以第一作者或者通讯作者发表的论文
[1] F.J. Niu, J.H. Chen, S.Y. Duan, W.Q. Ming, J.B. Lu, C.L. Wu*, Z. Le, The effect of pre-deformation on the precipitation behavior of AlCuMg(Si) alloys with low Cu/Mg ratios, Journal of Alloys and Compounds, 823 (2020)153831: 1-9.
[2] X.W. Yu, J.H. Chen, J.Y. Li, C.L. Wu∗, X.B. Yang, Effect of pre-deformation on quench-induced inhomogeneity of microstructure and hardness in 7050 aluminum alloy, Materials Characterization, 158 (2019): 1-7
[3] Y. Hong, C.L. Wu*, J.H. Chen. Precipitation of γ´ nitrides in N-saturated ferrite at high temperature and its effect on nitriding, Journal of Alloys and Compounds, 792 (2019) 818-827
[4] Yong Zhang, Jinming Guo, Jianghua Chen, Cuilan Wu, Karoline Sophie Kormout, Pradipta Ghosh, Zaoli Zhang, Journal of Alloys and Compounds, 776 (2019) 807-818
[5] Y. Zhang, Z.R. Liu, D.W. Yuan, Q. Shao, J.H. Chen, C.L. Wu, Z.L. Zhang, Elastic Properties and Stacking Fault Energies of Borides, Carbides and Nitrides from First-Principles Calculations, Acta Metallurgica Sinica, 2019(32):1099-1110
[6] Yong Zhang, Cuilan Wu*, Yingde Wang, Jianghua Chen, Yang Qiu, Xiubo Yang, Yanzi Gou*, A detailed study of the microstructure and thermal stability of typical SiC fibers, Materials Characterization, 2018,146,91-100
[7] S.Y. Duan, C.L. Wu*, Z. Gao, L.M. Cha, T.W. Fan, J.H. Chen, Interfacial structure evolution of the growing composite precipitates in Al-Cu-Li alloys, Acta Materialia, 2017, 129, 352-360
[8] P. Xie, M. Han, C.L. Wu*, Y.Q. Yin , K. Zhu, R.H. Shen, J.H. Chen, A high-performance TRIP steel enhanced by ultrafine grains and hardening precipitates, Materials and design, 2017, 127, 1-7.
[9] Y. Hong, C.L. Wu*⁎, L. Tian, N. Li, Q. Xu, J.H. Chen, Microstructure and property evolution of Fe-N ferrite undergoing earlystages of precipitation, Materials Science & Engineering A, 2017,696,197-207.
[10] P. P. Ma, C. H. Liu, C. L. Wu*, L. M. Liu, J. H. Chen, Mechanical properties enhanced by deformation–modified precipitation of θ'-phase approximants in an Al-Cu alloy, Materials Science & Engineering A, 2016,676:138-145
[11] CuilanWu*, Yue Hong, Wanglin Chen, Jianghua Chen, Min Yuan, Xiaozhou Liao, A double strengthened surface layer fabricated by nitro-chromizing on carbon steel, Surface & Coatings Technology, 2016, 298: 83–92
[12] P. Xie, C.L. Wu*, Y. Chen, J.H. Chen, X.B. Yang, S.Y. Duan, N yan, X.A. Zhang, J.Y. Fang. A nanotwinned surface layer generated by high strain-rate deformation in a TRIP steel, Materials and Design,2015,80(5):144-151.
[13] W.L. Chen, C.L. Wu*, Z.R. Liu, S. Ni, Y. Hong, Y. Zhang, J.H. Chen. Phase transformations in the nitrocarburizing surface of carbon steels revisited by microstructure and property characterizations. Acta Materialia,2013,61:3963-3972.
[14] W.L. Chen, C.L. Wu*, J.H. Chen, A.G. He. An electron microscopy study of the vein-like grain boundary microstructure in nitrocarburized low carbon steels. Journal of Materials Science & Technology, 2013,29(7):669-672.
