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Hysteresis Analysis of Prestressed Brick Frame with Strawbale Masonry Infill Subjected to Seismic Loads

机译:地震作用下带草砌体填料的预应力砖框架的滞后分析

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This study looks at designing and evaluating strength of typha strawbale wall cross section rather than the assumption of edge column acting as axially loaded members that should resist all vertical members from the loads acting on the wall. Based on the aforementioned claim, the objective of this work is to provide the average design thickness for the cement-plastered typha strawbale that stiffens the prestressed brick frame. Data on strength and deformation of the structure are the input for the analytical models. Pseudo-dynamic earthquake response tests, of a one quarter (?) scale model low rise storeys prestressed brick frames stiffened with cement plastered strawbale masonry was conducted. The structure is idealized as plane frames. The analysis utilised the hysteresis models for members’ models as timeindependent. The force-displacement relationship of the members’ models has been evaluated by the approximate method on the basis of the material properties and structural geometry. A model was investigated with straw bale infill panel to determine the hysteretic parameters, stiffness deterioration and strength degradation due to seismic forces.
机译:这项研究着眼于伤寒草墙横截面的设计和评估强度,而不是假设边缘柱充当轴向受力构件,而这些构件应抵抗所有垂直构件免受作用在墙壁上的荷载。基于上述权利要求,这项工作的目的是为水泥灰泥稻草草提供平均设计厚度,以使预应力砖框架变硬。结构强度和变形数据是分析模型的输入。进行了四分之一(?)比例模型的低层预应力砖框架的伪动力地震响应测试,该框架用水泥灰泥砌筑的砖进行了加固。该结构被理想化为平面框架。该分析将滞后模型用于成员模型,因为它们与时间无关。成员模型的力-位移关系已根据材料特性和结构几何形状通过近似方法进行了评估。用稻草填充面板研究了一个模型,以确定由于地震力引起的滞后参数,刚度降低和强度降低。

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