模拟混凝土水泥成分对其强度和破坏行为的影响

Q4 Engineering Rakenteiden Mekaniikka Pub Date : 2022-12-23 DOI:10.23998/rm.120704
T. Saksala, K. Kolari, R. Kouhia
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引用次数: 0

摘要

典型的混凝土是波特兰水泥、水和集料的混合物。骨料对混凝土强度和断裂行为有重要影响,但本研究的重点是硬化水泥浆体,硬化水泥浆体可进一步分为未反应核心、内产物和外产物。在高强混凝土中,水灰比低,因此水泥颗粒之间的距离小。此外,未反应(高强度)芯的数量较高,孔隙率低。水灰比越大,水灰颗粒之间的距离越大,毛细孔隙造成的孔隙度越大。在本研究中,我们建立了一个基于嵌入式不连续有限元的数值模型来预测水灰比对混凝土压缩断裂行为的影响。具有代表性的二维平面应变模拟表明,本方法捕捉了混凝土断裂的主要特征,特别是定性地预测了水灰比对混凝土抗压强度的已知影响。
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Modelling the effect of concrete cement composition on its strength and failure behavior
Typical concrete is a mixture of Portland cement, water, and aggregates. While aggregates have a substantial effect on the concrete strength and fracture behavior, the focus of the present study is on the hardened cement paste which can be further divided into the unreacted core, inner and outer products. In high strength concrete, water-to-cement ratio is low, and thus the distance between cement particles is small. Also, the amount of unreacted (high strength) core is higher, and the porosity is low. When water-to-cement ratio is higher, both the distance between cement particles and the porosity due to capillary pores increases. In the present study, we develop a numerical model based on the embedded discontinuity finite elements to predict the effect of the water-to-cement ratio on the compressive fracture behavior of concrete. Representative 2D plane strain simulations demonstrate that the present method captures the major features of concrete fracture and, particularly, qualitatively predicts the known effects of the water-to-cement ratio on concrete compressive strength.
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来源期刊
Rakenteiden Mekaniikka
Rakenteiden Mekaniikka Engineering-Mechanical Engineering
CiteScore
0.50
自引率
0.00%
发文量
2
审稿时长
16 weeks
期刊最新文献
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