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Concrete failure of composite dowels under cyclic loading during full-scale tests of beams for the 'Wierna Rzeka' bridge

机译:“ Wierna Rzeka”桥梁的全尺寸试验期间,复合钉的混凝土破坏在循环荷载作用下发生

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摘要

Composite dowels with clothoidal shapes constitute a new kind of shear connection that is used in modern composite bridges constructed in the European Union. These dowels are well established, and they are important steps in the development of composite constructions. This new chapter in the development of composite dowels started with the construction of the first railway bridge using composite dowels, which was the "Wierna Rzeka" bridge in Poland, wherein clothoidal-shaped composite dowels were applied for the first time. This structure has been subjected to significant fatigue loads, and the behaviour of this new form of fatigue-resistant composite dowels must be seriously investigated under cyclic conditions. A full-scale beam test under cyclic loading was conducted to investigate the behaviour of the girders and shear connection. Failure of concrete dowels under cyclic loading was the main focus of the test and was finally achieved herein. This paper presents the behaviour and failure mechanism of a composite dowel shear connection due to concrete failure under cyclic loading, which has not been previously reported in the literature. The test presented herein is a beam test with a large steel web thickness (27 mm), which is the first beam test where concrete dowel failure was achieved. However, this is a test of a so-called general composite section, and the complicated behaviour of such a structure differs from that of a standard composite section.
机译:具有回旋形状的复合材料定位销构成了一种新型的剪力连接,用于欧洲联盟建造的现代复合材料桥梁。这些销钉已经很成熟,它们是开发复合结构的重要步骤。复合销钉发展的新篇章始于使用复合销钉建造的第一座铁路桥梁,这是波兰的“ Wierna Rzeka”桥,其中首次使用了回旋形复合销钉。这种结构承受了很大的疲劳载荷,这种新形式的抗疲劳复合材料销钉的性能必须在循环条件下进行认真研究。进行了循环荷载下的全尺寸梁测试,以研究大梁和剪力连接的性能。混凝土销钉在循环载荷下的破坏是测试的主要重点,并最终在本文中实现。本文介绍了在循环荷载作用下混凝土破坏引起的复合材料销钉剪力连接的行为和破坏机理,这在文献中尚未见报道。本文介绍的测试是具有较大钢腹板厚度(27毫米)的梁测试,这是第一个达到混凝土销钉破坏的梁测试。但是,这是对所谓的普通复合截面的测试,并且这种结构的复杂行为不同于标准复合截面的行为。

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  • 来源
    《Engineering Structures》 |2020年第15期|110199.1-110199.14|共14页
  • 作者

  • 作者单位

    Wroclaw Univ Technol Fac Civil Engn Wybrzeze Wyspianskiego 27 PL-50370 Wroclaw Poland;

  • 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
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