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哈尔滨工业大学哈尔滨工业大学(深圳)研究生考研导师简介-宋申华

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基本信息科学研究教育教学科研成果
个人资料


宋申华,哈尔滨工业大学深圳研究生院教授。

主要研究方向为金属和陶瓷材料的界面问题,先进金属结构材料,功能陶瓷材料,导电、导热高分子材料,辐照对材料的影响,核材料,生物材料等。

欢迎材料物理,材料化学,金属材料,无机非金属材料等领域的硕士毕业生来我院攻读博士学位,博士毕业生从事博士后研究,博士后薪酬可达每年RMB13万以上

荣誉称号
“楚天学者计划”特聘教授

2004年获北京市科学技术二等奖 1991年获国家教委科技进步三等奖

从事多项国家自然科学基金研究项目

作为材料科学领域的国际学者,先后被美国著名传记出版公司MARQUIS Who's Who选入《科学与工程名人录》(Who's Who in Science and Engineering)(第4版和第五版)和《世界名人录》(Who's Who in the World)(第18版);被中国科学院国际学术交流中心编入《科学骄子》

教育经历
1995年于英国拉夫堡大学(Loughborough University)获博士学位(材料科学与工程)1988年于武汉理工大学获硕士学位(材料学)1983年于东北大学获学士学位(金属物理)


专业学会活动
中国金属学会高级会员
中国材料研究学会高级会员

工作经历
时间工作经历
2004年-今哈尔滨工业大学深圳研究生院任教
1995年-2003年分别于于英国Loughborough大学,Manchester大学和Brunel大学从事科学研究工作
1985年-1985年及1988年-1992年于武汉科技大学任教



研究领域
金属和陶瓷材料的界面问题先进金属结构材料,导电、导热高分子材料,辐照对材料的影响,核材料,生物复合材料等


从事科研项目
1. 国家自然科学基金项目: 超超临界铁素体钢中杂质晶界偏聚及其对材料蠕变性能的影响
2. 国家自然科学基金项目: 高温塑性变形引起的非平衡晶界偏聚
3. 深圳市科技计划项目: 非调质型大线能量焊接低合金钢的研发
4. 国家自然科学基金重点项目子课题: 非平衡晶界偏聚动力学和晶界脆性断裂研究
5. 国家自然科学基金项目: 聚醚醚酮-纳米羟基磷酸钙梯度复合生物材料界面及断裂机理的研究
6. 横向项目: 快速固化无机聚合物材料在军用机场抢修中的应用研究
7. 横向项目: 金属基电磁吸波贴片研究
8. 英国Magnox Generation项目: 辐照导致的非平衡晶界偏聚
9. 英国国家自然科学基金项目: 燃气轮机部件热障涂层的高温失效
10. 英国Magnox Generation项目: 核压力容器材料辐照引起的脆化
11. 英国Magnox Generation项目: 聚变堆第一壁材料的辐照损伤


招生信息
欢迎材料物理,材料化学,金属材料,无机非金属材料等领域的硕士毕业生来我院攻读博士学位,博士毕业生从事博士后研究,博士后薪酬可达每年RMB13万以上

讲授课程
1. 固态相变

简介:本课程主要介绍固体组织结构的形成及其稳定性。当一种固相由于热力学条件(如温度、压力、作用于该固体的电场、磁场等)变化而变得不稳定的时候,如果没有对相变的障碍,将会通过相结构(原子或电子组态)的变化,转变成更为稳定或平衡的状态,此即发生“固态相变”。在金属或合金中,相变常指一种组织在温度或压力变化时,转变为另一种或多种组织的过程,如多晶型转变、珠光体相变等。相变伴随有物理(包括磁学、电学及介电性质)、力学、化学性质,甚至外形(如形状记忆合金)的变化。可通过这些变化进行相变的研究,进而利用相变控制材料的性能。通过本课程的学习,学生将了解固态相变的热力学过程、原理、应用并且对于课题研究工作将有很大的帮助。课程的主要内容包括相图、相变热力学、扩散、晶体界面与微结构、扩散型相变、非扩散型相变等。



