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Plastic optimization of 3D steel frames under fixed or repeated loading: Reduction formulation

机译:固定或重复载荷下3D钢框架的塑性优化:减量公式

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This paper present a new algorithm of plastic optimization for 3D steel frames under fixed loading (limit optimization) or repeated loading (shakedown optimization). The weights of the frames are minimized under constraints of plastic collapse (instantaneous mechanics/alternating plasticity). A 3D plastic-hinge considering two bending moments and axial force is taken into account by 16-facet polyhedrons. The static theorem of limit analysis is adopted and the formulations are written under a linear programming problem that is solved by using the simplex method. Several useful techniques of reducing the problem sizes are proposed. Some numerical examples are presented to demonstrate the efficiency of the proposed algorithm.
机译:本文提出了一种在固定载荷(极限优化)或反复载荷(减振优化)下3D钢框架塑性优化的新算法。框架的重量在塑性塌陷(瞬时力学/交替塑性)的约束下被最小化。 16面多面体考虑了考虑了两个弯矩和轴向力的3D塑料铰链。采用极限分析的静态定理,并在线性规划问题下编写公式,并通过单纯形法解决该问题。提出了几种减小问题大小的有用技术。给出了一些数值例子,以证明所提算法的有效性。

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