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康國政

鎖定
康國政,1969年8月8日出生於貴州遵義。固體力學博士,教授,博士生導師,西南交通大學副校長,西南交通大學力學與工程學院院長,國家級力學實驗示範中心主任、西南交通大學委員會委員、常委 [13]  [1]  [10-12] 
康國政於1987年9月至1992年7月在清華大學材料工程系金屬材料及熱處理專業就讀大學本科。1994年3月至1997年12月在西南交通大學應用力學與工程系固體力學專業攻讀博士學位。1997年12月至2003年7月擔任西南交通大學應用力學與工程系講師、副教授。2010任西南交通大學力學與工程學院院長。 [2] 
康國政長期致力於材料循環本構關係與疲勞失效行為以及結構服役安全性分析,揭示了多種材料的循環變形特徵和疲勞失效行為,建立了新的材料本構關係和疲勞失效模型。 [3] 
中文名
康國政
國    籍
中國
民    族
漢族
出生地
貴州省遵義市
出生日期
1969年8月8日
畢業院校
西南交通大學
職    業
教育科研工作者
主要成就
獲得國家傑出青年基金

康國政人物經歷

青年時期的康國政(右二) 青年時期的康國政(右二)
1969年8月8日,康國政出生於貴州遵義。
1987年9月至1992年7月,在清華大學材料工程系金屬材料及熱處理專業就讀大學本科。
1992年9月至1994年2月,在西南交通大學材料系金屬材料專業攻讀碩士學位。
1994年3月至1997年12月,在西南交通大學應用力學與工程系固體力學專業攻讀博士學位。
1997年12月至2003年7月,擔任西南交通大學應用力學與工程系講師、副教授。
2001年9月至2002年9日,在本名古屋大學微系統工程系進行訪問學者合作研究。
2003年7月至2005年7月,擔任西南交通大學應用力學與工程系教授、系副主任。
2005年,入選教育部新世紀優秀人才支持計劃;同年,入選四川省傑出青年學術帶頭人培養計劃。
2005年7月至2008年6月,擔任西南交通大學應用力學與工程系教授、博士生導師、系副主任。
2007年,入選西南交通大學“揚華之星”高層次人才培養計劃。
2008年7月至2015年1月,擔任西南交通大學力學與工程學院教授、博士生導師、副院長、院長(2010)。
2008年11月至2009年1月,擔任澳大利亞Monash大學機械與航空工程系訪問教授。
2009年10月至2010年9月,擔任德國Bochum魯爾大學連續統力學研究所“洪堡”高級研究員。
2010年,獲得國家傑出青年基金。
2011年11月至2011年11月,擔任香港科技大學機械系訪問教授(7天)。
2012年3月至2012年9月,擔任德國Siegen大學土木系結構力學研究所“洪堡”高級研究員。
2014年12月至2014年12月,擔任新加坡南洋理工大學機械與航空系訪問教授(7天)。
2014年至2018年,擔任西南交通大學牽引動力國家重點實驗室主任 [14] 
2015年1月,擔任力學與工程學院院長。 [4] 
2021年12月,任西南交通大學副校長。 [10-11] 
2021年12月,任中共西南交通大學委員會委員、常委 [12] 

康國政職務任免

2023年5月5日,教育部發布通知,康國政任西南交通大學副校長,試用期滿,考核合格。經研究決定,正式任職,任職時間從試用之日起計算。 [15] 