2. 晶界工程与晶界偏聚

简介:多晶体金属材料是材料科学的主要研究对象之一。晶界处由于原子排列不规则而造成结构比较疏松,因而使得晶界具有一些不同于晶粒的特性,容易引起杂质原子的偏聚;晶界上原子排列混乱,存在着许多空位、位错和键变形等缺陷,使之处于应力畸变状态。因此,研究晶界的结构与晶界的化学成份对材料性能的影响,通过晶界控制和设计来改进材料性能已成为材料科学研究的一个重要领域。本课程主要介绍材晶界工程与晶界偏聚的基本原理。课程结束后,学生将了解晶界工程与晶界偏聚的基本知识,课程内容主要包括:晶界结构的一般几何模型、形变孪晶、位错反应、特殊晶界的形成、晶界优化的主要途径、平衡晶界偏聚、非平衡晶界偏聚理论。

科技奖励
1. 2004年, 获北京市科学技术二等奖(证书号:2003材-2-002-02)

2. 1991年,获国家教委科技进步三等奖(证书号:90-61702)

学术成果
对材料科学发展的特殊贡献:

1. 建立了热非平衡晶界偏聚动力学理论;

2. 建立了核辐照导致的非平衡晶界偏聚动力学理论;

3. 提出了回火脆性的平衡和非平衡联合晶界偏聚模型;

4. 揭示了空位-溶质复合体的扩散机制;

5. 建立了高温塑性变形引起的非平衡晶界偏聚动力学理论;

6. 建立了高温塑性变形过程中的溶质扩散理论模型。

科技论文


1. S.-H. Song, T.-D. Xu and Z.-X. Yuan, “Determination of critical time and critical cooling rate of non-equilibrium grain-boundary segregation”, Acta Metall. 37 (1989) 319-323.

2. T.-D. Xu and S.-H. Song, “A kinetic model of non-equilibrium grain-boundary segregation”, Acta Metall. 37 (1989) 2499-2506.

3. S.-H. Song, T.-D. Xu and Z.-X. Yuan and Z.-S. Yu, “A STEM study of the distribution of rare-earths in Ni3Al”, Scripta Metall. 23 (1989) 1291-1294.

4. S.-H. Song, Z.-X. Yuan, T.-D. Xu and Z.-S. Yu, “Effect of boron distribution on grain boundaries in Ni3Al”, Scripta Metall. Mater. 24 (1990) 1857-1860.

5. T.-D. Xu, S.-H. Song, Z.-X. Yuan and Z.-S. Yu, “Two types of boron segregation at austenite grain boundaries and their mutual relation”, J. Mater. Sci. 25 (1990) 1739-1744.

6. S.-H. Song, T.-D. Xu and Z.-X. Yuan and Z.-S. Yu, “Equilibrium grain-boundary segregation and the effect of boron in B-doped Fe-30wt%Ni austenitic alloy”, Acta Metall. Mater. 39 (1991) 909-914.

7. T.-D. Xu, S.-H. Song, H.-Z. Shi, W. Gust and Z.-X. Yuan, “A method of determining the diffusion coefficient of vacancy-solute atom complexes during the segregation to grain boundaries”, Acta Metall. Mater. 39 (1991) 3119-3124.

8. S.-H. Song, Z.-X. Yuan and T.-D. Xu, “Effect of cerium on grain boundaries in Ni3Al,” J. Mater. Sci. Lett. 10 (1991) 879-880.

9. S.-H. Song, T.-D. Xu and Z.-X. Yuan, “Distribution of boron in Ni3Al,” J. Mater. Sci. Lett. 10 (1991) 798-800.

10. S.-H. Song, Z.-X. Yuan and T.-D. Xu, “Non-equilibrium segregation of boron at austenite grain boundaries,” J. Mater. Sci. Lett. 10 (1991) 1232-1234.

11. Z.-X. Yuan, S.-H. Song, C.-G. Li, "Effect of dislocation inheritance on temper embrittlement of 60Si2Mn spring steel,” J. Mater. Sci. Lett. 11 (1992) 1590-1993.

12. S.-H. Song, Z.-X. Yuan and T.-D. Xu, “Effect of boron on corrosion resistance of Al-2.5wt%Cu alloy,” J. Mater. Sci. 27 (1992) 1107-1112.

13. S.-H. Song, Z.-X. Yuan, T.-D. Xu and Z.-S. Yu, “Distribution of aluminium in an Ni-2%Al alloy,” J. Mater. Sci. Lett. 11 (1992) 1678-1680.

14. T.-D. Xu, S.-H. Song, H.-Z. Shi, Z.-X. Yuan and W. Gust, “The diffusion coefficient of vacancy-boron complexes during the segregation of boron atoms to grain boundaries,” Mater. Sci. Forum, 94-96 (1992) 519-524.

