科研项目

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项目编号 项目名称 项目来源 起讫时间 承担角色 项目类别
92366301 高速直线推进电磁能装备枢轨材料性能劣化与实时原位诊断和评价研究 国家自然科学基金项目 2024-01~2027-12 骨干成员 纵向项目
HXDSH20230311 火电厂金属部件失效分析及试验检测 横向课题 2023-03~2024-12 负责人 横向项目
92166102 铜合金性能及服役行为调控 国家自然科学基金项目 2022-01~2024-12 负责人 纵向项目
2022ZC035 某型金属合金材料优化研究 预研子课题 2022-01~2022-12 负责人 横向项目
20210559 火电厂金属部件失效分析及实验检测 横向课题 2021-05~2022-12 负责人 横向项目
202111122 新型合金的熔炼试制开发 横向课题 2020-01~2022-12 负责人 横向项目
20200988 金属粉末注射成型(MIM)用18Ni合金开发 横向课题 2020-01~2021-12 负责人 横向项目
20200810 火电厂金属部件失效分析及实验检测 横向课题 2020-01~2021-12 负责人 横向项目
51871178 FCC结构高熵合金微观组织与变形机制调控的碳合金化效应 国家自然科学基金项目 2019-01~2022-12 负责人 纵向项目
20170129 电厂钢管组织性能测试及失效分析 横向课题 2017-01~2017-12 负责人 横向项目
xxxxxxxx 火电厂金属部件组织性能测试及失效分析 横向课题 2017-01~2017-12 负责人 横向项目
000000 材料的微观组织设计及性能优化 973项目 2015-1~2018-12 负责人 纵向项目
0001 粉末锻造i汽车连杆疲劳性能测试 横向课题 2014-11~2015-12 负责人 横向项目
000000 布连电厂中压调门螺栓断裂事故分析 横向课题 2014-01~2014-12 负责人 横向项目
51100203 SiC涂层TEM 制样 横向课题 2013-01~2013-12 负责人 横向项目
51100201 宝钢高强汽车板的焊接头疲劳寿命测试 横向课题 2012-01~2012-12 负责人 横向项目
51171138 块体非晶合金中的韧脆转变现象与机理研究 国家自然科学基金项目 2011-1~2014-12 负责人 纵向项目
20110201110002 不同尺度下块体非晶合金的断裂韧性研究 国家教育部项目 2011-1~2012-12 负责人 纵向项目
50871079 块体非晶合金微尺度压缩性能及变形机制研究 国家自然科学基金项目 2009-1~2011-12 负责人 纵向项目
2007200246 膨胀套管/膨胀筛管基管及防砂筛网材料选择 “863”高科技项目 2008-3~2010-12 骨干成员 纵向项目

发表论文

[65] J. Tian; B.Q. Chen; Y.K. Wu; J.B. Pang; T.H. Cao; F. Jiang*; Microstructural evolutionand duplex structure-enhanced high-temperature mechanical properties of Al-doped VCoNi mediumentropy alloy, Journal of Alloys and Compounds, 2023, 965: 171322.

[64] Y.K. Wu, R. Wu, M.Y. Zhang, S. Tan, J.Y. Lu**, F. Jiang*. Enhancing explosive weldability of thick precipitate-hardened alloys. Journal of Manufacturing Processes. 77(2022)339-347.

[63] G. Ding F. Jiang, L.H. Dai. M.Q. Jiang. Unravelling the threshold stress of structural rejuvenation of metallic glasses via thermo-mechanical creep. SCIENCE CHINA Physics, Mechanics & Astronomy. In press, 2022.

[62] G. Ding F. Jiang, L.H. Dai. M.Q. Jiang Effective Energy Density of Glass Rejuvenation, Acta Mechanica Solida Sinica. Accpted, 2022.

[61] T.H. Cao, Y.K. Wu, J. Tian, F. Jiang*, J. Sun. In-situ oxide particles reinforced Fe40Mn40Co10Cr10 high-entropy alloy by internal oxidation and powder forging. Scripta Materialia 215 (2022) 114692.

