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Application of new material testing integrated (MTI) simulation paradigm for studying concrete confinement

机译:新材料检测集成(MTI)仿真范式研究具体禁闭

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摘要

This paper presents a new experimental-numerical simulation framework for investigating the impacts of unconventional material behaviors on the global response of structural systems. The new framework is specifically designed to address: (1) knowledge gaps related to the lack of analytical tools for predicting the behavior of materials under nontraditional loading environments, and (2) high costs associated with large-scale experimental testing. The new simulation method, named material testing integrated (MTI) simulation, incorporates physical material test data into numerical simulation of structural system or component to provide more accurate structural performance evaluation based on reliable constitutive behavior of materials. To demonstrate the new concept, this paper utilizes MTI simulation to study and compare the seismic response of reinforced concrete (RC) bridge columns rehabilitated with steel and shape memory alloy spiral reinforcement. The experimental-based MTI simulation responses of the columns are compared with that of conventional numerical simulation. The results show that the test data utilized in the MTI simulation are well reflected in the global seismic response of the RC columns.
机译:本文提出了一种新的实验 - 数值模拟框架,用于调查非传统材料行为对结构系统全球响应的影响。新框架专门用于解决:(1)与缺乏分析工具相关的知识间隙,用于预测非传统负载环境下材料的行为,(2)与大规模实验测试相关的高成本。新的仿真方法,名为材料测试集成(MTI)模拟,将物理材料测试数据与结构系统或组件的数值模拟结合到数值模拟中,以提供基于材料的可靠本构体行为的更准确的结构性能评估。为了展示新概念,本文利用MTI模拟来研究和比较用钢和形状记忆合金螺旋加固恢复钢筋混凝土(RC)桥柱的地震响应。基于实验的MTI模拟函数与传统数值模拟的校正响应进行了比较。结果表明,MTI模拟中使用的测试数据在RC列的全局地震响应中良好地反映出来。

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