15. Z.-X. Yuan, S.-H. Song, R.G. Faulkner and T.-D. Xu, “Effect of cerium on temper embrittlement of P-doped Mn structural steels,” Acta Metall. Mater. 42 (1994) 127-132.

16. S.-H. Song and T.-D. Xu, “Combined equilibrium and non-equilibrium segregation mechanism of temper embrittlement,” J. Mater. Sci. 29 (1994) 61-66.

17. S.-H. Song, R.G. Faulkner and H. Jiang, “A new view on the temperature-time dependence of temper embrittlement,” J. Mater. Sci. Lett. 13 (1994) 1007-1009.

18. Z.-X. Yuan, S.-H. Song, T.-H. Xi, X.-J. Zhang and Z.-S. Yu, "Influence of cerium on ductility of Ni3Al ,” J. Mater. Sci. Lett. 13 (1994) 1717-1719.

19. R.G. Faulkner, S.-H. Song and P.E.J. Flewitt, “Irradiation-induced silicon segregation in ferritic steels,” J. Nucl. Mater. 212-215 (1994) 608-611.

20. R.G. Faulkner and S.-H. Song, “Radiation-induced segregation in materials - implications for accelerator driven neutron source applications,” AIP Conference Proceedings 346 (1995) 505-511.

21. Z.-X. Yuan, S.-H. Song, T.-H. Xi, X.-J. Zhang and Z.-S.Yu, “Joint influence of cerium and boron on the oxidation behaviour of Ni3Al alloys,” J. Mater. Sci. Lett. 15 (1996) 1505-1506.

22. R.G. Faulkner, S.-H. Song and P.E.J. Flewitt, “A model describing irradiation-induced segregation to grain boundaries in dilute alloys”, Metall. Mater. Trans. 27A (1996) 3381-3390.

23. R.G. Faulkner, S.-H. Song and P.E.J. Flewitt, “Quenching and tempering-induced phosphorus segregation to grain boundaries in 2.25Cr-1Mo steel,” Mater. Sci. Technol. 12 (1996) 818-822.

24. R.G. Faulkner, S.-H. Song and P.E.J. Flewitt, “Determination of impurity-point defect binding energies in alloys,” Mater. Sci. Technol. 12 (1996) 904-910.

25. S.-H. Song and R.G. Faulkner, “Diffusion characteristics of interstitial and vacancy based complexes”, Defect and Diffusion Forum 143-147 (1997) 149-154.

26. R.G. Faulkner, S.-H. Song, P.E.J. Flewitt and S.B. Fisher, “Irradiation-enhanced solute diffusion in alloys,” J. Mater. Sci. Lett. 16 (1997) 1191-1194.

27. Z.-X. Yuan, S.-H. Song, T.-H. Xi, X.-J. Zhang and Z.-S. Yu, “Cerium-induced grain boundary strengthening of Ni3Al alloys,” Acta Metall. Sinica (English Edition) A: Physical Metallurgy & Materials Science 10 (1997) 349-357.

28. Z.-X. Yuan, S.-H. Song, R.G. Faulkner, and Z.-S. Yu, “Combined effects of cerium and boron on the mechanical properties and oxidation behaviour of Ni3Al alloys,” J. Mater. Sci. 33 (1998) 463-469.

29. R.G. Faulkner, S.-H. Song, P.E.J. Flewitt, M. Victoria, and P. Marmy, “Grain boundary segregation under neutron irradiation in dilute alloys,” J. Nucl. Mater. 255 (1998) 189-209.

30. R.G. Faulkner, S.-H. Song, D. Meade, and C.C. Goodwin, “Radiation-induced grain boundary segregation,” Mater. Sci. Forum 294-296 (1999) 67-74.

31. R.G. Faulkner, S.-H. Song, and P.E.J. Flewitt, “Equilibrium grain boundary solute segregation accelerated by irradiation-created Frenkel pairs,” Defect and Diffusion Forum 165-166 (1999) 21-28.

32. Z.-X. Yuan, Z.-S. Yu, P. Tan, and S.-H. Song, “Effect of rare earths on carburization of steel,” Mater. Sci. and Eng. A 267 (1999) 162-166.

33. R.G. Faulkner, S.-H. Song, C.C. Goodwin, and P.E.J. Flewitt, “Mechanisms for diffusion of point defect-solute complexes in alloys,” Defect and Diffusion Forum 165-166 (1999) 29-42.

34. R.G. Faulkner, D.J. Bacon, S.-H. Song, and P.E.J. Flewitt, “Neutron energy spectrum and temperature effects on freely migrating defect concentrations and grain boundary segregation in a-Fe,” J. Nucl. Mater. 271-272 (1999) 1-6.

35. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Effect of boron on phosphorus-induced temper embrittlement,” J. Mater. Sci. 34 (1999) 5549-5556.

36. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Grain boundary phosphorus segregation under irradiation and thermal ageing and its effect on the ductile-brittle transition for 2.25Cr1Mo steel,” in Proceedings of the 5th International Conference on Engineering Structural Integrity Assessment (19-21 September 2000, Cambridge, UK), Engineering Materials Advisory Services Ltd. Warley (UK), 2000, pp. 237-245.

37. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Modelling of grain boundary segregation in 0.5Cr0.5Mo0.25V boiler shell steel welds,” in Proceedings of the 5th International Charles Parsons Turbine Conference on Advanced Materials for 21st Century Turbines and Power Plant (3-7 July 2000, Cambridge, UK), IOM Communications, London, 2000, pp. 547-557.

38. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt, P. Marmy, and M. Victoria, “Grain boundary phosphorus segregation under neutron irradiation and aging in 2.25Cr1Mo steel,” ASTM STP 1366 (2000) 343-353.

39. R.G. Faulkner, S.-H. Song, and P.E.J. Flewitt, “Radiation-induced inter-granular segregation in first wall fusion reactor materials”, J. Nucl. Mater. 283-287 (2000) 147-151.

40. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Quenching and tempering induced molybdenum segregation to grain boundaries in a 2.25Cr1Mo steel,” Mater. Sci. Eng. A A281 (2000) 23-27.

41. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Temper embrittlement of CrMo low-alloy steels evaluated by means of small punch testing,” Mater. Sci. Eng. A, A281 (2000) 75-81.

42. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt, P. Marmy, and M. Victoria, “Irradiation-induced embrittlement of a 2.25Cr1Mo steel,” J. Nucl. Mater. 280 (2000) 162-168.

43. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt, P. Marmy, and M. Victoria “Grain boundary phosphorus and molybdenum segregation under irradiation and thermal conditions in a 2.25Cr1Mo steel,” Mater. Sci. Eng. A., A286 (2000) 230-235.

44. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Grain boundary phosphorus segregation under irradiation and thermal aging and its effect on the ductile-to-brittle transition,” ASTM STP 1045 (2001)189-203.

45. S.-H. Song and P. Xiao, “Microstructural evolution of oxide films formed on nickel during high temperature oxidation,” Scripta Mater. 44 (2001) 601-606.

46. S.-H. Song, R.G. Faulkner, and P.E.J. Flewitt, “Combined equilibrium and non-equilibrium segregation treatment of temper embrittlement in low-alloy steels,” Mater. Sci. Technol. 17 (2001) 523-528

47. S.-H. Song and P. Xiao, “Electrical property-microstructural defect relationship for oxide films formed on nickel during high-temperature oxidation,” J. Mater. Sci. Lett. 20 (2001) 1051-1054.

48. S.-H. Song and P. Xiao, “Electrical properties of the oxide film formed during high temperature oxidation of nickel evaluated by use of impedance spectroscopy,” Mater. Sci. Eng. A 323 (2002) 27-31.

49. M.S. Ali, S.-H. Song, and P. Xiao, “Evaluation of degradation of thermal barrier coatings using impedance spectroscopy,” J. Euro. Ceram. Sco. 22 (2002) 101-107.

50. M.S. Ali, S.-H. Song, and P. Xiao, “High-temperature degradation of thermal barrier coatings,” J. Mater. Sci. 37 (2002) 2097-2102.

51. S.-H. Song, X. Wang, and P. Xiao, “Effect of microstructural features on the electrical properties of TiO2,” Mater. Sci. Eng. B, 94 (2002) 40-47.

52. Z. -X. Yuan, J. Jia, A. -M. Guo, D. -D. Shen, S. -H. Song and J. Liu, “Influence of tin on the hot ductility of a low carbon steel,” Acta Metallurgica Sinica (English Letters) 16 (2003) 478-482.

53. Z. -X. Yuan, A. -M. Guo, J. Liu, D. -D. Shen, J. Jia and S. -H. Song, “Antimony grain boundary segregation and its suppression by cerium in Fe-2%Mn-Sb structural steels,” Acta Metallurgica Sinica (English Letters) 16 (2003) 175-182.


