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首页> 外文期刊>Journal of structural engineering >3D Nonlinear Finite-Element Modeling of Lap Splices in UHPFRC
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3D Nonlinear Finite-Element Modeling of Lap Splices in UHPFRC

机译:UHPFRC中搭接接头的3D非线性有限元建模

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摘要

Development in ultra-high-performance fiber-reinforced concrete (UHPFRC) structural applications that has taken place over the last two decades has generated innovative concepts that could significantly impact the concrete construction practice. The transition from conventional concrete with brittle behavior to strain-hardening behavior in direct tension allows consideration of the design of innovative structural components and offers development of new techniques for rehabilitation. Building on experimental results of internally instrumented reinforcing bars, this paper investigates the impact of tensile characteristics of UHPFRC on the performance of lap splice connections using a refined three-dimensional (3D) finite-element (FE) model at rib scale and a 3D concrete constitutive model implemented in a computer program. The results show that the model reproduces with accuracy the experimental behavior of lap splice connections in UHPFRC in terms of maximum strength, splitting failure mode, crack pattern, steel stress distribution along the splice, and eventual loss of bond. Using the validated 3D nonlinear finite-element model, the influence of splice length and UHPFRC cover thickness are highlighted in a parametric study of corner and interior lap splices. The paper illustrates the methodology that can be adopted along with experimental results to develop guidelines for designing lap splice connection in UHPFRC.
机译:在过去的二十年中,超高性能纤维增强混凝土(UHPFRC)结构应用的发展产生了创新的概念,可能会严重影响混凝土的施工实践。从具有脆性的常规混凝土到直接拉伸状态下的应变硬化行为的过渡,可以考虑设计创新的结构部件,并提供了用于修复的新技术的开发。基于内部测试的钢筋的实验结果,本文使用精化的三维(3D)有限元(FE)模型在肋骨尺寸和3D混凝土下研究了UHPFRC的拉伸特性对搭接接头性能的影响。在计算机程序中实现的本构模型。结果表明,该模型准确再现了UHPFRC中搭接接头连接的实验行为,包括最大强度,断裂破坏模式,裂纹模式,沿接头的钢应力分布以及最终的粘结损失。使用经过验证的3D非线性有限元模型,在拐角和内部搭接的参数研究中突出了接头长度和UHPFRC覆盖厚度的影响。本文说明了可以与实验结果一起采用的方法,以开发用于设计UHPFRC中搭接接头连接的准则。

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