一个基于微观损伤机制的混凝土静态损伤构成模型
1Department of Building Engineering, Hunan Institute of Engineering, Xiangtan 411104, China.
Materials (Basel, Switzerland)
|January 11, 2024
概括
这项研究引入了一种新的微观混凝土构成模型,集成摩擦,可塑性和断裂力学. 该模型准确地捕捉了混凝土.
科学领域:
- 土木工程 土木工程是指土木工程.
- 材料科学 材料科学 材料科学
- 计算力学 计算力学 计算力学
背景情况:
- 在静态负荷下,混凝土表现出复杂的非线性和随机行为.
- 现有的模型往往缺乏对内部损伤机制的明确物理解释.
研究的目的:
- 开发一个基于物理的微观构成模型,用于混凝土的静态损伤.
- 整合随机场理论来解释材料异质性和随机性.
- 为了实现多尺度建模和有限元实现.
主要方法:
- 建立了一个微观的构成模型,包括摩擦,塑料和弹元素.
- 随机场理论被整合起来,以将具体的非线性与随机性联系起来.
- 宏观测试结果用于确定多尺度建模的随机场参数.
- 为有限元程序应用程序开发了一个子程序.
主要成果:
- 该模型成功模拟了混凝土的静态损伤行为.
- 随机场理论的整合为混凝土的非线性和随机特性提供了物理洞察力.
- 基于该模型的数值模拟显示了与实验数据的良好一致.
结论:
- 开发的微观构成模型提供了对具体静态损伤的现实和有意义的物理表示.
- 多尺度方法,结合随机场理论,增强了对具体行为的预测能力.
- 该模型在有限元分析中的成功实施验证了其实际适用性.
相关概念视频
Microcracking in Concrete
122
Microcracking in concrete refers to the tiny cracks that can form within the material even before any external load is applied. These microcracks typically occur at the interface between the coarse aggregate and the hydrated cement paste, often as a result of differential volume changes prompted by variations in stress-strain behavior, as well as thermal and moisture movement. Initially, these microcracks remain stable and do not grow substantially until the concrete is stressed to about 30...
122
Tensile Strength Considerations of Concrete
132
Considering the tensile strength of concrete involves recognizing that the theoretical strength of cement paste can be up to a thousand times higher than what is observed in practical applications. This significant discrepancy is largely attributed to the presence of microscopic cracks within the concrete. These cracks tend to amplify stress at their tips when a load is applied, a phenomenon explained by Griffith's theory of brittle fracture.
The dimensions and shape of a concrete specimen...
The dimensions and shape of a concrete specimen...
132
Elasticity in Concrete
95
Upon subjecting concrete to moderate or high uniaxial compressive or tensile stresses, the strain response is non-linear relative to the stress applied. As the stress is removed, the resulting stress-strain curve deviates from the original path traced during loading, creating a hysteresis loop, indicative of the concrete's non-linear and non-elastic properties. Typically, a material's modulus of elasticity, which is a measure of the material's stiffness, is inferred from the linear...
95
Dynamic Modulus of Elasticity of Concrete
348
The dynamic modulus of elasticity assesses how a concrete structure deforms under impact or dynamic loads. It is typically higher than the static modulus of elasticity, measured under slow, steady loading conditions.
The sonic test is a common method to determine the dynamic modulus. In this test, a concrete beam, sized either 6 x 6 x 30 inches or 4 x 4 x 20 inches, is clamped at its center. Vibrations are initiated at one end of the beam by an electromagnetic exciter unit powered by...
The sonic test is a common method to determine the dynamic modulus. In this test, a concrete beam, sized either 6 x 6 x 30 inches or 4 x 4 x 20 inches, is clamped at its center. Vibrations are initiated at one end of the beam by an electromagnetic exciter unit powered by...
348
Creep in Concrete
239
Creep refers to the time-dependent increase in strain under a sustained load, excluding other time-dependent deformations associated with shrinkage, swelling, and thermal expansion in concrete. The primary mechanism behind creep involves the loss of physically adsorbed water from the calcium silicate hydrate within the hydrated cement paste. This process is further exacerbated by concrete's non-linear stress-strain relationship, microcrack development in the interfacial transition zone, and...
239
Fatigue Strength of Concrete
192
Fatigue, in the context of materials science and engineering, refers to the weakening or failure of a material caused by repeatedly applied loads, even if these loads are below the strength limit of the material. Fatigue strength in concrete is a critical property that influences its durability and longevity. Concrete can fail in two ways due to fatigue. Static fatigue or creep rupture occurs under a constant load or one that increases slowly. The other failure mode is due to cyclical or...
192


