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Remaining life assessment and optimal design of statically indeterminate pipe system with circumferential crack

机译:有周向裂纹的超确定性管道系统的剩余寿命评估和优化设计

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This paper examines the J-R curve theory in elastic-plastic fracture mechanics and crack extension resistance in order to analyze the large-scale yielding of statically indeterminate pipe structure with a circumferential crack. The dJ/da characteristic can be utilized to measure that the crack is stable ductile fracture or unstable ductile fracture and to analyze the crack growth rate. The total propagation time of the crack until collapse can be computationally estimated by numerical analysis that is presented in this paper. The further analysis of dJ/da and optimization is to maximize the crack propagation time during the crack growth before reaching plastic collapse. Both of the center-point crack and end-point crack are investigating cases for analyzing the mechanics and engineering design. These analysis and design strategies developed in this paper are useful for the safety performance of a structural pipe under crack deformation.
机译:本文研究了弹塑性断裂力学和抗裂纹扩展性方面的J-R曲线理论,以分析具有周向裂纹的超静定管结构的大规模屈服。 dJ / da特性可用于测量裂纹是稳定的韧性断裂还是不稳定的韧性断裂,并分析裂纹的扩展速率。可以通过本文提出的数值分析来计算裂纹直至破裂的总传播时间。 dJ / da和优化的进一步分析是在达到塑性塌陷之前在裂纹扩展过程中最大化裂纹扩展时间。中心裂纹和端点裂纹都是研究案例,用于分析力学和工程设计。本文开发的这些分析和设计策略对于结构管道在裂纹变形下的安全性能很有用。

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