单调和循环荷载作用下塑性损伤混凝土全应力应变曲线的新方法

IF 2.9 4区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Trong Nghia-Nguyen, Thanh Cuong-Le, S. Khatir, M. Wahab
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引用次数: 3

摘要

本文提出了新的解析公式,可以很容易地应用于普通和高强混凝土在单调压缩和直接拉伸荷载下。此外,通过引入简单的损伤函数,还建立了单轴循环加载下混凝土的塑性损伤模型。已发表的材料模型大多是基于其试验结果,集中于某一类型的混凝土,很难适用于其他类型的混凝土,如普通混凝土或高强混凝土。本文提出了一种可以应用于不同类型混凝土的新方法,并强调了测试结果之间的差异可能来自峰值应力处应变的变化。在循环荷载作用下,混凝土的损伤现象通过弹性模量函数的非线性退化而简化,从而形成线性的应力-应变关系。该损伤函数可以方便、快速地用于塑性损伤模型的混凝土性能标定,具有重要的工业应用价值。最后,通过与实验数据和解析解的比较,验证了所提损伤模型的准确性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel approach to the complete stress strain curve for plastically damaged concrete under monotonic and cyclic loads
In this paper, new analytical formulations, which can be easily applied to normal and high-strength concretes under monotonic compressive and direct tensile loads, are proposed. Moreover, plastic damage model for concrete under uniaxial cyclic loading is also employed by introducing a simple damage function. The majority of published material models focuses on a certain type of concrete based on their testing results, which can be hardly applied to other types of concrete such as normal or high strength concrete. This paper presents a novel approach that can be applied to different types of concrete and highlights that the differences among testing results may come from the variations of strain at the peak stress. The damage phenomenon of concrete is simplified by a non-linear degradation of elastic modulus function, which in turn creates a linear stress-strain relation under cyclic loading. The damage function can be easily and quickly used to calibrate concrete properties for plastic damage model, which is very useful for industrial applications. Finally, the accuracy and pre-eminence of the proposed damage model are verified through comparison with experimental data and analytical solutions.
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来源期刊
Computers and Concrete
Computers and Concrete 工程技术-材料科学:表征与测试
CiteScore
8.60
自引率
7.30%
发文量
0
审稿时长
13.5 months
期刊介绍: Computers and Concrete is An International Journal that focuses on the computer applications in be considered suitable for publication in the journal. The journal covers the topics related to computational mechanics of concrete and modeling of concrete structures including plasticity fracture mechanics creep thermo-mechanics dynamic effects reliability and safety concepts automated design procedures stochastic mechanics performance under extreme conditions.
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