[60] R. Wu, Y.K. Wu, F. Jiang. Corrosion Behaviors of Supersaturated and Peak-Aged CuNiSiCr Alloys under Salt Spray Environment. Journal of Materials Engineering and Performance. In press 2022. https://doi.org/10.1007/s11665-022-06720-9

[59] T. Han, N. Li, Y.K. Wu*, F. Jiang. Microstructural Evolution and Anisotropic Mechanical Properties of 316L Stainless Steel Induced by Tensile Straining. Journal of Materials Engineering and Performance 31(2022)1231–1240.

[58] J. Tian, K. Tang, Y.K. Wu*, T.H. Cao, J.B. Pang, F. Jiang*. Effects of Al alloying on microstructure and mechanical properties of VCoNi medium entropy alloy. Materials Science & Engineering A. 811 (2021) 141054.

[57] S. Wang, Y.K Wu, H.L Wang, F. Jiang*. Investigation on the hot-deformation behaviour of sintered and forged specimens to improve the forging safety of powder-forged products. Powder Metallurgy. 64(2021) 273-282.  

[56] Y.L. Qi, L. Zhao, X. Sun, H.X. Zong, X.D. Ding, F. Jiang*, H.L. Zhang, Y.K. Wu, L. He, F. Liu*, S.B. Jin , G. Sha, J. Sun*. Enhanced mechanical performance of grain boundary precipitation hardened high-entropy alloys via a phase transformation at grain boundaries. Journal of Materials Science and Technology. 86 (2021) 271–284.

[55] K. Tang, Y.K. Wu, R. Wei, L.B. Chen, S. Lu, Y.L. Qi, F. Jiang*, J. Sun. Achieving superior cryogenic tensile properties in a Ti-doped (Fe40Mn40Co10Cr10)96.7C3.3 high-entropy alloy by recovering deformation twinning. Materials Science and Engineering A. 808 (2021) 140927.

[54] Y.L. Qi, T.H. Cao, H.X. Zong, Y.K. Wu, L. He, X.D. Ding, F. Jiang*, S.B. Jin, G. Sha, J. Sun. Enhancement of strength-ductility balance of heavy Ti and Al alloyed FeCoNiCr high-entropy alloys via boron doping. Journal of Materials Science and Technology. 75 (2021) 154–163

[53] Y.K. Wu, J. Tian, W. Xiong, P. Zhang, F. Jiang*, Z.B. Zhang**, J. Sun. Correlation between evolving microstructures and mechanical properties of served inconel 783 superalloys. Journal of Alloys and Compounds. 851 (2021) 156921.

[52] S. Wang, Y.K. Wu, T.Y. Zhang, F. Jiang*. Copper Precipitation Behavior during Continuous Cooling and Subsequent Aging of Powder-Forged Fe-2.5Cu-C Alloy. Metals. 10 (2020)1350.

[51] Y.L. Qi, Y.K. Wu, T.H. Cao, L. He, F. Jiang*, J. Sun. L21-strengthened face-centered cubic high-entropy alloy with high strength and ductility. Materials Science and Engineering A.797 (2020) 140056.

[50] L.B. Chen, T.H. Cao, R. Wei**, K. Tang, C. Xin, F. Jiang*, J. Sun. Gradient structure design to strengthen carbon interstitial Fe40Mn40Co10Cr10 high entropy alloys. Materials Science and Engineering A.772 (2020) 138661.

[49] G. Ding, C. Li, A. Zaccone, W. H. Wang*, H. C. Lei, F. Jiang, Z. Ling, M. Q. Jiang*. Ultrafast extreme rejuvenation of metallic glasses by shock compression. Science Advances. 5 (2019)8: eaaw6249.

[48] Y.K. Wu, J.Y. Lu, S. Tan, F. Jiang*, J. Sun. Accessing enhanced uniformity and property in CuNiSiCr alloy by high-temperature recrystallization. Materials Science and Engineering A. 764 (2019) 138281.

