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基于混凝土连续损伤和纤维渐进模型的钢纤维增强混凝土计算断裂演化分析

Computational Fracture Evolution Analysis of Steel-Fiber-Reinforced Concrete Using Concrete Continuous Damage and Fiber Progressive Models.

作者信息

Pokorska Iwona, Poński Mariusz, Kubissa Wojciech, Libura Tomasz, Brodecki Adam, Kowalewski Zbigniew

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, 02-106 Warszawa, Poland.

Faculty of Civil Engineering, Cza̧stochowa University of Technology, 42-218 Czȩstochowa, Poland.

出版信息

Materials (Basel). 2023 Aug 15;16(16):5635. doi: 10.3390/ma16165635.

Abstract

The process of concrete cracking is a common problem because the first micro-cracks due to the loss of moisture may appear even before the concrete is loaded. The application of fracture mechanics allows for a better understanding of this problem. Steel-fiber-reinforced concrete (SFRC) samples with a notch were subjected to a three-point bending test, and the results for crack energy were used to analyze the concrete's material properties. In this paper, an experimental and numerical analysis of SFRC with rapid changes in the force (F) crack mouth opening displacement (CMOD) curve (F-CMOD) is presented. In order to obtain the relevant F-CMOD diagrams, three-point bending tests were carried out with non-standard samples with a thickness equal to one-third of the width of standard samples. For analysis purposes, crimped steel fibers were adopted. A probabilistic analysis of the most important parameters describing the material in question, such as peak strength, post-cracking strength, crack mouth opening displacement (CMOD), fracture energy, and the post-cracking deformation modulus, was conducted. The tests and the analysis of their results show that the quasi-static numerical method can be applied to obtain suitable results. However, significant dynamic effects during experiments that influence the F-CMOD curves are hard to reflect well in numerical calculations.

摘要

混凝土开裂过程是一个常见问题,因为即使在混凝土加载之前,由于水分损失产生的首批微裂缝就可能出现。断裂力学的应用有助于更好地理解这一问题。对带有切口的钢纤维增强混凝土(SFRC)样本进行了三点弯曲试验,并利用裂缝能量结果分析混凝土的材料性能。本文对力(F)-裂缝口张开位移(CMOD)曲线(F-CMOD)变化迅速的SFRC进行了试验和数值分析。为了获得相关的F-CMOD图,对厚度等于标准样本宽度三分之一的非标准样本进行了三点弯曲试验。出于分析目的,采用了卷曲钢纤维。对描述该材料的最重要参数进行了概率分析,如峰值强度、开裂后强度、裂缝口张开位移(CMOD)、断裂能和开裂后变形模量。试验及其结果分析表明,准静态数值方法可用于获得合适的结果。然而,试验过程中显著的动态效应会影响F-CMOD曲线,在数值计算中很难很好地反映出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd8a/10456427/e1f9706c8cab/materials-16-05635-g001.jpg

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