Marc P. Zupan, Ph.D.
Affiliations: | 2001 | Johns Hopkins University, Baltimore, MD |
Area:
Mechanical Engineering, Materials Science EngineeringGoogle:
"Marc Zupan"Parents
Sign in to add mentorKevin J. Hemker | grad student | 2001 | Johns Hopkins | |
(Microsample characterization of the tensile and compressive mechanical properties of single crystalline gamma -TiAl.) |
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Publications
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Everett RK, Duffy ME, Storck SM, et al. (2020) A Variogram Analysis of Build Height Effects in an Additively Manufactured AlSi10Mg Part Additive Manufacturing. 35: 101306 |
Jang E, Poosapati A, Jang N, et al. (2019) Thermoelectric properties enhancement of p-type composite films using wood-based binder and mechanical pressing. Scientific Reports. 9: 7869 |
Nimer S, Everett RK, Zupan M. (2019) Microtensile characterization of titanium 5111 alloy mechanical properties and comparison of failure mechanisms at two microstructural length scales Materials & Design. 183: 108081 |
Nimer S, Wolk J, Zupan M. (2014) Location and Orientation Specific Material Property Evaluation of Friction Stir Welded Ti‐5111: A Microsample Approach Advanced Engineering Materials. 16: 452-458 |
Arteiro A, Reis ALMA, Nóvoa PJRO, et al. (2013) Low velocity impact and flexural performance of sandwich structures with cork and polymer foam cores CiêNcia & Tecnologia Dos Materiais. 25: 79-84 |
Markkula S, Malecki HC, Zupan M. (2013) Uniaxial tension and compression characterization of hybrid CNS–glass fiber–epoxy composites Composite Structures. 95: 337-345 |
Nimer S, Wolk J, Zupan M. (2013) Local property characterization of friction stir welded Ti-5111: Transverse orientation measurements Acta Materialia. 61: 3050-3059 |
Storck S, Malecki H, Shah T, et al. (2011) Improvements in interlaminar strength: A carbon nanotube approach Composites Part B-Engineering. 42: 1508-1516 |
Fleischer CA, Zupan M. (2010) Mechanical Performance of Pumice-reinforced Epoxy Composites Journal of Composite Materials. 44: 2679-2696 |
Markkula S, Storck S, Burns D, et al. (2009) Compressive Behavior of Pyramidal, Tetrahedral, and Strut‐Reinforced Tetrahedral ABS and Electroplated Cellular Solids Advanced Engineering Materials. 11: 56-62 |