• 姓名: 肖柱
  • 职称: 讲师
  • 学位: 博士
  • 中南大学
  • 材料科学与工程学院
教育背景

2010.03-2013.12 工学博士 利物浦大学(英国)工程学院

2008.09-2010.03 博士研究生 中南大学材料科学与工程学院

2005.09-2007.12 工学硕士 中南大学材料科学与工程学院

2001.09-2005.06 工学学士 中南大学材料科学与工程学院

学术兼职
美国American Journal of Nanotechnology编委
科研项目

1.粉末冶金国家重点实验室自主研究课题,高导耐磨铜/石墨复合材料的制备及性能研究,2015/07-2017/06,第二负责人。

2.中国印钞造币总公司项目,横向项目,银币生产工序中变色问题研究,2014/09-2015/06,第二负责人。

3.军品配套项目,JPPT-125-3-047,XXX用高精度、高导热XXXX线,2014/01-2015/12,参与。

论文专著

1.Diao K, Xiao Z, Zhao Y. Specific surface areas of porous Cu manufactured by Lost Carbonate Sintering: Measurements by quantitative stereology and cyclic voltammetry. Materials Chemistry and Physics 2015; XX:1-9 (in press)

2.Xiao Z, Fang M, Li Z, et al. Structure and properties of ductile CuAlMn shape memory alloy synthesized by mechanical alloying and powder metallurgy. Materials and Design 2014; 58:451-6.

3.Yu HC, Wang MP, Jia YL, Xiao Z (通讯作者), et al. High strength and large ductility in spray-deposited Al-Zn-Mg-Cu alloys. Journal of Alloys and Compounds 2014; 601:120-125

4.Xiao Z, Li Z, Zhu AY, et al. Surface characterization and corrosion behavior of a novel gold-imitation copper alloy with high tarnish resistance in salt spray environment. Corrosion Science 2013; 76:42-51.

5.Xiao Z, Zhao YY. Heat transfer coefficient of porous copper with homogeneous and hybrid structures in active cooling. Journal of Materials Research 2013; 28:2545-53.

6.Xiao Z, Li Z, Fang M, et al. Effect of processing of mechanical alloying and powder metallurgy on microstructure and properties of Cu-Al-Ni-Mn alloy. Materials Science and Engineering A 2008; 488:266-72.

7.Xiao Z, Zhao YY. Thermal properties of porous copper manufactured by lost carbonate sintering. Materials Science Forum 2014; 783-786:1603-1608

8.Xiao Z, Li Z, Fang M, et al. Structure evolution of Cu-based shape memory powder during mechanical alloying. Transactions of Nonferrous Metals Society of China 2007; 17:1422-7.

9.Li Z, Xiao Z, Bao JQ, Xu GY, Zheng F. Atom exchange of martensite in Cu-13Zn-15Al alloy during non-isothermal aging. Transactions of Nonferrous Metals Society of China 2006; 16:1064-1068.

10.Gong S, Li Z, Xiao Z, et al. Microstructure and property of the composite laminate cladded by explosive welding of CuAlMn shape memory alloy and QBe2 alloy. Materials & Design 2009; 30:1404-1408.

11.Qiu WT, Li Z, Xiao Z, et al. Sphericizing tungsten particles by means of localized preferential oxidation and alkaline washing. Powder Technology 2012; 228:187-192.

12.Li Z, Xiao ZA, Xiao Z. Structural transition of stabilized martensite in CuZnAl alloy.Advanced Materials Research 2008; 47-50:499-502

13.Yu Z, Fang M, Xiao Z. Effects of enhanced nucleation on the growth and thermal performance of diamond films deposited on BeO by hot filament CVD technique. Frontiers of Materials Science in China, 2008; 2(4):369-374

14.Li Z, Pan ZY, Zhao YY, Xiao Z, et al. Microstructure and properties of high-conductivity, super-high-strength Cu-8.0Ni-1.8Si-0.6Sn-0.15Mg alloy. Journal of Materials Research 2009; 24:2123-2129.

15.Pang Y, Xia C, Wang M, Li Z, Xiao Z, et al. Effects of Zr and (Ni, Si) additions on properties and microstructure of Cu-Cr alloy. Journal of Alloys and Compounds 2014; 582:786-792.

16.Lei Q, Li Z, Wang MP, Zhang L, Xiao Z, et al. The evolution of microstructure in Cu-8.0Ni-1.8Si-0.15Mg alloy during aging. Materials Science and Engineering A 2010; 527:6728-6733.

17.Lei Q, Li Z, Wang MP, Zhang L, Gong S, Xiao Z, et al. Phase transformations behavior in a Cu-8.0Ni-1.8Si alloy. Journal of Alloys and Compounds 2011; 509: 3617-3622.

18.Yu HC, Wang M, Sheng X, Li Z, Chen L, Lei Q, Xiao Z. Microstructure and tensile properties of large-size 7055 aluminum billets fabricated by spray forming rapid solidification technology. Journal of Alloys and Compounds 2013; 578:208-214.

19.Pan ZY, Wang MP, Li Z, Xiao Z, et al. Thermomechanical treatment of super high strength Cu-8.0Ni-1.8Si alloy. Transactions of Nonferrous Metals Society of China 2007; 17:S1076-S80.

20.Lei Q, Li Z, Pan ZY, Wang MP, Xiao Z, et al. Dynamics of phase transformation of Cu-Ni-Si alloy with super-high strength and high conductivity during aging. Transactions of Nonferrous Metals Society of China 2010; 6:1006-1011.

21.Lei Q, Li Z, Xiao T, Pang Y, Xiang ZQ, Qiu WT, Xiao Z. A new ultrahigh strength Cu-Ni-Si alloy. Intermetallics 2013; 42:77-84.

专利成果

1.一种高抗变色金色耐蚀铜合金及其板材制备方法, CN103243232A(排名第二)

2.一种孔结构参数可控的开孔泡沫铜的制备方法, CN103215470A(排名第二)

3.超高强、高导电CuNiSi系弹性铜合金及其制备方法, ZL 2008 10032004.2(排名第三)

4.一种孔结构参数可控的多孔TiNi形状记忆合金的制备方法, ZL 2011 20095542.8(排名第四)

5.一种Cu-A12O3纳米弥散强化合金及其制备方法, ZL 2007 10036199.3(排名第五)