大型铸锻件方向论文

 

  1. Z. Y. Ding, Q.D. Hu, L. Zeng, J. G. Li, Hot deformation characteristics of as-cast high-Cr Ultra-super-critical rotor steel with columnar grains, International Journal of Minerals, Metallurgy and Materials, 2016, 11:1-10.
  2. Ge, H., Li, J., Han, X., Xia, M., & Li, J., Dendritic model for macrosegregation prediction of large scale castings. Journal of Materials Processing Technology, 2016, vol.  227, 308-317.
  3. X. J. Han, J. G. Li and H. R. Schober, High temperature breakdown of the Stokes-Einstein relation in a computer simulated Cu-Zr melt, 2016,  J. Chem. Phys. 144, 124505
  4. Y. Xia, C. H. Li, Y. W. Luan, X. J. Han, J. G. Li, Molecular dynamics studies on the correlation of undercoolability and thermophysical properties of liquid Ni–Al alloys. Comp. Mater. Sci. 2016, vol. 112, 383
  5. Ji, Y. L., Zhang, W., Chen, X. Y., & Li, J. G., Increasing Solidification Rate of M2 High-Speed Steel Ingot by Fusible Metal Mold. Acta Metallurgica Sinica (English letters), 2016, vol. 29(4), 382-387.
  6. 李军, Wu Menghuai, Ludwig Andreas, 葛鸿浩, 李建国, 基于热溶质对流及晶粒运动的柱状晶-非球状等轴晶混合三相模型, 金属学报,2016,DOI: 10.11900/0412.1961.2015.00627
  7. Li Chen-Hui, Han Xiu-Jun, Luan Ying-Wei and Li Jian-Guo, Structural origin underlying the effect of cooling rate on solidification point. Chin. Phys. B, 2015, 24, 116101
  8. Li, J., Ge, H., Wang, B., Wu, M., & Li, J., Numerical simulation of multi-mini-pot pouring process of a 13-ton steel ingot. In IOP Conference Series: Materials Science and Engineering, 2015, (Vol. 84, No. 1, p. 012009). IOP Publishing.
  9. 李晨辉, 徐明沁, 韩秀君, 李建国, 金属熔体本征过冷度与熔化熵的耦合关系,上海大学学报2015 21 (1)
  10. Yu, H. S., & Li, J. G., Size distribution of inclusions in 12% Cr stainless steel with a wide range of solidification cooling rates. International Journal of Minerals, Metallurgy, and Materials, 2015, vol. 22(11), 1157-1162.
  11. Chen, X. Y., Zhang, S. G., Xia, M. X., & Li, J. G., Phase Separation and Crystallization Induced by Electron Irradiation in Nanoscale Fe56. 5Mn11Cr8. 5Ni4Si10C10 Metallic Glass. Acta Metallurgica Sinica (English letters),2015, vol. 28(11), 1332-1335.
  12. Chen, X., Ji, Y., Zhang, S., & Li, J., Increasing the cooling rate of Cu mold by liquid alloy coating. Materials Letters, 2015, vol. 151, 35-37.
  13. Zeng, L., Zhang, W., Ji, Y., Huang, Y., & Li, J. , Improving Cooling Rate During Solidification by Eliminating the Metal–Mold Interfacial Gap.Metallurgical and Materials Transactions A, 2015, vol. 46(7), 2819-2822.
  14. Hu, Q., Luo, P., Yan, Y., & Li, J. , Quantitative Analysis of Heterogeneous Microstructure and Diversified Strengthening Mechanisms in Spark Plasma Sintered Molybdenum Disilicide. Metallurgical and Materials Transactions A, 2015, vol. 46(4), 1443-1449.
