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高强度混凝土和砂浆的压缩疲劳行为:实验研究与计算建模

Compressive Fatigue Behaviour of High-Strength Concrete and Mortar: Experimental Investigations and Computational Modelling.

作者信息

Oneschkow Nadja, Timmermann Tim, Löhnert Stefan

机构信息

Institute of Building Materials Science, Leibniz University Hannover, Appelstraße 9a, 30167 Hannover, Germany.

Institute of Mechanics and Shell Structures, Technische Universität Dresden, August-Bebel-Straße 30, 01219 Dresden, Germany.

出版信息

Materials (Basel). 2022 Jan 3;15(1):319. doi: 10.3390/ma15010319.

Abstract

A high-strength concrete and mortar subjected to compressive fatigue loading were comparatively investigated using experimental and computational techniques. The focus of the investigations was on the influence of the coarse aggregate in high-strength concrete. Accordingly, the fatigue behaviour was analysed experimentally using the macroscopic damage indicators strain, stiffness and acoustic emission hits. The results clearly show differences in the fatigue behaviour between the concrete and the mortar, especially at the lower stress level investigated. The basalt coarse aggregate here improves the fatigue behaviour of the concrete. Indication of a negative effect can be seen at the higher stress level. A finite element approach with a gradient-enhanced equivalent strain-based damage model combined with a fatigue model was used for the computational simulation of the fatigue behaviour. The damage model includes a differentiation between tension and compression. The fatigue model follows the assumption of the reduction in the material strength based on the accumulated gradient-enhanced equivalent strains. A random distribution of spherically shaped basalt aggregates following a given particle size distribution curve is used for the simulation of concrete. The comparison of the experimentally and computationally determined strain developments of the concrete and mortar shows very good agreement.

摘要

采用实验和计算技术对承受压缩疲劳荷载的高强度混凝土和砂浆进行了对比研究。研究重点是粗骨料对高强度混凝土的影响。因此,使用宏观损伤指标应变、刚度和声发射次数对疲劳行为进行了实验分析。结果清楚地表明了混凝土和砂浆在疲劳行为上的差异,特别是在所研究的较低应力水平下。这里的玄武岩粗骨料改善了混凝土的疲劳性能。在较高应力水平下可以看到负面影响的迹象。采用基于梯度增强等效应变的损伤模型结合疲劳模型的有限元方法对疲劳行为进行了计算模拟。损伤模型包括拉伸和压缩的区分。疲劳模型基于累积的梯度增强等效应变遵循材料强度降低的假设。按照给定的粒径分布曲线对球形玄武岩骨料进行随机分布,用于模拟混凝土。混凝土和砂浆的实验测定和计算测定的应变发展比较显示出非常好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eabf/8746028/781a707a5d95/materials-15-00319-g001.jpg

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