Publications of the HPC²

Publications by HPC centers and institutes include items from past years such as an early publication written by one of the HPC founding investigators, Dr. Joe Thompson. Numerical Grid Generation was originally published by Elsevier Science Publishing Co., Inc. in 1985, and the copyright was transferred to Joe F. Thompson in 1997.

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Publications for: Horstemeyer
Peer-Reviewed Journals
Francis, D.K., Bouvard, J.-L., Hammi, Y., & Horstemeyer, M. (2014). Formulation of a Damage Internal State Variable Model for Amorphous Glassy Polymers. International Journal of Solids and Structures. 51(15-16), 27652776. DOI:10.1016/j.ijsolstr.2014.03.025.

Lugo, M., Fountain, J. E., Hughes, J. M., Bouvard, J.-L., & Horstemeyer, M. (2014). Microstructure-based Fatigue Model of an Acrylonitrile Butadiene Styrene (ABS) Copolymer. Journal of Applied Polymer Science. Wiley. 131(20), 1-12. [Abstract]

Nayeon Lee, Horstemeyer, M., Rhee, H., Nabors, B., Liao, J., & Williams, Lakiesha N. (2014). Hierarchical Multiscale Structure-property Relationships of the Red-bellied Woodpecker (Melanerpes carolinus) Beak. Journal of the Royal Society Interface. 11(96). DOI:10.1098/rsif.2014.0274.

Liao, M., Li, B., & Horstemeyer, M. (2014). Interaction Between Basal Slip and a Mg17Al12 Precipitate in Magnesium. Metallurgical and Materials Transactions. 45A, 3661-3669.

Jordon, J. B., & Horstemeyer, M. (2014). Microstructure-sensitive Fatigue Modeling of AISI 4140 Steel. Journal of Engineering Materials and Technology of the ASME. ASME. 136(2), 021004.

Rhee, H., Tucker, M. T., Whittington, W. R., Horstemeyer, M., & Lim, H. (2014). Structure-property Responses of Bio-inspired Synthetic Foams at Low and High Strain Rates. Science and Engineering of Composite Materials. DOI:10.1515/secm-2013-0238.

Liyanage, Laalitha S. I., Kim, S., Houze, J., Kim, S., Tschopp, M. A., Baskes, M. I., & Horstemeyer, M. (2014). Structural, Elastic, and Thermal Properties of Cementite (Fe3C) Calculated Using a Modified Embedded Atom Method. PHYSICAL REVIEW B. APS. 89(9), 94102. DOI:10.1103/PhysRevB.89.094102.

Nouranian, S., Tschopp, M. A., Gwaltney, S. R., Baskes, M. I., & Horstemeyer, M. (2014). An Interatomic Potential for Saturated Hydrocarbons Based on the Modified Embedded-atom Method. Physical Chemistry Chemical Physics. 16(13), 6233-6249. DOI:10.1039/c4cp00027g. [Abstract] [Document Site]

Trim, M. W., Horstemeyer, M., Nayeon Lee, Williams, Lakiesha N., Liao, J., Rhee, H., & Prabhu, R. (2014). Geometric Effects on Stress Wave Propagation. Journal of Biomechanical Engineering. 136(2). DOI:10.1115/1.4026320.

Whittington, W. R., Oppedal, A. L., Turnage, S., Hammi, Y., Rhee, H., Allison, P., Crane, C. K., & Horstemeyer, M. (2014). Capturing the Effect of Temperature, Strain Rate, and Stress State on the Plasticity and Fracture of Rolled Homogeneous Armor (RHA) Steel. Materials Science and Engineering: A. Elsevier. 594, 82-88. DOI:10.1016/j.msea.2013.11.018. [Abstract] [Document Site]

Peer-Reviewed Conference Abstracts
Nouranian, S., Baskes, M. I., Tschopp, M. A., Gwaltney, S. R., & Horstemeyer, M. (2014). A Parameterized Interatomic Potential for Saturated Hydrocarbons Using the Modified Embedded-Atom Method. Conference abstract, TMS 2014 Annual Meeting and Exhibition, February 16-20. San Diego, CA. [Abstract] [Document Site]

Peer-Reviewed Conference Papers
Sukhija, N., Haupt, T., & Horstemeyer, M. (2014). Enhancing and Supporting Integrated Computational Material Science Engineering Education. proceedings of the 121st American Society for Engineering Education Annual Conference & Exposition (ASEE 2014). Indianapolis, IN.

Non-Refereed Conference Abstracts
Doude, H., Rhee, H., Wang, P., Horstemeyer, S., Malley, R., Ritter, T., Baker, D., & Radzilowski, R. (2014). Microalloying to Develop Third Generation Advanced High Strength Steels (3GAHSS). AIST Birmingham Region Chapter Meeting. New Orleans, LA. [Document]

Web Publications
Nouranian, S., Tschopp, M. A., Gwaltney, S. R., Baskes, M. I., & Horstemeyer, M. (2014). An Interatomic Potential For Saturated Hydrocarbons Based on the Modified Embedded-Atom Method. arXiv Preprint:1305.2759v7 [physics.chem-ph] (Physical Chemistry Chemical Physics). [Abstract] [Document Site]