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New methodology for calculating damage variables evolution in Plastic Damage Model for RC structures

机译:RC结构塑性损伤模型中损伤变量演化计算的新方法

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The behavior of reinforced concrete (RC) structures under severe demands, as strong ground motions, is highly complex; this is mainly due to joint operation of concrete and steel, with several coupled failure modes. Furthermore, given the increasing awareness and concern for the important seismic worldwide risk, new developments have arisen in earthquake engineering. Nonetheless, simplified numerical models are widely used (given their moderate computational cost), and many developments rely mainly on them. The authors have started a long-term research whose final objective is to provide, by using advanced numerical models, solid basis for these developments. Those models are based on continuum mechanics, and consider Plastic Damage Model to simulate concrete behavior. Within this context, this paper presents a new methodology to calculate damage variables evolution; the proposed approach is based in the Lubliner/Lee/Fenves formulation and provides closed-form expressions of the compressive and tensile damage variables in terms of the corresponding strains. This methodology does not require calibration with experimental results and incorporates a strategy to avoid mesh-sensitivity. A particular algorithm, suitable for implementation in Abaqus, is described. Mesh-insensitivity is validated in a simple tension example. Accuracy and reliability are verified by simulating a cyclic experiment on a plain concrete specimen. Two laboratory experiments consisting in pushing until failure two 2-D RC frames are simulated with the proposed approach to investigate its ability to reproduce actual monotonic behavior of RC structures; the obtained results are also compared with the aforementioned simplified models that are commonly employed in earthquake engineering. (C) 2016 Elsevier Ltd. All rights reserved.
机译:钢筋混凝土(RC)结构在强烈要求下的强烈地面运动行为非常复杂;这主要是由于混凝土和钢的联合运行,以及几种耦合的破坏模式。此外,随着人们对世界范围内重大地震风险的认识和关注不断提高,地震工程学出现了新的发展。尽管如此,简化的数值模型仍被广泛使用(鉴于它们的适度计算成本),许多发展主要依靠它们。作者已经开始了一项长期研究,其最终目标是通过使用高级数值模型提供这些发展的坚实基础。这些模型基于连续力学,并考虑了塑性损伤模型来模拟混凝土行为。在此背景下,本文提出了一种计算损伤变量演化的新方法。所提出的方法基于Lubliner / Lee / Fenves公式,并根据相应的应变提供了压缩和拉伸损伤变量的闭式表达式。该方法不需要根据实验结果进行校准,并且采用了避免网格敏感度的策略。描述了适合在Abaqus中实现的特定算法。网格不敏感度在一个简单的张力示例中得到了验证。通过在普通混凝土试件上模拟循环试验来验证准确性和可靠性。用所提出的方法模拟了两个实验室实验,其中包括将两个二维RC框架推入失效,以研究其再现RC结构实际单调性状的能力。还将获得的结果与地震工程中常用的上述简化模型进行比较。 (C)2016 Elsevier Ltd.保留所有权利。

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