54. Z. -X. Yuan, J. Jia, A. -M. Guo, D. -D. Shen and S. -H. Song, “Cooling-induced tin segregation to grain boundaries in a low-carbon steel,” Scripta Mater. 48 (2003) 203-206.

55. S.-H. Song and P. Xiao, “An impedance spectroscopy study of oxide films formed during high temperature oxidation of an austenitic stainless steel,” J. Mater. Sci. 38 (2003) 499-506.

56. Z. -X. Yuan, J. Jia, A. -M. Guo, D. -D. Shen and S. -H. Song , “Critical time of Sb non-equilibrium grain boundary segregation in a structural steel,” J. Mater. Sci. Lett 22 (2003) 311-313.

57. S.-H. Song, Z.-Y. Yuan, J. Liu, and R.G. Faulkner, “Grain boundary precipitation under irradiation in dilute alloys,” Acta Metallurgica Sinica (English Letters) 16 (2003) 365-374.

58. S.-H. Song and P. Xiao, “An impedance spectroscopy study of high-temperature oxidation of thermal barrier coatings,” Mater. Sci. Eng. B 97 (2003) 46-53.
59. S.-H. Song and P. Xiao, “Relation of microstructural and compositional features to the electrical properties in degraded thermal barrier coating systems,” J. Mater. Sci. 38 (2003) 1661-1665.

60. S.-H. Song, Z.-Y. Yuan and P. Xiao, “The electrical properties of MnCr2O4 spinel,” J. Mater. Sci. Lett. 22 (2003) 755-757.

61. A-M. Guo, Y.-H. Wang, D.-D Shen, Z.-X. Yuan, and S.-H. Song, “Influence of phosphorus on the hot ductility of a Cr-Mo low-alloy steel,” Mater. Sci. Technol. 19 (2003) 1553-1556.

62. S.-H. Song, D.-D. Shen, Z.-X. Yuan, J. Liu, T.-D. Xu and L.-Q. Weng, “Combined equilibrium and non-equilibrium segregation of phosphorus to grain boundaries in a Cr-Mo low-alloy steel,” Scripta Mater. 49 (2003) 473-476.

63. S.-H. Song, A.-M. Guo, D.-D. Shen, Z.-X.. Yuan, J. Liu and T.-D. Xu, “Effect of boron on the hot ductility of 2.25Cr1Mo steel,” Mater. Sci. Eng. A 360 (2003) 96-100.

64. S.-H. Song, Z.-X.Yuan, J. Jia, A.-M. Guo and D.-D. Shen, “The role of tin in the hot ductility deterioration of a low-carbon steel,” Metall. Mater. Trans. 34A (2003) 1611-1616.

65. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt, D.-D. Shen, “Determination of neutron irradiation-induced phosphorus segregation to grain boundaries in a low-alloy steel,” J. Mater. Sci. Technol. 20 (2004) 81-85. (

66. S.-H. Song, Z.-X. Yuan, D.-D. Shen, J. Liu, and L.-Q. Weng, “Grain boundary segregation of phosphorus and molybdenum in a Cr-Mo low-alloy steel,” Mater. Sci. Technol. 20 (2004) 117-120.

67. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt, P. Marmy, and L.-Q. Weng, “Small punch test evaluation of neutron irradiation-induced embrittlement of a Cr-Mo low alloy steel,” Mater. Characterization 53 (2004) 35-41.

68. D.-D. Shen, Z.-X. Yuan, J. Liu, S.-H. Song, and L.-Q. Weng, “Phosphorus Grain Boundary Segregation in a P-doped 2.25Cr1Mo Steel,” Acta Metallurgica Sinica (English Letters) 17 (2004) 639-644. (EI )

69. D.-D. Shen, S.-H. Song, Z.-X. Yuan and L.-Q. Weng, “Effect of solute grain boundary segregation and hardness on the ductile-to-brittle transition for a Cr-Mo low-alloy steel,” Mater. Sci. Eng. A 394 (2005) 53-59.

70. L.-Q. Weng, K. Sagoe-Crensil, T. Brown, and S.-H. Song, “Effects of aluminates on the formation of geopolymers,”. Mater. Sci. and Eng. B 117 (2005) 163-168.

71. S.-H. Song, P. Xiao, and L.-Q. Weng, “Evaluation of microstructural evolution in thermal barrier coatings during thermal cycling using impedance spectroscopy”, J. Euro. Ceram. Soc. 25 (2005) 1167-1173.