康國政主要成就

康國政科研成就

  • 科研綜述
康國政主要研究領域為複雜加載和環境下的材料本構關係及其有限元實現研究;疲勞與斷裂;複合材料細觀力學研究;工程結構的有限元分析。長期致力於材料循環本構關係與疲勞失效行為以及結構服役安全性分析,揭示了多種材料的循環變形特徵和疲勞失效行為,建立了新的材料本構關係和疲勞失效模型。 [1]  [3]  [5] 
  • 承擔項目
截至2016年6月,康國政主持國家自然科學基金等國家級項目8項、省部級基金項目12項;在先進材料的循環本構理論和相關疲勞失效問題研究方面取得了一系列創新性的成果。 [1] 
代表性科研項目<br>
項目級別
項目名稱
國家自然科學基金項目
形狀記憶合金熱-力耦合循環變形和疲勞失效行為的宏微觀實驗和理論研究
介電高彈體熱-力-電耦合循環大變形行為的實驗和理論研究
國家級項目
神華重載鐵路貨車狀態檢修成套技術研究及裝備研製-關鍵零部件剩餘壽命預測模型及車輛子系統評判方法研究
CRH380型動車組動力學性能優化分析項目滾壓試驗車輪滾動接觸疲勞三維有限元分析
纖維增強塑料螺紋棒疲勞實驗
GH4169高温合金循環粘塑性本構模型研究項目
熱塑性聚合物材料的濕-熱-力耦合循環本構關係研究
省級項目
高速列車車輪滾動接觸疲勞研究
參考資料: [3] 
  • 學術論文
2017年教師節合影 2017年教師節合影
根據2020年3月西南交通大學官網顯示,康國政已在《International Journal of Plasticity》《Journal of the Mechanics and Physics of Solids》《力學學報》《固體力學學報》《工程力學》《應用力學學報》等期刊和國內外學術會議上發表論文300餘篇,其中被SCI收錄200餘篇、被EI收錄280餘篇,被SCI他人引用2000餘次,H指數=31,Google學術引用5200餘次。 [3] 
1. 康國政, Theory of dislocation loops in multilayered anisotropic solids with magneto-electro-elastic couplings, Journal of Mechanics and Physics of Solids, 2019 (SCI )
2. 康國政, Numerical study on toughening mechanism of bulk metallic glass composites from martensite transformation of toughening phase, Journal of Non-Crystalline Solids, 2019 (SCI )
3. 康國政, Phase field simulation to one-way shape memory effect of NiTi shape memory alloy single crystal, Computational Materials Science, 2019 (SCI )
4. 康國政, Effect of crystalline content on ratchetting of ultra-high molecular weight polyethylene polymers: experimental investigation and constitutive model, Mechanics of Materials, 2019 (SCI )
5. 康國政, A meso-mechanical constitutive model for the bulk metallic glass composites with considering the local failure of matrix, International Journal of Plasticity, 2019 (SCI )
6. 康國政, Phase field modeling to transformation induced plasticity in super-elastic NiTi shape memory alloy single crystal, Modelling and Simulation in Materials Science and Engineering, 2019 (SCI )
7. 康國政, The Kitagawa-Takahashi diagram to hybrid welded AA7050 joints via synchrotron X-ray tomography, International Journal of Fatigue, 2019 (SCI )
8. 康國政, Modelling the martensite reorientation and resulting zero/negative thermal expansion of shape memory alloys, Journal of Mechanics and Physics of Solids, 2019 (SCI )
9. 康國政, Mean-field homogenization of elasto-viscoplastic composites based on a new mapping-tangent linearization approach, SCIENCE CHINA Technological Sciences, 2019 (SCI )
10. 康國政, Torsional whole-life transformation ratchetting under pure-torsional and non-proportional multiaxial cyclic loadings of NiTi SMA at human-body temperature: Experimental observations and life-prediction model, Journal of the Mechanical Behavior of Biomedical Materials, 2019 (SCI )
11. 康國政, A micromechanical constitutive model for unusual temperature-dependent deformation of Mg-NiTi composites, International Journal of Solids and Structures, 2019 (SCI )
12. 康國政, A 3D thermo-mechanically coupled model for describing rate-dependent super-elastic degeneration of NiTi shape memory alloys,, Mechanics Research Communications, 2019 (SCI )
13. 康國政, A review of magneto-elastic interaction and its theoretical descriptions in type-II superconductors, Journal of Superconductivity and Novel Magnetism, 2019 (SCI )
14. 康國政, Rate-dependent transformation ratcheting-fatigue interaction of super-elastic NiTi alloy under uniaxial and torsional loadings: Experimental observation, International Journal of Fatigue, 2019 (SCI )
15. 康國政, A three-dimensional constitutive model for magneto-mechanical deformation of NiMnGa ferromagnetic shape memory alloy single crystals, Acta Mechanica Sinica, 2019 (SCI )
16. 康國政, Damage tolerance assessment of a brake unit bracket for high-speed railway welded bogie frames, Chinese Journal of Mechanical Engineering, 2019 (SCI )
17. 康國政, First-order pinning interaction in type-II superconductors with Ginzburg–Landau descriptions, The European Physical Journal B, 2019 (SCI )
18. 康國政, Effect of twin boundary orientation on the mechanical properties of bicrystalline copper micropillars,, Acta Materialia, 2019 (SCI )
19. 康國政, Experimental study on pure-shear-like cyclic deformation of VHB 4910 dielectric elastomer, Journal of Polymer Research, 2019 (SCI )
20. 康國政, Thermo-elastic-viscoplastic -damage model for self-heating and mechanical behavior of thermoplastic polymers, International Journal of Plasticity, 2019 (SCI )
21. 康國政, Experimental investigation on the thermo-mechanical cyclic degeneration of one-way shape memory effect of NiTi shape memory alloy, , 2019
22. 康國政, Dynamic photomask-assisted direct ink writing multimaterial for multilevel triboelectric nanogenerator, Advanced Functional Materials, 2019 (SCI )
23. 康國政, Transformation ratchetting of nanocrystalline super-elastic NiTi shape memory alloy and its atomic mechanism from molecular dynamics simulations, International Journal of Plasticity, 2019
24. 康國政, A crystal plasticity based constitutive model for uniaxial ratchetting of magnesium alloys considering dislocation slipping, twinning and detwinning mechanisms, , 2019
25. 康國政, Experimental investigation on electro-mechanically coupled cyclic deformation of laterally-constrained dielectric elastomer, , 2019
26. 康國政, A crystal plasticity based constitutive model accounting for R phase and two-step phase transition of polycrystalline NiTi shape memory alloys, International Journal of Solids and Structures, 2019 (SCI )
27. 康國政, A crystal plasticity based constitutive model for uniaxial ratchetting of magnesium alloys considering dislocation slipping, twinning and detwinning mechanisms, International Journal of Mechanical Sciences, 2019 (SCI )
28. 康國政, Modeling the anisotropic elastocaloric effect of textured NiMnGa ferromagnetic shape memory alloys, International Journal of Solids and Structures, 2019 (SCI )
29. 康國政, Experimental study on rate-dependent uniaxial whole-life ratchetting and fatigue behavior of polyamide 6, International Journal of Fatigue, 2019
30. 康國政, Multiple mechanism based constitutive modeling of gradient nanograined material, International Journal of Plasticity, 2019 (SCI )
31. 康國政, Experimental investigation on the thermo-mechanical cyclic degeneration of one-way shape memory effect of NiTi shape memory alloy, International Journal of Minerals, Metallurgy and Materials, 2019 (SCI )
32. 康國政, Plastic deformation of a film-substrate with inhomogeneous inclusions under contact loading, Acta Mechanica, 2019 (SCI )