  15. L. Yang, M. Xia, N. Hari Babu, J.G. Li, Formation of MgAl2O3 at Al/MgO interface, Materials Transactions, 2015, vol. 56, 277-280.
  16. Zeng, L., Xu, M., Ma, X., Huang, Y., Zhang, S., Hu, Q., & Li, J., Grain Refinement and Delta Ferrite Reduction of High Cr Steel Ingots by Thermal Control. ISIJ International, 2014, vol. 54(10), 2302-2308.
  17. 马晓然, 曾龙, 胡侨丹, 李建国, 铸态12%Cr马氏体不锈钢的热变形行为与热加工图, 热加工工艺, 2014, vol. 43(23), 17-24
  18. Yang, L., Xia, M., & Li, J. G., Epitaxial growth in heterogeneous nucleation of pure aluminum. Materials Letters, 2014, vol. 132, 52-54.
  19. Junfang, ZHANG., Yujin, WANG., Wenquan, LU., Shuguang, ZHANG., & Jianguo, LI. , THE CORE-SHELL STRUCTURE OF Al 70 Bi 11 Sn 19 IMMISCIBLE ALLOY PARTICLES, Acta Metall Sin, 2013, vol. 29(4), 457-463.
  20. Zhang, L., Zhang, S., Yu, J., & Li, J. cooling rate control and solidified microstructure of Al-7. 7 Ca eutectic alloy during aerodynamic levitation. Acta Metallurgica Sinica(China), 2013, vol. 49(4), 451-456.
  21. Dai R, Zhang J F, Zhang S G, et al. Liquid immiscibility and core-shell morphology formation in ternary Al–Bi–Sn alloys. Materials Characterization, 2013, vol. 81: 49-55.
  22. Zhang, Y., Huang, Y., Yang, L., & Li, J., Evolution of microstructures at a wide range of solidification cooling rate in a Ni-based superalloy. Journal of Alloys and Compounds, 2013, vol. 570, 70-75.
  23. Zhang, Y., Huang, B., & Li, J., Microstructural evolution with a wide range of solidification cooling rates in a Ni-based superalloy. Metallurgical and Materials Transactions A, 2013. 44(4), 1641-1644.
  24. Hu, Q., Zhang, M., Luo, P., Song, M., & Li, J., Thermal explosion synthesis of ZrC particles and their mechanism of formation from Al–Zr–C elemental powders. International Journal of Refractory Metals and Hard Materials, 2012, 35, 251-256.
  25. 胡方剑, 余汉松, 李建国, 胡侨丹, 陈瑞, 管仲毅, 冷却速率对12Cr铁素体钢显微组织的影响, 热加工工艺, 2012, vol. 41(11), 69-71
  26. Liu, Z. W., Han, Q., & Li, J. G., Formation of small blocky Al3Ti particles via direct reaction between solid Ti powders and liquid Al.Metallurgical and Materials Transactions A, 2012, vol. 43(12), 4460-4463.
  27. Zhang, M. X., Hu, Q. D., Huo, Y. Q., Huang, B., & Li, J. G., Formation and growth mechanism of TiC terraces during self-propagating high-temperature synthesis from a Fe Ti C system. Journal of Crystal Growth, 2012, vol. 355(1), 140-144.
  28. Liu, Z. W., Rakita, M., Han, Q., & Li, J. G. , A Developed Method for Fabricating In-Situ TiC p/Mg Composites by Using Quick Preheating Treatment and Ultrasonic Vibration. Metallurgical and Materials Transactions A, 2012, vol.43(6), 2116-2124

