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A theoretical numerical study of the rotational restraint in cold-formed steel single skin purlin-sheeting systems

机译:冷弯型钢单皮pur条系统中旋转约束的理论数值研究

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摘要

Cold-formed steel purlins are commonly used in the construction of industrial buildings. The roof sheeting increases the strength of the attached purlin to a considerable extent by providing lateral and rotational restraints. Further, the rotational restraint plays an important role on the buckling behaviour of the attached purlin. There is a need for a design method that accurately predicts the rotational restraint without experimental tests. Addressing this problem, in this research work, a non-linear finite element model is developed to estimate the rotational restraint provided by the first and second generation trapezoidal sheeting to the attached purlin. This model is applicable to trough-fixed and crest-fixed single skin purlin-sheeting systems commonly employed in steel roofs. The performance of the finite element model is validated by conducting experimental tests and found to be in good agreement. The factors influencing the rotational restraint can be investigated by using this validated finite element model. It opens the way to the development of a design method for estimating the rotational restraint provided by the sheeting to cold-formed steel purlins.
机译:冷弯钢pur条通常用于工业建筑的建造中。屋顶板通过提供横向和旋转约束,在相当大的程度上提高了附着pur条的强度。此外,旋转约束对连接的pur条的屈曲行为起重要作用。需要一种无需实验测试即可准确预测旋转约束的设计方法。为了解决这个问题,在这项研究工作中,开发了一个非线性有限元模型来估计第一代和第二代梯形薄片对附着的pur条提供的旋转约束。该模型适用于钢屋顶通常使用的槽固定和波峰固定的单层pur条系统。通过进行实验测试验证了有限元模型的性能,并发现它们之间具有很好的一致性。可以使用此经过验证的有限元模型来研究影响旋转约束的因素。这为设计方法的开发开辟了道路,该设计方法用于估计薄板对冷弯钢pur条提供的旋转约束。

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