33. 康國政, Effect of charging hydrogen on the tensile properties of A7N01 aluminum alloy friction stir welded joints, International Journal of Modern Physics B, 2019 (SCI )
34. 康國政, In situ observation on rate-dependent strain localization of thermo-induced shape memory polyurethane, Polymers, 2019 (SCI )
35. 康國政, Analytical model of friction behavior during polymer scratching with conical tip, Friction, 2019 (SCI )
36. 康國政, A microplane constitutive model for martensite transformation and reorientation in shape memory alloys under non-proportional multiaxial loading, International Journal of Mechanical Science, 2019 (SCI )
37. 康國政, Thermal activation based constitutive model for high-temperature dynamic deformation of AZ31B magnesium alloy, Materials Science and Engineering A, 2019 (SCI )
38. 康國政, Deformation mechanisms based constitutive modelling and strength-ductility mapping of gradient nano-grained materials, Materials Science and Engineering A, 2019 (SCI )
39. 康國政, Dislocation mechanism based size-dependent crystal plasticity modeling and simulation of gradient nano-grained copper, International Journal of Plasticity, 2019 (SCI )
40. 康國政, Theory of adhesive contact on multi-ferroic composite materials: Spherical indenter, International Journal of Engineering Science, 2019 (SCI )
41. 康國政, Experimental investigation on temperature-dependent uniaxial cyclic deformation of AZ31B magnesium alloy, International Journal of Fatigue, 2019 (SCI )
42. 康國政, High fatigue life and cooling efficiency of NiTi shape memory alloy under cyclic compression, Scripta Materialia, 2019 (SCI )
43. 康國政, Investigation on the anisotropic transformation surfaces of super-elastic NiTi shape memory alloys under multiaxial cyclic loading conditions, Acta Mechanica Solida Sinica, 2018 (SCI )
44. 康國政, Fatigue crack growth in cold-rolled and annealed polycrystalline superelastic NiTi alloys, Acta Mechanica Solida Sinica, 2018 (SCI )
45. 康國政, A thermo-magneto-mechanically coupled constitutive model of magnetic shape memory alloys, Acta Mechanica Solida Sinica, 2018 (SCI )
46. 康國政, On the residual life assessment of high-speed railway axles due to induction hardening, International Journal of Rail Transportation, 2018 (SCI )
47. 康國政, A micromechanical model for the grain size dependent super-elasticity degeneration of NiTi shape memory alloys, Mechanics of Materials, 2018 (SCI )
48. 康國政, A failure mechanism based constitutive model for bulk metallic glass, Mechanics of Materials, 2018 (SCI )
49. 康國政, Experimental study on uniaxial ratchetting-fatigue interaction of polyamide-6, Polymer Testing, 2018 (SCI )
50. 康國政, A multi-mechanism model describing reorientation and reorientation-induced plasticity of NiTi shape memory alloy, Acta Mechanica Solida Sinica, 2018 (SCI )
51. 康國政, Thermo-mechanically coupled thermo-elasto-visco-plastic modeling of thermo-induced shape memory polyurethane at finite deformation, Acta Mechanica Solida Sinica, 2018 (SCI )
52. 康國政, A variable-frequency bidirectional shear horizontal (SH) wave transducer based on dual face-shear (d24) piezoelectric wafers, Ultrasonics, 2018 (SCI )
53. 康國政, Atomistic study on the super-elasticity of nanocrystalline NiTi shape memory alloy subjected to a cyclic deformation, Computational Materials Science, 2018 (SCI )
54. 康國政, Uniaxial ratchetting of filled rubber: experiments and damage-coupled hyper-viscoelastic-plastic constitutive model, Journal of Applied Mechanics ASME, 2018 (SCI )
55. 康國政, Fabrication of tough epoxy with shape memory effects by UV-assisted direct-ink write printing, Soft Matter, 2018 (SCI )
56. 康國政, A micromechanical constitutive model for grain size dependent thermo-mechanically coupled inelastic deformation of super-elastic NiTi shape memory alloy, International Journal of Plasticity, 2018 (SCI )
57. 康國政, High-speed 3D printing of high-performance thermosetting polymers via two-stage curing, Macromolecular Rapid Communications, 2018 (SCI )
58. 康國政, A constitutive model for grain size dependent deformation of NiTi polycrystalline shape memory alloys, International Journal of Mechanical Science, 2018 (SCI )
59. 康國政, Axisymmetric thermo-elastic field in an infinite one-dimensional hexagonal quasi-crystal space containing a penny-shaped crack under anti-symmetric heat fluxes, Engineering Fracture Mechanics, 2018 (SCI )
60. 康國政, Indentation on a transversely isotropic half-space of multiferroic composite medium with a circular contact region, International Journal of Engineering Science, 2018 (SCI )
61. 康國政, Numerical simulation on the evolution of shear bands in bulk metallic glass composites under tension and compression, Composites Structures, 2018 (SCI )
62. 康國政, Experimental and numerical investigations of evaluation criteria and material parameters'' coupling effect on polypropylene scratch, Polymer Engineering & Science, 2018 (SCI )
63. 康國政, Phase field modeling for cyclic transformation of super-elastic NiTi shape memory single crystal, Computational Materials Science, 2018 (SCI )
64. 康國政, Atomistic study on the super-elasticity of single crystal bulk NiTi shape memory alloy under adiabatic condition, Computational Materials Science, 2018 (SCI )
65. 康國政, Experimental investigation on the heterogeneous ratchetting of SUS301L stainless steel butt weld joint during uniaxial cyclic loading, International Journal of Fatigue, 2017 (SCI )
66. 康國政, Magneto-elastic coupling model of deformable anisotropic superconductors, EPL, 2017 (SCI )
67. 康國政, Modeling of competition between shear yielding and crazing in amorphous polymers’ scratch, International Journal of Solids and Structures, 2017 (SCI )
68. 康國政, Non-proportional multiaxial fatigue of super-elastic NiTi shape memory alloy micro-tubes: Damage evolution and life-prediction models, International Journal of Mechanical Sciences, 2017 (SCI )
69. 康國政, Electric and magnetic polarization saturations for a thermally loaded penny-shaped crack in a magneto-electro-thermo-elastic medium, Smart Materials and Structures, 2017 (SCI )
70. 康國政, Crack tip electric polarization saturation of a thermally loaded penny-shaped crack in an infinite thermo-piezo-elastic medium, International Journal of Solids and Structures, 2017 (SCI )
