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Experimental study and finite element modelling of Japanese 'Nuki' joints: Part two: Racking resistance subjected to different wedge configurations

机译:日本“ Nuki”接头的实验研究和有限元建模:第二部分:不同楔形结构的抗机架强度

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摘要

The "Nuki" joint is a common timber connection in Japan, not only for historic buildings, but also for modern domestic houses. Its racking performance is dependent upon a number of factors, such as dimensions of the column and the beam, material properties of the joint members, and wedge configurations, etc. Among them, the wedge configuration, which leads to various tightnesses in the joints, may be the most influential factor on the structural behaviour during the service life. Various tightnesses introduced by wedges with different over-sizes introduce different initial stress states and stiffnesses to the joint, which have significant effects on the racking resistance of the joint. In this paper, 3D non-linear finite element models were developed to simulate racking resistance of joints tightened by different over-sized wedges. The models incorporate contact algorithms capable of modelling small slide and finite slide in different contact areas, especially large local indentations on the beam. Orthotropic elasticity was used to simulate the beam and the column in tension, whilst elasto-plasticity was used to simulate interactions in the contact zones where high contact stresses were expected. Contact stresses on both the beam and the column, also strains on the column, were studied. Finite element simulations of racking resistance of the joints with various initial conditions were compared with the corresponding experimental results. Reasonable correlation was obtained. Research on the initial stress states of "Nuki" joints was presented in Part 1 of this paper.
机译:“ Nuki”接头是日本常见的木材连接件,不仅用于历史建筑,还用于现代民居。它的货架性能取决于许多因素,例如柱和梁的尺寸,接头构件的材料特性以及楔形构造等。其中,楔形构造会导致接头的各种密封性,可能是使用寿命期间影响结构行为的最重要因素。具有不同尺寸的楔形物所带来的各种密封性会给接头带来不同的初始应力状态和刚度,这对接头的抗弯折性有重大影响。在本文中,开发了3D非线性有限元模型来模拟由不同的超大楔形物张紧的接头的抗弯折性。这些模型合并了接触算法,能够对不同接触区域中的小滑动片和有限滑动片进行建模,尤其是梁上的较大局部凹痕。正交各向异性弹性用于模拟梁和柱的拉力,而弹塑性用于模拟在预计会有高接触应力的接触区域中的相互作用。研究了梁和柱上的接触应力以及柱上的应变。将有限元模拟的各种初始条件下的接头的抗弯折性与相应的实验结果进行了比较。获得了合理的相关性。本文的第1部分介绍了“ Nuki”接头的初始应力状态。

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