4.4 Article

Extrusions and intrusions in fatigued metals. Part 2. AFM and EBSD study of the early growth of extrusions and intrusions in 316L steel fatigued at room temperature

期刊

PHILOSOPHICAL MAGAZINE
卷 89, 期 16, 页码 1337-1372

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/14786430902917624

关键词

316L steel; fatigue; AFM; EBSD; FIB; persistent slip band; persistent slip marking; extrusion; intrusion

资金

  1. Agency of the Czech Republic [106/06/1096, 101/07/1500]
  2. Academy of Sciences of the Czech Republic [IQS200410502]
  3. [AVOZ 2041057]

向作者/读者索取更多资源

Early stages of surface relief evolution of persistent slip markings (PSMs), formed in areas where persistent slip bands (PSBs) intersect the free surface, in polycrystalline 316L stainless steel cycled with constant plastic strain amplitude were Studied using atomic force microscopy (AFM) and electron backscattering diffraction (EBSD) Focused ion beam (FIB) technique was employed to obtain additional, more detailed information on the shape of PSMs. To reveal true qualitative and quantitative information oil the simultaneous growth of intrusions and extrusions Within individual PSMs, identical areas both oil the specimen surface and oil its inverse copy obtained via plastic replica were Studied using AFM. Intrusions tire preceded by extrusions regardless of orientation of individual grains of the polycrystal. The first intrusions appear largely around 1% of fatigue life at the moment when 'static' extrusions are developed. They appear predominantly but not exclusively at the side of extrusions where file emerging active slip plane is inclined to the surface at an acute angle. They grow faster than the stage of stable extrusion growth. Typical morphology of mature PSMs developed at 15%, of fatigue life consists of ribbon-like extrusions accompanied by two thin parallel intrusions along both PSB-matrix interfaces. Experimental data oil the morphology and growth of extrusions and intrusions are discussed in relation to the theoretical models and computer Simulations Of surface relief evolution leading to fatigue crack initiation.

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