72. S.-H. Song, H.-Z. Gu, X.-H. Tang, Z.-X. Yuan, H.-Z. Wang , Q. Li and L.-Q. Weng, “Production of nano-sized yttria-stabilised zirconia powder by means of sol-gel supercritical fluid drying,” J. Mater. Sci. 40 (2005) 1547-1548.

73. S.-H. Song, R.G. Faulkner, P.E.J. Flewitt and L.-Q. Weng, "Modelling of equilibrium grain boundary solute segregation under irradiation", J. Mater. Sci. Technol. 21 (2005) 196-200.

74. Z.-X. Yuan, S.-H. Song, Y.-H. Wang, J. Liu, and A.-M. Guo, "Effect of pre-deformation on the age hardening of a niobium-microalloyed steel", Mater. Lett. 59 (2005) 2048-2051.

75. S.-H. Song and L.-Q. Weng, “Diffusion of solute-vacancy complexes in alloys”, Mater. Sci. Technol. 21 (2005) 305-310.

76. S.Q. Ren, L.-Q. Weng, and S.-H. Song, "BaTiO3/CoFe2O4 particulate composites with large high frequency magnetoelectric response", J. Mater. Sci. 40 (2005) 4375-4378.

77. F. Li, L.-Q. Weng, G.–Y. Xu, S.–H. Song, and J. Yu, “Synthesis and characterization of microwave dielectric BaTi4O9 ceramics via EDTA-citrate gel process”, Mater. Lett. 59 (2005) 2973-2976.

78. S.-H. Song and L.-Q. Weng, “An FEGSTEM study of grain boundary segregation of phosphorus during quenching in a 2.25Cr-1Mo steel”, J. Mater. Sci. Technol., 21 (2005) 445-450.

79. S.-H. Song and L.-Q. Weng, “Embrittlement of a Cr-Mo low-alloy steel due to low-temperature neutron irradiation”, Acta Metall. Sinica (English Letters) 19 (2006) 20-26.

80. L.-Q.Weng, S.-H. Song, S. Hodgson,A. Baker, and J. Yu, “Synthesis and characterisation of nanotubular titanates and titania”, J. Euro. Ceram. Soc. 26 (2006) 1405-1409.

81. J. Yu, S.-H. Song, L.-Q. Weng, “Adhesion improvement of cubic boron nitride films by in situ annealing”, Surf. Coat. Technol. 200 (2006) 4737-4740.

82. D.-R. Yu, Y.-Q. Li, and S.-H. Song, "Ion sputtering erosion of channel wall corners in Hall thrusters", J. Phys. D: Appl. Phys. 39 (2006) 2205-2211.

83. S.-H. Song, J. Wu, D.-Y. Wang, and L.-Q. Weng, “Stress-induced non-equilibrium grain boundary segregation of phosphorus in a Cr-Mo low alloy steel”, Mater. Sci. Eng. A 430 (2006) 320-325.

84. L.-Q. Weng, Y.-D. Fu, S.-H. Song, J.-N. Tang, and J.-Q. Li, “Synthesis of lead zirconate titanate - cobalt ferrite magnetoelectric particulate composites via an ethylenediaminetetraacetic acid-citrate gel process”, Scripta Mater. 56 (2007) 465-468.

85. S.-H. Song, Q. Zhang, and L.-Q. Weng, “Deformation-induced non-equilibrium grain boundary segregation in dilute alloys”, Mater. Sci. Eng. A 473 (2008) 226-232.

86. J. Wu, S.-H. Song, L.-Q. Weng, T.-H. Xi, and Z.-X. Yuan, “An Auger electron spectroscopy study of phosphorus and molybdenum grain boundary segregation in a 2.25Cr1Mo steel”, Mater. Characterization 59 (2008) 261-265.

87. X.-M. Chen, S.-H. Song, L.-Q. Weng, K. Wang, “A consideration of intergranular fracture caused by trace impurity sodium in an Al-5 wt.% Mg alloy” Scripta Mater. 58 (2008) 902-905.

88. S.-H. Song, H. Zhuang, J. Wu, L.-Q. Weng, Z.-X. Yuan, and T.-H. Xi, “Dependence of ductile-to-brittle transition temperature on phosphorus grain boundary segregation for a 2.25Cr1Mo steel”, Mater. Sci. Eng. A 486 (2008) 433-438.

89. S.-H. Song, J. Wu, Z.-X. Yuan, L.-Q. Weng, and T.-H. Xi, “Non-equilibrium grain boundary segregation of phosphorus under a high applied tensile stress in a 2.25Cr1Mo steel”, Mater. Sci. Eng. A 486 (2008) 675-679.

