东北大学学报(自然科学版) ›› 2024, Vol. 45 ›› Issue (7): 1037-1046.DOI: 10.12068/j.issn.1005-3026.2024.07.016

• 资源与土木工程 • 上一篇    下一篇

混凝土三点弯曲梁随机骨料模型的开裂模拟

王青原1,2,3, 许颖1,2,3, 钱胜1,2,3   

  1. 1.哈尔滨工业大学(深圳) 深圳市城市与土木工程防灾减灾重点实验室,广东 深圳 518055
    2.哈尔滨工业大学(深圳) 广东省土木工程智能韧性结构重点实验室,广东 深圳 518055
    3.哈尔滨工业大学(深圳) 深圳市土木工程智能结构系统重点实验室,广东 深圳 518055
  • 收稿日期:2022-10-11 出版日期:2024-07-15 发布日期:2024-10-29
  • 作者简介:王青原(1991-),女,河南洛阳人,哈尔滨工业大学(深圳)博士研究生.
  • 基金资助:
    国家自然科学基金资助项目(52078173);广东省自然科学基金资助项目(2024A1515011980);广东省土木工程智能韧性结构重点实验室资助项目(2023B1212010004);深圳市高等院校稳定支持项目(GXWD20231129175636001)

Simulation on Cracking of Random Aggregate Model of Concrete Three-Point Bending Beam

Qing-yuan WANG1,2,3, Ying XU1,2,3, Sheng QIAN1,2,3   

  1. 1.Shenzhen Key Laboratory of Urban Civil Engineering Disaster Prevention & Reduction,Harbin Institute of Technology (Shenzhen),Shenzhen 518055,China
    2.Guangdong Provincial Key Laboratory of Intelligent and Resilient Structures for Civil Engineering,Harbin Institute of Technology (Shenzhen),Shenzhen 518055,China
    3.Shenzhen Key Laboratory of Intelligent Structure System in Civil Engineering,Harbin Institute of Technology (Shenzhen),Shenzhen 518055,China. Corresponding author: XU Ying,E-mail: cexyx@hotmail. com
  • Received:2022-10-11 Online:2024-07-15 Published:2024-10-29

摘要:

在试验表征及工程实践中,仿真可以准确反映裂缝的发展规律.采用内聚力模型来研究混凝土梁三点弯曲试验的宏观力学性能和细观开裂损伤破坏行为.在三点弯曲试验中的受力破坏的全过程研究中,对I型断裂能、II型断裂能、抗剪强度、抗拉强度及弹性模量(刚度)这5个控制单元开裂的关键参数进行了反演研究.通过宏观力学性能和细观开裂的试验结果,对一组试件的试验结果与参数化模型结果进行逆推分析,得到了控制因素在模拟中适用的参数范围.然后结合不同配合比试件的骨料定量化信息,对3个骨料面积不同的模型,应用已得到的参数范围中值来模拟获得裂缝扩展的定量结果,并对照模拟与试验的力学性能和裂缝量化结果验证参数范围的准确性.

关键词: 内聚力模型, 断裂参数, 三点弯曲试验, 裂缝扩展, 细观尺度

Abstract:

Accurate description of concrete crack propagation is of great significance to practical engineering. This paper adopts the cohesive zone model (CZM) to investigate both the macro?mechanical properties and the micro?cracking damage behavior of concrete beams in a three-point bending test. Throughout the study of damage under loading in the three-point bending test, parametric examinations are conducted on five key factors controlling the cracking of cohesive elements regarding the case of circulate aggregate, namely type I fracture energy, type II fracture energy, shear strength, tensile strength and elastic modulus (stiffness). Through the test results of macro-mechanical properties and micro-cracking, the test results of a group of specimens and the results of parametric models are reversely analyzed, and the applicable parameter range of control factors in three-point bending simulation is obtained. Three computation models with different aggregate areas are established by taking account of the quantitative aggregate data from specimens with different mix proportions. The parameter range is then applied to derive quantitative results related to crack propagation. Eventually, the accuracy of the parameter range is validated against both the mechanical properties and quantitative crack data obtained from simulations and experiment.

Key words: cohesive zone model, fracture parameter, three-point bending test, crack expanding, meso-scale

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