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首页> 外文期刊>Thin-Walled Structures >Predicting rotational restraint provided to wall girts and roof purlins by through-fastened metal panels
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Predicting rotational restraint provided to wall girts and roof purlins by through-fastened metal panels

机译:预测通过固定的金属板提供给墙围墙和屋顶pur条的旋转约束

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摘要

This paper introduces mechanics-based expressions for predicting the rotational restraint provided by through-fastened metal panels to Z- and C-section girts or purlins. The analytical prediction equations include the effect of local panel deformation at a screw, and girt or purlin flange bending at a through-fastened connection. Finite element parameter studies are performed to quantify the local fastener pull-out stiffness for a common panel profile, and flange bending stiffness is determined with a cantilever beam model. Rotational restraint experiments are conducted to validate the prediction equations. The through-fastened connection stiffness is simulated in a finite strip elastic buckling analysis with a rotational spring to demonstrate how system effects can be included in design.
机译:本文介绍了基于力学的表达式,用于预测由贯穿固定的金属面板提供给Z和C截面环束或pur条的旋转约束。解析预测方程式包括螺钉处的局部面板变形的影响,以及贯通连接处的环箍或pur条凸缘弯曲的影响。进行了有限元参数研究,以量化普通面板轮廓的局部紧固件拉出刚度,并通过悬臂梁模型确定了法兰的弯曲刚度。进行旋转约束实验以验证预测方程。通过旋转弹簧在有限条形弹性屈曲分析中模拟贯穿紧固的连接刚度,以演示如何在设计中包括系统影响。

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