通过声发射、DIC和磁镜检测探讨UHPFRC的断裂机理

IF 10.9 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Imane Bayane , Jian Zhan , Eugen Brühwiler
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引用次数: 0

摘要

采用声发射(AE)、数字图像相关(DIC)和磁镜检测等方法研究了超高性能纤维增强胶凝复合材料(UHPFRC)的断裂机理。四个试样经受单轴拉伸载荷,在磁力镜测试之前确定局部纤维的体积和方向。DIC捕获矩阵不连续、裂纹萌生和扩展。声发射监测不同加载阶段的破裂机制。在弹性阶段,观察到基体不连续和纤维脱粘的发生。在此阶段,较高的基体不连续密度增强了硬化行为和拉伸性能。基于声发射参数,发现UHPFRC软化阶段可分为三个阶段:多个虚拟裂纹的出现和竞争、一个主导虚拟裂纹的扩展和真实裂纹的形成。通过分析声发射参数随应力减小的变化规律,可以确定主虚拟裂纹扩展速率。均匀的纤维分布限制了虚拟裂纹的萌生和扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploration of the fracture mechanism of UHPFRC by acoustic emission, DIC and magnetoscopy testing
This paper investigates the fracture mechanism of ultra-high-performance fiber-reinforced cementitious composites (UHPFRC) using acoustic emission (AE), digital image correlation (DIC), and magnetoscopy testing. Four specimens undergo uniaxial tensile loading, preceded by magnetoscopy testing to determine local fiber volume and orientation. DIC captures matrix discontinuities, crack initiation, and propagation. Acoustic emission monitors fracture mechanisms at different loading phases. During the elastic phase, matrix discontinuities and fiber debonding are observed to occur. A higher density of matrix discontinuities during this phase enhances hardening behavior and tensile performance. The softening phase of UHPFRC is found to be characterized by three stages based on AE parameters: emergence and competition of multiple fictitious cracks, propagation of a dominant fictitious crack, and real crack formation. The rate of dominant fictitious crack propagation can be determined by analyzing the evolution in AE parameters with stress decrease. Uniform fiber distribution limits the initiation and propagation of fictitious cracks.
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来源期刊
Cement and Concrete Research
Cement and Concrete Research 工程技术-材料科学:综合
CiteScore
20.90
自引率
12.30%
发文量
318
审稿时长
53 days
期刊介绍: Cement and Concrete Research is dedicated to publishing top-notch research on the materials science and engineering of cement, cement composites, mortars, concrete, and related materials incorporating cement or other mineral binders. The journal prioritizes reporting significant findings in research on the properties and performance of cementitious materials. It also covers novel experimental techniques, the latest analytical and modeling methods, examination and diagnosis of actual cement and concrete structures, and the exploration of potential improvements in materials.
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