意识到基于可靠性分析的嵌板设计上的爬行和损坏效应
1Department of Civil Engineering, Kyungnam University, Changwon 51767, Republic of Korea.
Materials (Basel, Switzerland)
|June 19, 2024
概括
这项研究模拟了复合造板,考虑了材料的爬行和随时间的负载再分配. 它为准易碎材料引入了一个新的可靠性指数,允许校准安全因素以改善结构设计.
科学领域:
- 结构工程 结构工程
- 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:
- 造结构是复杂的复合材料.
- 随着时间的推移,爬行和负载再分配显著影响墙面板的性能.
- 现有的可靠性模型并不能完全捕捉准脆石构件的行为.
研究的目的:
- 开发复合面板的时间依赖性可靠性分析.
- 为准易碎材料提出一个新的可靠性指数.
- 为了校准部分安全因素的体设计,考虑到爬行和损坏.
主要方法:
- 建模体作为砂和的复合单元细胞.
- 对负载重新分配进行逐步的实时分析.
- 实现与组件和系统极限状态的时间依赖的系统可靠性分析.
- 使用Hasofer和Lind方法对安全因子进行校准.
主要成果:
- 量化了由于复合石的爬行造成的负载再分配.
- 提出了一个新的准易碎材料可靠性指数,这取决于本地和全球负载.
- 部分安全因素被校准为体设计,结合爬行和损坏效应.
结论:
- 拟议的可靠性指数准确地反映了石中的准脆材料行为.
- 校准的部分安全因素增强了墙体面板的设计,防止爬行和损坏.
- 这项研究为石结构的时间依赖性可靠性评估提供了更强大的框架.
相关概念视频
Effects of Creep
135
Creep in concrete, the gradual deformation under prolonged stress, significantly impacts the integrity of structures. For reinforced concrete beams, it can be a vital design consideration, as it increases deflection, sometimes necessitating additional design measures. In columns, especially slender ones under eccentric loads, creep can cause buckling, compromising their stability. However, creep can be beneficial in indeterminate structures by mitigating stresses that arise from shrinkage,...
135
Mortar Joint Deterioration in Masonry
112
Mortar joint deterioration is a significant concern in masonry structures, with water accumulation in the joints leading to damage from freeze-thaw cycles. The repeated expansion of water during freezing and its melting during thawing develop and propagate cracks in the masonry joints. Eventually, this leads to the spalling of mortar from the joints, loosening masonry units and weakening the structure. The deteriorated mortar joints are also vulnerable to moisture intrusion into the walls.
The...
The...
112
Creep in Concrete
215
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...
215
Factors Affecting Creep
133
In normal-weight aggregate concrete, the hardened cement paste is the primary contributor to creep, whereas the aggregates, being stiffer than the cement paste, are more resilient to stress-induced deformation. The stiffness of the aggregates is defined by their modulus of elasticity, and the more voluminous they are in the concrete, the less it will creep.
Further, the water/cement ratio is critical, as a lower ratio increases concrete strength, thus reducing creep. The strength of the...
Further, the water/cement ratio is critical, as a lower ratio increases concrete strength, thus reducing creep. The strength of the...
133
Expansion and Contraction in Masonry Walls
948
Masonry walls are subject to slight expansion and contraction due to variations in temperature and moisture. Thermal movement in masonry is relatively straightforward to measure and plan for. On the other hand, moisture movement poses more of a challenge. New clay masonry units typically absorb water and expand over time under normal environmental conditions. Conversely, new concrete masonry units tend to shrink as they lose the excess moisture acquired during their production process.
To...
To...
948
Microcracking in Concrete
116
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...
116


