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Shear buckling and stress distribution in trapezoidal web corrugated steel beams

机译:梯形腹板波纹钢梁的剪切屈曲和应力分布

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Due to their lightweight and superior load carrying capacity, corrugated web steel beams (CWSBs) have gained popularity in the last few decades. CWSBs are known to fail at much higher loads compared to stiffened flat web beams. To understand their shear response, a series of three-point load tests were performed on five shear-critical trapezoidal corrugated web beams. The test results confirmed the existence of the three shear budding modes of failure: local, global, and interactive. In addition, all tested beams were observed to have a residual strength that is about half of their ultimate load carrying capacity regardless of the shear buckling mode. Results of the nonlinear finite element analysis showed that the shear stress is at its maximum and uniformly distributed throughout the web until buckling, afterwards, it decreases and its distribution is uneven while the entire resistance is provided by the increased tensile stress. Ftuthermore, stocky coritgated webs were shown to reach shear yield strength. Comparison between existing analytical models for the estimation of shear strength against test data showed that EN-1993-1-5 is accurate and conservative enough for an economic design.
机译:由于其轻巧和出色的承载能力,波纹腹板钢梁(CWSB)在过去的几十年中获得了普及。已知与刚性平板腹板梁相比,CWSB在更高的载荷下会失效。为了了解它们的剪切响应,对五个剪切临界梯形波纹腹板梁进行了一系列的三点载荷测试。测试结果证实了三种剪切萌芽失效模式的存在:局部,全局和交互。此外,无论剪切屈曲模式如何,都观察到所有测试梁的残余强度约为其最终承载能力的一半。非线性有限元分析的结果表明,剪应力最大,并在整个腹板中均匀分布,直到屈曲,此后,剪应力减小且分布不均匀,而整个阻力则由增大的拉应力提供。此外,已证明高大的卷筒纸幅可以达到剪切屈服强度。现有的用于评估抗剪强度的分析模型与测试数据之间的比较表明,EN-1993-1-5准确而保守,足以进行经济的设计。

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