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Impact of Residual Stress and Elastic Follow-Up on Fracture

机译:残余应力和弹性随访对骨折的影响

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The presence of tensile residual stress in cracked structures combined with external loading leads to circumstances where a structure may fail at a lower applied load than when residual stresses are not present. This is taken into consideration in the fracture assessment codes which are usually invoked to determine whether a cracked structure is fit-for-purpose. These codes typically attempt to decompose the stresses present in the structure under consideration into either "secondary" or "primary" components, in order to simplify the assessment and avoid the need for detailed numerical modeling. It is acknowledged that whether a given residual stress field should be classified as "secondary" or as "primary" is dependent on the level of associated elastic follow-up (EFU). However, although there is a significant body of work related to the influence of EFU on the high temperature creep behavior of uncracked structures, the EFU concept has not yet been rigorously applied to the fracture assessment of cracked structures. This paper represents a first step towards a more rigorous application of the EFU concept to the fracture assessment of cracked structures containing residual stresses. Insight is provided into the influence of residual stress and EFU on fracture by considering the behavior of a simple three-bar assembly. Having introduced the concept, a three-bar type test rig capable of generating fit-up residual stresses with varying levels of EFU in a compact-tension fracture-specimen is presented. Results, produced using this test rig, from two cases with identical levels of initial residual stress but different levels of associated EFU are considered. It is concluded that EFU is important in determining how the residual force in the specimen changes (and therefore how the component of crack driving force associated with the residual force changes) as damage accumulates in the specimen subsequent to fracture initiation.
机译:裂化结构中的拉伸残余应力的存在与外部加载结合的情况导致结构在较低施加的负载下可能比不存在残余应力时的情况。在通常调用的骨折评估代码中考虑了这一点,以确定裂纹结构是否适合目的。这些代码通常试图将所考虑的结构中存在的应力分解为“二次”或“初级”组件,以简化评估并避免需要详细的数值模拟。承认给定的残余应力场归类为“二次”或“主要”取决于相关弹性随访(EFU)的水平。然而,尽管存在与EFU对未粘合结构的高温蠕变行为的影响有关的重要工作,但EFU概念尚未严格应用于破裂结构的断裂评估。本文代表了迈向含有残余应力的裂纹结构裂缝评估的更严格应用EFU概念的第一步。通过考虑简单的三杆组件的行为,洞察中的洞察力提供了残余应力和EFU对骨折的影响。介绍了该概念,提出了一种三条型试验台,其能够在紧凑张力骨折样本中产生具有不同水平的EFU水平的适合残余应力。使用该试验台生产的结果,从两种情况下,考虑了两个初始残余应力但不同水平的相关EFU水平的案例。结论是,EFU在确定样品中的残留力变化的情况下是重要的(以及因此如何如何与残余力相关的裂缝驱动力的组分如何变化),因为在断裂开始后的标本中累积损伤。

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