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Experimental and Numerical Assessment of Woodframe Sheathing Layer Combinations for Use in Strength-Based and Performance-Based Design

机译:木结构护套层组合在基于强度和性能的设计中的实验和数值评估

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摘要

Woodframe buildings are unique in that the nonstructural finishes such as gypsum wall board and stucco provide significant stiffness and strength relative to the lateral force resisting system, e.g.,wood shear walls. Wall finishes, or components within a woodframe wall subassembly, can consist of multiple layered modern and/or archaic elements such as wood planks, drywall, plaster on lathe, stucco, or plywood. There exist significant differences in ductility among these materials, raising questions about how best to superimpose single-degree-of-freedom hysteretic models or backbone curves during nonlinear time history analysis or when combining backbone curves for design and retrofit. This paper presents the method and results of an experimental study of 18 walls installed with one, two, or three of the previously described finishes. Testing was performed to determine the best approach to add the sheathing layers numerically when combining the backbone curves for analysis and design. Nonlinear dynamic analyses were conducted to quantify the difference between the behavior of the combined sheathing test and the superimposed single layer sheathings. (C) 2014 American Society of Civil Engineers.
机译:木结构建筑的独特之处在于,非结构饰面(例如石膏墙板和灰泥)相对于横向抗力系统(例如木剪力墙)具有显着的刚度和强度。墙面装饰或木结构墙组件中的组件可以由多层现代和/或古式元素组成,例如木板,干式墙,车床上的灰泥,灰泥或胶合板。这些材料在延展性方面存在显着差异,这引发了有关如何在非线性时程分析过程中或将主干曲线进行设计和翻新时如何最佳地叠加单自由度滞后模型或主干曲线的问题。本文介绍了用18种墙壁安装了一种,两种或三种上述表面处理剂的实验研究方法和结果。进行测试以确定结合主干曲线进行分析和设计时以数字方式添加护套层的最佳方法。进行了非线性动力学分析,以量化组合护套试验和叠加的单层护套行为之间的差异。 (C)2014年美国土木工程师学会。

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