71. 康國政, Three-dimensional fundamental solution of a penny-shaped crack in an infinite thermo-magneto-electro-elastic medium with transverse isotropy, International Journal of Mechanical Sciences, 2017 (SCI )
72. 康國政, The competitive nucleation of misfit dislocation dipole and misfit extended dislocation dipole in nanocomposites, Acta Mechanica, 2017 (SCI )
73. 康國政, A macroscopic multi-mechanism based constitutive model for the thermo-mechanical cyclic degeneration of shape memory effect of NiTi shape memory alloy, Acta Mechanica Sinica, 2017 (SCI )
74. 康國政, A finite cyclic elasto-plastic constitutive model to improve the description of cyclic stress-strain hysteresis loops, International Journal of Plasticity, 2017 (SCI )
75. 康國政, Non-proportional multiaxial ratchetting of ultrahigh molecular weight polyethylene polymer: experiments and constitutive model, Mechanics of Materials, 2017 (SCI )
76. 康國政, Twinning-induced plasticity (TWIP) and work hardening in Ti-based metallic glass matrix composites, Scientific Reports, 2017 (SCI )
77. 康國政, Three-dimensional exact magneto-electro-elastic field in an infinite transversely isotropic space with an elliptical crack under uniform loads: shear mode, International Journal of Engineering Sciences, 2017 (SCI )
78. 康國政, Physical mechanism based crystal plasticity model of NiTi shape memory alloy addressing degeneration of shape memory effect during thermo-mechanical cyclic deformation, Mechanics of Materials, 2017 (SCI )
79. 康國政, Dislocation-dynamics-based dynamic constitutive model of magnesium alloy, Acta Mechanica, 2017 (SCI )
80. 康國政, A hygro-thermo-mechanical coupled cyclic constitutive model for polymers with considering glass transition, International Journal of Plasticity, 2017 (SCI )
81. 康國政, Three-dimensional fundamental thermo-elastic field in an infinite space of two-dimensional hexagonal quasi-crystal with a penny-shaped/half-infinite plane crack, Theoretical and Applied Fracture Mechanics, 2017 (SCI )
82. 康國政, Molecular dynamics simulations to the pseudo-elasticity of NiTi shape memory alloy nano-pillar subjected to cyclic compression, Computational Materials Science, 2017 (SCI )
83. 康國政, Effects of peak stress and stress amplitude on multiaxial transformation ratchetting and fatigue life of superelastic NiTi SMA micro-tubes: Experiments and life-prediction model, International Journal of Fatigue, 2017 (SCI )
84. 康國政, A thermo-mechanically coupled nonlinear viscoelastic-viscoplastic cyclic constitutive model for polymeric materials, Mechanics of Materials, 2017 (SCI )
85. 康國政, Cyclic plastic strain based damage tolerance for railway axles in China, International Journal of Fatigu, 2016 (SCI )
86. 康國政, Influence of third particle on the tribological behaviors of diamond-like carbon films, Scientific Reports, 2016 (SCI )
87. 康國政, A rate-type nonlinear viscoelastic-viscoplastic cyclic constitutive model for polymers: theory and application, Polymer Engineering and Science, 2016 (SCI )
88. 康國政, Crystal plasticity-based impact dynamic constitutive model of magnesium alloy, International Journal of Mechanical Sciences, 2016 (SCI )
89. 康國政, Experimental study on the process of adiabatic shear fracture in isolated segment formation in high-speed machining of hardened steel, The International Journal of Advanced Manufacturing Technology, 2016 (SCI )
90. 康國政, Vortex-lattice pinning and critical current density in anisotropic high-temperature superconductors, Superconductor Science and Technology, 2016 (SCI )
91. 康國政, Effect of relative humidity on uniaxial cyclic softening/hardening and intrinsic heat generation of polyamide 6 polymer, Polymer Testing, 2016 (SCI )
92. 康國政, Meso-mechanical constitutive model of bulk metallic glass matrix composites, Mechanics of Materials, 2016 (SCI )
93. 康國政, Temperature damage and constitutive model of frozen soil under dynamic loading, Mechanics of Materials, 2016 (SCI )
94. 康國政, Axisymmetric thermo-elastic field in an infinite space containing a penny-shaped crack under uniform heat flux, International Journal of Mechanical Science, 2016 (SCI )
95. 康國政, Time-dependent uniaxial ratchetting of ultrahigh molecular weight polyethylene polymer: Viscoelastic-viscoplastic constitutive model, Journal of Applied Mechanics, 2016 (SCI )
96. 康國政, Nonproportionally multiaxial cyclic deformation of AZ31 magnesium alloy: experimental observation, Materials Science and Engineering A, 2016 (SCI )
97. 康國政, Observation on rate-dependent cyclic transformation domain of super-elastic NiTi shape memory alloy, Materials Science and Engineering A, 2016 (SCI )
98. 康國政, Temperature-dependent uniaxial ratchetting of ultra-high molecular weight polyethylene, Fatigue & Fracture of Engineering Materials & Structures, 2016 (SCI )
99. 康國政, Logarithmic rate based elasto-viscoplastic cyclic constitutive model for soft biological tissues, Journal of the Mechanical Behavior of Biomedical Materials, 2016 (SCI )
100. 康國政, Study on the microstructure and stress fatigue failure mechanism of super-elastic NiTi shape memory alloy micro-tubes, Materials Science and Engineering A, 2016 (SCI )
101. 康國政, Scaling rules for critical current density in anisotropic biaxial superconductors, Physica B: Condensed Matter, 2016 (SCI )
102. 康國政, Effect of grain boundary segregation on the deformation mechanisms and mechanical properties of nanocrystalline binary aluminum alloys, Computational Materials Science, 2016 (SCI )
103. 康國政, On adiabatic shear fracture in high-speed machining of a martensitic precipitation-hardening stainless steel, Journal of Materials Processing Technology, 2016 (SCI )
104. 康國政, Observation on the transformation domains of super-elastic NiTi shape memory alloy and their evolutions during cyclic loading, Smart Materials and Structures, 2016 (SCI )
105. 康國政, Experimental observations on rate-dependent cyclic deformation of super-elastic NiTi shape memory alloy, Mechanics of Materials, 2016 (SCI )
106. 康國政, A dynamic micromechanical constitutive model for frozen soil under impact loading, Acta Mechanica Solida Sinica, 2016 (SCI )
107. 康國政, Steady-state thermo-elastic field in an infinite medium weakened by a penny-shaped crack: complete and exact solutions, International Journal of Solids and Structures, 2016 (SCI )
108. 康國政, Thermo-mechanically coupled cyclic elasto-viscoplastic constitutive model of metals: theory and application, International Journal of Plasticity, 2016 (SCI )
