Wael Z. Abuzaid, Ph.D.
Affiliations: | 2012 | Mechanical Sci and Engineering | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
Area:
metalloproteins, DNAzymes, nanomaterialsGoogle:
"Wael Abuzaid"Mean distance: 8.34 | S | N | B | C | P |
Parents
Sign in to add mentorHuseyin Sehitoglu | grad student | 2012 | UIUC (E-Tree) | |
(Quantitative understanding of the role of grain boundaries in polycrystalline deformation via multiscale digital image correlation.) |
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Publications
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Yaacoub J, Abuzaid W, Brenne F, et al. (2020) Superelasticity of (TiZrHf)50Ni25Co10Cu15 high entropy shape memory alloy Scripta Materialia. 186: 43-47 |
Alkhader M, Abuzaid W, Elyoussef M, et al. (2020) Localized strain fields in honeycomb materials with convex and concaved cells European Journal of Mechanics a-Solids. 80: 103890 |
Yaacoub J, Wu Y, Abuzaid W, et al. (2019) Martensite variant localization effects on fatigue crack growth - The CuZnAl example Scripta Materialia. 171: 112-117 |
Abuzaid W, Sehitoglu H. (2019) Shape memory effect in FeMnNiAl iron-based shape memory alloy Scripta Materialia. 169: 57-60 |
Wu Y, Yaacoub J, Brenne F, et al. (2019) Deshielding effects on fatigue crack growth in shape memory alloys- A study on CuZnAl single-crystalline materials Acta Materialia. 176: 155-166 |
Abuzaid W, Alkhader M, Omari M. (2018) Experimental analysis of heterogeneous shape recovery in 4d printed honeycomb structures Polymer Testing. 68: 100-109 |
Abuzaid W, Sehitoglu H. (2018) Plastic strain partitioning in dual phase Al13CoCrFeNi high entropy alloy Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 720: 238-247 |
Abuzaid W, Sehitoglu H. (2018) Superelasticity and functional fatigue of single crystalline FeNiCoAlTi iron-based shape memory alloy Materials & Design. 160: 642-651 |
Wu Y, Bönisch M, Alkan S, et al. (2018) Experimental determination of latent hardening coefficients in FeMnNiCoCr International Journal of Plasticity. 105: 239-260 |
Abuzaid W, Sehitoglu H. (2017) Functional fatigue of Ni50.3Ti25Hf24.7 – Heterogeneities and evolution of local transformation strains Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 696: 482-492 |