碳纤维杆增强结构玻璃梁的有限元模型及数值分析

D. Foti, Michela Lerna, L. Carnimeo, Vacca Vitantonio
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引用次数: 3

摘要

由于其脆性和不可预测的破坏行为,玻璃被认为是一种结构不安全的材料。较差的抗拉强度和脆性破坏的发生阻止了结构玻璃元件(即地板,梁和柱)的可能使用。本文主要研究了复合材料(纤维增强聚合物)加固玻璃梁的数值分析和玻璃板打孔后性能的数值分析。具体来说,加固方法是在夹层结构玻璃梁的夹层中嵌入碳纤维纤维棒,以提高其破坏强度,并提高其破坏后的强度和延性。通过对不同试件的数值分析,对加固效果进行了评价。对加筋梁和未加筋梁的响应进行了比较,并对结果进行了讨论。结果提供了预期性能的估计,从而提出了玻璃钢复合材料加固玻璃梁的方法。本研究包括对两端有宽孔的夹层玻璃板的数值分析,后者是由于技术原因将玻璃梁连接到结构上。所得结果与整数试件进行了比较。
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Finite Element Models and Numerical Analysis of a Structural Glass Beam Reinforced with Embedded Carbon Fibre Rod
Due to the its brittleness and unpredictable failure behaviour, the glass is considered a structurally unsafe material. The poor tensile strength and the occurrence of brittle failures prevent the possible use of structural glass elements (i.e. floors, beams and columns). The present study focuses on the numerical analysis of glass beams reinforced with composite material (Fiber Reinforced Polymer) and the numerical analysis of the behaviour of glass plates after being punched. In particular, the method of reinforcement analysed consists in embedding the Carbon FRP-rod in the interlayer of laminated structural glass beams with the aim to increase their failure strength, but also the post-failure strength and ductility. A numerical analysis on different specimens has been carried out to evaluate the effect of the reinforcement. The response of the reinforced and un-reinforced beams has been compared and the results have been discussed. The results provide an estimation of the expected performance in order to propose a reinforcement method for glass beams using FRP composites. This study includes the numerical analysis on laminated glass plates with wide holes at both ends, the latter made for technological reasons to connect the glass beam to the structure. The obtained results are compared with integer specimens.
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来源期刊
International Journal of Mechanics
International Journal of Mechanics Engineering-Computational Mechanics
CiteScore
1.60
自引率
0.00%
发文量
17
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