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首页> 外文期刊>Journal of structural engineering >Lateral Performance Of Nonsymmetric Diagonal-bracedwood Shear Walls
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Lateral Performance Of Nonsymmetric Diagonal-bracedwood Shear Walls

机译:非对称对角斜交木剪力墙的侧向性能

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摘要

The lateral performance of structurally nonsymmetric diagonal-braced wood shear walls used in post-and-beam timber buildings was investigated with laboratory testing and computer modeling. Monotonic and reversed cyclic tests were performed to study the capacities of a total of eight full-scale shear walls, with and without gypsum wallboard sheathing. Significant increases of strength, stiffness, and energy dissipation were observed in the shear walls with the additional gypsum wallboard sheathing. An efficient mechanics-based wood shear wall model was then introduced to represent the hysteretic load-drift behavior of these diagonal-braced walls. The predicted seismic response of the model agreed very well with the shake table test results of a simple one-story post-and-beam structure, making it possible to develop, in future research, structural models for more-complicated post-and-beam buildings with good computational efficiency and accuracy.
机译:通过实验室测试和计算机建模,研究了用于梁木建筑的结构非对称对角支撑木剪力墙的侧向性能。进行了单调和反向循环试验,以研究总共8个带或不带石膏墙板护套的全尺寸剪力墙的能力。在带有附加石膏墙板护套的剪力墙中,观察到强度,刚度和能量耗散的显着增加。然后,引入了一种基于力学的有效木剪力墙模型,以表示这些斜撑墙的滞回载荷漂移行为。该模型的预测地震响应与简单的一层柱梁结构的振动台测试结果非常吻合,从而有可能在未来的研究中开发更复杂的柱梁结构模型具有良好的计算效率和准确性的建筑物。

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