[15] H.M. Zhu, G. Sha, J.W. Liu, C.L. Wu*, C.P. Luo, Z.W. Liu, R.K. Zheng, S.P. Ringer. Microstructure and mechanical properties of Mg-6Zn-xCu-0.6Zr (wt.%) alloys, Journal of Alloys and Compounds 2011,509:3526–3531
[16] Cuilan Wu, Xiaozhou Liao, Jianghua Chen. Formation of the symmetric SiC bi-nanowires with a Y-shaped junction. Nanotechnology, 2010,21:405303
[17] Cuilan Wu, Chengping Luo. Microstructure and formation mechanism of twins of laths of Austenite with high nitrogen. Science in China series E: Technological Science, 2007,50(6):755-764.
[18] T. Hu, J.H. Chen*, J.Z. Liu, Z.R. Liu, C.L. Wu*, The crystallographic and morphologic evolution of the strengthening precipitates in Cu-Ni-Si alloys, Acta Materialia, 2013,61: 1210-1219.
[19] S.B. Wang, J.H. Chen*, M.J. Yin, Z.R. Liu, D.W. Yuan, J.Z. Liu, C.H. Liu, C.L. Wu*. Double-atomic-wall-based dynamic precipitates of the early-stage S-phase in AlCuMg alloys, Acta Materialia,2012,60:6573-6580.
[20] Z.R. Liu, J.H. Chen﹡, S.B. Wang, D.W. Yuan, M.J. Yin, C.L. Wu﹡. The structure and the properties of S-phase in AlCuMg alloys, Acta Materialia, 2011,59 :7396-7405.
[21] Cuilan Wu,Chengping Luo. Microstructure and formation mechanism of twins of laths of Austenite with high nitrogen. Science in China series E: Technological Science, 2007,50(6):755-764.
[22] Cuilan Wu, Chengping Luo, Ganfeng Zou. Microstructure and properties of low-temperature composite chromized layer on H13 tool steel. J.Mater.Sci.Technol., 2005,21(2):256-260.
[23] 朱恺,伍翠兰,谢盼,韩梅,刘元瑞,张香阁,陈江华, 奥氏体/铁素体层状条带结构高锰钢的微观组织及其性能,金属学报,2018,54(10),1387-1398
[24] 伍翠兰,周斌,牛凤姣,段石云,巩向鹏,陈江华, 高Cu/Mg比AlCuMg合金的形变诱导Ω相析出强化,湖南大学学报(自然科学版),2018,45(6),1-10
[25] 李楠,洪悦,伍翠兰,徐强, 低碳钢气体氮碳共渗及后续淬火研究,表面技术,2018,47(11),1-8
[26] 伍翠兰,韩梅,谢盼,朱恺,张香阁,刘元瑞, Mn12Ni2MoTi(Al)钢中Laves析出相的演变规律, 湖南大学学报(自然科学版),2018,45(12),1-10
[27] 田松栗,谢盼,伍翠兰*,韩梅,朱恺,退火温度对冷轧Fe20Mn0.3C钢组织及其拉伸变形行为的影响, 材料热处理学报, 2017,38(7),93-100.
[28] 尹炎祺, 伍翠兰*, 谢盼, 朱恺, 田松栗, 韩 梅, 陈江华, 冷轧及退火制备的超细晶粒双相Mn12Ni2MoTi(Al)钢, 金属学报, 2016,52(12):1527-1537.
[29] 伍翠兰*,陈兴岩,王津,洪悦,田磊,气体渗氮及后续时效工艺对2Cr13钢渗氮层的影响,湖南大学学报(自然科学版), 2016,43(12),1-10.
[30] 王津,洪悦,陈兴岩,伍翠兰*,氮化势对低碳钢气体渗氮化合物层组织结构和性能的影响, 材料热处理学报,2016,37(8):168-176.
[31] 伍翠兰,田磊,洪悦,王津,陈兴岩,冷却方式及时效处理对580℃气体渗氮层的影响,湖南大学学报(自然科学版),2015,42(12):33-39.
