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Effects of transverse tension load on the static capacity and fatigue resistance of composite dowels

机译:横向拉伸载荷对复合材料销钉静力及抗疲劳性能的影响

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摘要

Composite dowels are powerful shear connectors in steel-concrete composite structures, especially for prefabricated composite bridges. The advantages of composite dowels over other shear connectors are their increased strength and sufficient slip capacity even in high-strength concrete. The National Technical Approval for Germany from 2013 allows the design of composite structures with composite dowels for hogging and sagging moments under static and cyclic loading. However, the design of structures with cyclic loading in combination with centric tension perpendicular to the composite dowels (transverse tension) is neglected. Therefore, one part of national project P967 "External reinforcement for composite bridges", funded by FOSTA, the Research Association for Steel Application, was to determine how transverse tension affects the static capacity and fatigue resistance of composite dowels. To investigate this effect, two test series, each with six push-out tests, were carried out. The test setup and the results of the static and cyclic shear tests in combination with transverse tension are presented in this paper.
机译:复合销钉是钢-混凝土复合结构中的强大剪切连接器,特别是用于预制复合桥。复合销钉相对于其他剪切连接器的优势在于,即使在高强度混凝土中,它们的强度也更高,并且具有足够的滑动能力。从2013年起获得德国国家技术许可,允许设计具有复合销钉的复合结构,以承受静态和循环载荷下的弯矩和弯矩。然而,忽略了具有周期性载荷并结合垂直于复合销钉的中心张力(横向张力)的结构设计。因此,由FOSTA(钢铁应用研究协会)资助的国家项目P967“复合材料桥梁的外部加固”项目的一部分是确定横向张力如何影响复合材料销的静载能力和抗疲劳性。为了研究这种效果,进行了两个测试系列,每个测试系列有六个推入测试。本文介绍了测试设置以及静态和循环剪切测试以及横向拉伸的结果。

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