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AXIAL AND ROTATIONAL STIFFNESS MODEL OF METAL-PLATE-CONNECTED WOOD TRUSS JOINTS

机译:金属板连接木桁架节点的轴向和旋转刚度模型

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摘要

An analytical model that predicts the axial and rotational stiffness values of metal-plate-connected wood truss joints is developed by considering a plate tooth as a cantilever beam in an elastic foundation. Given lumber specific gravity, moisture content, plate and tooth geometry, and loading conditions, the model predicts axial and rotational stiffness values. A total of 33 actual tension splice and heel joints were tested to validate the predictions of the model. To test the scope of the model, joints were fabricated from wood specific gravity ranging from 0.30 to 0.70, and moisture content ranging from 1 to 19%. Heel joint top chord slopes were 3.5 on 12 and 5 on 12. The joints were tested by applying concentric and eccentric loads. The model predicts within 10% of experimental values.
机译:通过将板齿视为弹性基础中的悬臂梁,建立了一个预测模型,该模型可预测金属板连接的木桁架节点的轴向和旋转刚度值。给定木材比重,水分,板和齿的几何形状以及负载条件,该模型可以预测轴向和旋转刚度值。总共测试了33个实际的张力接头和脚跟关节以验证模型的预测。为了测试模型的范围,用木材比重在0.30至0.70范围内的水分含量在1至19%的范围内制成接头。脚跟关节上弦斜率在12处为3.5,在12处为5。该模型预测在实验值的10%以内。

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