约束高强混凝土柱的三维有限元建模

P. Bhargava, R. Bhowmick, U. Sharma, S. Kaushik
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引用次数: 3

摘要

高强混凝土绑扎柱在工程实践中越来越普遍。研究人员正在努力获得混凝土强度大于60 MPa的锚固柱的适当峰后性能。文献中已经报道了许多经验约束模型,用于预测同心加载下的应力-应变行为。然而,对于可以合理预测HSC系扎柱非线性响应的数值模拟问题,没有任何重要的内容。在目前的研究中,混凝土材料的非线性行为被William-Warnke五参数模型理想化,这是迄今为止最广泛接受和最复杂的准则。在速率无关关联弹塑性的框架下,实现了一种全后向欧拉积分法进行应力更新。基于断裂能概念和非局部材料软化规律,采用固定裂纹涂抹法对混凝土材料进行拉伸建模。计算模型还涉及到覆盖层剥落的规定。还提出了几个例子来验证在这项工作中提出的数值方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-Dimensional Finite Element Modeling of Confined High-Strength Concrete Columns
The use of high-strength concrete (HSC) tied columns is becoming increasingly popular in engineering practice. Researchers are working to obtain the proper post-peak behavior of tied columns with concrete strength greater than 60 MPa. Many empirical confinement models have been reported in the literature for the prediction of stress-strain behavior under concentric loading. However, nothing significant has been said about the numerical modeling of the problems wherein the nonlinear response of HSC tied columns may be reasonably predicted. In the present study, the nonlinear behavior of concrete material has been idealized by William-Warnke five-parameter model, which, to date, is the most widely accepted and sophisticated criterion. Within the framework of rate independent associative elasto-plasticity, a full backward Euler integration algorithm for stress updating has been implemented in the present work. A fixed crack smeared approach based upon fracture energy concept and non-local material softening law has been employed for the tensile modeling of concrete material. The computational model also involves the provision for cover spalling. A couple of examples have also been presented for validation of the numerical methodology proposed in this work.
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