[32] 陈燕, 伍翠兰*,谢盼,陈汪林,肖辉,陈江华, 机械磨擦制备的Fe-20Mn-3Al-3Si钢表面相变强化层. 金属学报,2014,50(4): 423-430.
[33] 洪悦,田磊,伍翠兰*,Fe-0.8C-0.4N三元淬火马氏体表征,电子显微学报,2014, 33(5):393-398.
[34] 伍翠兰, 艾倍倍, 谢盼, 陈汪林, 李久茂, TWIP钢的孪晶及其对Hall-Petch关系的影响, 湖南大学学报(自然科学版), 2013, 40(6): 80-85.
[35] 谢盼, 伍翠兰*, 艾倍倍, 陈汪林, 陈燕, 陈亚, Fe-Mn-A1-Si系TRIP/TWIP钢激光焊接接头的微观组织研究, 电子显微学报, 2013, 32(6): 211-218.
[36] 伍翠兰*,龙彩霞,王双宝.Fe-20Mn-2.6Al-2.6Si钢拉伸变形机理研. 湖南大学学报(自然科学版),2012,39(7):70-74.
[37] 何爱贵,陈汪林,伍翠兰*.08F钢离子软氮化扩散层中γ′-Fe4(C,N)形态及晶体学取向关系. 电子显微学报, 2012,31(2):22-29.
[38] 伍翠兰,元敏,陈汪林. 20钢渗氮表面500 ℃盐浴渗铬层微观组织结构研究[J].湖南大学学报(自然版), 2010,37(9):60-64.
[39] 伍翠兰,陈汪林,元敏. 牙轮失效分析. 湖南大学学报(自然版),2010,37(2):50-55.
[40] 王双宝,伍翠兰﹡,吾之英,陈汪林,陈江华. T92 钢管在650 ℃下蠕变断裂后的显微组织研究. 动力工程学报, 2010,30(4):275-280.
[41] 王双宝,伍翠兰﹡,元敏,杨浩,陈江华.T92锅炉钢649℃长期时效的微观组织研究.南京大学学报,2009,45(2): 269-274
[42] 伍翠兰,陈江华,陈振华,胡廷伟,牛永强. 菊花石中纳米矿物的微观组织研究. 岩矿测试.2008,27(3):161-164.
[43] 伍翠兰,罗承萍. 片状富氮奥氏体孪晶组织及其形成机理. 中国科学E辑:技术科学, 2007,37(11):1435-1443.
[44] 伍翠兰,罗承萍,陈振华,邹敢峰. H13钢低温复合渗铬层组织及其形成机理. 材料热处理学报,2007,28(3):93-97.
[45] 伍翠兰,罗承萍,邹敢锋. 20钢复合渗铬中的相变研究. 金属学报,2004,40(10):1074-1078.
[46] 伍翠兰,邹敢锋,罗承萍.H13钢模具表面渗氮渗层剥落分析. 理化检验-物理分册,2005,z1:453-454.
[47] 伍翠兰,邹敢锋,袁叔贵,叶金玲. W18Cr4V钢低温盐浴渗铬研究. 中国表面工程, 2002,15(6):36-41.
[48] 伍翠兰,邹敢锋,袁叔贵,叶金玲. Cr12MoV钢低温盐浴渗铬复合处理. 热加工工艺, 2002,3(3):26-28.
[49] 伍翠兰,邹敢锋,袁叔贵. 45钢低温盐浴渗铬工艺及渗层性能研究. 金属热处理. 2002,27(2):7-9.
