部分代表性论文
[1] T. Zeng. Z. B. Liu, C. J.Jia and Y. Yao, 2020. Elasto-plastic behavior of the Fontainebleau sandstonebased on a refined continuous strain deviation approach, EUR. J. ENVIRON. CIV.EN. (中科院小类四区)
[2] T. Zeng, J. F. Shao, Y. Yao, 2019. An upscaled model for elastoplastic behavior of the Callovo-Oxfordian argillite, Comput. Geotech. 112, 81–92 (中科院小类二区)
[3] T. Zeng, J. F. Shao, Y. Yao, 2019. A micromechanical based elasto-viscoplastic model for the Callovo-Oxfordian argillite: algorithms, validations and applications, INT. J. NUMER. ANAL. MET (中科院小类三区)
[4] T. Zeng, J. F. Shao, W. Y. Xu, 2015. A micromechanical model for the elastic-plastic behavior of porous rocks, Comput. Geotech., 70, 130–137 (中科院小类二区)
[5] Tao Zeng, Jian-Fu Shao, Weiya Xu, 2015, A self-consistent approach for micro-macro modeling of elastic-plastic deformation in polycrystalline geomaterials, INT. J. NUMER. ANAL. MET.,39,1735–1752 (中科院小类三区)
[6] Tao Zeng, Jian-Fu Shao, Wei-Ya Xu, 2015. Micromechanical modeling of elasto-viscoplastic behavior for granite, C. R. MECANIQUE, 343, 121–132 (中科院小类四区)
[7] T. Zeng, J. F. Shao, W. Y. Xu, 2014. Multiscale modeling of cohesive geomaterials with a polycrystalline approach, MECH. MATER., 69(1), 132–145 (中科院小类二区)
[8] T. Zeng, J. F. Shao, W. Y. Xu, 2014. Modeling of viscoplastic deformation in geomaterials with a polycrystalline approach, Int. J. Rock Mech. Min. Sci., 72, 182–190 (中科院小类一区)
[9] Liu Lu, Yao Yao, Zeng Tao. A micromechanical analysis to the elasto-viscoplastic behavior of solder alloys[J]. International Journal of Solids and Structures, 2019, 159: 211-220.(中科院小类二区)
[10] Liu Lu, Yao Yao, Zeng Tao, Keer L. M. A micromechanical model considering dislocation density based intra-granular backstress under cyclic loading[J]. Mechanics of Materials, 2019, 129: 41-49.(中科院小类二区)
科研获奖
[1] 深部复杂条件下水力压裂及岩石力学研究,陕西高等学校科学技术奖一等奖,第二完成人,2021.1。