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Post-tensioning of glass beams: Analytical determination of the allowable pre-load

机译:玻璃梁的后张紧:分析测定允许预载荷

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The effectiveness of post-tensioning in enhancing the fracture resistance of glass beams depends on the level of compressive pre-stress introduced at the glass edge surface that will in service be exposed to tensile stresses induced by bending. Maximum pre-load that can be applied in a post-tensioned glass beam system, yielding maximum compressive pre-stress, is limited by various failure mechanisms which might occur during post-tensioning. In this paper, failure mechanisms are identified for a post-tensioned glass beam system with a flat stainless steel tendon adhesively bonded at the bottom glass edge, including the rupture of the tendon, glass failure in tension and adhesive/glass failure in the load introduction zone. Special attention is given to the load introduction failure given that the transparent nature of glass limits the use of vertical confinement usually applied in concrete. An analytical model for determination of the allowable pre-load in post-tensioned glass beams is proposed, based on the model applied for externally post-tensioned concrete beams. The model is verified with the results of a numerical model, showing good correlation, and applied in a parametric study to determine the influence of various beam parameters on the effectiveness of post-tensioning glass beams.
机译:后张紧在增强玻璃束的断裂电阻方面的有效性取决于在玻璃边缘表面引入的压缩预应力水平,该玻璃边缘表面将暴露于通过弯曲引起的拉伸应力。可以在张紧后玻璃束系统中施加的最大预负荷,从而产生最大压缩预应力,受到在张紧后可能发生的各种故障机构的限制。在本文中,识别故障机制,用于张紧的玻璃束系统,扁平不锈钢肌腱在底部玻璃边缘粘合,包括肌腱的破裂,张力张力的张力和粘合剂/玻璃衰竭的破裂区。鉴于玻璃的透明性质限制使用通常在混凝土中使用的垂直监禁的透明性质,特别注意载荷引入失败。基于施加的外部后张紧混凝土梁的模型,提出了一种用于确定后张紧玻璃束中允许预载荷的分析模型。通过数值模型的结果验证了模型,显示出良好的相关性,并应用于参数研究中,以确定各种光束参数对后张紧玻璃束的有效性的影响。

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