109. 康國政, Experimental observation on multiaxial ratchetting of polycarbonate polymer at room temperature, Polymer Testin, 2016 (SCI )
110. 康國政, Closed-form field in an infinite space of transversely isotropic multiferroic composite medium with an elliptical or penny-shaped crack: 3D exact analysis, International Journal of Solids and Structures, 2016 (SCI )
111. 康國政, Viscoelastic-viscoplastic cyclic deformation of polycarbonate polymer: experiment and constitutive model, Journal of Applied Mechanics, 2016 (SCI )
112. 康國政, In-situ observation of temperature rise during scratch testing of poly (methylmethacrylate) and polycarbonate, Tribology International,, 2016 (SCI )
113. 康國政, Review on structural fatigue of NiTi shape memory alloys: pure mechanical and thermo-mechanical fatigue, Theoretical and Applied Mechanics Letters, 2016 (SCI )
114. 康國政, Crack tip plasticity of a half-infinite Dugdale crack embedded in an infinite space of one-dimensional hexagonal quasi-crystal, Mechanics Research Communications, 2015 (SCI )
115. 康國政, A visco-elastic-plastic constitutive model for uniaxial ratcheting behaviors of polycarbonate, Polymer Engineering and Science, 2015 (SCI )
116. 康國政, Uniaxial cyclic deformation behavior and thermal effect of ultra-high molecular weight polyethylene, Journal of Polymer Research, 2015 (SCI )
117. 康國政, Crack tip plasticity of a thermal loaded penny-shaped crack in an infinite space of 1D QC, Acta Mechanica Solida Sinica, 2015 (SCI )
118. 康國政, An efficient computational approach to evaluate the ratcheting performance of rail steels under cyclic rolling contact in service, International Journal of Mechanical Science, 2015 (SCI )
119. 康國政, Correlating the internal length in strain gradient plasticity theory with the microstructure of material, Philosophical Magazine Letters, 2015 (SCI )
120. 康國政, A new form of equivalent stress for combined axial–torsional loading considering the tension–compression asymmetry of polymeric materials, RSC Advances, 2015 (SCI )
121. 康國政, Non-proportional multiaxial whole-life transformation ratchetting and fatigue failure of super-elastic NiTi shape memory alloy micro-tubes, International Journal of Fatigue, 2015 (SCI )
122. 康國政, Damage-based life prediction model for uniaxial low-cycle stress fatigue of super-elastic NiTi shape memory alloy micro-tubes, Smart Materials and Structures, 2015 (SCI )
123. 康國政, Rate-dependent cyclic deformation of super-elastic NiTi shape memory alloy: thermo-mechanical coupled and physical mechanism-based constitutive model, International Journal of Plasticity, 2015 (SCI )
124. 康國政, New micromechanical constitutive model for anisotropic cyclic deformation of super-elastic NiTi shape memory alloy single crystal, Journal of Mechanics and Physics of Solids, 2015 (SCI )
125. 康國政, Fundamental elastic field in an infinite medium of two-dimensional hexagonal quasicrystal with a planar crack: 3D exact analysis, International Journal of Solids and Structures, 2015 (SCI )
126. 康國政, Experimental observations on uniaxial whole-life transformation ratchetting and low-cycle stress fatigue of super-elastic NiTi shape memory alloy micro-tubes, Smart Materials and Structures, 2015 (SCI )
127. 康國政, Fundamental thermo-electro-elastic solutions for 1D hexagonal QC with piezo-electric effect, Zeitschrift für Angewandte Mathematik und Mechanik, 2015 (SCI )
128. 康國政, Accelerated ratcheting testing of polycarbonate using the time-temperature-stress equivalence method, Polymer Testing, 2015 (SCI )
129. 康國政, An experimental study on uniaxial ratcheting of polycarbonate polymers with different molecular weights, Materials & Design, 2015 (SCI )
130. 康國政, Effect of martensite reorientation on multiaxial transformation ratchetting of super-elastic NiTi shape memory alloy: new consideration in constitutive model, International Journal of Plasticity, 2015 (SCI )
131. 康國政, Study on the rate-dependent cyclic deformation of super-elastic NiTi shape memory alloy based on a new crystal plasticity constitutive model, International Journal of Solids and Structures, 2014 (SCI )
132. 康國政, Dynamic stress-strain behavior of frozen soil: experiments and modeling, Cold Regions Science and Technology, 2014 (SCI )
133. 康國政, Experimental studies on the uniaxial ratchetting of polycarbonate polymer at different temperatures, Polymer Testing, 2014 (SCI )
134. 康國政, Finite element analysis on bending fretting fatigue of 316L stainless steel considering ratchetting and cyclic hardening, International Journal of Mechanical Science, 2014 (SCI )
135. 康國政, A physical mechanism based constitutive model for temperature-dependent transformation ratchetting of NiTi shape memory alloy, Mechanics of Materials, 2014 (SCI )
136. 康國政, A single parameter to evaluate stress state in rail head for rolling contact fatigue analysis, Fatigue & Fracture of Engineering Materials & Structures, 2014 (SCI )
137. 康國政, Ratchetting behaviour of high strength rail steels under bi-axial compression-torsion loadings, International Journal of Fatigue, 2014 (SCI )
138. 康國政, A dislocation-based cyclic polycrystalline visco-plastic constitutive model for ratchetting of metals with face-centered cubic crystal structure, Computational Materials Science, 2014 (SCI )
139. 康國政, A finite viscoelastic-plastic model for describing the uniaxial ratchetting of soft biological tissues, Journal of Biomechanics, 2014 (SCI )
140. 康國政, Uniaxial ratcheting of extruded AZ31 magnesium alloy: Effect of mean stress, Materials Science and Engineering A, 2014 (SCI )
141. 康國政, Macroscopic and microscopic observations on uniaxial ratchetting of two-phase Ti-6Al-4V alloy, Materials Characterization, 2014 (SCI )
142. 康國政, Non-proportionally multiaxial transformation ratchetting of super-elastic NiTi shape memory alloy: experimental observations, Mechanics of Materials, 2014 (SCI )
143. 康國政, A micromechanical constitutive model considering different mechanisms of inelastic deformation for NiTi shape memory alloy, International Journal of Plasticity, 2014 (SCI )
144. 康國政, Logarithmic stress rate based cyclic constitutive model in finite plasticity, International Journal of Plasticity, 2014 (SCI )
145. 康國政, Crystal plasticity based constitutive model for the ratchetting of polycrystalline magnesium alloys, Computational Materials Science, 2014 (SCI )
