1. 赵军. 新型梯度功能陶瓷刀具材料的设计制造及其切削性能研究. 北京: 高等教育出版社, 2005.52. J. Zhao, X.L. Yuan, Y.H. Zhou. Processing and Characterization of an Al2O3/WC/TiC micro- nano-composite ceramic tool material. Materials Science and Engineering A, 2010, 527(7-8): 1844-1849 (SCI, EI)3. J. Zhao, X.L. Yuan, Y.H. Zhou. Cutting performance and failure mechanisms of an Al2O3/WC/TiC micro- nano-composite ceramic tool. International Journal of Refractory Metals and Hard Materials, 2010, 28(3): 330-337 (SCI, EI)4. J. Zhao, Y.Z. Li, X. Ai. Analysis of transient thermal stress in sandwich plate with functionally graded coatings. Thin Solid Films, 2008, 516(21): 7581-7587 (SCI, EI)5. J. Zhao, X. Ai, W.Y. Fang, S.G. Han. Simulation of surface topography in ball-end milling considering the tool deflection and runout. Key Engineering Materials, 2008, 375-376: 510-514 (EI)6. J. Zhao, Y.Z. Li, X. Ai. Transient thermal stress analysis of a plate with double-sided FGM coatings. Key Engineering Materials, 2008, 368-372: 1807-1810 (EI)7. J. Zhao, X. Ai, Y. Z. Li. Transient temperature fields in functionally graded materials with different shapes under convective boundary conditions. Heat and Mass Transfer, 2007, 43(12): 1227-1232 (SCI, EI)8. J. Zhao, X. Ai. Failure Modes and Mechanisms of Functionally Gradient Ceramic Tools with High Thermal Shock Resistance. Proceedings of MSEC2006, 2006 (EI)9. J. Zhao, X. Ai, Z. J. Lü. Preparation and Characterization of Si3N4/TiC Nanocomposite Ceramics, Materials Letters, 2006, 60(23): 2810-2813 (SCI, EI)10. J. Zhao, X. Ai, Z. L. Li. Finite element analysis of cutting forces in high speed machining. Materials Science Forum, 2006, 532-533: 753-75611. J. Zhao, X. Ai, Y. Z. Li, Y. H. Zhou. Thermal Shock Resistance of Functionally Gradient Solid Cylinders, Materials Science and Engineering A, 2006, 418 (1-2): 99-110 (SCI, EI)12. J. Zhao, X. Ai. Fabrication and cutting performance of an Al2O3-(W, Ti)C functionally gradient ceramic tool. International Journal of Machining and Machinability of Materials, 2006, 1(3): 277-28613. J. Zhao, X. Ai, Z. J. Lü. Study on the Thermal Shock Resistance of Si3N4/TiC Nanocomposite Ceramic Tool Materials, Key Engineering Materials, 2006, 315-316: 299-303 (SCI, EI)14. J. Zhao, X. Ai, S.Y. Wang, Z.W. Liu. A Model for Milling Force Prediction in High-Speed End Milling of P20 Mold Steel, Key Engineering Materials, 2006, 315-316: 856-859 (SCI, EI)15. J. Zhao, X. Ai, J. X. Deng, et al. Thermal shock behaviors of functionally graded ceramic tool materials. Journal of European Ceramic Society, 2004, 24(5): 847-854 (SCI, EI)16. J. Zhao, X. Ai, J. X. Deng, et al. A model of the thermal shock resistance parameter for functionally gradient ceramics. Materials Science and Engineering A, 2004, 382(1-2): 23-29 (SCI, EI)17. J. Zhao, X. Ai, X. P. Huang, et al. Effect of Hot Pressing Temperature on Mechanical Properties and Microstructure of Si3N4-TiCnano composites. Materials Science Forum, 2004, 471-472: 167-171 (SCI, EI)18. J. Zhao, X. Ai, C. Z. Huang, et al. An analysis of unsteady thermal stresses in a functionally gradient ceramic plate with symmetrical structure. Ceramics International, 2003, 29(3): 279-285 (SCI, EI)19. J. Zhao, X. Ai, X. P. Huang. Relationship between the thermal shock behavior and the cutting performance of a functionally gradient ceramic tool. Journal of Materials Processing Technology, 2002, 129(1-3): 162-167 (SCI, EI)20. J. Zhao, J. X. Deng, J. H. Zhang, et al. Failure mechanisms of a whisker-reinforced ceramic tool when machining Nickel-based alloys. Wear, 1997, 208(1-2): 220-225 (SCI, EI)21. 赵军, 艾兴, 李艳征. 梯度功能陶瓷圆球的抗热震性. 硅酸盐学报, 2006, 34(11): 1362-1366 (EI)22. 赵军, 艾兴, 黄新平, 邓建新, 王朝霞. 陶瓷构件形状对其抗热震性的影响. 机械工程学报, 2004, 40(1): 7-10 (EI)23. 赵军, 邓建新, 艾兴, 王朝霞. 对称型梯度功能陶瓷材料的抗热震参数. 硅酸盐学报, 2003, 31(10): 945-949 (EI)24. 赵军, 黄新平, 艾兴, 王朝霞. 陶瓷圆柱体的抗热震参数. 硅酸盐学报, 2003, 31(5): 476-479 (EI)25. 赵军, 艾兴, 邓建新, 张建华, 黄传真. 对称型梯度功能陶瓷材料的非定常热应力. 机械工程学报, 2001, 37(11): 22-27 (EI) 1. 超高速切削刀具的设计理论与制造工艺(400万),项目来源:国家重点基础研究发展计划(批准号:2009CB724402),(2009.1-2013.8),项目负责人;2. “基于性能驱动的难加工材料切削刀具设计制造理论与关键技术研究”(60万),项目来源:国家自然科学资金(批准号:51175310),(2012.1-2015.12),项目负责人;3. “基于高速切削多场耦合理论的自适应梯度复合刀具研究”(6万),(批准号:2009,0131110030),高等学校博士学科点专项科研基金,(2010.1-2012.12),项目负责人;4. “于宏微观性能裁剪拼接的梯度纳米复合刀具研究”(36万),项目来源:国家自然科学资金(批准号:50875156),(2009.1-2011.12),项目负责人;5. “高速切削摩擦学及刀具寿命研究”(27万),项目来源:国家自然科学基金(批准号:50575126)(2006.1—2008.12),项目负责人;6. “基于刀具寿命和切削稳定性的多轴数控加工表面形貌预测与控制”(50万),项目来源:教育部新世纪优秀人才支持计划(批准号:NCET-06-0588),项目负责人;7. “高寿命型腔模具制造关键技术研究及应用”(10万),项目来源:山东省科学技术发展计划(批准号:2007GG20004003),项目负责人;8. “自由曲面模具多轴数控加工表面质量控制技术及应用研究”(10万),项目来源:山东省优秀中青年科学家科研奖励基金(批准号:2005BS05002)(2006.1—2008.12),项目负责人;9. “基于多尺度关联效应的纳米复合陶瓷刀具及其切削性能研究”(6万),项目来源:高等学校博士学科点专项科研基金(批准号:20050422033)(2006.1—2008.12),项目负责人;10. “基于多尺度高阶理论的纳米复合梯度功能陶瓷刀具及其可靠性研究”(70万),项目来源:高等学校全国优秀博士学位论文作者专项资金(批准号:200231)(2003.1—2007.12),项目负责人;