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首页> 外文期刊>Latin American Journal of Solids and Structures >Development of an amplified added stiffening and damping system for wood-frame shear walls.
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Development of an amplified added stiffening and damping system for wood-frame shear walls.

机译:木框架剪力墙扩增添加加固和阻尼系统的研制。

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The effectiveness of seismic dampers to improve the lateral performance of timber structures may be heavily diminished if restrictive lateral drift limits as set by building codes, governs the design of the structure. This paper presents an innovative approach to improve the performance of seismic dampers installed in stiff wood-frame shear walls. U-Shape Flexural Plate dampers with a novel internal restraint system, were installed in a 4880x2475 mm wood-frame shear wall with an Eccentric Lever-Arm System which aimed at amplifying the displacements by transferring them from the shear wall to the dampers. Cyclic tests were conducted to four specimens. Initial test results showed that the presented amplifying system suffered concentrated losses of stiffness at some connections joints reducing its real efficiency. The loss of displacement transmission to dampers was retrofitted, and the results showed a great benefit in terms of resilience for the damped shear wall in contrast with unprotected ones. It was found that this approach provides a feasible solution to enhance the lateral performance of wood-frame structures.
机译:如果通过建筑码设置的限制横向漂移限制,因此可以严重减少抗震阻尼器以提高木结构的横向性能的效果可能严重减少。控制结构的设计。本文提出了一种创新的方法,可以提高安装在坚硬的木框架剪力墙中的地震阻尼器的性能。具有新型内部约束系统的U形弯曲印版阻尼器安装在4880x2475mm的木框架剪力墙中,具有偏心杠杆臂系统,该杠杆系统旨在通过将它们从剪切壁传递到阻尼器来放大位移。将循环试验进行到四个标本。初始测试结果表明,呈现的放大系统在一些连接中遭受浓缩的刚度损失,关节降低其实际效率。对阻尼器的损失是改造的,结果表明,在阻尼剪力墙的弹性方面,与未受保护的剪力墙相比,结果表明了很大的好处。发现该方法提供了一种可行的解决方案,以提高木材框架结构的横向性能。

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