 

形核过程研究论文:

 

  1. L. Wang, W. Lu, Q. Hu, M. Xia, Y. Wang, JG Li, Interfacial tuning for the nucleation of liquid AlCu alloy, Acta Mater. 139(2017)75-85,
  2. JH Li, L Wang, X Zhong, M. Xia, S. Haigh, P. Schumacher, Cu segregation on the interface between Al2O3 substrate and Al-1.4Cu alloy, Mater. Charact. 129(2017)300,
  3. L.Bolzoni, M. Xia, N. Hari Babu, Formation of equiaxed crystal structures in directionally solidified Al-Si alloys using Nb-based heterogeneous nuclei, Scitific Reports, 6(2016)39554
  4. L.Wang, L. Yang, D. Zhang, M.Xia, Y. Wang, J.G. Li, The role of lattice misfit on heterogneous nucleation of pure Aluminum, Metallurgical and matetrials transactions A, 47(2016)5012,
  5. Di Zhang, Lu Wang, Mingxu Xia, N. Hari Babu, J.G. Li, Misfit paradox on nucleation potency of MgO and MgAl2O4 for Al, Materials Characterization, 119(2016)92-98.
  6. L. Yang, Mingxu Xia, J.G. Li, The interface of heterogeneous nucleation on single crystal substrates, IOP Conf. Series: Materials Science and Engineering 117(2016)012002.
  7. X.Y. Chen, S.G. Zhang, Mingxu Xia, J.G. Li, Instability of nanoscale metallic particles under electron irradiation in TEM, IOP Conf. Series: Materials Science and Engineering 117(2016)012059.
  8. Mingxu Xia, J.G. Li, Z. Fan, Grain refining through semisolid processing, Solid State Phenomena, 217-218(2015)431-435.
  9. X.Y. Chen, S.G. Zhang, Mingxu. Xia, J.G. Li, Phase separation and crystallization induced by electron irradiation in nanoscale Fe56.5Mn11Cr8.5Ni4Si10C10 metallic glass, Acta Metall. Sin. (Engl. Lett.), 28(2015)1332-1335.
  10. L. Yang, Mingxu Xia, N. Hari Babu, J.G. Li, Formation of MgAl2O3 at Al/MgO interface, Materials Transactions, 56(2015)277,
  11. L. Yang, Mingxu Xia, J.G. Li, Epitaxial growth in heterogeneous nucleation of pure Aluminum, Matrials Letters, 132(2014)52-54.

 

磁致伸缩方向论文

 

[2003]

  1. Hongxing Zheng, Weizeng Ma, Chunsheng Zheng, Xuefeng Guo, Jianguo Li, Rapid solidification of undercooled monotectic alloy melts, Materials Science and Engineering A355 (2003) 7.
  2. H.X. Zheng, W. Z. Ma, J. G. Li, A new approach to preparing bulk rapidly solidified metal/glass composites, Journal of Optoelectronics and Advanced Materials, 5 (2003) 525.

 

[2004]

  1. H. X. Zheng, W. Z. Ma, Y. Y. Lu, M. X. Xia, J. G. Li, New approach to preparing unidirectional NiMnFeGa magnetic shape memory alloy, Journal of Materials Science 39 (2004) 2557.
  2. Weizeng Ma, Hongxing Zheng, Mingxu Xia, Jianguo Li, Undercooling and solidification behavior of magnetostrictive Fe–20at.% Ga alloys, Journal of Alloys and Compounds 379 (2004) 188.
  3. H.X. Zheng, M.X. Xia, J. Liu, J.G. Li, Martensitic transformation of Ni–Fe–Ga magnetic shape memory alloys, Journal of Alloys and Compounds 385 (2004) 144.

 

[2005]

  1. Hongxing Zheng, Mingxu Xia, Jian Liu, Yanlu Huang, Jianguo Li, Martensitic transformation of (Ni55.3Fe17.6Ga27.1)100-xCox magnetic shape memory alloys, Acta Materialia 53 (2005) 5125.
  2. H.X. Zheng, M.X. Xia, J. Liu, J.G. Li, Martensitic transformation of highly undercooled Ni–Fe–Ga magnetic shape memory alloys, Journal of Alloys and Compounds 388 (2005) 172.
  3. H.X. Zheng, J. Liu, M.X. Xia, J.G. Li, Martensitic transformation of Ni–Fe–Ga–(Co, Ag) magnetic shape memory alloys, Journal of Alloys and Compounds 387 (2005) 265.
  4. Jian Liu, Hongxing Zheng, Yanlu Huang, Mingxu Xia, Jianguo Li, Microstructure and magnetic field induced strain of directionally solidified ferromagnetic shape memory CoNiAl alloys, Scripta Materialia 53 (2005) 29.
  5. J. Liu, H.X. Zheng, M.X. Xia, J.G. Li, The microstructure and martensitic transformation of Co-Ni-Ga-Ta ferromagnetic shape memory alloys, Scripta Materialia 52 (2005) 955.
  6. J. Liu, H.X. Zheng, M.X. Xia, Y.L. Huang, J.G. Li, Martensitic transformation and magnetic properties in Heusler CoNiGa magnetic shape memory alloys, Scripta Materialia 52 (2005) 935.