合作发表的英文论文
[1] Y. Zhang, Z.R. Liu, D.W. Yuan, Q. Shao, J.H. Chen, C.L. Wu, Z.L. Zhang, Elastic Properties and Stacking Fault Energies of Borides, Carbides and Nitrides from First-Principles Calculations, Acta Metallurgica Sinica, 2019(32):1099-1110
[2] Y.X. Lai, B.C. Jiang, C.H. Liu, Z.K. Chen, C.L. Wu, J.H. Chen, Low-alloy-correlated reversal of the precipitation sequence in Al-Mg-Si alloys, Journal of Alloys and Compounds, 2017, 701, 94-98
[3] L. H. Liu, T. W. Fan, C. L. Wu, P. Xie, D. W. Yuan, J. H. Chen. Synergistic Effect of Alloying Atoms on Intrinsic Stacking-Fault Energy in Austenitic Steels. Acta Metallurgica Sinica, 3 (2017): 1-8.
[3] Z. Gao, J.H. Chen, S.Y. Duan, X.B. Yang, C.L. Wu. The complex precipitation sequences of AlCuLiMg alloys characterized in relation with thermal-ageing processes. Acta Metallurgica Sinica (English Letters),29(2016), 94-103.
[4] M.J. Yin, J.H. Chen, S. B. Wang, Z.R. Liu, L.M. Cha, S.Y. Duan, C.L. Wu. Temperature-dependent growth of the S-phase precipitates in relation with the Guinier-Preston-Bagaryatsky(GPB) zones in AlCuMg alloys. Transactions of Nonferrous Metals Society of China. 2016.26.1-11.
[5] J.Z. Liu, J.H. Chen, Z.R. Liu, C.L. Wu, Fine precipitation scenarios of AlZnMg(Cu) alloys revealed by advanced atomic-resolution electron microscopy study Part II: Fine precipitation scenarios in AlZnMg(Cu) alloys. Materials Characterization, 2015, 99: 142-149.
[6] J.Z. Liu, J.H. Chen, D.W. Yuan, C.L. Wu, J. Zhu, Z.Y. Cheng, Fine precipitation scenarios of AlZnMg(Cu) alloys revealed by advanced atomic-resolution electron icroscopy study Part I: Structure determination of the precipitates in AlZnMg(Cu) alloys. Materials Characterization, 2015, 99:277-286.
[7] Z. Gao, J.Z. Liu, J.H. Chen, S.Y. Duan, Z.R. Liu, W.Q. Ming, C.L. Wu, Formation mechanism of precipitate T1 in AlCuLi alloys. Journal of Alloys and Compounds, 2015, 624: 22-26.
[8] L. Liu, J. H. Chen, S. B. Wang, C. H. Liu, S. S. Yang, C. L. Wu, The effect of Si on precipitation in Al–Cu–Mg alloy with a high Cu/Mg ratio. Materials Science and Engineering: A, 2014, 606: 187-195.
[9] X. B. Yang, J. H. Chen, J. Z. Liu, F. Qin, J. Xie, C. L. Wu, A high-strength AlZnMg alloy hardened by the T-phase precipitates. Journal of Alloys and Compounds, 2014, 610 : 69-73.
[10] J.Z. Liu, S.S. Yang, S.B. Wang, J.H. Chen, C.L.Wu, The influence of Cu/Mg atomic ratios on precipitation scenarios and mechanical properties of Al-Cu-Mg alloys. Journal of Alloys and Compounds, 2014, 613 139-142.
[11] Xiubo Yang, Jizi Liu, Jianghua Chen, Caiyun Wan, Lei Fang, Ping Liu, Cuilan Wu, Relationship between the strengthening effect and the morphology of precipitates in Al-7.4Zn-1.7Mg-2.0Cu (wt. %) alloy, Acta Metallurgica Sinica (English Letters), 2014, 27: 1070-1077.
[12] X. B. Yang, J. H. Chen, J. Z. Liu*, P. Liu, F. Qin, Y. L. Cheng, C. L. Wu, Spherical constituent particles formed by a multistage solution treatment in Al-Zn-Mg-Cu alloys. Material Characterization, 2013, 83: 79-88.
[13] Huiliang CAO, Cuilan WU, Jiangwen LIU, Chengping LUO and Ganfeng ZOU. A Novel Duplex Low-temperature Chromizing Process at 500℃. Journal of Materials Science & Technology. 2007,23(06), 823-827.
