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Optimal shakedown design of metal structures under stiffness and stability constraints

机译:刚度和稳定性约束下金属结构的最佳减振设计

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Optimal shakedown design of metal frame and truss-like structures is considered in this paper. Strength, stiffness and stability (only for trusses) constraints are included in non-linear mathematical models of volume minimization problems of structures. Stiffness conditions are realized by the restriction of structure deflections or nodal displacements, which can vary non-monotonically during the adaptation process. Determination of displacements is especially complicated if the variable repeated load is defined by variation bounds, which are not related to time. For trusses, stability constraints are related to recommendations of Eurocode 3 (EC3). Numerical examples concerning the calculation of frame and truss structures are presented. The results are valid for the small displacement assumptions.
机译:本文考虑了金属框架和桁架状结构的最优减震设计。强度,刚度和稳定性(仅用于桁架)约束包括在结构体积最小化问题的非线性数学模型中。刚度条件是通过限制结构变形或节点位移来实现的,结构变形或节点位移可以在适应过程中非单调变化。如果变量重复载荷是由与时间无关的变化范围定义的,则位移的确定尤其复杂。对于桁架,稳定性约束与欧洲规范3(EC3)的建议有关。给出了有关框架和桁架结构计算的数值示例。该结果对于小位移假设是有效的。

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