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Experimental damage evaluation of prototype infill wall based on forced vibration test

机译:基于强制振动试验的原型填充墙的实验损伤评价

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摘要

This paper aims to investigate vibration frequency decrease (vibration period elongation) of reinforced concrete (RC) structure with unreinforced infill wall and reinforced infill wall exposed to progressively increased artificial earthquake load on shaking table. For this purpose, two shaking table experiments were selected as a case study. Shaking table experiments were carried on 1:1 scaled prototype one bay one storey RC structure with infill walls. The purpose of this shaking table experiment sequence is to assess local behavior and progressive collapse mechanism. Frequency decrease and eigen-vector evolution are directly related to in-plane and out-of-plane bearing capacities of infill wall enclosure with reinforced concrete frame. Firstly, frequency decrease-damage relationship was evaluated on the base of experiment results. Then, frequency decrease and stiffness degradation were evaluated with applied Peak Ground Acceleration (PGA) by considering strength deterioration. Lastly, eigenvector evolution-local damage and eigenvector evolution-frequency decrease relationship was investigated. Five modes were considered while evaluating damage and frequency decrease of the tested specimens. The relationship between frequency decrease, stiffness degradation and damage level were presented while comparing with Unreinforced Brick Infill (URB) and Reinforced Infill wall with Bed Joint Reinforcement (BJR) on the base of natural vibration frequency.
机译:本文旨在调查钢筋混凝土(RC)结构的振动频率下降(振动周期伸长率),与未粘接的填充壁,加强填充壁暴露在摇动台上逐渐提高人工地震载荷。为此目的,选择了两个摇动台实验作为案例研究。振动表实验载于1:1缩放的原型一架托架一体式RC结构,带有填充墙。这种摇动台实验序列的目的是评估局部行为和渐进崩溃机制。频率降低和尖端矢量进化与具有钢筋混凝土框架的填充壁外壳的平面内和外平面外部承载能力直接相关。首先,在实验结果的基础上评估频率减小损坏关系。然后,通过考虑强度劣化,通过施加的峰接地加速(PGA)评估频率降低和刚度降解。最后,研究了特征向量演化 - 局部损坏和特征传感器进化频率降低关系。在评估测试标本的损伤和频率下降的同时考虑了五种模式。介绍了频率降低,刚度降低和损伤水平之间的关系,同时与单型振动频率的基部上的未成用砖填充(URB)和加强填充壁(BJR)进行了加固填充壁。

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