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Flexural Behaviour and Design of Cold-Formed Steel Wall Panels Sheathed with Particle Cement Board

机译:颗粒水泥板护套冷弯型钢墙板的抗弯性能及设计

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The bracing effect of Particle Cement Board (PCB) sheathing for the Cold-formed steel (CFS) wall stud is explored in this study. Owing to the higher slenderness, the CFS wall stud requires additional bracing to inhibit the instability failures such as flexural and lateral torsional buckling. Twenty sheathed CFS wall studs were tested to investigate the structural effect of PCB sheathing under out-of-plane loading. The key design factors such as sheathing arrangements (screw spacing and sheathing thickness) and slenderness of the CFS studs were examined. The experimental results indicated that the CFS studs with vulnerability to fail in both local buckling (f(crl) f(y)) and LTB (f(cre) f(y)) can be effectively braced by particle cement board sheathing. The experimental results, together with the failure modes of the sheathed CFS studs were compared with the predicted strengths using the latest sheathing braced design rules. The critical elastic buckling stresses corresponding to different failure modes for the direct strength method (DSM) of CFS structural member design were determined using the latest modified rule. The latest sheathing braced design rules accurately predicted the failure modes of the PCB sheathed CFS stud. However, the design moment capacities predicted by the latest sheathing braced design rules are overly conservative compared to the experimental moment capacities. The reasons pertaining to the over conservative design predictions are discussed. A set of preliminary suggestions to effectively codify the design rules for the CFS wail panels are given. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究探讨了颗粒水泥板(PCB)护套对冷弯型钢(CFS)墙钉的支撑作用。由于较高的细长度,CFS墙螺栓需要额外的支撑,以抑制诸如弯曲和横向扭转屈曲之类的不稳定性破坏。测试了20个带护套的CFS墙钉,以研究平面外载荷下PCB护套的结构效果。检查了关键的设计因素,例如护套布置(螺钉间距和护套厚度)和CFS螺栓的细长度。实验结果表明,颗粒水泥板可以有效地支撑在局部屈曲(f(crl) f(y))和LTB(f(cre) f(y))中均不易失效的CFS螺柱。护套。使用最新的护套支撑设计规则,将实验结果以及护套CFS螺柱的破坏模式与预测强度进行了比较。使用最新的修改规则,确定了CFS结构构件设计的直接强度法(DSM)对应于不同破坏模式的临界弹性屈曲应力。最新的护套支撑设计规则可准确预测PCB护套CFS螺柱的失效模式。但是,最新的护套支撑设计规则所预测的设计力矩能力与实验力矩能力相比过于保守。讨论了与过度保守的设计预测有关的原因。提出了一系列初步建议,以有效地整理CFS壁板的设计规则。 (C)2019 Elsevier Ltd.保留所有权利。

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