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郭翔
- 教师拼音名称:Guo Xiang
- 性别:男
- 职称:副教授
- 所属院系:机械工程学院
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· L.L. Zhu(*), X. Guo, H.H. Ruan, and J. Lu. Prediction of mechanical properties in bimodal nanotwinned metals with a composite structure. Composites Science and Technology, 123(1), 222–231 (2016). Impact factor: 4.873
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· G. Yang, X. Guo(*), G.J. Weng, L.L. Zhu, and R. Ji. Simulation of ballistic performance of coarse-grained metals strengthened by nanotwinned regions. Modelling and Simulation in Materials Science and Engineering, 23(8), 085009-1-22 (2015). Impact factor: 1.859
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· X. Guo(*), T. Yang, and G.J. Weng. 3D cohesive modeling of nanostructured metallic alloys with a Weibull random field in torsional fatigue. International Journal of Mechanical Sciences, 101, 227–240 (2015). Impact factor: 2.481
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· J.H. Wang, W.J. Zhang(*), X. Guo, A. Koizumi, and H. Tanaka. Mechanism for buckling of shield tunnel linings under hydrostatic pressure. Tunnelling and Underground Space Technology, 49, 144–155 (2015). Impact factor: 1.741
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· X. Guo(*), G. Yang, G.J. Weng, and L.L. Zhu. Numerical simulation of ballistic performance of bimodal nanostructured metals. Material Science and Engineering A, 630(1), 13–26 (2015). Impact factor: 2.647
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· L.L. Zhu(*), S.X. Qu, X. Guo, and J. Lu(*). Analysis of the twin spacing and grain size effects on mechanical properties in hierarchically nanotwinned face-centered cubic metals based on a mechanism-based plasticity model. Journal of the Mechanics and Physics of Solids, 76(1), 162–179 (2015). Impact factor: 3.875
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· X. Guo(*), R. Ji, G.J. Weng, L.L. Zhu, and J. Lu. Computer simulation of strength and ductility of nanotwin-strengthened coarse-grained metals. Modelling and Simulation in Materials Science and Engineering, 22(7), 075014-1-22 (2014). Impact factor: 2.167
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· X. Guo(*), R. Ji, G.J. Weng, L.L. Zhu, and J. Lu. Micromechanical simulation of fracture behavior of bimodal nanostructured metals. Material Science and Engineering A, 618(1), 479–489 (2014). Impact factor: 2.567
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· L.L. Zhu(*), X. Guo, and J. Lu(*). Surface stress effects on the yield strength in nanotwinned polycrystal face-centered-cubic metallic nanowires. Journal of Applied Mechanics, 81, 101002-1-6 (2014). Impact factor: 1.128
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· X. Guo(*), X.Y. Dai, L.L. Zhu, and J. Lu. Numerical investigation of fracture behavior of nanostructured Cu with bimodal grain size distribution. Acta Mechanica, 225(4), 1093–1106 (2014). Impact factor: 1.247