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首页> 外文期刊>Engineering Structures >Numerical integration of a class of 3d plastic-damage concrete models and condensation of 3d stress-strain relations for use in beam finite elements
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Numerical integration of a class of 3d plastic-damage concrete models and condensation of 3d stress-strain relations for use in beam finite elements

机译:用于梁有限元的一类3d塑性损伤混凝土模型的数值积分和3d应力-应变关系的压缩

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摘要

This paper presents a method for the integration of a class of plastic-damage material models. The integration of the evolution equations results in a nonlinear problem, which is linearized and solved with the Newton-Raphson method using a sub-stepping strategy. The consistent tangent matrix can be formulated either in terms of the stress components in a general reference system or in terms of the principal stress and strain components with the former then transformed to the general reference system. In order to account for plane stress conditions, the stress-strain relations of the 3d material model are then condensed out. Plane stress conditions are imposed by the linearization of the stresses that need to be set equal to zero; thus the strain fields are updated in the corresponding directions. This solution method is extended to include transverse pressure and the effect of transverse reinforcing steel for a 3d concrete material model. The equilibrium of the stresses in the reinforcing steel and concrete is linearized and the strain fields are updated until the residual satisfies a specified tolerance. The consistent tangent matrix due to the condensation process is derived. The proposed algorithms are tested at the material and element level by comparison of numerical solutions with available experimental data.
机译:本文提出了一种集成一类塑性损伤材料模型的方法。演化方程的积分导致一个非线性问题,该问题被线性化,并使用牛顿-拉夫森方法使用子步进策略进行求解。可以根据通用参考系统中的应力分量或根据主要应力和应变分量来制定一致的切线矩阵,然后将前者转换为通用参考系统。为了解决平面应力条件,然后将3d材料模型的应力-应变关系压缩出来。平面应力条件是通过将应力设置为零来线性化的;因此应变场在相应的方向上更新。此解决方案方法扩展到包括横向压力和横向钢筋对3d混凝土材料模型的影响。钢筋和混凝土中的应力平衡被线性化,并且应变场被更新,直到残余满足指定的公差。导出由于缩合过程而产生的一致切线矩阵。通过将数值解与可用的实验数据进行比较,在材料和元素级别对提出的算法进行了测试。

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