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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Elastic-plastic Fracture Mechanics Assessment of nozzle corners submitted to thermal shock loading
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Elastic-plastic Fracture Mechanics Assessment of nozzle corners submitted to thermal shock loading

机译:承受热冲击载荷的喷嘴角的弹塑性断裂力学评估

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This paper focuses on the development of a simplified analytical scheme for the elastic-plastic Fracture Mechanics Assessment of large nozzle corners. Within that frame, following the specific numerical effort performed for the definition of a Stress Intensity Factor compendium, complementary elastic-plastic developments are proposed here for the consideration of the thermal shock loading in the elastic plastic domain: this type of loading is a major loading for massive structures such as nozzle corners of large components. Thus, an important numerical was performed in order to extend the applicability domain of existing analytical schemes to those complex geometries. The final formulation is a simple one, applicable to a large variety of materials and geometrical configurations as long as the structure is large and the defect remains small in comparison to the internal radius of the nozzle. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文着重于为大喷嘴角的弹塑性断裂力学评估开发一种简化的分析方案。在该框架内,遵循为定义应力强度因子纲要所做的特定数值努力,在此提出了互补的弹塑​​性开发方案,以考虑弹性塑料领域中的热冲击载荷:这种载荷是主要载荷适用于大型结构,例如大型组件的喷嘴角。因此,执行了一个重要的数值以将现有分析方案的适用范围扩展到那些复杂的几何形状。最终配方是一种简单的配方,与喷嘴的内半径相比,只要结构较大且缺陷保持较小,就可适用于多种材料和几何构造。 (C)2016 Elsevier Ltd.保留所有权利。

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