Experimental and Modeling Study of Double-layered UHPFRC under Bending

Y.Y.Y. Cao, Q. L. Yu, J. Brouwers
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引用次数: 2

Abstract

Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) is a material characterized by very high compressive strength, excellent durability and damage tolerance. For a UHPFRC beam works under bending, steel fibers distributed in the beam compressive zone has insignificant effects on the improvement of its flexural capacity. To use the fibers more efficiently, this paper applies the concept of layered-structure to UHPFRC beam. A double-layered UHPFRC beam composed of a top plain UHPC layer and a bottom UHPFRC layer containing 2% steel fibers is designed. In the experimental section, basic mechanical properties of the individual UHPC and UHPFRC layers are investigated. Compression, split tension and bending tests are conducted, the results of which provide input parameters and model validation for the simulation section. The effects of layer thickness on the beam flexural properties and stress distributions are analyzed numerically with the validated model, and the results show that the peak flexural load and the energy increase with the increase of the UHPFRC layer thickness. Results from this study shed lights on the design of layered UHPFRC structures, and contribute to the application of layered UHPFRC in engineering constructions.
弯曲作用下双层UHPFRC的实验与建模研究
超高性能纤维增强混凝土(UHPFRC)是一种具有非常高的抗压强度、优异的耐久性和损伤容限的材料。对于处于弯曲工况下的UHPFRC梁,钢纤维分布在梁受压区对其抗弯性能的提高影响不显著。为了更有效地利用纤维,本文将层状结构的概念应用于UHPFRC梁。设计了一种由顶部普通UHPC层和底部含2%钢纤维的UHPFRC层组成的双层UHPFRC梁。在实验部分,研究了UHPC和UHPFRC各层的基本力学性能。进行了压缩、劈裂拉伸和弯曲试验,试验结果为仿真部分提供了输入参数和模型验证。数值分析了层厚对梁抗弯性能和应力分布的影响,结果表明,随着UHPFRC层厚的增加,峰值抗弯荷载和能量增加。研究结果对层状UHPFRC结构设计具有指导意义,有助于层状UHPFRC在工程建设中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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