90. S.-H. Song, J. Wu, L.-Q. Weng, and Z.-X. Yuan, “Fractographic changes caused by phosphorus grain boundary segregation for a low alloy structural steel”, Mater. Sci. Eng. A 497 (2008) 524-527.

91. T.-D. Xu, K. Wang, and S.-H. Song, “Theoretical progress in non-equilibrium grain boundary segregation (I): Thermally induced non-equilibrium grain boundary segregation and intergranular embrittlement”, Science in China Series E: Technological Sciences 52 (2009) 893-905.

92. T-D. Xu, K. Wang, and S.-H. Song, “Theoretical progress in non-equilibrium grain boundary segregation (II): Micro-mechanism of grain boundary anelastic relaxation and its analytical formula”, Science in China Series E: Technological Sciences 52 (2009) 1679-1687.

93. X.-M. Chen and S.-H. Song, "Non-equilibrium grain boundary segregation of phosphorus during high temperature plastic deformation", Acta Physica Sinica-CH ED 58(13) (2009) 183-188.

94. S.-H. Song, J. Wu, L.-Q.Weng, T.-H. Xi, “Phosphorus grain boundary segregation under an intermediate applied tensile stress in a Cr–Mo low alloy steel”, Mater. Sci. Eng. A 520 (2009) 97–100.

95. S.-H. Song, J. Wu, X.-J. Wei, D. Kumar, S.-J. Liu, L.-Q. Weng, “Creep property evaluation of a 2.25Cr-1Mo low alloy steel”, Mater. Sci. Eng. A 527 (2010) 2398-2403.

96. X.-M. Chen, S.-H. Song, Z.-C. Sun, S.-J. Liu, L.-Q. Weng, and Z.-X. Yuan, “Effect of microstructural features on the hot ductility of 2.25Cr-1Mo steel”, Mater. Sci. Eng. A 527 (2010) 2725-2732.

97. S.-H. Song, J. Wu, L.-Q. Weng, and S.-J. Liu, “Phosphorus grain boundary segregation under different applied tensile stress levels in a Cr-Mo low alloy steel” Mater. Lett. 64 (2010) 849-851.

98. S.J. Liu, B. Wan, P. Wang and S.-H. Song, “Influence of A-site non-stoichiometry on structure and electrical properties of K0.5Na0.5NbO3- based lead-free piezoelectric ceramics”, Scripta Mater. 63 (2010) 124-127.

99. B. Wei, H.-L. Cao and S.-H. Song, “Tensile behavior contrast of basalt and glass fibers after chemical treatment”, Mater. Design 31 (2010) 4244–4250.

100. B. Wei, H.-L. Cao and S.-H. Song, “Environmental resistance and mechanical performance of basalt and glass fibers”, Mater. Sci. Eng. A 527 (2010) 4708–4715.

101. L. Wang, L.-Q. Weng, S.-H. Song, Qingjie Sun, "Mechanical properties and microstructure of polyetheretherketone–hydroxyapatite nanocomposite materials”, Mater. Lett. 64 (2010) 2201-2204.

102. X.-M. Chen, S.-H. Song, "Plastic deformation-induced phosphorus segregation to ferrite grain boundaries in an interstitial free steel", Mater. Sci. Eng. A 527 (2010) 7580–7584.

103. L. Wang, L.-Q. Weng, L.-L. Wang, S.-H. Song, "Hydrothermal synthesis of hydroxyapatite nanoparticles with various counterions as templates", J. Ceram. Soc. Jpn 118 (2010) 1195-1198.

104. B. Wei, H.-L. Cao and S.-H. Song, "Degradation of basalt fibre and glass fibre expoxy resin composites in see water", Corrosion Science 53 (2011) 426-431.

105. B. Wei, H.-L. Cao, S.-H. Song, "Surface modification and characterization of basalt fibers with hybrid sizings", Composites: Part A 42 (2011) 22-29.

106. L. Wang, L.-Q. Weng, S.-H. Song, Z.-Y. Zhang, S.-L. Tian, R. Ma, "Characterization of polyetheretherketone-hydroxyapatite nanocomposite materials", Mater. Sci. Eng. A 528 (2011) 3689-3696.

107. X.-M. Chen, S.-H. Song, "Modelling of grain boundary impurity segregation during high temperature plastic deformation" Science in China G: Physics, Mechanics & Astronomy 54(5) (2011) 872-877.