 

[2006]

 

  1. Deng Peiran, Li Jianguo, Xu Zhenming, Study on the melt-textured technique in a magnetic field for giant magnetostrictive materials R–Fe alloy, Mater. Sci. Eng. A,419 (2006) 39.
  2. Peiran Deng, Jianguo Li, and Zhenming Xu, Texture evolution of Terfenol-D by solidification in a magnetic field [J], J. Appl. Phys. 100 (2006) 053905.
  3. Peiran Deng, Jianguo Li, Slow cooling conditions for texturing ferromagnetic materials by solidification in a magnetic field, Scripta Materialia, 55 (2006) 747.
  4. Hongxing Zheng, Jian Liu, Mingxu Xia, Jianguo Li, Martensitic transformation of In-doped Ni58Fe17.5Ga27.5 magnetic shape memory alloys, Materials Science and Engineering A 438-440 (2006) 1011.
  5. Jian Liu, Mingxu Xia, Yanlu Huang, Hongxing Zheng, Jianguo Li, Effect of annealing on the microstructure and martensitic transformation of magnetic shape memory alloys CoNiGa, Journal of Alloys and Compounds 417 (2006) 96.
  6. Jian Liu, Hua Xie, Yanqiu Huo, Hongxing Zheng, Jianguo Li, Microstructure evolution in CoNiGa shape memory alloys, Journal of Alloys and Compounds 420 (2006) 145.
  7. J. Liu, Y.Q. Huo, H.X. Zheng, J.G. Li, High undercooling effect on magnetic shape memory Co–Ni–Ga alloys, Materials Letters 60 (2006) 1693.
  8. J. Liu, H.X. Zheng, J.G. Li, Effect of solidification rate on microstructure and crystal orientation of ferromagnetic shape memory alloys Co–Ni–Al, Materials Science and Engineering A 438-440 (2006) 1061.
  9. J. Liu, J.G. Li, Magnetic force microscopy observations of Co–Ni–Ga and Co–Ni–Al alloys with two-phase structures, Scripta Materialia 55 (2006) 755.

 

[2007]

  1. Hongxing Zheng, Jianguo Li, Xuefeng Guo, Dendritic growth in undercooled Ni–25 wt%Pb alloy melts, Materials and Design 28 (2007) 558.
  2. Jian Liu, Hua Xie, Jianguo Li, Crystal growth of Co46Ni27Ga27 ferromagnetic shape memory alloys with large single-variant set, Journal of Crystal Growth 300 (2007) 272.
  3. J. Liu, J.G. Li, Microstructure, shape memory effect and mechanical properties of rapidly solidified Co–Ni–Al magnetic shape memory alloys, Materials Science and Engineering A 454–455 (2007) 423.
  4. J. Liu, J.G. Li, Microstructure, superelasticity and fracture behavior in magnetic shape memory Co–Ni–Ga–Fe alloys with two-phase structures, Scripta Materialia 56 (2007) 109.
  5. Meng Gu, Jiankun Zhou, Jianguo Li, Microstructural evolution of undercooled Fe83Ga17 magnetostrictive alloys, Journal of Alloys and Compounds 441 (2007) 81.

 

[2008]

 

 

  1. J. K. Zhou, D.D. Li, J. G. Li, Magnetic force microscopy observation of undercooled Fe81Ga19 magnetostrictive alloys, J. Phys. D: Appl. Phys. 41 (2008) 205405.
  2. J. K. Zhou, J. G. Li, An approach to the bulk textured Fe81Ga19 rods with large magnetostriction, Appl. Phys. Lett., 92 (2008) 141915.
  3. Jiankun Zhou, Jianguo Li, Grain refinement in bulk undercooled Fe81Ga19 magnetostrictive alloy, Journal of Alloys and Compounds 461 (2008) 113.
  4. J.K. Zhou, J.G. Li, Structure and crystal growth in melt-spun Fe81Ga19 alloys, Physica B 403 (2008) 3932.
  5. P.N. Zhang, J. Liu, Microstructure and mechanical properties in Co–Ni–Ga–Al shape memory alloys with two-phase structure, Journal of Alloys and Compounds 462 (2008) 225.

