An elastoplastic damage ice material model based on modified Tsai-Wu yield criterion: Experiment, theory and numerical application

IF 7.4 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Construction and Building Materials Pub Date : 2024-06-27 DOI:10.1016/j.conbuildmat.2024.137149
Junxing Li, Jiajia Yang, Qi Liu, Jun Xu, Wenyuan Zhang, Qiyong Yang
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Abstract

Ice, as a novel green and sustainable building material, has attracted more and more attention in building engineering. Appropriate ice material models are crucial for the performance analysis of the increasing ice structures. There is still challenging in modelling ice responses due to the complexity of ice. This study aims to present a nonlinear elastoplastic damage model for ice material. First, a triaxial compression test of artificial ice is conducted. Based on the test results, the modified Tsai-Wu failure criterion with better performance in the tensile zone and physical meaning for hydraulic strength is established. Then, combining plasticity theory with damage mechanics, an elastoplastic damage constitutive law considering the difference between tensile and compressive properties is proposed. The piecewise damage model and the Weibull exponential damage model are employed for compression and tension damage, respectively. Moreover, the numerical iterative algorithm is developed and a user-defined material subroutine (UMAT) is embedded in the finite element software ABAQUS to simulate the mechanical properties of ice. Furthermore, the constitutive model is verified by comparing the FEM results with the results of uniaxial compression, triaxial compression, and three-point bending tests. The results show that the constitutive model can well describe the stress-strain nonlinear behavior and capture the basic failure mode of ice materials. Finally, considering temperature affecting on the failure surface, a temperature dependent ice material model is developed. The current study would help in the design, operation and maintenance of ice structures.
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基于修正的蔡武屈服准则的弹塑性损伤冰材料模型:实验、理论和数值应用
冰作为一种新型的绿色可持续建筑材料,在建筑工程领域受到越来越多的关注。适当的冰材料模型对于日益增多的冰结构的性能分析至关重要。由于冰的复杂性,冰响应建模仍面临挑战。本研究旨在提出冰材料的非线性弹塑性损伤模型。首先,对人造冰进行了三轴压缩试验。根据试验结果,建立了在拉伸区性能更好、对水力强度有物理意义的修正蔡武破坏准则。然后,结合塑性理论和损伤力学,提出了一种考虑拉伸和压缩性能差异的弹塑性损伤构成法则。压缩和拉伸损伤分别采用了片断损伤模型和 Weibull 指数损伤模型。此外,还开发了数值迭代算法,并在有限元软件 ABAQUS 中嵌入了用户自定义材料子程序 (UMAT),以模拟冰的力学特性。此外,通过将有限元结果与单轴压缩、三轴压缩和三点弯曲试验结果进行比较,验证了构成模型。结果表明,该构成模型能很好地描述应力-应变非线性行为,并捕捉到冰材料的基本破坏模式。最后,考虑到温度对破坏面的影响,建立了温度相关冰材料模型。目前的研究将有助于冰结构的设计、运行和维护。
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来源期刊
Construction and Building Materials
Construction and Building Materials 工程技术-材料科学:综合
CiteScore
13.80
自引率
21.60%
发文量
3632
审稿时长
82 days
期刊介绍: Construction and Building Materials offers an international platform for sharing innovative and original research and development in the realm of construction and building materials, along with their practical applications in new projects and repair practices. The journal publishes a diverse array of pioneering research and application papers, detailing laboratory investigations and, to a limited extent, numerical analyses or reports on full-scale projects. Multi-part papers are discouraged. Additionally, Construction and Building Materials features comprehensive case studies and insightful review articles that contribute to new insights in the field. Our focus is on papers related to construction materials, excluding those on structural engineering, geotechnics, and unbound highway layers. Covered materials and technologies encompass cement, concrete reinforcement, bricks and mortars, additives, corrosion technology, ceramics, timber, steel, polymers, glass fibers, recycled materials, bamboo, rammed earth, non-conventional building materials, bituminous materials, and applications in railway materials.
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