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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Hysteretic behavior of traditional Chinese timber frames under cyclic lateral loads
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Hysteretic behavior of traditional Chinese timber frames under cyclic lateral loads

机译:循环横向载荷下传统木材框架的滞回行为

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摘要

The beam-column-bracket frame is a relatively complete system of most Pre-1386 (Ming Dynasty) Chinese timber structures, which transfers shear, compression, and bending from bracket to beam-column frame and then to the building base. Its structure is rather complex and there has been little information describing the force resistance behavior of these kinds of wood assemblies. In this paper, a single-layer half-scale 3D specimen with bucket arches and beam-column frame was tested under cyclic lateral loads achieved through a uniquely developed loading mechanism. The frame behavior was investigated under three different levels of gravity loads. The study results show that the beam-column joint serves as a weak link in the frame and the structure can return to the initial (or close to) equilibrium position during the unloading process as the columns exhibit the rocking mechanism. The wooden structure manifests good ductility despite its low energy dissipation capability. The variations of bearing capacity, lateral stiffness, and the accumulated dissipation energy of the structure under different vertical loads are discussed.
机译:光束柱支架帧是大多数预1386(明代)中国木结构的相对完整的系统,其传送剪切,压缩和从支架到梁柱框架,然后转到建筑物基座。它的结构相当复杂,并且很少描述这些种类的木组件的力阻力行为。在本文中,在通过唯一开发的装载机构实现的循环横向载荷下测试了具有铲斗拱和梁柱框架的单层半尺度3D样品。在三种不同层次的重力载荷下研究了框架行为。研究结果表明,梁柱接头用作框架中的弱链路,并且在柱上呈现摇摆机构时,结构可以在卸载过程中返回到初始(或接近)平衡位置。尽管其耗散能力低,但木结构表现出良好的延展性。讨论了轴承容量,横向刚度和不同垂直载荷下的结构的累积耗散能的变化。

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