Kevin J. Hemker
Affiliations: | Mechanical Engineering | Johns Hopkins University, Baltimore, MD |
Area:
Mechanical Engineering, Materials Science Engineering, High Temperature PhysicsWebsite:
https://engineering.jhu.edu/faculty/kevin-hemker/Google:
"Kevin J. Hemker"Bio:
https://hemkerlab.jhu.edu/kevin-hemker/
https://scholar.google.com/citations?user=9lQafCAAAAAJ&hl=en
https://www.proquest.com/openview/7413b94b49ecf2f44b8f4d4bf3f3d91d/1
Parents
Sign in to add mentorWilliam D. Nix | grad student | 1990 | Stanford (Chemistry Tree) | |
(A study of the high-temperature deformation of the intermetallic alloy Ni3Al) |
Children
Sign in to add traineeThomas J. Balk | grad student | 2001 | Johns Hopkins |
Marc P. Zupan | grad student | 2001 | Johns Hopkins |
Michael L. Glynn | grad student | 2003 | Johns Hopkins |
Daniel Gianola | grad student | 2007 | Johns Hopkins |
Daniel T. Butler | grad student | 2009 | Johns Hopkins |
Justin S. Jones | grad student | 2009 | Johns Hopkins |
John A. Sharon | grad student | 2011 | Johns Hopkins |
Paul Rottmann | grad student | 2017 | Johns Hopkins |
Gianna Valentino | grad student | 2019 | Johns Hopkins |
Mingwei Chen | post-doc | Johns Hopkins (Physics Tree) | |
Jessica A. Krogstad | post-doc | Johns Hopkins | |
Gi-Dong Sim | post-doc | 2014-2017 | Johns Hopkins |
Kelvin Xie | post-doc | 2012-2018 | Johns Hopkins |
Ankur Chauhan | post-doc | 2018-2020 | Johns Hopkins |
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Publications
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Xie KY, Hazeli K, Dixit N, et al. (2021) Twin boundary migration mechanisms in quasi-statically compressed and plate-impacted Mg single crystals. Science Advances. 7: eabg3443 |
Valentino GM, Shetty PP, Krogstad JA, et al. (2020) Fabrication of Freestanding Metallic Ni-Mo-W Microcantilever Beams With High Dimensional Stability Journal of Microelectromechanical Systems. 29: 329-337 |
Valentino GM, Shetty PP, Chauhan A, et al. (2020) Nanotwin formation in Ni–Mo–W alloys deposited by dc magnetron sputtering Scripta Materialia. 186: 247-252 |
Sun X, Chauhan A, Mallick DD, et al. (2020) Granular flow of an advanced ceramic under ultra-high strain rates and high pressures Journal of the Mechanics and Physics of Solids. 143: 104031 |
Straker M, Chauhan A, Sinha M, et al. (2020) Growth of high purity zone-refined Boron Carbide single crystals by Laser Diode Floating Zone method Journal of Crystal Growth. 543: 125700 |
Valentino GM, Krogstad JA, Weihs TP, et al. (2020) Tailoring the coefficient of thermal expansion of ternary nickel alloys through compositional control and non-contact measurements Journal of Alloys and Compounds. 833: 155024 |
Xiang S, Ma L, Yang B, et al. (2019) Tuning the deformation mechanisms of boron carbide via silicon doping. Science Advances. 5: eaay0352 |
Chauhan A, Sun X, Ramesh KT, et al. (2019) Dynamic failure mechanisms of granular boron carbide under multi-axial high-strain-rate loading Scripta Materialia. 173: 125-128 |
Xie KY, Reddy KM, Ma L, et al. (2019) Experimental observations of the mechanisms associated with the high hardening and low strain to failure of magnesium Materialia. 8: 100504 |
Yang Q, Hwang C, Marvel CJ, et al. (2019) Fabrication and characterization of arc melted Si/B co-doped boron carbide Journal of the European Ceramic Society. 39: 5156-5166 |