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Experimental study on the flexural behaviour of multi-span transparent glass-GFRP composite beams

机译:多跨度透明玻璃纤维复合材料梁的抗弯性能试验研究

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摘要

In recent years there have been an increasing number of applications of glass in civil engineering structural members, such as roofs, floors, beams and columns. Such interest stems basically from the aesthetical possibilities of glass, in particular its transparency. However, glass presents several limitations, including relatively low tensile strength and brittle behaviour, which contrasts with current design philosophies associated with more conventional materials, such as steel and reinforced concrete. One of the possibilities of overcoming these disadvantages is joining reinforcing materials to glass. The main goal of those transparent composite structural solutions is to increase the post-cracking residual strength and ductility of glass beams. This paper presents results of an experimental study about the flexural behaviour of multi-span composite beams made of annealed glass panes reinforced with GFRP pultruded laminates. The main goal of this study was to evaluate the post-cracking behaviour of such continuous beams, namely the influence of the adhesive used in their construction. The experimental programme included (ⅰ) material characterization tests, (ⅱ) tensile tests on double lap joints between glass and GFRP pultruded laminates, bonded with different structural adhesives, and (ⅲ) full-scale flexural tests on multi-span glass-GFRP composite beams, with interfaces bonded also with different adhesives. Results showed that multi-span glass-GFRP composite beams are able to exhibit significant post-cracking residual strength and ductility, stemming not only from their cross-sectional redundancy but also from their capacity to redistribute internal forces. The ultimate load and the post-cracking performance of the multi-span composite beams are significantly affected by the type of the adhesive used to bond GFRP to glass.
机译:近年来,玻璃在土木工程结构构件,例如屋顶,地板,横梁和圆柱中的应用越来越多。这种兴趣基本上源于玻璃的美学可能性,尤其是其透明度。但是,玻璃存在一些局限性,包括相对较低的抗张强度和脆性,这与与更常规的材料(如钢和钢筋混凝土)相关的当前设计理念形成了鲜明的对比。克服这些缺点的一种可能性是将增强材料连接到玻璃上。这些透明复合结构解决方案的主要目标是增加玻璃梁开裂后的残余强度和延展性。本文介绍了由玻璃纤维增​​强玻璃纤维增​​强拉挤层压板增强的退火玻璃板制成的多跨复合梁的抗弯性能的实验研究结果。这项研究的主要目的是评估这种连续梁的开裂后行为,即在其结构中使用的粘合剂的影响。实验程序包括(ⅰ)材料表征测试,(ⅱ)玻璃和GFRP拉挤层板之间的双搭接接头的拉伸测试,用不同的结构胶粘剂粘合以及(ⅲ)多跨度玻璃纤维-GFRP复合材料的全面弯曲测试梁,其界面也用不同的粘合剂粘合。结果表明,多跨度玻璃纤维增​​强塑料复合梁能够显示出明显的开裂后残余强度和延展性,这不仅是由于其横截面冗余,而且还在于它们重新分配内力的能力。多跨度复合梁的极限载荷和开裂后性能受用于将GFRP粘结到玻璃上的粘合剂类型的显着影响。

著录项

  • 来源
    《Construction and Building Materials》 |2013年第12期|1041-1053|共13页
  • 作者单位

    Department of Civil Engineering, Architecture and Ceoresources, Instituto Superior Tecnico/ICIST, Technical University of Lisbon, Av. Rovisco Pais, 1049-001 Lisboa, Portugal;

    Department of Civil Engineering, Architecture and Ceoresources, Instituto Superior Tecnico/ICIST, Technical University of Lisbon, Av. Rovisco Pais, 1049-001 Lisboa, Portugal;

    Department of Civil Engineering, Architecture and Ceoresources, Instituto Superior Tecnico/ICIST, Technical University of Lisbon, Av. Rovisco Pais, 1049-001 Lisboa, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Class; GFRP; Structural adhesives; Composite beams; Multi-span beams; Pseudo-ductiliry; Post-cracking strength;

    机译:类;GFRP;结构胶;复合梁;多跨梁伪导管;开裂后强度;

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