Derek H. Warner
Affiliations: | Applied Physics | Cornell University, Ithaca, NY, United States |
Area:
Condensed Matter Physics, Materials Science EngineeringGoogle:
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Publications
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Niederwanger A, Warner DH, Lener G. (2020) The utility of laser scanning welds for improving fatigue assessment International Journal of Fatigue. 140: 105810 |
Molaei R, Fatemi A, Sanaei N, et al. (2020) Fatigue of additive manufactured Ti-6Al-4V, Part II: The relationship between microstructure, material cyclic properties, and component performance International Journal of Fatigue. 132: 105363 |
Pegues JW, Shao S, Shamsaei N, et al. (2020) Fatigue of additive manufactured Ti-6Al-4V, Part I: The effects of powder feedstock, manufacturing, and post-process conditions on the resulting microstructure and defects International Journal of Fatigue. 132: 105358 |
Li P, Warner DH, Phan N. (2020) Predicting the fatigue performance of an additively manufactured Ti-6Al-4V component from witness coupon behavior Additive Manufacturing. 35: 101230 |
Li P, Warner DH, Pegues JW, et al. (2019) Investigation of the mechanisms by which hot isostatic pressing improves the fatigue performance of powder bed fused Ti-6Al-4V. International Journal of Fatigue. 120: 342-352 |
Li P, Warner DH, Pegues JW, et al. (2019) Towards predicting differences in fatigue performance of laser powder bed fused Ti-6Al-4V coupons from the same build International Journal of Fatigue. 126: 284-296 |
Aghababaei R, Warner DH, Molinari JF. (2017) On the debris-level origins of adhesive wear. Proceedings of the National Academy of Sciences of the United States of America |
Bomarito GF, Warner DH. (2017) Predicting the ductile failure of Al5083-H116 specimens with a mechanistic model and no free fitting parameters International Journal of Solids and Structures. 112: 25-34 |
Saroukhani S, Warner DH. (2017) Investigating dislocation motion through a field of solutes with atomistic simulations and reaction rate theory Acta Materialia. 128: 77-86 |
Aghababaei R, Warner DH, Molinari JF. (2016) Critical length scale controls adhesive wear mechanisms. Nature Communications. 7: 11816 |