[47] K. Tang, L.B. Chen, S. Wang, R. Wei, Z.Y. Yang, F. Jiang*, J. Sun. Development of a large size FCC high-entropy alloy with excellent mechanical properties. Materials Science and Engineering A. 761(2019)138039.

[46] S. Wang, Q. Wang, H.L. Wang, F.P. Liu, W.J. Yao, F. Jiang*, J. Sun, F.Y. Wang. Effects of Copper Content on Microstructure and Mechanical Properties of Powder-Forged Rod Fe-C-Cu Alloys Manufactured at Elevated Temperature. Materials Science and Engineering A. 743(2019)197-206.

[45] Y.K. Wu, Y. Li, J.Y. Lu, S. Tan, F. Jiang*, J. Sun. Effects of Pre-deformation on Precipitation Behaviors and Properties in Cu-Ni-Si-Cr Alloy. Materials Science and Engineering A. 742(2019) 501-507.

[44] L.B. Chen, R. Wei, K. Tang, G.J. Zhang, F. Jiang*, J. Sun. The ductile-brittle transition of carbon alloyed Fe40Mn40Co10Cr10 high entropy alloys. Materials Letters. 236 (2019) 416–419.

[43] Y.K. Wu, J.Y. Lu, S. Tan, F. Jiang*, J. Sun. Modified implementation strategy in explosive welding for joining between precipitate-hardened alloys. Journal of Manufacturing Processes. 36(2018) 417-425.

[42] Y.K. Wu, Y. Li, J.Y. Lu, S. Tan, F. Jiang*, J. Sun. Correlations between microstructures and properties of Cu-Ni-Si-Cr alloy. Materials Science and Engineering A. 731 (2018) 403–412.

[41] L.B. Chen, R. Wei, K. Tang, G.J. Zhang, F. Jiang*, J. Sun. Effects of doping nano-La2O3 on the microstructure and mechanical properties of Mo-9Si-18B alloys. Mater. Trans. 59(2018) 764-770.

[40] L.B. Chen, R. Wei, K. Tang, J. Zhang, F. Jiang*, L. He, J. Sun. Heavy carbon alloyed FCC-structured high entropy alloy with excellent combination of strength and ductility, Materials Science and Engineering A. 716 (2018) 150–156

[39] M. Q. Jiang, M. Peterlechner, Y. J. Wang, W. H. Wang, F. Jiang, L. H. Dai, and G. Wilde. Universal structural softening in metallic glasses indicated by boson heat capacity peak. Applied Physics Letters. 111 (2017) 261901.

[38] M. C. Li, M. Q. Jiang, F. Jiang*, L. He, J. Sun. Testing effects on hardness of a Zr-based metallic glass under nanoindentation. Scripta Materialia.138(2017)120-123.

[37] M.C. Li, M.Q. Jiang, G. Ding, Z.H. Peng, F. Jiang*, L. He, J. Sun. The correlation between weakest configurations and yield strength of Zr based metallic glasses. Journal of Non-Crystalline Solids. 468 (2017) 52–57.

[36]   M.C. Li, M.Q. Jiang, S. Yang, F. Jiang*, L. He, J. Sun. Effect of strain rate on yielding strength of a Zr-based bulk metallic glass. Materials Science and Engineering A. 680 (2017) 21–26.

[35] M.C. Li, M.Q. Jiang, G. Li, L. He, J. Sun, F. Jiang*. Ductile to brittle transition of fracture of a Zr-based bulk metallic glass: Strain rate effect. Intermetallics.77(2016)34-40.

[34] T. JiangL.B. ChenF. Jiang*H.P CaiJ. Sun. Microstructural evolution and mechanical properties of a nickel-based superalloy through long-term serviceMaterials Science and Engineering A.656(2016)184-189.

 [33] X.L. Wang, F. Jiang*H. HahnJ. LiH. Gleiter, J. SunJ.X. Fang*Sample Size Effects on Strength and Deformation Mechanism of Sc75Fe25 Nanoglass and Metallic GlassScripta Materialia.116(2016)95-99.