146. 康國政, Effect of martensite plasticity on cyclic deformation of super-elastic NiTi shape memory alloy, Smart Materials and Structures, 2014 (SCI )
147. 康國政, Effects of tangent operators on prediction accuracy of meso-mechanical constitutive model of elasto-plastic composites, International Journal of Computational Methods, 2014 (SCI )
148. 康國政, Advances in transformation ratcheting and ratcheting-fatigue interaction of NiTi shape memory alloy, Acta Mechanica Solida Sinica, 2013 (SCI )
149. 康國政, Dynamic behavior of frozen soil under uniaxial strain and stress conditions, Applied Mathematics and Mechanics, 2013 (SCI )
150. 康國政, Simulation to the cyclic deformation of polycrystalline aluminum alloy using crystal plasticity finite element method, International Journal of Computational Materials Sciences and Engineering, 2013 (SCI )
151. 康國政, Mechanical property measurements of the fresh rat’s whiskers by nano-indentation, Materials Research Bulletin, 2013 (SCI )
152. 康國政, A test procedure for separating viscous recovery and accumulated unrecoverable deformation of polymer under cyclic loading, Polymer Testing, 2013 (SCI )
153. 康國政, A truncated conical beam model for analysis of the vibration of rat whiskers, Journal of Biomechanics, 2013 (SCI )
154. 康國政, Multiaxial ratchetting of 20 carbon steel: macro- and microscopic experiments, Materials Characterization, 2013 (SCI )
155. 康國政, Oliver-Pharr method in spherical indentation test of shape memory alloys, Journal of Mechanics and Physics in Solids, 2013 (SCI )
156. 康國政, Three-dimensional thermo-elasticity field in a heterogeneous circular plate of transverse isotropic material, Mathematics and Mechanics of Solids, 2013 (SCI )
157. 康國政, A micromechanical constitutive model based on crystal plasticity for thermo-mechanical cyclic deformation of NiTi shape memory alloy, International Journal of Plasticity, 2013 (SCI )
158. 康國政, Study on bending fretting fatigue of LZ50 axle steel considering ratchetting by finite element method, Fatigue & Fracture of Engineering Materials & Structures, 2013 (SCI )
159. 康國政, A cyclic visco-plastic constitutive model for time-dependent ratchetting of particle-reinforced metal matrix composites, International Journal of Plasticity, 2013 (SCI )
160. 康國政, Viscoelastic constitutive model for uniaxial time-dependent ratcheting of polyetherimide (PEI) polymer, Polymer Engineering and Sciences, 2012 (SCI )
161. 康國政, Penny-shaped Dugdale crack in a transverse isotropic medium, International Journal of Fracture, 2012 (SCI )
162. 康國政, Finite element implementation of a super-elastic constitutive model for transformation ratcheting of NiTi alloy, International Journal of Computational Methods, 2012 (SCI )
163. 康國政, Temperature-dependent polycrystalline constitutive model considering plasticity for super-elastic NiTi shape memory alloy, Computational Materials Science, 2012 (SCI )
164. 康國政, Whole-life transformation ratchetting and fatigue of super-elastic NiTi alloy under uniaxial stress-controlled cyclic loading, Materials Science and Engineering A, 2012 (SCI )
165. 康國政, Dislocation evolution of 316L stainless steel during multiaxial ratchetting deformation, Materials Characterization, 2012 (SCI )
166. 康國政, Constitutive model for time-dependent ratcheting behavior of 6061-T6 aluminum alloy, Computational Materials Science, 2012 (SCI )
167. 康國政, A damage-coupled multi-axial time-dependent low cycle fatigue failure model for SS304 stainless steel at high temperature, Acta Metallurgica Sinica-English Letters, 2011 (SCI )
168. 康國政, Uniaxial ratchetting behaviours of metals with different crystal structures or values of fault energy: macroscopic experiments, Journal of Materials Science and Technology, 2011 (SCI )
169. 康國政, Meso-mechanical constitutive model for ratchetting of particle-reinforced metal matrix composites, International Journal of Plasticity, 2011 (SCI )
170. 康國政, Uniaxial ratchetting of 20 ordinary low-carbon steel: Macroscopic and microscopic experimental observations, Materials Science and Engineering A, 2011 (SCI )
171. 康國政, Ratchetting of porcine skin under uniaxial cyclic loading, Journal of the Mechanical Behavior of Biomedical Materials, 2011 (SCI )
172. 康國政, Cyclic polycrystalline viscoplastic model for ratchetting of 316L stainless steel, Computational Materials Science, 2011 (SCI )
173. 康國政, Super-elastic constitutive model considering plasticity and its finite element implementation, Acta Mechanica Solida Sinca, 2010 (SCI )
174. 康國政, Dislocation evolution of 316L stainless steel subjected to uniaxial ratchetting deformation, Materials Science and Engineering A, 2010 (SCI )
175. 康國政, Constitutive model for transformation ratchetting of super-elastic NiTi shape memory alloy, International Journal of Plasticity, 2010 (SCI )
176. 康國政, Scaling relationships in sharp conical indentation of shape memory alloys, Philosophical Magazine, 2010 (SCI )
177. 康國政, A multiaxial stress-based fatigue failure model considering ratchetting-fatigue interaction, International Journal of Fatigue, 2010 (SCI )
178. 康國政, Experimental study on uniaxial time-dependent ratcheting of a polyetherimide polymer, Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2010 (SCI ) [6] 
  • 專利成果
1. 中國, 實用新型, 一套形狀記憶高分子熱力耦合變形實驗裝置(專利號:ZL 201820307827.0)
2. 中國, 發明專利, 一種形狀記憶合金奧氏體和馬氏體相彈性模量的納米壓痕測試方法(專利號:ZL 201510856957.0)
3. 中國, 發明專利, 一種聚合物材料室高温多軸循環試驗裝置(專利號:Zl 2015 11031128.5)
4. 中國, 實用新型, 一種形狀記憶合金熱-力耦合多軸循環變形實驗裝置(專利號:ZL 201621413545.6)
5. 中國, 實用新型, 一種可提供不同液體介質環境的形狀記憶合金材料疲勞試驗皿(專利號:ZL 2016 2 0844930.X)
6. 中國, 實用新型, 一種形狀記憶合金熱機械疲勞試驗裝置(專利號:ZL201520754667.0)
7. 中國, 實用新型, 一種聚合物材料室高温多軸循環試驗裝置(專利號:Zl 2015 2 1139815.4)
8. 中國, 發明專利, 一種形狀記憶合金熱機械疲勞試驗裝置(專利號:ZL201520754667.0)
9. 中國, 發明專利, 一種用於夾持微小試樣的材料試驗夾具(專利號:ZL201420007166.1)
10. 中國, 發明專利, 一種基於槓桿原理的多功能材料試驗夾具(專利號:ZL 2014 1 0004988.9)
11. 中國, 發明專利, 一種先進材料濕熱環境循環拉伸壓縮扭轉一體化試驗夾具(專利號:ZL 2013 1 0249992.7) [6] 
  • 學術著作
康國政.2017年. 型有限元程序的結構、原理與使用(改版)[M]. 成都:西南交通大學出版社.
康國政.2015年.連續介質力學:基礎與應用[M]. 北京:科學出版社.
康國政.2010年.非彈性本構理論及其有限元實現[M]. 成都:西南交通大學出版社.
康國政.2004年.大型有限元程序的結構、原理與使用[M].成都:西南交通大學出版社. [6] 
  • 軟件著作權
1. 2018, 基於ABAQUS平台的三維輪軌滾動接觸有限元分析軟件
2. 2017, 基於ABAQUS的三維輪軌廓形優化有限元分析軟件1.0 [6] 
  • 學術交流
1. 2019, 國際理論與應用力學聯盟(IUTAM)舉辦的研討會
2. 2019, 第十屆中日雙邊高温材料強度學術會議
3. 2019, 第二十六屆國際塑性、損傷與斷裂會議 [6] 
  • 科研獲獎
根據2020年3月西南交通大學官網顯示,康國政獲四川省科技進步獎1項,教育部自然科學二等獎1項。 [2] 
時間
項目
級別&排名
2019年
高速鐵路關鍵部件傷損機理及服役行為評估技術
四川省科技進步獎(排名3)
2010年
工程材料的棘輪行為與棘輪-疲勞交互作用研究
教育部自然科學二等獎(排名1)
參考資料: [2] 

