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Simplified models for cross-section stress demands on C-section purlins in uplift

机译:隆起剖腹产pur条的横截面应力需求的简化模型

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The objective of this paper is to provide and verify simplified models that predict the longitudinal stresses that develop in C-section purlins in uplift. The paper begins with the simple case of flexural stress; where the force has to be applied at the shear center, or the section braced in both flanges. Restrictions on load application point and restraint of the flanges are removed until arriving at the more complex problem of bending when movement of the tension flange alone is restricted, as commonly found in purlin-sheeting systems. Winter's model for predicting the longitudinal stresses developed due to direct torsion is reviewed, verified, and then extended to cover the case of a bending member with tension flange restraint. The developed longitudinal stresses from flexure and restrained torsion are used to assess the elastic stability behavior of typical purlin-sheeting systems. Finally, strength predictions of typical C-section purlins are provided for existing AISI methods and a newly proposed extension to the direct strength method that employs the predicted longitudinal stress distributions within the strength prediction.
机译:本文的目的是提供并验证简化的模型,这些模型可预测在抬升的C型截面pur条中产生的纵​​向应力。本文从弯曲应力的简单情况开始。必须在剪切中心或两个法兰中支撑的部分上施加力的位置。消除对载荷施加点的限制和对法兰的约束,直到仅在限制拉伸法兰的运动时才遇到更复杂的弯曲问题(如pur条系统中常见的那样)。审查,验证并验证了Winter的模型,该模型用于预测由于直接扭转而产生的纵向应力,然后将其扩展到覆盖具有张力法兰约束的弯曲构件的情况。由弯曲和约束扭转产生的纵向应力用于评估典型pur条系统的弹性稳定性能。最后,为现有的AISI方法提供了典型C截面pur条的强度预测,并为在强度预测中采用预测的纵向应力分布的直接强度方法提供了新的扩展。

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