Edward G. Obbard

University of New South Wales, NSW, Australia 
Materials Engineering
"Edward Obbard"
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Cross-listing: Materials Tree


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Rui Yang grad student 2006-2010
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Ikeuchi D, King DJM, Laws KJ, et al. (2019) Cr-Mo-V-W: A new refractory and transition metal high-entropy alloy system Scripta Materialia. 158: 141-145
Hao YL, Gong DL, Li T, et al. (2018) Continuous and reversible atomic rearrangement in a multifunctional titanium alloy Materialia. 2: 1-8
Wang HL, Hao YL, He SY, et al. (2017) Tracing the coupled atomic shear and shuffle for a cubic to a hexagonal crystal transition Scripta Materialia. 133: 70-74
Wang HL, Shah SAA, Hao YL, et al. (2017) Stabilizing the body centered cubic crystal in titanium alloys by a nano-scale concentration modulation Journal of Alloys and Compounds. 700: 155-158
Wang HL, Hao YL, He SY, et al. (2017) Elastically confined martensitic transformation at the nano-scale in a multifunctional titanium alloy Acta Materialia. 135: 330-339
Hao YL, Wang HL, Li T, et al. (2016) Superelasticity and Tunable Thermal Expansion across a Wide Temperature Range Journal of Materials Science & Technology. 32: 705-709
Zhang YW, Li SJ, Obbard EG, et al. (2011) Elastic properties of Ti-24Nb-4Zr-8Sn single crystals with bcc crystal structure Acta Materialia. 59: 3081-3090
Obbard EG, Hao YL, Akahori T, et al. (2010) Mechanics of superelasticity in Ti-30Nb-(8-10)Ta-5Zr alloy Acta Materialia. 58: 3557-3567
Song QL, Wang ML, Obbard EG, et al. (2006) Degradation of small-molecule organic solar cells Applied Physics Letters. 89: 251118
Zhang ST, Ding XM, Zhao JM, et al. (2004) Buffer-layer-induced barrier reduction: Role of tunneling in organic light-emitting devices Applied Physics Letters. 84: 425-427
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