康國政人才培養

  • 培養理念
康國政認為,他山之石,可以攻玉。多出去走走、看看外國的學術氛圍,一定是好的。但能夠這樣做的前提是在國內有紮實的基礎。面對面的交流遠比所謂書上、雜誌上看的學術成果收穫更大。本科學習要培養的應當是學生髮現問題、解決問題的能力以及刻苦踏實、積極主動、耐得住寂寞的學術研究素質。這些都是優秀的科研人員必須具備的能力。科研不是遊戲,總有艱難困苦;科研不是灌輸知識,不積極不主動,只能使科研工作停滯不前。科研與課堂的區別在於科研不知道答案,經驗、方法只能依靠實踐來鍛鍊。有自學能力、創新思維和積極主動的同學,後勁足,老師也更加青睞。 [1] 
力學專業可謂“以不變應萬變”,力學是工程科學的基礎,力學人可以結合工程實際按照自己的興趣來選擇科學研究的道路,但要對工程問題要有充分的瞭解。然而,理論基礎比較紮實的人結合工程問題進行基礎和應用基礎研究,跨越的鴻溝很小,反過來就不太容易。 [1] 
康國政 康國政
  • 培養成果
課程教學
根據2020年3月西南交通大學官網顯示,康國政承擔學校本科生課程中的複合材料力學;疲勞與斷裂力學;材料力學;研究生課程中的連續介質力學;材料宏微觀本構理論;大型有限元程序結構、原理與分析;非彈性本構理論及其有限元實現。 [6] 
指導情況
根據2020年3月西南交通大學官網顯示,康國政已指導畢業博士生15人,碩士生30人;指導在讀博士生12人,碩士生10人。 [6] 
教學獎勵
獲獎年份
成果名稱
級別&排名
2018年
團隊融合、平台互通、資源共享、協同創新——打造互聯網+基礎力學課羣新模式
國家級教學成果二等獎(排名1)
2010年
全方位構建培養高素質人才的工科力學教學平台
國家優秀教學成果二等獎(排名4)
2017年
團隊融合、平台互通、資源共享、協同創新——打造互聯網+基礎力學課羣新模式
四川省教學成果一等獎(排名1)
2009年
全方位構建培養高素質人才的工科力學教學平台
四川省優秀教學成果一等獎(排名4)
2005年
通過博士學位論文培養博士生創新精神和創造能力
四川省優秀教學成果二等獎(排名3)
2013年
深化導師團隊和學術研討班建設,依託項目,把握前沿,提升質量
四川省優秀教學成果三等獎(排名1
2000年
中國力學學會“全國優秀力學教師”
-
2012年
-
西南交通大學研究生優秀教學成果一等獎(排名1)
2012年
-
西南交通大學優秀教學成果一等獎(排名3)
2006年
-
西南交通大學優秀教學成果一等獎(排名2)
2005年
-
西南交通大學優秀教學成果一等獎(排名3)
2003年
-
西南交通大學研究生優秀教學成果一等獎(排名2)
參考資料: [6] 
教改項目
[1]力學與軌道交通跨學科人才培養新模式的構建與實踐,高等理科學會教育研究課題,2017-2018,主持
[2]力學一級學科拔尖創新人才培養模式改革,國家教育體制改革試點項目子項目——軌道交通行業拔尖創新人才培養模式改革,項目編號05-254-377-01-009,2011-2014,主持
[3]力學一級博士授權學科創新提升計劃,四川省研究生教育改革創新項目,2014-2018,主持
[4]基礎力學虛擬仿真實驗教學中心建設,四川省教育廳項目,2015-2017,主持
[5]基礎力學實驗教學平台建設,教育部修購項目,2015-2016,主持
[6]工程力學專業跨學科人才培養模式研究與實踐,校級重大教改項目,2018-2020,主持
[7]跨學科人才培養模式研究與實踐,校級重大教改項目,2015-2017,主持
[8]《疲勞與斷裂力學》優質示範課程建設,校級教改項目,2014-2015,主持
[9]《疲勞與斷裂力學》新形式教材建設,校級教改項目,2019-2020,主持 [6] 
教材出版
[1]康國政. 大型有限元程序的結構、原理與使用, 西南交通大學出版社, 2004年7月(第一版); 2008年3月(第二版), ISBN: 978-7-81104-861-2.
[2]康國政. 非彈性本構理論及其有限元實現, 西南交通大學出版社, 2010年9月, ISBN: 978-7-5643-0689-2.
[3]康國政, 蔣晗, 闞前華. 連續介質力學: 基礎與應用, 科學出版社, 2015年6月, ISBN: 978-7-03-042873-8.
[4]康國政, 闞前華, 張娟. 大型有限元程序的結構、原理與使用, 西南交通大學出版社, 2017年6月(改版), ISBN: 978-7-5643-5324-7. [6] 
教改論文
[1]Kang Guozheng, Gong Hui, Shi Zhi, Tang Dapei, Jiang Xiaoyu. Design for long-distanced exercise database of “mechanics of materials” course, International Journal of Engineering Education- Theory and Practice, 2004, 13 (1), 30-34.
[2]江曉禹, 龔暉, 康國政, 唐達培, 史智, 陸宏輪, 宋順成. 國家級精品課程——材料力學課程網站建設介紹, 西南交通大學學報(社會科學版), 2006, 7 (S), 65-66.
[3]高慶, 康國政, 楊顯傑. 發揮“創新基金”作用 提高博士生創新性研究能力, 西南交通大學學報(社會科學版), 2006, 7 (S), 72-74.
[4]康國政, 戴振羽, 高芳清, 高慶, 楊翊仁, 沈火明, 李丹柯. “(2+2)+2”力學實驗教學新體系的建立與實施, 西南交通大學學報(社會科學版), 2007, 8 (Z), 23-25.
[5]沈火明, 楊翊仁, 葛玉梅, 康國政. 工程力學專業建設的研究與實踐, 西南交通大學學報(社會科學版), 2007, 8 (Z), 28-33.
[6]江曉禹, 鄭世瀛, 龔暉, 康國政, 唐達培. 加強年輕教師教學功底 提升教學質量, 西南交通大學學報(社會科學版), 2007, 8 (Z), 66-67.
[7]江曉禹, 康國政, 龔暉, 唐達培, 史智, 朱志武. 網絡資源共享課的建設及其應用思考, 南京航空航天大學學報(社會科學版), 2015, 17(1), 12-15.
[8]朱志武, 龔暉, 康國政. 淺談“材料力學”教學改革的研究與實踐, 南京航空航天大學學報(社會科學版), 2015, 17(1), 42-46.
[9]沈火明, 康國政, 劉娟. 基礎力學立體化教學資源建設的實踐與思考, 西南交通大學學報(社會科學版), 2017, 18(1), 1-4.
[10]朱志武, 闞前華, 康國政. 跨學科人才培養模式研究與實踐, 西南交通大學學報(社會科學版), 2017, 18(1), 9-12. [6] 

