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首页> 外文期刊>Journal of Materials Science >Annealing twin boundary cracking in the low-temperature brittle fracture of a high-nitrogen bearing austenitic steel
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Annealing twin boundary cracking in the low-temperature brittle fracture of a high-nitrogen bearing austenitic steel

机译:高氮奥氏体钢的低温脆性断裂退火双边界裂纹

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Crack propagation paths in the low temperature brittle fracture of 18Cr-18Mn-0.7N austenitic steel were investigated by means of scanning electron microscopy. Corresponding relationships of the fracture facets with microstructures were established by the simultaneous observation of the fracture surface and the microstructure of the adjacent side surface. It was shown that the annealing twin boundary cracking occurred during fracture. A great deal of twins formed during solution treatment of the steel, with steps several microns high on the twin boundaries, and a considerable amount of planar deformation structures developed on {111} planes in the fracture process. The fracture facets of the annealing twin boundary are fairly flat and smooth, with bent steps of micron-scale height, and a pattern of three sets of parallel straight-lines intersecting at 60degrees. But there is no river pattern on the facets. The bent steps result from partial propagation of crack along steps that are developed on annealing twin boundaries during solution treatment, while the line-pattern is the intersection traces of the planar deformation structures with the fracture facet. It is believed that the annealing twin boundary cracking is attributed to the stress concentration arising at the intersection of planar deformation structures and the annealing twin boundaries. (C) 2004 Kluwer Academic Publishers. [References: 13]
机译:利用扫描电子显微镜研究了18Cr-18Mn-0.7N奥氏体钢在低温脆性断裂中的裂纹扩展路径。通过同时观察断裂面和相邻侧面的微观结构,建立了断裂面与微观结构的对应关系。结果表明,在断裂过程中发生了退火双边界裂纹。在钢的固溶处理过程中形成了大量的孪晶,在孪晶边界上有几微米高的台阶,并且在断裂过程中在{111}平面上形成了大量的平面变形结构。退火孪晶边界的断裂面相当平坦且光滑,具有微米级高度的弯曲台阶,并且以60度相交的三组平行直线的图案。但是,这些面上没有河流图案。弯曲台阶是由于裂纹沿着固溶处理过程中在退火双边界上形成的台阶的局部扩展而产生的,而线型图是平面变形结构与断裂面的相交轨迹。认为退火双边界裂纹是由于在平面变形结构和退火双边界的交点处产生的应力集中而引起的。 (C)2004 Kluwer学术出版社。 [参考:13]

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