首页> 外文期刊>International Journal of Solids and Structures >Modelling FRP-to-substrate joints using the bilinear bond-slip rule with allowance for friction Full-range analytical solutions for long and short bonded lengths
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Modelling FRP-to-substrate joints using the bilinear bond-slip rule with allowance for friction Full-range analytical solutions for long and short bonded lengths

机译:使用Bilinear粘结滑移规则建模FRP-in-Libl-Slips,对于长期和短的粘合长度,余量具有摩擦全范围分析解决方案

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Methods for simulating the mechanics of debonding and predicting global load-slip (P-Delta) response from local bond stress versus slip (tau-delta) relationships can vary significantly in their complexity. It is generally accepted that an adequate representation of intermediate crack debonding can be achieved by considering only mode-II (shear) fracture along the interfacial bond, a problem that can be solved by accounting for one-dimensional fields of elastic stress and strain in the substrate and plate, and nonlinear interfacial slip and shear stress along the bond. In this paper, full-slip-range analytical solutions are presented for the bilinear tau-delta rule with allowance for residual friction. The procedure is capable of modelling the entire debonding process over both long and short bonded lengths. This is an extension of previous works which are either inapplicable to all bonded lengths or do not allow for residual strength. Applicability of the formulation can range from externally-bonded or near-surface-mounted FRP plates, to embedded bars or bolts in brittle substrates such as concrete, rock or masonry. The versatility and low computational effort required to apply the developed formulation makes it ideal for both directly predicting the P-Delta relationship from known tau-delta parameters, or conversely for extracting a tau-delta relationship from a reference P-Delta curve using inverse calibration. While it is not the purpose of this paper to propose a bond model for any specific type of system, a framework is proposed for doing so. Significantly this framework addresses the difficulty in identifying a unique solution of local properties from experimental data, and highlights that the bonded length has an important influence on the reliability of extracted results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:用于模拟剥离和预测来自局部债券压力与滑动(TAU-DELTA)关系的全球载荷(P-DELTA)响应的方法的方法可以显着变化。通常可接受通过沿着界面键的仅考虑模式-II(剪切)裂缝来实现中间裂纹剥离的足够表示,这是通过算用于弹性应力和菌株的一维领域来解决的问题基板和板,以及沿键合的非线性界面滑动和剪切应力。本文介绍了用于余量摩擦的双线性Tau-Delta规则的全滑程分析解决方案。该过程能够在长期和短的粘合长度上建模整个剥离过程。这是先前作品的延伸,其可用于所有粘合长度或不允许残余强度。制剂的适用性可以从外部粘合或近表面安装的FRP板,以脆性基材的嵌入式条或螺栓,例如混凝土,岩石或砖石。应用开发配方所需的多功能性和低计算工作使其成为直接预测来自已知的Tau-delta参数的p-delta关系,或者相反地用于使用逆校准从参考p-delta曲线提取tau-delta关系。虽然本文的目的不是为任何特定类型的系统提出债券模型,但提出了一个框架来做。显着介绍该框架解决了难以确定实验数据的局部属性的独特解决方案,并且突出显示粘合长度对提取结果的可靠性影响重要影响。 (c)2017 Elsevier Ltd.保留所有权利。

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