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硅酸盐通报 ›› 2022, Vol. 41 ›› Issue (4): 1276-1284.

• 水泥混凝土 • 上一篇    下一篇

混凝土单轴受拉断裂行为的近场动力学模拟

张晨明1, 侯东帅1, 张洪智2, 张伟1   

  1. 1.青岛理工大学土木工程学院,青岛 266520;
    2.山东大学齐鲁交通学院,济南 250002
  • 收稿日期:2021-09-17 修回日期:2022-01-25 出版日期:2022-04-15 发布日期:2022-04-27
  • 通讯作者: 侯东帅,博士,教授。E-mail:dshou@outlook.com
  • 作者简介:张晨明(1996—),男,硕士研究生。主要从事混凝土细观尺度的研究。E-mail:chenming_zhang@126.com
  • 基金资助:
    国家自然科学基金面上项目(51978352)

Peridynamic Simulation of Concrete Fracture Behavior under Uniaxial Tension

ZHANG Chenming1, HOU Dongshuai1, ZHANG Hongzhi2, ZHANG Wei1   

  1. 1. School of Civil Engineering, Qingdao University of Technology, Qingdao 266520, China;
    2. School of Qilu Transportation, Shandong University, Jinan 250002, China
  • Received:2021-09-17 Revised:2022-01-25 Online:2022-04-15 Published:2022-04-27

摘要: 混凝土的宏观力学行为取决于材料组成及其性质。本文基于键基近场动力学理论建立了多相非均质性的混凝土细观尺度数值模型,研究了单轴拉伸作用下混凝土的宏观力学性能和断裂过程。通过改变粗骨料含量、砂浆强度、粗骨料强度以及界面过渡区强度对模型合理性进行了验证。结果表明:软化段之前的应力-应变曲线能够被很好重现,能准确描述混凝土在单轴拉伸作用下的力学性能和断裂过程;调整数值模型中各相材料的力学参数能够合理模拟出不同类型的混凝土在单轴拉伸作用下的断裂过程。

关键词: 混凝土, 细观尺度, 近场动力学, 数值模型, 单轴拉伸, 力学性能, 断裂行为

Abstract: The macroscopic mechanical behaviors of concrete depend on the material composition and its properties. In this paper, a mesoscale numerical model of concrete with multiphase heterogeneity based on the band-based peridynamic theory was established to study the macroscopic mechanical properties and fracture processes of concrete under uniaxial tension. The rationality of the model was verified by varying the content of coarse aggregate, the strength of mortar, the strength of coarse aggregate and the strength of interface transition zone (ITZ). The results show that the stress-strain curves before the softening section can be reproduced well, and the mechanical properties and fracture process of concrete under uniaxial tension can be accurately described. In addition, the fracture process of different types of concrete under uniaxial tension can be reasonably simulated by adjusting the mechanical parameters of each phase materials in the numerical model.

Key words: concrete, mesoscopic scale, peridynamic, numerical model, uniaxial tension, mechanical property, fracture behavior

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