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Finite element lower bound 'yield line' analysis of isotropic slabs using rotation-free elements

机译:使用无旋转单元的各向同性平板有限元下限“屈服线”分析

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摘要

A new lower bound finite element method for slab analysis is presented as a practical substitute to full, non-linear, finite element methods that require expert knowledge and long running times. The method provides a general, safe and efficient lower bound solution for the analysis of reinforced concrete slabs up to failure. As it is finite element based, the method is more general than the yield line and strip methods currently in use. Furthermore, its lower bound nature makes it safer than the yield line method. The method uses a rotation-free, plate finite element modified to allow plastic “yield lines” to pass through at any direction. Yield lines are generated at the principal moment directions when the plastic moment capacity is attained. The material is assumed to be elastic perfectly-plastic. Following the general spirit of yield line analysis, the effects of a yield line are projected to the sides of the triangular element and then used to calculate the bending curvatures. The method’s efficiency is achieved by using rotation-free plate elements with a single degree of freedom per node and by the incremental solution that does not require iterations. The method’s accuracy and convergence are assessed by comparing standard cases with known results. In all cases, results were close to the theoretical values with difference of less than 1%. It is also used to solve a practical sized flat slab problem in order to demonstrate the method’s efficiency, convergence, and speed.
机译:提出了一种用于板坯分析的新的下界有限元方法,作为对需要专业知识和较长运行时间的完整,非线性有限元方法的实用替代。该方法为钢筋混凝土板直至失效的分析提供了一种通用,安全,高效的下界解决方案。由于它是基于有限元的,因此该方法比当前使用的屈服线和剥离方法更为通用。此外,其下限性质使其比屈服线法更安全。该方法使用无旋转的板式有限元,该有限元经过修改,可以使塑料“屈服线”从任何方向通过。当达到塑性力矩能力时,会在主力矩方向上产生屈服线。假定该材料是弹性的完美塑性材料。遵循屈服线分析的基本精神,将屈服线的影响投射到三角形元素的侧面,然后用于计算弯曲曲率。该方法的效率是通过使用每个节点具有单个自由度的无旋转平板元件以及不需要迭代的增量解决方案来实现的。通过将标准案例与已知结果进行比较,可以评估该方法的准确性和收敛性。在所有情况下,结果均接近理论值,差异小于1%。它还可用于解决实际尺寸的平板问题,以证明该方法的效率,收敛性和速度。

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