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Bounds on transient phase plastic deformations in optimal design of steel frames subjected to cyclic loads

机译:钢框架承受周期性载荷优化设计中过渡相塑性变形的界限

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摘要

A minimum volume multicriterion design of elastic perfectly plastic steel frames subjected to a combination of quasi-static fixed and cyclic loads, bounding the transient phase plastic deformations, is proposed. The problem is formulated according to a plastic shakedown criterion, so that incremental and instantaneous collapse are certainly prevented when the frame is subjected to very strongly amplified cyclic loads. The further condition that the structure must also behave elastically in serviceability conditions is imposed. Since the steady-state loading history is known it is possible to directly bound the steady-state plastic deformations. By applying a suitable own bounding theorem, it is also possible to indirectly bound the transient plastic deformations, whichever the unknown transient real loading history is. A numerical application confirms the fundamental role played by the transient phase plastic deformations both on the design as well as on the structural behaviour and the great performance of the proposed formulation.
机译:提出了一种弹性全塑钢框架的最小体积多准则设计,该框架承受准静态固定载荷和周期性载荷的约束,以限制瞬态塑性变形。该问题是根据塑性震荡准则制定的,因此,当框架承受非常强烈的循环荷载时,可以肯定地防止增量和瞬时倒塌。施加了进一步的条件,即结构在使用条件下也必须具有弹性。由于已知稳态加载历史,因此可以直接限制稳态塑性变形。通过应用适合自己的边界定理,也可以间接地约束瞬态塑性变形,无论未知的瞬态实际载荷历史如何。数值应用证实了瞬态塑性变形在设计以及结构性能和拟议配方的出色性能方面所起的基本作用。

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