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首页> 外文期刊>Bulletin of earthquake engineering >Comparison of dynamic behaviours of retrofitted and unretrofitted cob material walls
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Comparison of dynamic behaviours of retrofitted and unretrofitted cob material walls

机译:改造和未经凝固棒材墙体动态行为的比较

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This paper presents the results of shaking table tests of shear wall panels made of cob materials. A proposed low-cost retrofit design was applied on one of the panels. The retrofitting was carried out with vertical bamboo sticks and horizontal layers of plastic coated steel wire mesh. A similar wall panel without retrofit was used as a control specimen. The wall panels were 1 m in height and length each with a thickness of 150 mm. The height and thickness were selected to simulate one-third model dimensions of the prototype walls employed in cob buildings in Balochistan, Pakistan. The walls were instrumented with accelerometer and string pots to measure acceleration and displacement, respectively. The decay in the dynamic characteristics of the retrofitted wall panel was less than the unretrofitted control wall panel. The displacement and acceleration of the unretrofitted control specimen increased drastically after a peak ground acceleration (PGA) of 1 g (0.33 g in the prototype domain). The acceleration response of the control specimen decreased at a PGA of 2.25 g (0.75 g in the prototype domain) and it failed by toe crushing at a PGA of 4.55 g (1.52 g in the prototype domain). No significant damage or change in the behaviour of the retrofitted wall panel was observed up to a PGA of 5.19 g (1.73 g in the prototype domain). The applied in-plane moment on the unretrofitted wall panel reached to a maximum value at a PGA of 1.23 g (0.41 g in the prototype domain) whereas the retrofitted wall was subjected to similar maximum moment at a PGA of 3.43 g (1.14 g in the prototype domain). The results clearly indicate that the proposed retrofit design is effective in improving the in-plane response of the cob shear wall and can be used for both the existing and new cob structures.
机译:本文介绍了由COB材料制成的剪力墙板振动台测试的结果。建议的低成本改装设计应用于其中一个面板。用垂直竹棍和塑料涂层钢丝网水平层进行改造。使用没有改装的类似壁板用作对照样品。壁板的高度和长度为1米,每个长度为150 mm。选择高度和厚度以模拟在巴基斯坦俾路支山脉玉米棒建筑中使用的原型墙壁的三分之一模型尺寸。墙壁用加速度计和串盆仪器进行仪表,以分别测量加速度和位移。改造墙板的动态特性中的衰减小于未经耦合的控制壁板。在1g(原型结构域中0.33g)的峰接地加速度(PGA)的峰接地加速度(PGA)之后,未诱导的对照样品的位移和加速度增加。对照样品的加速度在2.25g(原型结构域中0.75g)的PGA下降低,并且在4.55g(原型结构域中1.52g)的PGA下粉碎失败。没有显着的损坏或改造的壁板的行为的变化,直到5.19g(原型结构域中1.73g 1.73g)的PGA。未经画面的壁板上的平面瞬间达到1.23g的PGA的最大值(原型域中0.41g),而改造的壁在3.43g的pga下进行了相似的最大矩(1.14 g原型域)。结果清楚地表明,所提出的改造设计是有效改善COB剪力墙的面内响应,并且可用于现有和新的COB结构。

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