[32] 柏琳娜, 刘福平, 王邃,江峰*, 孙军, 陈良斌, 王丰元. Fe-C-Cu 粉末锻造汽车发动机连杆的组织与力学性能.金属学报52(2016)41-50

[31] G. LiZ.R. He,F. Jiang,*Y.K. Wu, R. WeiL. HeJ. Sun. Stability of a metastable B2 phase embedded in a metallic glass matrix at liquid-nitrogen temperatureMaterials Science and Engineering A. 634(2015)99-102.

[30] G. Li, M.Q. Jiang, F. Jiang*, L. He, J. Sun*. The Ductile-to-Brittle Transition Behavior in a Zr-based Bulk Metallic Glass. Materials Science & Engineering A. 625(2015)393-402.

[29] X.L. Wang, F. Jiang*, H. Hahn, J. Li*, H. Gleiter, J. Sun, J.X Fang*. Plasticity of a Scandium-based Nanoglass. Scripta Materialia. 98(2015)40-43.

[28] M.Q. Jiang*, G. Wilde, J.H. Chen, C.B. Qu, S.Y. Fu, F. Jiang, L.H. Dai*. Cryogenic-temperature-induced transition from shear to dilatational failure in metallic glasses. Acta Materialia. 77 (2014) 248–257.

[27] G. Li, M. Q. Jiang, F. Jiang*, L. He, J. Sun. Temperature-induced ductile-to-brittle transition of bulk metallic glasses. Applied Physics Letters. 102, 171901 (2013).

[26] M.Q. Jiang, F. Jiang, V. Keryvin, J.X. Meng, J. Sun, L. H. Relation between ideal and real strengths of metallic glasses. Journal of Non-crystalline Solids. 358(2012)3119-3123.

[25] G. Liu, G. J. Zhang, F. Jiang, X. D. Ding, Y. J. Sun, J. Sun1,* and E. Ma*. Nanostructured high-strength molybdenum alloys with unprecedented tensile ductility. Nature Materials.12344-350.

[24] F. Jiang*, H.F. Wang, M.Q. Jiang, Y.L. Zhao, L. He, J. Sun. Ambient temperature embrittlement of a Zr-based bulk metallic glass. Materials Science & Engineering A. 549 (2012) 14– 19.

[23] Fang. J.X*, Vainio. U, Puff. W, Wurschum. R, Wang. X. L, Wang. D, Ghafari. M, F. Jiang*, Sun. J, Hahn. H, Gleiter. H*. Atomic Structure and Structural Stability of Sc75Fe25 Nanoglasses. Nano Letters. 12:458-463.

[22] F. Jiang, M.Q. Jiang, H.F. Wang, Y.L. Zhao, L. He, J. Sun*. Shear transformation zone volume determining ductile-brittle transition of bulk metallic glasses. Acta Materialia. 59 (2011) 2057–2068.

[21] L.C. Zhang, F. Jiang*, Y.L. Zhao, J.F. Zhang, L. He, J. Sun. Stable shear of Cu46Zr47Al7 bulk metallic glass alloy by controlling temperature rise. Materials Science & Engineering A. 527 (2010) 4122-4127.

[20] L.C. Zhang, F. Jiang*, Y.L. Zhao, S.B. Pan, L. He, J. Sun. Shear band multiplication aided by free volume under three-point bending. Journal of materials research. 25283-291.

[19] S.P. Yang, H. Kou, G.J. Zhang, G. Liu, F. Jiang, J. Sun. Microstructural characterization of Mo-12Si-8.5B alloy subjected to diffusion annealing treatment. International Journal of Refractory Metals and Hard Materials. 28 (2010) 377-382.

[18] Z.H. Han, L. He*, M.B. Zhong, F. Jiang, J. Sun. Synergistic effect of crystalline metal on the plasticity of bulk metallic glasses under uniaxial synchro-compression. Journal of materials research. 24(2009)3099-3107.

[17] Z.H. Han, L. He*, Y.L. Hou, F. Jiang, J. Sun. Understanding the mechanism for the embrittlement of a monolithic Zr-based bulk metallic glass by oxygen. Intermetallics.17553.