康國政榮譽表彰

獲得年份
獎項名稱
授予單位
2019年
四川省教書育人名師
四川省委教育工委、省教育廳
2019年
全國優秀教育工作者
教育部
2016年
“萬人計劃”科技創新領軍人才
中共中央組織部
2014年
科技部中青年科技創新領軍人才
科技部
2012年
享受國務院特殊政府津貼專家
國務院
2012年
首屆“優秀研究生導師團隊”帶頭人
西南交通大學
2010年
四川省學術、技術帶頭人
四川省委組織部、省發改委、教育廳、科技廳、財政廳、人社廳、省科協、省社科聯
2008年
中國力學學會第十屆青年科技獎
中國力學學會
2009年
首屆“優秀研究生導師”
西南交通大學
2005年
四川省有突出貢獻專家
四川省委、省人民政府
2004年
霍英東教育基金會優秀青年教師
霍英東教育基金會
參考資料: [6] 

康國政社會職務

根據2020年3月西南交通大學官網顯示,康國政任教育部力學類專業指導委員會委員。 [6] 
此外,他還擔任第十屆中國力學學會理事、四川省力學學會理事長;Int. J. Plasticity等5份中國國內外雜誌編委。 [7] 

康國政個人生活

  • 惡補英語
2013年與德國教授O.T.Bruns和H. Altenbach 2013年與德國教授O.T.Bruns和H. Altenbach
康國政就讀清華大學期間,學習的是金屬材料及熱處理本科專業,後考入西南交通大學後攻讀力學博士。“我印象深刻的一門課是大學物理的電磁學,那位老教授堅持全英文教學,教材和講解都是用英文。這可苦了我們這些英語不好的學生。加上補考,我一共考了三次這門課,都沒過,也因此沒繼續雙學位的計劃。但是,到了研究生學習階段,我隔壁寢室的一個同學要考託福,天天背單詞,我一開始還‘不堪其擾’,後來乾脆和他一起背。現在的英語論文閲讀、審批和撰寫基本沒有問題,也是源於那時候開始的積累。在研究生學習階段,我還喜歡上閲讀英語原版小説,圖書館裏的那些小説看了很多。英語水平有了質的變化,這樣一來考試還不輕鬆嗎?到交大後一次就通過了英語六級考試。”康國政回憶道。 [1] 
  • 興趣愛好
康國政常往返於各種會議和事務處理中。學術上的研究工作往往放在晚上和週末、節假日這些自己的時間裏。“閒着沒事,那就幹活唄。”此外,他還喜歡籃球之類的體育活動,也會因為要上班、沒辦法看NBA勇士對雷霆的大決戰而感到惋惜。“上班時候真沒法看,中午休息的時候打開,已經只剩下五分鐘了,還是很精彩!”週末便抽出時間來陪伴家人。 [1] 

康國政人物評價

康國政教授的報告對工程力學、材料工程、土木工程等學科專業的科學研究具有重要指導意義。 [8]  (湘潭大學土木工程與力學學院評)
一直以來,康國政教授堅持以習近平新時代中國特色社會主義思想為指導,忠誠人民教育事業,模範履行崗位職責,帶頭培育和踐行社會主義核心價值觀,服務大局,真抓實幹,展現了新時代教育工作者的良好形象。在人才培養方面,康國政教授全面貫徹黨的教育方針,落實立德樹人根本任務,將培育和踐行社會主義核心價值觀融入教書育人的全過程,用開闊創新的學術視野、靈活多樣的教育方式、嚴謹求真的治學態度、知行合一的做人準則,潛移默化地影響學生。作為學院院長,康國政教授不斷探索新形勢下教育管理的新思路、新方法,堅定貫徹新發展理念,以奮發進取的精神狀態,積極應對新形勢新挑戰,敢於擔當責任、勇於直面困難,創造性開展工作。在實驗室建設上,其負責的牽引動力國家重點實驗室順利通過了科技部的評估,在服務我國軌道交通、特別是高速鐵路領域方面發揮了不可替代的引領和示範作用;其負責的應用力學與結構安全四川省重點實驗室在服務四川地方經濟建設方面也做出了積極的貢獻。在開展國際合作與交流上,他積極組織和參加國際學術會議,多次前往海外高校進行學術訪問與交流,與德國、法國、澳大利亞等國家高校、科研院所建立了國際合作夥伴關係。在科學研究方面,康國政教授還以身作則,勇於挑戰科學難題,在材料與結構疲勞研究領域做出突出貢獻,並在國際和國內學術界產生很大影響。 [9]  (西南交通大學評)

康國政工作分工

分管本科教育教學、文科建設、創新創業、高等教育研究、網絡教育等工作。 [11] 
參考資料
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