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Small-Scale Modeling of Metal-Plate-Connected Wood Truss joints

机译:金属板连接的木桁架节点的小规模建模

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The objective of this research was to develop 1/3-scale models of full-size (prototype) metal-plate-connected wood truss joints and a complete truss using similitude theory. To verify material properties, we compared moduli of elasticity of prototype and 1/3-scale model boards. Although the variation in stiffness of the model was greater than that of the prototype, the average properties of the model and prototype were similar. The resulting average design stiffness of 1/3-scale tension splice joints was within 1 percent of the prototype joint stiffness, while the ultimate load was 7 percent lower than the prototype. Stiffness and strength of model heel joints were within 22 percent and 17 percent, respectively, of the stiffness and strength of their prototypes. Finally, ten complete model trusses were fabricated and tested; their average stiffness and strength were 780 N/mm and 17.3 kN, respectively, after scaling up by similitude. Modeling full-size truss connection behavior up to the design load, and possibly to failure, with small-scale models and similitude theory may be feasible.
机译:这项研究的目的是使用相似性理论开发全尺寸(原型)金属板连接的木桁架节点和完整桁架的1/3比例模型。为了验证材料性能,我们比较了原型板和1/3比例模型板的弹性模量。尽管模型的刚度变化大于原型的刚性,但模型和原型的平均特性相似。 1/3比例的拉伸接头的平均设计刚度在原型接头刚度的1%之内,而最终载荷比原型要低7%。模型后跟关节的刚度和强度分别比其原型的刚度和强度低22%和17%。最后,制造并测试了十个完整的模型桁架。在按比例放大后,它们的平均刚度和强度分别为780 N / mm和17.3 kN。使用小规模模型和相似性理论对直至设计负荷甚至可能失效的全尺寸桁架连接行为进行建模是可行的。

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