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Study of creep crack growth behaviour of a type 316(N) stainless steel weld and its mechanism

机译:316(N)型不锈钢焊缝的蠕变裂纹扩展行为及其机理研究

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As the high temperature structural integrity of the welded components is often decided by the extent of crack growth in the weld itself, the evaluation of the creep crack growth (CCG) rate and its micromechanical characterization in the welds are of importance to the designers. This study presents the CCG characterization of a type 316(N) stainless steel (SS) weld containing about 5 FN (ferrite number) of delta-ferrite. Constant load CCG tests using compact tension (CT) specimens have been carried out in the temperature range of 823-923 K as per ASTM E1457-15. The creep crack growth rate (angstrom) vs. C* [angstrom-C*] plots, commonly expressed as angstrom = D(C*)phi, were established and compared in the temperature range of 823-923 K. The SEM/ EBSD analysis, carried out in the vicinity of the crack propagation path, has revealed inter-granular nature of creep crack propagation. This is attributed to the grain boundary sigma-phase precipitations, which were found to be coarser as compared to the sigma-phase precipitations in the grain interiors, leading to easier damage accumulation and microcrack formation in their vicinity.
机译:由于焊接部件的高温结构完整性通常取决于焊缝本身的裂纹扩展程度,因此对焊缝的蠕变裂纹扩展(CCG)速率及其微机械特性的评估对设计人员而言非常重要。这项研究提出了一种316(N)型不锈钢(SS)焊缝的CCG表征,其中包含约5 FN(铁素体数)的δ-铁素体。根据ASTM E1457-15,已经在823-923 K的温度范围内使用紧凑张力(CT)样品进行了恒压CCG测试。建立并通常在823-923 K的温度范围内比较蠕变裂纹扩展速率(埃)与C * [埃-C *]的关系图,通常表示为埃= D(C *)phi。在裂纹扩展路径附近进行的分析揭示了蠕变裂纹扩展的颗粒间性质。这归因于晶界的σ相析出,与晶粒内部的σ相析出相比,它更粗大,导致附近的损伤积累和微裂纹的形成更加容易。

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