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Amro Shehata Mohamed Shehata Fayed
Faculty Engineering - Department Material Engineering
Scientific degrees
BSc In NULL, [1991]
MSc In NULL, [1998]
PhD In NULL, [2002]
(لا يوجد)
الحالة الوظيفية الحالية :
قائم باجازة خاصة
Academic Jobs
معيد : 26/8/1991
Doctor Assisant : 14/4/1998
Doctor : 24/12/2002
Professor Assisant : 29/7/2010
Professor : 23/7/2024
Publications
1 -
Size effect of asymmetric four point bend specimen on crack propagation in ceramics (2008).
2 -
"Crack path in steel fiber reinforced concrete composite under mixed mode (2008).
3 -
Modelling of cracking sites/development in axial dovetail joints of aero-engine compressor discs (2006).
4 -
Cyclic crack tip deformation of short cracks emanating from elliptical oblique notches (2006).
5 -
Notch elastic affected zone of oblique elliptical edge notches (2006).
6 -
Numerical approach to the mechanics of disc blade dovetail joints in aero engine compressors (2005).
7 -
Stress intensity factors of a central slant crack with frictional surfaces in plates with biaxially loading (2004).
8 -
Crack tip plasticity and the effect of stress ratio on early notch fatigue crack growth rates (2004).
9 -
Numerical Analysis of Crack Initiation Direction in Quasi-brittle Materials: Effect of T-Stress (2019).
10 -
Numerical evaluation of mode I/II SIF of quasi-brittle materials using cracked semi-circular bend specimen (2018).
11 -
Numerical analysis of mixed mode I/II stress intensity factors of edge slant cracked plates (2016).
12 -
Morphological, mechanical, and thermal characterization of electrospun three‐dimensional graphite nanoplatelets/polystyrene ultra‐fine fibril composite fabrics (2021).
13 -
Modes I/II SIF of a diametrically compressed Brazilian disc having a central inclined crack with frictional surfaces (2017).
14 -
"Mixed mode fracture behavior of fiber reinforced concrete; Experimental and numerical analysis adopting cracked Brazilian disc specimen" (2023).
15 -
STRESS INTENSITY FACTORS OF PARTIALLY COMPRESSED CENTRALLY CRACKED DISK WITH FRICTIONAL CRACK SURFACES (2023).
Research Area
Crack Path
Engineering Materials
Fatigue
Fracture Mechanics
Numerical Analysis
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