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Experimental and Numerical Evaluation on Deformation and Fracture Mechanism of Cast Duplex Stainless Steel Tubular Specimen
- Source :
- Materials; Volume 13; Issue 15; Pages: 3430, Materials, Materials, Vol 13, Iss 3430, p 3430 (2020)
- Publication Year :
- 2020
- Publisher :
- Multidisciplinary Digital Publishing Institute, 2020.
-
Abstract
- The deformation behavior and fracture mechanism of cast duplex stainless steel tubular specimens under different tensile stages were investigated through experimental and numerical evaluation. The results showed that the axial stress was redistributed due to the necking of the tubular specimen, the axial stress near the internal wall was larger than those near the external wall, and its maximum axial stress was distributed between the internal wall and the center of the wall thickness. Microcracks and voids were initiated under the maximum shear stress along the δ/γ phase interface and propagated to the ferrite interior. The voids were connected and merged into the main crack through the propagation of the microcracks. Moreover, the main crack first propagated to the internal wall and then rapidly propagated to the external wall. The fracture morphology can be divided into three types: shear lip zones that can be found on both the internal and external walls, and shear lip zones that can be found on either only the internal wall or the external wall.
- Subjects :
- Materials science
education
02 engineering and technology
lcsh:Technology
01 natural sciences
Article
tubular specimen
fracture mechanism
numerical evaluation
cast duplex stainless steel
Ferrite (iron)
0103 physical sciences
Ultimate tensile strength
Shear stress
General Materials Science
Composite material
lcsh:Microscopy
lcsh:QC120-168.85
010302 applied physics
lcsh:QH201-278.5
lcsh:T
021001 nanoscience & nanotechnology
Shear (geology)
lcsh:TA1-2040
Duplex (building)
Cylinder stress
lcsh:Descriptive and experimental mechanics
lcsh:Electrical engineering. Electronics. Nuclear engineering
lcsh:Engineering (General). Civil engineering (General)
0210 nano-technology
Wall thickness
lcsh:TK1-9971
Necking
Subjects
Details
- Language :
- English
- ISSN :
- 19961944
- Database :
- OpenAIRE
- Journal :
- Materials; Volume 13; Issue 15; Pages: 3430
- Accession number :
- edsair.doi.dedup.....c09e88bc78704dfecb9ce8441a684fb6
- Full Text :
- https://doi.org/10.3390/ma13153430