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Effect of inclusion and microstructure on the very high cycle fatigue behaviors of high strength bainite/martensite multiphase steels

机译:夹杂物和组织对高强度贝氏体/马氏体多相钢极高循环疲劳行为的影响

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摘要

We studied the mutual and relative effect of inclusion and microstructure on very high cycle fatigue (VHCF) behavior of bainite/martensite (B/M) multiphase steel by designing four combinations of various inclusion sizes and microstructures. Results show that the fatigue crack initiations are mostly induced by inclusions in the specimens with large inclusion size, whereas the "non-inclusion induced crack initiations" (NIICI) are observed in the specimens whose microstructure is coarse. Unlike the inclusion induced cracks that grow along the plane of maximum tensile stress, the early non-inclusion induced cracks within micro-facet propagate along the plane of maximum shear stress (Le., Stage I crack), which is related to the strain localization in oriented B/M laths during cyclic loading. Finally, with the assistance of scanning electron microscopy, electron backscatter diffraction, 3-Dimensional surface profile, focused ion beam and transmission electron microscopy, we proposed the NIICI mechanism of coarse B/M microstructure, and found the orientation and size of coarse B/M block and blocky retained austenite (RA) are crucial microstructural factors in facilitating the formation of NIICI within VHCF regime.
机译:通过设计四种不同夹杂物尺寸和显微组织的组合,我们研究了夹杂物和显微组织对贝氏体/马氏体(B / M)多相钢的超高循环疲劳(VHCF)行为的相互影响和相对影响。结果表明,疲劳裂纹萌生主要是由夹杂物较大的试样中的夹杂物引起的,而在显微组织较粗糙的试样中则观察到“非夹杂物引起的裂纹萌生”(NIICI)。与沿最大拉伸应力平面生长的夹杂物诱发的裂纹不同,微面内的早期非夹杂物诱导的裂纹沿最大剪切应力的平面传播(例如,第一阶段裂纹),这与应变局部化有关在循环加载过程中定向的B / M板条中。最后,借助扫描电子显微镜,电子反向散射衍射,三维表面轮廓,聚焦离子束和透射电子显微镜,我们提出了NIICI粗B / M微观结构的机理,并发现了粗B / M的取向和大小。 M块和块状残余奥氏体(RA)是在VHCF方案中促进NIICI形成的关键微观结构因素。

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