[14] H.L. Cao, C.P. Luo, J.W. Liu, C.L. Wu and G.F. Zou. Formation of nanostructured CrN layer on nitrided tool steel. Scripta Materialia, 2008,58: 786–789.
主持的科研项目
1) 国家自然科学基金:高性能AlCuLi(Mg)铝合金中复杂共存共生相的析出强化与演化规律研究,51671082,80万元,2017年1月~2020年12月,进行中。
2) 国家自然科学基金:AlCuMg合金体系中主要强化相的演变规律和相对稳定性研究,51371081,80万元,2014年1月~2017年12月,进行中。
3) 国家自然科学基金:Fe-C-N三元合金钢中碳氮化物纳米析出相的微观结构及其演变规律,51071064,34万元,2011年1月~2013年12月,完成。
4) 中国博士后基金:低温复合渗铬后钢的微观组织结构与其相变研究,20070410979,3万元,2007年9月~2008年9月,完成。
5) 湖南省自然科学基金:菊花石中纳米材料微观组织及其形成机理研究,09JJ6002,2万元,2008年1月~2010年12月,完成。
6) 湖南省博士后基金:低温复合盐浴渗铬研究,2006FJ4238,2万元,2006年9月~2008年9月,完成。
作为主要研究人员参与的科研项目
1) 国家自然科学基金重大仪器项目:透射电子显微镜定量化原子成像技术及分析仪器平台系统,2015年1月—2019年12月,575万,进行中
2) 科技部“973”计划,2009CB623704,高性能轻质合金中多相复杂体系原子尺度表征与材料强韧化调控,2009年9月—2013年9月,554万,已结题
3) 科技部“973”计划,2008CB617608,重要金属材料中强化析出相的结构和演变规律,2008年3月—2010年12月,64万,已结题
4) 国家自然科学基金项目:50771043,铝合金中硬化析出相的先进电子显微学,2008年1月—2010年12月, 30万元,已结题。
获批的专利情况
(1)伍翠兰(#); 王津; 洪悦; 陈兴岩; 陈江华, 一种提高氮碳共渗强化层表面致密性的复合热处理工艺, 2017.1.11-2020.1.11, 中国, CN201510102630.4 (专利)
(2)伍翠兰(#); 陈汪林; 李子青; 陈江华; 何爱贵, 提高钢材料工件氮碳共渗强化层性能的热处理工艺 , 2014.12.17-2020.12.16, 中国, CN201110026979.6 (专利)
(3)陈江华(#); 刘春辉; 陈敬; 刘力梅; 伍翠兰, 一种同时提高铝合金电导率和强度的热加工方法, 2015.3.4-2020.3.4, 中国, CN201510075386.7 (专利)
(4)陈江华(#); 刘春辉; 李祥亮; 王时豪; 伍翠兰, 提高变形铝合金强度并保持其塑性的热加工方法, 2013.4.17-2033.1.9, 中国, CN201310007350.6 (专利)
(5)陈江华(#); 刘吉梓; 杨修波; 谢娟; 刘萍; 秦芳; 伍翠兰, 一种高强、轻质、耐蚀、可焊的Al-Zn-Mg合金及制备方法, 2015.8.9-2020.8.8, 中国, CN201310462384.4 (专利)
(6)陈江华(#); 刘春辉; 冯佳妮; 伍翠兰, 一种车身用铝合金板材, 2013.11.6-2020.11.5, 中国, CN201210250426.3 (专利)
(7)陈江华(#); 刘春辉; 刘吉梓; 伍翠兰, 提高6XXX系铝合金薄板加工成形与烘烤硬化性能的热处理方法, 2010.9.1-2020.9.1, 中国, CN201010147062.7 (专利)
(8)陈江华; 明文全; 伍翠兰, 一种改进的前脚系列迭代波函数重构方法, 2019.2.13-2022.2.12, 中国, 201810111661.X (专利)