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Improved Static Resistance and Failure Mechanisms of Conventional Cold-Formed Steel Stud Walls

机译:改进的常规冷弯型钢钉壁的抗静力和破坏机理

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摘要

Because most of the research conducted in the area of blast-resistant and retrofit designs of cold-formed steel studs has focused on high threat levels, a need exists to examine moderate blast level protection. The main objective of this paper is to evaluate and upgrade the capacities of conventionally connected cold-formed steel stud-track systems for blast-resistant design. This objective was achieved by performing quasi-static experiments on full-length (3m) wall samples to investigate the effect of stud and track gauges, screw sizes, and screws layout on the resistance of the wall. A numerical model was developed and verified using the experimental results. Because the model showed excellent agreement with the experimental results, it was used to perform a series of simulation tests. The finite-element model, along with a failure criterion that was developed to predict the failure point of the simulated tests, provided an economical alternative way to investigate the resistance. Valuable recommendations to enhance the resistance behavior of conventional stud-track wall systems are provided.
机译:由于在冷弯钢栓的抗爆和翻新设计领域进行的大多数研究都集中在高威胁等级上,因此有必要研究中等爆破等级的防护。本文的主要目的是评估和提升用于防爆设计的传统连接的冷弯型钢双头螺栓跟踪系统的能力。通过对全长(3m)墙体样本进行准静态实验来研究螺柱和轨距规,螺钉尺寸和螺钉布局对墙体阻力的影响,从而实现了这一目标。建立了数值模型并使用实验结果进行了验证。由于该模型与实验结果显示出极好的一致性,因此可用于执行一系列模拟测试。有限元模型以及为预测模拟测试的失效点而开发的失效准则,为研究电阻提供了一种经济的替代方法。提供了宝贵的建议来增强常规立柱履带墙系统的抗力性能。

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