[16] F. Jiang, Y.L Zhao, L.C. Zhang, S.B. Pan, L. He, J. Sun*, Y.G. Zhou. The coupling effect of small nanocrystals and free volume on ductility of Cu46Zr47Al7 bulk metallic glass alloys. Advanced Engineering Materials. 11(2009)374-379.

[15] F. Jiang, Y.L Zhao, L.C. Zhang, S.B. Pan, Y.G. Zhou, L. He, J. Sun*. Dependence of ductility on free volume in a Cu-Zr-based metallic glass. Advanced Engineering Materials. 11(2009)177-181.

[14] G.J Zhang*, G. Liu, YJ. Sun, F. Jiang, L. Wang, R.H. Wang, J. Sun. Microstructure and strengthening mechanisms of molybdenum alloy wires doped with lanthanum oxide particles. International Journal of Refractory Metals and Hard Materials.27 (2009) 173.

[13] L.C. Zhang, F. Jiang*, D.H. Zhang, L. He, J. Sun, J.T. Fan, Z.F. Zhang, In-situ precipitated nanocrystal beneficial to enhanced plasticity of Cu-Zr based bulk metallic glasses. Advanced Engineering Materials. 10943-950.

[12] He. L*, Zhong. M.B, Han. Z.H, Zhao. Q, F. Jiang, Sun. J. Orientation effect of pre-introduced shear bands in a bulk-metallic glass on its "work-ductilising". Materials Science & Engineering A. 496(2008)285-290.

[11] L He*, Z.H Han, F. Jiang, J. Sun. Crystallization kinetic characteristics of oxygen-induced I-phase and Zr2Cu phase in Zr65Cu27.5Al7.5 glassy alloy, Transactions of Nonferrous Metals Society of China. 18(2008) 610-616.

[10] L. He*, Z.G. Wu, F. Jiang, J. Sun, Enhanced thermal stability of Zr65Cu17.5Ni10Al7.5 metallic glass at temperature range near glass transition by oxygen impurity. Journal of Alloys and Compounds. 456(2008) 181-186.

[9] J.T. Fan, Z.F. Zhang*, F. Jiang, J. Sun, S.X. Mao, Ductile to brittle transition of Cu46Zr47Al7 metallic glass composites. Materials Science & Engineering A. 487(2008): 144-151.

[8] J.T. Fan, F.F. Wu, Z.F. Zhang*, F. Jiang, J. Sun, S.X. Mao, Effect of microstructures on the compressive deformation and fracture behaviors of Cu46Zr47Al7 bulk metallic glass composites.Journal of Non-Crystalline Solids. 353(2007)4707-4717.

[7] F. Jiang, D.H. Zhang, L.C. Zhang, Z.B. Zhang, L. He, J. Sun*, Z.F. Zhang, Microstructure evolution and mechanical properties of Cu46Zr47Al7 bulk metallic glass composite containing CuZr crystallizing phases. Materials Science & Engineering A. 467(2007)139-145.

[6] F.F. Wu, Z.F. Zhang*, F. Jiang, et al. Multiplication of shear bands in metallic glass. Applied physics letters. 90(2007)191909.

[5] F. Jiang, ZB Zhang, L He, et al, The effect of primary crystallizing phases on mechanical properties of Cu46Zr47Al7 bulk metallic glass composites. Journal of materials research. 21(2006) 2638-2645.

[4] F. Jiang, ZJ Wang, ZB Zhang, J Sun*, Formation of Zr-based bulk metallic glasses from low purity materials by scandium addition. Scripta Materialia. 53(2005) 487-491.

[3] F. Jiang, ZL Deng, J Sun*, JF Wei. Crack propagation resistance along strength mismatched bimetallic interface. Journal of Materials Engineering and Performance. 13(2004) 93-98.

[2] F. Jiang, ZL Deng, J Sun*. Fatigue crack propagation normal to a plasticity mismatched bimaterial interface. Materials Science & Engineering A. 356(2003)258 -266.

[1] F. Jiang, K Zhao, J Sun*. Evaluation of Interfacial Crack Growth in Bimaterial Metallic Joints Loaded by Symmetric Three-Point Bending. Inter. J. of Pressure vessel and piping. 80(2003) 129-137.

