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Deformation Fatigue and Fracture vis-a-vis Deformation Induced Martensite in AISI 304LN Stainless Steel

机译:AISI 304LN不锈钢中的变形疲劳和裂缝Vis-A-Vis变形诱导马氏体

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Understanding of deformation, fracture or fatigue behaviour of AISI 304LN grade stainless steel with reference to in-situ evolution of deformation induced martensite (DIM) is important for the structural integrity of numerous critical engineering components made of this steel. The primary objective of this report is to present a concise overview on the state-of-the-art of these aspects based on a series of investigations by the authors and their co-workers through over more than a decade. The major experiments involved are determination of tensile, fatigue and fracture behaviour of the steel using standard testing procedures. The associated structural and sub-structural changes in the deformation volume or at local regions such as fracture surfaces or crack tips are characterized. The nature and amount of DIM have been detected through microstructural analysis, X-ray diffraction, hardness measurement, ferrofluid based technique, ferritoscope assessment and TEM, in addition to extensive fractographic analysis by SEM. The major highlights of the investigations centre on revelations of the role of DIM on tensile deformation of 304LN stainless steel at various strain rates and temperatures, illustrating the association of DIM with constrained and unconstrained deformation ahead of crack tips in monotonic and cyclic fracture tests, and examination of the extent of DIM transformation during stress controlled and strain controlled cyclic loading and fatigue crack growth, with an underlying theme of continuously emphasizing the nature, location and amount of DIM formed.
机译:了解AISI 304LN级不锈钢的变形,断裂或疲劳行为,参考变形诱导的马氏体(DIM)的原位演化对于由该钢制成的许多关键工程部件的结构完整性是重要的。本报告的主要目的是根据作者及其同事通过超过十年的一系列调查,提出了关于这些方面的最先进的概述。所涉及的主要实验是使用标准测试程序测定钢的拉伸,疲劳和断裂行为。表征了变形体积的相关结构和副结构变化或诸如裂缝表面或裂纹提示的局部区域。通过微观结构分析,X射线衍射,硬度测量,Ferrofroce评估和TEM,除了通过SEM进行广泛的地形分析,还检测到暗淡的性质和量。调查中心关于昏暗的作用的主要亮点在各种应变速率和温度下的304LN不锈钢的拉伸变形作用,说明了微调和无约束变形的暗淡和循环骨折试验中的裂缝提示的关系,以及检查应激控制和应变控制循环加载和疲劳裂纹生长期间的暗变化程度,具有连续强调性质,位置和暗淡的暗淡的潜在主题。

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