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首页> 外文期刊>Journal of Civil Engineering and Management >STRUCTURAL SHAKEDOWN: A NEW METHODOLOGY FOR ESTIMATING THE RESIDUAL DISPLACEMENTS
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STRUCTURAL SHAKEDOWN: A NEW METHODOLOGY FOR ESTIMATING THE RESIDUAL DISPLACEMENTS

机译:结构调整:一种估算残余位移的新方法

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摘要

A vector of residual forces of the ideally elastic-plastic structure at shakedown is obtained by solving the static analysis problem. A unique distribution of the residual forces is determined if the analysis is based on the minimum complementary deformation energy principle. However, the residual displacements developing in the shakedown process of ideally elastic-plastic structures under variable repeated loads can vary non-monotonically. Nevertheless mathematical models for the optimization problems of steel structures at shakedown must include the conditions for strength (safety) and stiffness (serviceability). Residual displacements determined by the plastic deformations are included in the stiffness conditions; therefore to improve the optimal solution it is necessary to determine upper and lower bounds of the residual displacement variations. This paper describes an improved methodology for estimating the variation bounds of the residual displacements at shakedown.
机译:通过解决静力分析问题,可以获得理想的弹塑性结构在击落时的残余力矢量。如果分析基于最小互补变形能原理,则将确定残余力的唯一分布。但是,在理想的弹塑性结构的减振过程中,在不断重复的载荷作用下产生的残余位移会非单调变化。但是,用于钢结构减振优化问题的数学模型必须包括强度(安全)和刚度(可维修性)的条件。由塑性变形确定的残余位移包括在刚度条件中;因此,为了改善最优解,有必要确定残余位移变化的上限和下限。本文介绍了一种改进的方法,用于估计振动时残余位移的变化范围。

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