 

部分中文论文

[1]杨梦想;黄朋朋;史思阳;王娇娇;吴亚科; 江峰*;致密化工艺对粉末冶金6061铝合金组织和性能的影响. 粉末冶金工业,33(2023)30-37.

[2]张旭;田谨;薛敏涛;江峰;李苏植;张博召;丁俊;李小平;马恩;丁向东;孙军。 2000℃高温高承载的Ta-W难熔合金.金属学报。58(2022)1253-1260.

[3]王琪; 江峰*;孙军。汽车领域铝基粉末冶金的研究与进展。粉末冶金工业,31(2021)86-90.

[4]张旭;史思阳;张腾雨;田谨;吴亚科;王邃;赵振智; 江峰*.粉末锻造氧化铝颗粒增强 Fe-Ni-Mo-C-Cu 复合材料的组织与性能研究,粉末冶金技术已录用。

[5]王琪; 张冰清; 王邃; 王华磊; 江峰*; 孙军. 粉末锻造Fe-Ni-Cu-C-Mo齿轮材料热处理及性能研究. 粉末冶金技术, 39(2021)33-40.

[6]张腾雨; 韩涛; 吴术全; 江峰; 张志博; 姜世凯. 服役时间对1Cr5Mo钢制高温紧固螺母显微组织和力学性能的影响. 机械工程材料. 45(2021)61-65.

[7]吴术全; 韩涛; 姜世凯; 张志博; 江峰. 某超临界机组用P91钢的强度退化行为. 机械工程材料. 45(2021)28-33.

[8] 张冰清; 王琪; 王邃; 王华磊; 江峰*; 孙军; 粉末锻造齿轮材料的组织与性能研究, 粉末冶金技术,38(2020)113-120.

[9]张冰清; 田进; 张志博; 吴术全; 江峰*. 火电厂锅炉水冷壁管失效原因分析. 热力发电. 48(2019)97-101.

专利情况

部分授权发明专利

(1) 江峰 ; 韩涛; 吴亚科; 孙军 ; 一种氧化物强化高熵合金的粉末冶金制备方法, 2023-1-13, 中国,ZL202110449274 .9 (专利)

(2) 江峰 ; 史思阳; 吴亚科; 鲁军勇; 孙军 ; 一种提高析出程度且抑制析出相粗化的热处理方法 , 2023-2-10, 中国, ZL 2022 1 1041433.2 (专利)

(3) 江峰 ; 王邃; 王华磊; 王琪; 孙军; 张冰清; 田谨 ; 一种陶瓷颗粒增强的高熵合金及其制备方法,2020-07-28, 中国, ZL2018110948210 (专利)

(4) 江峰 ; 吴亚科; 孙军 ; 一种可变调制周期和调制比非均质高熵合金制备方法, 2020-3-17, 中国,ZL201811594109.7 (专利)

(5) 江峰 ; 陈良斌; 唐可; 杨中岳; 吴亚科; 孙军 ; 一种高性能高熵合金及其加工方法, 2019-02-05, 中国, ZL201710583007.4 (专利)

(6) 何建国; 张明宇; 王邃; 江峰 ; 何美荣 ; 一种低温高强高韧性的高熵合金及其加工方法, 2022-03-01, 中国, ZL 202011197198 .9 (专利)

(7) 何建国; 张明宇; 王邃; 江峰 ; 何美荣 ; 一种用粉末冶金方法制备非均匀层状结构高熵合金的方法,2022-2-18, 中国, ZL202011183162 .5 (专利)

(8) 江峰 ; 张明宇; 吴亚科; 鲁军勇; 夏金民; 孙军 ; 一种基于爆炸焊接的超长板材的制造方法及得到的超长板材, 2022-12-09, 中国, ZL202110162422.9 (专利)

(9) 张广明; 江峰; 王华磊. 一种带有梯度层的双材质粉锻齿轮及其制备方法, 2017.9.12, 中国, ZL201710814928.7. (专利)