Publications

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G. Proust, G.C. Kaschner, I.J. Beyerlein, B. Clausen, D.W. Brown, R.J. McCabe, and C.N. Tomé. "Detwinning of high-purity zirconium: In-situ neutron diffraction experiments." Experimental Mechanics 50 (2010): 125-133.
P.K. Porwal, I.J. Beyerlein, and S.L. Phoenix. "Statistical strength of twisted fiber bundles with load sharing controlled by frictional length scales." Journal of Mechanics of Materials and Structures 2 (2007): 773-791.
P.K. Porwal, I.J. Beyerlein, and S.L. Phoenix. "Statistical strength of a twisted fiber bundle: an extension of Daniels equal-load-sharing parallel bundle theory." Journal of Mechanics of Materials and Structures 1 (2006): 1425-1447.
S.L. Phoenix, and I.J. Beyerlein. "Statistical strength theory for fibrous composite materials." In Comprehensive Composites, 559-639. Vol. 1. Elsevier: Amsterdam, 2000.
S.L. Phoenix, and I.J. Beyerlein. "Distributions and size scalings for strength in a one-dimensional random lattice with load redistribution to nearest and next-nearest neighbors." Physical Review E 62 (2000): 1622-1645.
Peng, Xiaoyao, Abigail Hunter, Irene J. Beyerlein, Ricardo A. Lebensohn, Kaushik Dayal, and Enrique Martinez. "Non-orthogonal computational grids for studying dislocation motion in phase field approaches." Computational Materials Science 200 (2021): 110834.
Peng, Xiaoyao, Nithin Mathew, Irene J. Beyerlein, Kaushik Dayal, and Abigail Hunter. "A 3D phase field dislocation dynamics model for body-centered cubic crystals." Computational Materials Science 171 (2020): 109217.
Peng, Xiaoyao, Nithin Mathew, Irene J. Beyerlein, Enrique Martinez, and Abigail Hunter. "A combined kinetic Monte Carlo and phase field approach to model thermally activated dislocation motion." Computational Materials Science 230 (2023): 112490.
Pathak, Siddhartha, Nenad Velisavljevic, Kevin J. Baldwin, Manish Jain, Shijian Zheng, Nathan A. Mara, and Irene J. Beyerlein. "Strong, Ductile, and Thermally Stable bcc-Mg Nanolaminates." Scientific Reports 7 (2017): 8264.