108. K. Wang, T.-D. Xu, S.-H. Song, C. Shao, "Graphical representation for isothermal kinetics of nonequilibrium grain-boundary segregation", Mater. Characterization 62 (2011) 575-581.

109. B. Wei, S.-H. Song, H.-L. Cao, "Strengthening of basalt fibers with nano-SiO2-epoxy composite coating", Mater. Design 32 (2011) 4180-4186.

110. S.-H. Song, X.-M. Chen, L.-Q. Weng, "Solute diffusion during high-temperature plastic deformation in alloys", Mater. Sci. Eng. A 528 (2011) 7196-7199.

111. X.-M. Chen, S.-H. Song, L.-Q. Weng, S.-J. Liu, "Solute grain boundary segregation during high temperature plastic deformation in a Cr-Mo low alloy steel", Mater. Sci. Eng. A 528 (2011) 7663-7668.

112. X.-M. Chen, S.-H. Song, L.-Q. Weng, S.-J. Liu, K. Wang, "Relation of ductile-to-brittle transition temperature to phosphorus grain boundary segregation for a Ti-stabilized interstitial free steel", Mater. Sci. Eng. A 528 (2011) 8299-8304.
113. J. Wu, S.-H. Song, " A unified model of grain-boundary segregation kinetics", J. Appl. Phys. 110 (2011) 063531.

114. X.-M. Chen, S.-H. Song, L.-Q. Weng, K. Wang, "Combined hardening and non-hardening embrittlement of an interstitial free steel", Mater. Lett. 67 (2012) 107-109.

115. R. Ma, L.-Q. Weng, X.J. Bao, Z. Ni, S.-H. Song, W.-Q. Cai, "Charaterization of in situ synthesized hydroxyapatite/polyetheretherketone composite materials", Mater. Lett. 71 (2012) 117-119.

116. Z.-W. Lu, L.-Q. Weng, S.-H. Song, P.-X. Zhang, X.-B. Luo, "Hydrothermal synthesis, morphology and photoluminescence of hexagonal SrSiO3:Eu2+ micro-octahedrons and prism-like hollow microstructures", Mater. Chem. Phys. 132 (2012) 800-807.

117. L. Zheng, Z.-X. Yuan, S.-H. Song, T.-H. Xi, Q. Wang, "Austenite grain growth in heat affected zone of Zr-Ti bearing microalloyed steel", J. Iron Steel Res. Int. 19(2) (2012) 73-78.

118. R. Ma, L.-Q. Weng, L. Fang, Z.-K. Luo, S.-H. Song, "Structure and mechanical performance of in situ synthesized hydroxyapatite/polyetheretherketone nanocomposite materials", J. Sol-Gel Sci. Technol. 62 (2012) 52-56.

119. X.-M. Chen, S.-H. Song, L.-Q. Weng, K. Wang, "A study of deformation-induced phosphorus grain boundary segregation in an interstitial free steel", Mater. Sci. Eng. A 545 (2012) 86-90.

120. Z.-W. Lu, L.-Q. Weng, S.-H. Song, P.-X. Zhang, Q.-Q. Hou, X.-Z. Ren, "Synthesis and characterization of Eu3+/Dy3+ codoped composite phosphors SrAl2Si2O8/SrAlSi1/2O7/2 via a one-pot nitrate-gel process", J. Sol-Gel Sci. Technol. 62 (2012) 160-169.

121. Z.-W. Lu, L.-Q Weng, S.-H. Song, P.-X. Zhang, X.-B. Luo, X.-Z. Ren, "Controlled synthesis of Eu2+-doped barium silicate nanostructures and their optical properties", Ceram. Int. 38 (2012) 5305-5310.

122. H.-Q. Liu, D.-Y. Zhang, F. Shen, G. Zhang, S.-H. Song, "Hemocompatibility and anti-endothelialization of copper-titanium coating for vena cava filters", Surf. Coat. Technol. 206 (2012) 3501-3507.

123. H.-Q. Liu, D.-Y. Zhang, F. Shen, G. Zhang, S.-H. Song, "Corrosion and ion release behavior of Cu/Ti film prepared via physical vapor deposition in vitro as potential biomaterials for cardiovascular devices", Applied Surf. Sci. 258 (2012) 7286-7291.

124. S.-J.Liu, Q. Ma, F. Gao, S.-H. Song, S. Gao, "Relationship between N-doping induced point defects by annealing in ammonia and enhanced thermal stablilty for anodized titania nanotube arrays", J. Alloys Compd. 543 (2012) 71-78.




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