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Generalized method for identifying yield-line patterns in T-stubs using discontinuity layout optimization

机译:使用不连续布局优化识别T-stub中的产量线模式的广义方法

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摘要

The so-called "plate in bending" is an essential component in typical steel connections. The underlying concept is the T-stub model. Typically, the resistance of a T-stub is obtained with the upper bound theorem, which means that a kinematic failure mechanism must be assumed. The most relevant failure patterns and the corresponding resistances of typical T-stub configurations can be found in the standards, like the EN 1993-1-8. A general method for identifying the correct yield-line pattern and for calculating the resistance for any T-stub configuration is still not available. To overcome this unsatisfactory situation, such a generalized method has been worked out in the presented research. This was made by extending the "Discontinuity Layout Optimization" (DLO) procedure by including the internal work dissipated by the bolts. The approach was validated on a broad range of relevant applications, such as typical unstiffened and stiffened T-stubs, as well as more complex configurations, which are not ruled by the standard. The obtained results were compared with results from experiments and analytical solutions from the literature. Overall, the modified DLO approach is able to reproduce the failure patterns and the ultimate loads of the investigated bolt configuration correctly.
机译:所谓的“弯曲板”是典型钢连接中的必需组件。潜在的概念是T-Stub模型。通常,使用上限定理获得T-stup的电阻,这意味着必须假设运动失效机构。可以在标准中找到最相关的故障模式和典型T-Stub配置的相应电阻,如EN 1993-1-8。仍然不可用识别正确的屈服线图案和计算任何T-Stub配置的电阻的一般方法。为了克服这种不令人满意的情况,在提出的研究中已经解决了这种广义的方法。这是通过将“不连续布局优化”(DLO)程序扩展通过包括螺栓消散的内部工作来制造的。该方法在广泛的相关应用上验证,例如典型的不稳定和加强的T型,以及更复杂的配置,这些配置不会被标准统治。将得到的结果与来自文献的实验和分析溶液的结果进行了比较。总的来说,改进的DLO方法能够正确再现调查的螺栓配置的故障模式和最终负载。

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