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Finite Element Model for Axial Stiffness of Metal-Plate-Connected Tension Splice Wood Truss Joint

机译:金属板连接的张力拼接木桁架节点轴向刚度的有限元模型

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A finite element model that predicts stiffness for metal-plate-connected (MPC) tension splice joint of wood trusses is developed. The commercial software ABAQUS was used in developing the model. The model is two-dimensional, and the properties of the wood and metal plate are assumed to be linearly isotropic. Contacts between wood and teeth of the metal plate are modeled with finite sliding formulation. The contact elements model the slip behavior that occurs at the wood-tooth interface. The tangential contact properties are set to a specified coefficient of friction while the normal contact properties are set to a "hard" contact formulation, allowing for a possible separation of the nodes after contact is achieved. Contact elements represent the stiffness of the interface, and stiffness is lost once the contact elements are disengaged due to tooth withdrawal. Model predictions are validated against experimentally measured stiffness values obtained in the literature. The data covers two wood species and three levels of modulus of elasticity (MOE). The model predicts within 5 percent of the experimentally measured stiffness values.
机译:建立了预测木桁架金属板连接(MPC)张力拼接接头刚度的有限元模型。商业软件ABAQUS用于开发模型。该模型是二维的,并且假定木材和金属板的特性是线性各向同性的。木材与金属板的牙齿之间的接触采用有限滑动公式建模。接触元件模拟了在木-齿界面处发生的打滑行为。将切向接触特性设置为指定的摩擦系数,而将正常接触特性设置为“硬”接触配方,从而在实现接触后实现节点的可能分离。接触元件代表界面的刚度,一旦接触元件由于拔出牙齿而脱离,刚度就会丢失。模型预测是根据文献中获得的实验测得的刚度值进行验证的。数据涵盖了两种木材和三种弹性模量(MOE)。该模型预测在实验测量的刚度值的5%之内。

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