 

[2009]

 

  1. Jiankun Zhou, Jianguo Li, Effect of denucleating glass composition on undercooling of Fe83Ga17 alloy melts, Journal of Alloys and Compounds 467 (2009) 179.

 

[2010]

 

  1. J.Z. Li, J. Liu, M.X. Zhang, J.G. Li, Refinement of the γ phase with melt undercooling in a two-phase Co2NiGa magnetic shape memory alloy, Journal of Alloys and Compounds 499 (2010) 39.
  2. Li Junzheng, Liu Jian, Zhang Yongjun, Li Jianguo, Effect of Denucleating Techniques on Undercooling of Co2NiGa Alloys, Materials Transactions, 51 (2010) 1973.

 

[2011]

 

 

  1. J.Z. Li, B. Huang, J.G. Li, Growth of large crystallites of Co37Ni34Al29 ferromagnetic shape memory alloys under super-high temperature gradient directional solidification, Journal of Crystal Growth 317 (2011) 110.
  2. Junzheng Li, Jian Liu, Jianguo Li, A novel route for growing single-crystal and internal-stress-induced martensitic transformation of ferromagnetic shape memory alloys Co50Ni20Ga30, Journal of Alloys and Compounds509 (2011) 6777.
  3. Junzheng Li, Jianguo Li, Effect of high undercooling on Co–Ni–Ga ferromagnetic shape memory alloys, Journal of Alloys and Compounds509 (2011) 4242.
  4. Junzheng Li, Jianguo Li, Microstructure evolution of the undercooled Co–Ni–Ga magnetic shape memory alloy, Journal of Alloys and Compounds 509 (2011) 1563.

 

[2012]

 

 

  1. Junzheng Li, Jianguo Li, Effects of solidification rate and temperature gradient on microstructure and crystal orientation of Co32Ni40Al28 alloys, Materials Letters 68 (2012) 40.
  2. Junzheng Li, Jianguo Li, Internal-stress-induced martensitic transformation of Co50Ni20Ga30 ferromagnetic shape memory alloys under high undercooling, Materials Letters 83 (2012) 168.
  3. Y.J. Huang, Q.D. Hu, J.G. Li, Design in Ni–Mn–In magnetic shape-memory alloy using compositional maps, Appl. Phys. Lett., 101 (2012): 222403.

 

[2013]

 

  1. Y.J. Huang, Q.D. Hu, J. Liu, L. Zeng, D.F. Zhang, J.G. Li, Banded-like morphology and martensitic transformation of dual-phase Ni–Mn–In magnetic shape memory alloy with enhanced ductility, Acta Materialia, 61 (2013): 5702.
  2. Q.H. Liu, J. Liu, Y.J. Huang, Q.D. Hu, J.G. Li, A study of microstructure and crystal orientation of directionally solidified Ni-Fe-Ga-Co magnetic shape memory alloys, Journal of Alloys and Compounds, 572 (2013) 186.

 

[2014]

 

  1. Y.J. Huang, Q.D. Hu, J.W. Hou, J.G. Li, High isothermal internal friction over a large temperature range for dual-phase Ni-Mn-In magnetic shape memory alloy, Scripta Materialia, 87 (2014): 21.
  2.  Y.J. Huang, Q.D. Hu, N. Bruno, I. Karaman, J.G. Li, Influence of grain boundary on pseudoelasticity in highly-oriented polycrystalline Ni52Fe17Ga27Co4 ferromagnetic shape memory alloy, Materials Letters, 114 (2014): 11.
  3. Nickolaus M. Bruno, Cengiz Yegin, Ibrahim Karamana, Jing-Han Chen, Joseph H. Ross Jr., Jian Liu, Jianguo Li, The effect of heat treatments on Ni43Mn42Co4Sn11 meta-magnetic shape memory alloys for magnetic refrigeration, Acta Materialia, 74 (2014) 66.
  4.  

 

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