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Development and implementation of the Abaqus subroutines and plug-in for routine structural integrity assessment using the linear matching method

机译:使用线性匹配方法开发和实现用于常规结构完整性评估的Abaqus子例程和插件

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摘要

In recent years the Linear Matching Method (LMM) has been developed as a tool for structural integrity assessments of components subjected to cyclic loading conditions. Its capabilities include, among others, calculation of the shakedown limit, ratchet limit, plastic strain range for low cycle fatigue, creep rupture time and fatigue creep interaction. The LMM is now incorporated into EDF Energy’s R5 research program for the high temperature assessment of structural components. The purpose of this paper is to describe the development of the LMM framework, its incorporation into Abaqus and current plans to take the method from being primarily research based into wider use by industry for routine structural assessments. The LMM calculations are primarily carried out using the UMAT subroutine, and the first topic discussed in this paper is the implementation of this user subroutine. This includes details of the coding scheme to allow use of multi-processors for the calculations. A brief comparison of the LMM with full cyclic FEA is also included to validate the method and to demonstrate its advantages. The second topic of this paper discusses the development of an Abaqus/CAE plug-in to aid wider adoption of the LMM as an analysis tool for industry. The structure of the plug-in is described alongside the processes used for data collection from the user and automatic configuration of the model.
机译:近年来,线性匹配方法(LMM)已被开发为用于对承受周期性载荷条件的组件进行结构完整性评估的工具。它的功能包括除颤极限,棘轮极限,低周疲劳的塑性应变范围,蠕变断裂时间和疲劳蠕变相互作用的计算。 LMM现在已纳入EDF Energy的R5研究计划中,以对结构部件进行高温评估。本文的目的是描述LMM框架的发展,将其纳入Abaqus以及当前计划,以将该方法从最初的研究作为基础,广泛应用于工业领域,以进行常规结构评估。 LMM计算主要是使用UMAT子例程执行的,本文讨论的第一个主题是该用户子例程的实现。这包括编码方案的详细信息,以允许使用多处理器进行计算。还包括对LMM与全循环FEA的简要比较,以验证该方法并证明其优势。本文的第二个主题讨论了Abaqus / CAE插件的开发,以帮助LMM广泛用作工业分析工具。与用于从用户收集数据和自动配置模型的过程一起描述了插件的结构。

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