首页> 外文期刊>International Journal for Numerical Methods in Engineering >Fiber-based shakedown analysis of three-dimensional frames under multiple load combinations: Mixed finite elements and incremental-iterative solution
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Fiber-based shakedown analysis of three-dimensional frames under multiple load combinations: Mixed finite elements and incremental-iterative solution

机译:多重载荷组合下三维框架的纤维的Shakedrown分析:混合有限元和增量迭代解决方案

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摘要

This work presents an efficient fiber analysis for evaluating the shakedown safety factor of three-dimensional frames under multiple load combinations. Mixed finite elements are employed for an accurate discretization. A continuation method, similar to a standard elasto-plastic analysis, is used at structural level. It evaluates a pseudo-equilibrium path made of a sequence of safe states with a converging nondecreasing load factor. Each point of the path is obtained by finding kinematic variables corresponding to self-equilibrated stresses satisfying Melan's condition for the current load factor to be safe. The stress admissible domain is defined at fiber level as a function of the load factor using the maximum and minimum effect due to all loads. An iterative state determination provides finite element stresses corresponding to assigned kinematic variables and load factor. The overall analysis differs from previous proposals for two novelty points. Firstly, a direct application of the Newton method can be employed, without any need for constrained optimization solvers. Moreover, dimension and complexity of the load domain do not affect the computational cost of the nonlinear analysis. Numerical tests show an accurate estimate of the safety factor using a small number of fibers and an efficient solution also for large buildings.
机译:该工作提出了一种有效的纤维分析,用于在多重负荷组合下评估三维框架的Shakedown安全系数。混合有限元用于准确的离散化。类似于标准弹塑性塑性分析的延续方法在结构级使用。它评估了由一系列安全状态制成的伪平衡路径,该序列具有会聚的非分泌负载因子。通过找到对应于满足Melan条件的自平衡应力的运动变量来获得每次载荷因子的自平衡应力是安全的。应力可允许域以使用所有负载引起的最大和最小效果的负载因子的函数定义。迭代状态确定提供了与分配的运动变量和负载因子相对应的有限元应力。总体分析与前一个新颖性点的先前提案不同。首先,可以采用直接应用牛顿方法,无需受约束的优化溶剂。此外,负载域的尺寸和复杂性不会影响非线性分析的计算成本。数值测试显示使用少量纤维和高效解决方案的安全系数的准确估计。

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