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Experimental investigation and modelling of the structural behaviour of confined grouted interfaces for a new steel-concrete connection

机译:新型钢-混凝土连接管约束灌浆结构性能的实验研究与建模

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摘要

Confined interfaces between cement grout and other materials such as embossed steel or rough concrete are formed in an innovative new steel-concrete connection for composite bridges. This article presents the experimental study of such interfaces and investigates the laws obtained from an analytical study, which describe the behaviour of those interfaces subjected to shear loading, static and cyclic, under different levels of constant normal stress. The laws describing the interface behaviour in monotonic shear loading are: (a) the relationship between the ultimate shear and the normal stress acting on the interface, i.e. the failure criterion, (b) the shear stress-slip relationship of the interface, called hereafter the constitutive law and (c) the relationship between the transverse separation (uplift) of the interface and the slip in the interface, called hereafter kinematic law. Concerning cycle shear loading, tests on interfaces enabled damage determination due to repeated loading. This damage is expressed by the development of an accumulated residual slip in the interface. Results indicate that as long as the applied shear stress in the interface, during cyclic loading, remains inferior to the elastic shear limit for static loading, the residual slip stabilizes with the number of cycles. A safe fatigue failure criterion is proposed relating the accumulated slip with the value of the slip at shear failure of the interface for static loading. The proposed laws together with the law describing the development of the confinement constitute the necessary input for a model to predict the behaviour of an innovative connection consisting of such confined grouted interfaces.
机译:水泥灌浆与其他材料(如压纹钢或粗糙混凝土)之间的密闭接口是在用于复合材料桥梁的新型钢-混凝土新型连接中形成的。本文介绍了此类界面的实验研究,并研究了从分析研究中获得的规律,这些规律描述了在不同水平的法向恒定应力下,这些界面在剪切载荷(静态和循环)下的行为。描述单调剪切载荷时界面行为的定律是:(a)极限剪切力和作用在界面上的正应力之间的关系,即破坏准则,(b)界面的剪切应力-滑动关系,以下称为本构定律和(c)界面的横向分离(隆起)与界面中的滑移之间的关系,以下称为运动定律。关于循环剪切载荷,在界面上进行测试可以确定由于重复载荷而造成的损坏。这种损坏由界面中累积的残余滑移的发展来表示。结果表明,在循环荷载作用下,只要界面上施加的剪应力仍低于静态荷载的弹性剪切极限,残余滑移就会随着循环次数而稳定下来。提出了一种安全疲劳破坏准则,该准则将累积的滑移与静态载荷作用下界面剪切破坏时的滑移值相关联。拟议的法律与描述限制发展的法律一起构成了模型的必要输入,该模型可以预测由这种受限灌浆界面组成的创新连接的行为。

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