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The linear matching method applied to the high temperature life integrity of structures. Part 1. Assessments involving constant residual stress fields

机译:线性匹配法应用于结构的高温寿命完整性。第1部分。涉及恒定残余应力场的评估

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摘要

Design and life assessment procedures for high temperatures are based on 'expert knowledge' in structural mechanics and materials science, combined with simplified methods of structural analysis. Of these R5 is one of the most widely used life assessment methods internationally with procedures based on reference stress techniques and shakedown calculations using linear elastic solutions. These have been augmented by full finite element analysis and, recently, the development of a new programming method, the Linear Matching Method (LMM), that allows a range of direct solutions that include shakedown methods and simplified analysis in excess of shakedown. In this paper LMM procedures are compared with calculations typical of those employed in R5 for cyclic loading problems when the assumption of a constant residual stress field is appropriate including shakedown and limit analyses, creep rupture analysis and the evaluation of accumulated creep deformation. A typical example of a 3D holed plate subjected to a cyclic thermal load and a constant mechanical load is assessed in detail. These comparisons demonstrate the significant advantages of linear matching methods for a typical case. For a range of cyclic problems when the residual stress field varies during the cycle, which include the evaluation of plastic strain amplitude, ratchet limit and accumulated creep strains during a high temperature dwell periods, the corresponding LMM and R5 procedures are discussed in an accompanying paper.
机译:高温的设计和寿命评估程序基于结构力学和材料科学的“专业知识”,并结合简化的结构分析方法。其中R5是国际上使用最广泛的寿命评估方法之一,其程序基于参考应力技术和使用线性弹性解的减震计算。全面的有限元分析和最近的新编程方法(线性匹配方法(LMM))的开发进一步增强了这些功能,该方法可提供一系列直接解决方案,包括减振方法和超出减振的简化分析。本文将LMM程序与R5中用于循环荷载问题的典型计算方法进行了比较,此时假设恒定残余应力场是适当的,包括振动和极限分析,蠕变断裂分析以及累积蠕变变形的评估。详细评估了承受周期性热负荷和恒定机械负荷的3D多孔板的典型示例。这些比较证明了在典型情况下线性匹配方法的显着优势。对于一系列循环问题,当残余应力场在循环过程中发生变化时,包括评估高温停留期间的塑性应变幅度,棘轮极限和累积蠕变应变,将在相应的论文中讨论相应的LMM和R5过程。

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