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FE Modeling and Seismic Performance Evaluation of Hybrid SMA-Steel RC Beam-Column Joints

机译:SMA-RC RC梁柱混合节点有限元建模与抗震性能评估

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Severe permanent deformations of buildings during earthquakes have been found as one of the major causes of the instability and failure of structures. The application of superelastic Shape Memory Alloy rebars at the plastic hinge region of reinforced concrete beam-column joints (SESMA-BCJs) can eliminate the seismic residual deformations. Such self-centering structures can maintain their reusability even after severe earthquakes. This research proposes a simple - yet practical - technique for more accurate modeling of SESMA-BCJs using VecTor2 software. Both material and geometric nonlinearity were considered. Efficiency and versatility of the modeling approach were verified against a number of test results at both material and structural levels. According to the results, the adopted modeling approach can be reliably used for the prediction of the cyclic response of hybrid SESMA-BCJs under changing various design parameters which are beyond the scope of the experimental tests. Furthermore, using the calibrated model, a comprehensive seismic parametric study was conducted to investigate the influence of various design parameters on the seismic performance of SESMA-BCJs. Finally, a new Fe-based SESMA-BCJ with a lower amount of SESMA and higher seismic performance than NiTi-based BCJs was introduced and numerically investigated.
机译:地震期间建筑物的严重永久变形已被发现是造成结构失稳和破坏的主要原因之一。在钢筋混凝土梁柱节点(SESMA-BCJs)的塑料铰链区域使用超弹性形状记忆合金钢筋可以消除地震残余变形。这样的自定心结构即使在强烈地震后也可以保持其可重复使用性。这项研究提出了一种简单而实用的技术,以便使用VecTor2软件对SESMA-BCJ进行更准确的建模。同时考虑了材料和几何非线性。针对材料和结构级别的大量测试结果,验证了建模方法的效率和通用性。根据结果​​,所采用的建模方法可以可靠地用于在改变各种设计参数(超出实验测试范围)的情况下预测混合SESMA-BCJ的循环响应。此外,使用校准的模型,进行了全面的地震参数研究,以研究各种设计参数对SESMA-BCJ的抗震性能的影响。最后,介绍了一种新型的铁基SESMA-BCJ,其比NiTi基BCJ的SESMA含量低,抗震性能更高。

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