Dynamic Behavior of Materials MA Meyers John Wiley & Sons, 1994 | 4929 | 1994 |
Mechanical behavior of materials MA Meyers, KK Chawla Cambridge university press, 2008 | 4815 | 2008 |
Biological materials: Structure and mechanical properties MA Meyers, PY Chen, AYM Lin, Y Seki Progress in materials science 53 (1), 1-206, 2008 | 2971 | 2008 |
The onset of twinning in metals: a constitutive description MA Meyers, O Vöhringer, VA Lubarda Acta materialia 49 (19), 4025-4039, 2001 | 1816 | 2001 |
Biomedical applications of titanium and its alloys CN Elias, JHC Lima, R Valiev, MA Meyers Jom 60, 46-49, 2008 | 1314 | 2008 |
Structural biological materials: critical mechanics-materials connections MA Meyers, J McKittrick, PY Chen science 339 (6121), 773-779, 2013 | 1144 | 2013 |
Mechanical properties of high-entropy alloys with emphasis on face-centered cubic alloys Z Li, S Zhao, RO Ritchie, MA Meyers Progress in Materials Science 102, 296-345, 2019 | 942 | 2019 |
Keratin: Structure, mechanical properties, occurrence in biological organisms, and efforts at bioinspiration B Wang, W Yang, J McKittrick, MA Meyers Progress in materials science 76, 229-318, 2016 | 940 | 2016 |
Mechanical metallurgy M Meyers, K Chawla Prentice hall, 1984 | 916* | 1984 |
Functional gradients and heterogeneities in biological materials: Design principles, functions, and bioinspired applications Z Liu, MA Meyers, Z Zhang, RO Ritchie Progress in Materials Science 88, 467-498, 2017 | 817 | 2017 |
Biological materials: functional adaptations and bioinspired designs PY Chen, J McKittrick, MA Meyers Progress in Materials Science 57 (8), 1492-1704, 2012 | 811 | 2012 |
Structural design elements in biological materials: application to bioinspiration SE Naleway, MM Porter, J McKittrick, MA Meyers Advanced materials 27 (37), 5455-5476, 2015 | 659 | 2015 |
Microstructural evolution in adiabatic shear localization in stainless steel MA Meyers, YB Xu, Q Xue, MT Perez-Prado, TR McNelley Acta Materialia 51 (5), 1307-1325, 2003 | 649 | 2003 |
Dynamic recrystallization in high-strain, high-strain-rate plastic deformation of copper U Andrade, MA Meyers, KS Vecchio, AH Chokshi Acta metallurgica et materialia 42 (9), 3183-3195, 1994 | 568 | 1994 |
Structure and mechanical properties of crab exoskeletons PY Chen, AYM Lin, J McKittrick, MA Meyers Acta biomaterialia 4 (3), 587-596, 2008 | 548 | 2008 |
Shock waves and high-strain-rate phenomena in metals: concepts and applications M Meyers Springer Science & Business Media, 2012 | 544 | 2012 |
Microstructural evolution in copper subjected to severe plastic deformation: Experiments and analysis A Mishra, BK Kad, F Gregori, MA Meyers Acta materialia 55 (1), 13-28, 2007 | 528 | 2007 |
On the tear resistance of skin W Yang, VR Sherman, B Gludovatz, E Schaible, P Stewart, RO Ritchie, ... Nature communications 6 (1), 6649, 2015 | 487 | 2015 |
The structure, functions, and mechanical properties of keratin J McKittrick, PY Chen, SG Bodde, W Yang, EE Novitskaya, MA Meyers Jom 64, 449-468, 2012 | 467 | 2012 |
Mechanical strength of abalone nacre: role of the soft organic layer MA Meyers, AYM Lin, PY Chen, J Muyco Journal of the mechanical behavior of biomedical materials 1 (1), 76-85, 2008 | 459 | 2008 |