表面更具适应性和经济性。以往关于反弹性冷弯的研究主要集中在不稳定现象的描述和参数的定性分析上。然而,玻璃板在冷弯过程中的失效机理以及层压的影响仍不清楚。本文进行了反弹性冷弯试验,以探讨各种因素的影响,包括板材的长宽比、尺度和组成。随后,建立了有效的有限元模型,并通过试验结果进行了验证,用于进一步探索冷弯控制条件,以更好地进行工程实践。失效模式被认为是失稳和强度失效。对于夹层玻璃,最大应力可根据等效厚度法从单片玻璃中推导出来。不稳定性是由玻璃板中间表面的压缩区域引起的,而压缩区域受层压板成分的影响很大。因此,薄玻璃层压板表现出更高的稳定性,因为玻璃与 PVB 的厚度比降低后,压缩区域从双向变为单向。
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Mechanical Properties of Glass Plate During Anticlastic Cold Bending
Anticlastic glass surfaces play a significant role in free-form glass facades. For realizing anticlastic surface, cold bending by loading at the corner of the plate is more adaptive and more economic than traditional hot bending method. Previous research on anticlastic cold bending mainly focuses on the description of instability phenomenon and qualitative analysis of parameters. However, the failure mechanisms of glass plates during cold bending and the influence of lamination remains unclear. In this paper, the anticlastic cold bending test was conducted to explore the influence of various factors, including aspect ratio, scale and composition of the plates. Subsequently, an effective finite element model was established and validated by test results, which is used for further explore the cold bending controlling condition for better engineering practice. The failure modes are considered as instability and strength failure. For laminated glass, maximum stresses can be derived from monolithic glass based on equivalent thickness method. The instability is induced by the compression area in the middle surface of glass plate which is significantly influenced by the composition of the laminates. Consequently, thin glass laminates exhibit enhanced stability because a reduced glass to PVB thickness ratio changes the compression area from bi-directional to uni-directional.
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