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Residual Displacement Analysis of Structures at Shakedown

机译:Shakedown结构的残余位移分析

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摘要

The residual displacements developing in the shakedown process of an ideally elastic-plastic beam system under variable repeated loads vary non-monotonically. Therefore, it is important to determine the variation bounds. In this paper, the numerical methods, as well as the extremum energy principles, small displacement assumption and mathematical programming theory are used to develop the mathematical models of the analysis problem. By solving the analysis problem, where the load locus is progressively expanded, it is possible to determine the upper and the lower bounds of the residual displacements. It is assumed that nonmonotonically varying residual displacements do not exceed these bounds. The application of the proposed load locus expansion method is illustrated by a case study of a multisupported beam. The results obtained in this investigation show that, at given repeated variable load, a structure can adapt to the changed conditions, but the values of the residual displacements may differ. Using the proposed method, it is possible to determine the bounds of residual displacements without analysing the history of the loading.
机译:在可变重复载荷下,在可变的重复载荷下的理想弹性塑料梁系统的Shakedown过程中开发的残余位移在非单调的情况下变化。因此,重要的是确定变异界限。在本文中,使用数值方法以及极值能量原理,小位移假设和数学编程理论用于开发分析问题的数学模型。通过求解分析问题,在逐渐扩展装载基因座的情况下,可以确定残余位移的上限和下限。假设非对语言变化的残余位移不超过这些界限。通过对多功能光束的情况研究说明了所提出的装载基因座扩展方法的应用。在该研究中获得的结果表明,在给定的重复可变载荷时,结构可以适应变化的条件,但残留位移的值可能不同。使用该方法,可以在不分析装载历史的情况下确定残留位移的范围。

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