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A simplified technique for shakedown limit load determination

机译:减震极限载荷确定的简化技术

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摘要

In this paper, a simplified technique is presented to determine the shakedown limit load of a structure using the finite element method. The simplified technique determines the shakedown limit load without performing lengthy time consuming full elastic-plastic cyclic loading simulations or conventional iterative elastic techniques. Instead, the shakedown limit load is determined by performing two analyses namely: an elastic analysis and an elastic-plastic analysis. By extracting the results of the two analyses, the shakedown limit load is determined through the calculation of the residual stresses developed within the structure. The simplified technique is applied and verified using two bench mark shakedown problems namely: the two-bar structure subjected to constant axial force and cyclic thermal loading, and the Bree cylinder subjected to constant internal pressure and cyclic high temperature variation across its wall. The results of the simplified technique showed very good correlation with the, analytically determined, Bree diagrams of both structures. In order to gain confidence in the simplified technique, the shakedown limit loads output by the simplified technique are used to perform full elastic-plastic cyclic loading simulations to check for shakedown behavior of both structures.
机译:在本文中,提出了一种使用有限元方法确定结构减震极限载荷的简化技术。简化技术确定了减振极限载荷,而无需执行耗时的完整弹塑性循环载荷模拟或传统的迭代弹性技术。相反,通过执行两个分析即弹性分析和弹塑性分析来确定减振极限载荷。通过提取两个分析的结果,通过计算结构内部产生的残余应力来确定减振极限载荷。应用简化技术并使用两个基准摇晃问题进行了验证,即两个杆结构承受恒定的轴向力和循环的热负荷,而Bree缸壁则承受恒定的内压和循环的高温变化。简化技术的结果显示出与分析确定的两种结构的Bree图非常相关。为了获得对简化技术的信心,简化技术输出的减振极限载荷用于执行完整的弹塑性循环载荷模拟,以检查两个结构的减振性能。

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