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Nonlinear Creep Damage Constitutive Model of Concrete Based on Fractional Calculus Theory

机译:基于分数阶微积分理论的混凝土非线性蠕变损伤本构模型

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摘要

Concrete creep has become one of the major problems that threatens concrete structural development and construction. However, a reasonable and accurate calculation model for numerical analysis is the key to control and solve the creep deformation of concrete. To better describe the concrete nonlinear creep damage evolution rule, the visco-elasticity Plasticity Rheological Theory, Riemann Liouville Theory and Combined Model Theory are quoted, and the Able dashpot is used to reconstruct fractional-order soft-body composite elements to propose the expression of the stress-strain relationship of the elastomer, visco-elasticity plasticity body, and Viscoplasticity body, considering the evolution of the concrete compression damage process. A nonlinear creep damage constitutive model of concrete, based on fractional calculus theory, is conducted, and the parameters of the specific calculation method of the model are given. The influence of stress level σ, fractional order n and material parameter α on the concrete creep process is determined by a sensitivity analysis of the model parameters. The creep process and deformation amount of concrete in practical engineering can be effectively controlled by the results of the proposed sensitivity analysis. The research results can be used to provide guidance and reference for the safe construction of concrete engineering in actual practice.
机译:混凝土蠕变已成为威胁混凝土结构开发和施工的主要问题之一。但是,合理而准确的数值分析计算模型是控制和解决混凝土蠕变变形的关键。为了更好地描述混凝土非线性蠕变损伤演化规律,引用了粘弹塑性流变理论,Riemann Liouville理论和组合模型理论,并使用Able阻尼器重建分数阶软体复合元件以提出表达式。考虑到混凝土压缩损伤过程的演变,弹性体,粘弹塑性体和粘塑性体的应力-应变关系。基于分数阶微积分理论,建立了混凝土的非线性蠕变损伤本构模型,给出了该模型具体计算方法的参数。应力水平σ,分数阶n和材料参数α对混凝土蠕变过程的影响通过模型参数的敏感性分析确定。提出的敏感性分析结果可以有效地控制实际工程中混凝土的蠕变过程和变形量。研究结果可为实际工程中混凝土工程的安全施工提供指导和参考。

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