Biography

Prof. Xiaosheng Gao

The University of Akron, USA

Professor


Email: [email protected]


Qualifications

1998 Ph.D., Brown University, Mechanical Engineering

1995 M.Sc., Brown University, Applied Mathematics

1990 M.Sc., Xi’an Jiaotong University, Solid Mechanics

1987 B.Sc., Xi’an Jiaotong University, Mechanical Engineering


Publications (Selected)

  1. Hill, L, Bagnoli, K, Twombly, E, Punch, E, Gao, X, & Wilkowski, G. "Sensitivity Studies on the Evaluations of Hydrogen Effects on Linepipe Integrity Challenges." Proceedings of the 2024 15th International Pipeline Conference. Volume 5: Risk and Reliability; Offshore, Upstream, and Production Pipelines; Emerging Fuels and Greenhouse Gas Emissions. Calgary, Alberta, Canada. September 23–27, 2024. V005T09A032. ASME. https://doi.org/10.1115/IPC2024-134020
  2. Rao, G., Huang, C. and Gao, X.  “Multiscale Modeling of Hydrogen Transport in Steels and Its Resulting Embrittlement Effect.” Proceedings of the 16th World Congress in Computational Mechanics (Eds. A. Korobenko, M. Laforest, S. Prudhomme, R. Vaziri). Vancouver, Canada 21-26, July 2024. doi: 10.23967/wccm.2024.013.
  3. Wang X, Wong S-C, Gao X, Moon SW. Low-velocity impact behavior of woven fabric-reinforced natural rubber composites. Plastics, Rubber and Composites. 2024;53(5-7):107-116. doi:10.1177/14658011241255060
  4. Wang X, Wong S-C, Gao X, Moon SW, Xie Y. Scratch performance of natural rubber and natural rubber composites reinforced with nylon, kevlar, and carbon fabrics. Plastics, Rubber and Composites. 2024; 53(2-4):85-94. doi:10.1177/14658011241234194
  5. Miao, Y., Lv, S., Srivatsan, T.S. and Gao, X. Progress and Opportunities in Computational Modeling of Localized Corrosion. Corrosion. 2023; 79(10): 1135–1152. https://doi.org/10.5006/4301.
  6. Zhao, J., Ren, Z., Gao, X., Dong, Y. and Ye, C. Gradient Plasticity in Gradient Nanocrystalline Metals: Extra Toughness from Dislocation Migration. Mechanics of Materials. 2021; 158: 103879. https://doi.org/10.1016/j.mechmat.2021.103879.
  7. Huang C. and Gao, X. Phase Field Modeling of Hydrogen Embrittlement. International Journal of Hydrogen Energy. 2020; 45: 20053–20068. https://doi.org/10.1016/j.ijhydene.2020.05.015.
  8. Zeng, C. and Gao, X. Stability of an Anisotropic Dielectric Elastomer Plate. International Journal of Non-Linear Mechanics. 2020; 124: 103510. https://doi.org/10.1016/j.ijnonlinmec.2020.103510.
  9. Shen, C., Zhang, C., Gao, X. and Li, Y. Fragmentation of Shells: an Analogy with the Crack Formation in Tree Bark. Philosophical Magazine Letters. 2020; 100(6): 294–305. https://doi.org/10.1080/09500839.2020.1761037.
  10. Zeng, C. and Gao, X. Effect of the Deformation Dependent Permittivity on the Actuation of a Pre-Stretched Circular Dielectric Actuator. Mechanics Research Communications. 2019; 101: 103420. https://doi.org/10.1016/j.mechrescom.2019.103420.
  11. Huang C. and Gao, X. Development of a Phase Field Method for Modeling Brittle and Ductile Fracture. Computational Materials Science. 2019; 169: 109089. https://doi.org/10.1016/j.commatsci.2019.109089.
  12. Luo, T., Huang, C. and Gao, X. An Investigation of the Effect of Hydrogen on Ductile Fracture Using a Unit Cell Model. International Journal of Hydrogen Energy. 2019; 44: 8627-8640. https://doi.org/10.1016/j.ijhydene.2019.02.069.
  13. Liu, J., Zhong, D., Li, Y., Tang, Z., Gao, X., Zhang Z. and Huang, F. Numerical Simulation and Test on Damage of Rotary Engine Blades Impacted by Bird. International Journal of Crashworthiness. 2019; 24(1): 106-120. https://doi.org/10.1080/13588265.2018.1452548.
  14. Huang, C., Luo, T., Gao, X. and Graham, S.M. Modeling the Effect of Hydrogen on Ductile Fracture. Materials Performance and Characterization. 2018; 7(2): 101-118. https://doi.org/10.1520/MPC20170073.
  15. Luo, T. and Gao, X. On the Prediction of Ductile Fracture by Void Coalescence and Strain Localization. Journal of the Mechanics and Physics of Solids. 2018; 113: 82-104. https://doi.org/10.1016/j.jmps.2018.02.002.
  16. Tan, X., Guo, W.G., Gao, X., Liu, K., Wang, J. and Zhou, P.  A New Technique for Conducting Split Hopkinson Tensile Bar Test at Elevated Temperatures. Experimental Techniques. 2017; 41(2): 191-201. https://doi.org/10.1007/s40799-017-0167-4.
  17. Wang, W., Dai, Y., Zhang C., Gao, X. and Zhao, M. Micromechanical Modeling of Fiber-Reinforced Composites with Statistically Equivalent Random Fiber Distribution. Materials. 2016; 9(8): 624. https://doi.org/10.3390/ma9080624.
  18. Zhai, J., Luo, T., Gao, X., Graham, S.M., Baral, M., Korkolis, Y.P. and Knudsen, E. Modeling the Ductile Damage Process in Commercially Pure Titanium. International Journal of Solids and Structures. 2016; 91: 26-45. https://doi.org/10.1016/j.ijsolstr.2016.04.031.
  19. Liu, J., Li, Y., Gao, X., Liu, P. and L. Kong Dynamic Response of Bird Strike on Aluminum Foam-Based Sandwich Panels. International Journal of Crashworthiness. 2015; 20: 325-336. https://doi.org/10.1080/13588265.2014.1002228.
  20. Wang, J., Guo, W.G., Gao, X. and Su, J. The Third-Type of Strain Aging and the Constitutive Modeling of a Q235B Steel over a Wide Range of Temperatures and Strain Rates. International Journal of Plasticity. 2015; 65: 85-107. https://doi.org/10.1016/j.ijplas.2014.08.017.

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