• 姓名: 黄奥
  • 职称: 教授
  • 学位: 博士
  • 武汉科技大学
  • 材料与冶金学院

黄 奥

性 别:

院 系:无机非金属材料工程

行政职务

专业技术职称

教授

毕业院校:武汉科技大学

毕业专业:材料学

毕业时间:2010

最后学历:博士研究生

最后学位:博士

办公电话:02768862160

E-mail:huangao@wust.edu.cn

个人简介(主要研究方向、个人成果、学术兼职等总体介绍)

黄奥,男,1982年生,博士,武汉科技大学教授、湖北省硅酸盐学会耐火材料分会会长、澳大利亚陶瓷学报(Journal of the Australian Ceramic Society)副主编。2011年中山大学进修,2012-2014年奥地利莱奥本大学博士后,2016年东北大学“教育部青年骨干教师”访问学者。主要从事耐火材料与冶金熔体的相互作用及其模拟与调控研究,主持和参与国家“973”前研专项、国家科技攻关、国家自然科学基金、Austrian K1-MET、湖北省自然科学基金重点项目等10余项;此外,负责完成宝武集团等国有大中型企业合作项目多项。近年,在材料领域Corrosion Science等权威期刊发表SCI等索引论文40余篇,荣获奥地利大学“Hans Theisbacher”杰出科研成果奖、全国高校冶金院长奖青年教师提名奖、中国金属学会青年学术年会优秀论文、湖北省优秀博士、硕士学位论文等;致力于探索耐火材料逐步由单纯消耗性材料转变为实现高温新技术所必需的节能环保及功能智能型材料,授权国家发明专利22项,2项成果经省级鉴定为国际领先水平,获省级科学技术一等奖4项、二等奖2项、三等奖2项。国际会议大会主席1次、邀请大会报告2次、分会报告5次,国内会议邀请报告3次,《中国材料进展》特约撰稿人,Corrosion Science、Applied Thermal Engineering、International Journal of Heat and Mass Transfer、Ceramics International、Steel Research International、International Journal of Minerals, Metallurgy and Materials等SCI源刊审稿人。

:在国内外核心期刊上发表学术论文情况

代表性论文:

[1] AoHuang*, YajieWang, HuazhiGu, YongshunZou.Dynamic Interaction of Refractory and Molten Steel: Effect of Alumina-Magnesia Castables on Alloy Steel Cleanness.Ceramics International,2018, doi.org/10.1016/j.ceramint.2018.08.327

[2] A. Huang*, P. Lian, L. Fu, et al. Modeling and experiment of slag corrosion on the lightweight alumina refractory with static magnetic field facing green metallurgy. Journal of Mining and Metallurgy, Section B: Metallurgy, 2018, 54(2).

[3] AoHuang *, YajieWang, YongshunZou, HuazhiGu, LvpingFu. Dynamic interaction of refractory and molten steel: Corrosion mechanism of alumina-magnesia castables.Ceramics International,2018, 44(12): 14617-14624

[4] Pengfei Lian, Ao Huang*, Huazhi Gu, Yongshun Zou, Lvping Fu, Yajie Wang. Towards prediction of local corrosion on alumina refractories driven by Marangoni convection. Ceramics International, 2018, 44(2): 1675-1680.

[5] Lvping Fu, Ao Huang*, Pengfei Lian, Huazhi Gu. Isolation or corrosion of microporous alumina in contact with various CaO-Al2O3-SiO2 slags, Corrosion Science, 2017, 120C: 211-218.

[6] Ao Huang*, Lvping Fu, Huazhi Gu, Bin Wu. Towards slag-resistant, anti-clogging and chrome-free castable for gas purging. Ceramics International, 2016, 42(16): 18674-18680.

[7] Lvping Fu, Ao Huang*, Huazhi Gu, Denghui Lu, Pengfei Lian. Effect of nano-alumina sol on the sintering properties and microstructure of microporous corundum. Materials & Design, 2016, 89(5): 21-26.

[8] Ao Huang*, Harald Harmuth, Marianne Doletschek, Sandra Vollmann. Towards CFD modelling of slag entrainment in gas stirred ladles. Steel Research International , 2015, 86(12): 1447-1454.

[9] Huang A*, Gu HZ, Zhang MJ, et al. Mathematical modeling on erosion characteristics of refining ladle lining with application of purging plug. Metallurgical and Materials Transactions B, 2013.06.01, 44(3): 744-749.

[10] Lvping Fu, Ao Huang*, Huazhi Gu, et al. Improvement of durability of purging plugs using MgO micropowder for refining ladles. International Journal of Applied Ceramic Technology, 2016, 13(6): 1104-1111.

[11] Huang Ao*, Gu Huazhi, Yang Zou, Fu Lvping,Lian Pengfei,Jin Linwen. An approach for modeling slag corrosion of lightweight Al2O3-MgO castables in refining ladle. Ceramic Transactions, 2016, 256: 101-111.

[12] Ding Chen, Ao Huang*, Huazhi Gu, Meijie Zhang, Zhijun Shao. Corrosion of Al2O3–Cr2O3 refractory lining for high-temperature solid waste incinerator. Ceramics International, 2015.12.01, 41(10): 14748-14753.

[13] Yonghe Liang, Ao Huang*, Xinwei Zhu, Huazhi Gu, Lvping Fu. Dynamic slag/refractory interaction of lightweight Al2O3–MgO castable for refining ladle. Ceramics International, 2015, 41(6): 8149-8154.

[14] Chen Ding, Gu Huazhi, Huang Ao*, Deng Yanwen, Shao Zhijun. Incorporating Zr combined Si and C to achieve self-repairing ability and enhancement of silica sol bonded SiC castables. Journal of Alloys and Compounds, 2018, 732: 396-405.

[15] Chen Ding, Gu Huazhi, Huang Ao*, Shao Zhijun. Enhancement of bonding network for silica sol bonded SiC castables by reactive micropowder. Ceramics International, 2017, 43(12): 8850-8857.

[16] Ding Chen, Huazhi Gu, Ao Huang*, Zhijun Shao. Towards chrome-free of high-temperature solid waste gasifier through in-situ SiC whisker enhanced silica sol bonded SiC castable. Ceramics International, 2017, 43(3): 3330-3338.

[17] Yang Zou, Huazhi Gu, Ao Huang*, Meijie Zhang, Pengfei Lian. An approach for matrix densification based on particle packing and its effect on lightweight Al2O3-MgO castables. Ceramics International, 2016, 42(16): 18560-18567.

[18] Yongshun Zou, Ao Huang, Lvping Fu, Pengfei Lian, Yajie Wang, Huazhi Gu. Chemical interactions between a calcium aluminate glaze and molten stainless steel containing alumina inclusions.Ceramics International, 2018, 44(1):1106-1110.

[19] Lvping Fu, Huazhi Gu, Ao Huang, Meijie Zhang, Zhengkun Li. Slag resistance mechanism of lightweight microporous corundum aggregate. Journal of the American Ceramics Society, 2015, 98(5): 1658-1663.

:完成及承担科研项目

1、国家自然科学基金联合基金重点项目,连铸中间包微孔镁质耐火材料与过滤器的制备及其对钢液的净化机理(U1860205),第3;

2、国家自然科学基金青年项目,基于多场耦合的精炼钢包轻量化耐火材料渣蚀行为研究(51204126)主持;

3、国家自然科学基金面上项目,高温轻量刚玉材料烧结的原位应力与超塑性关系及其微纳米封闭气孔形成机理研究(51474165),第2;

4、高端外国专家项目,耐火材料制备与服役过程模拟计算与表征评价(GDW20174200160),主持;

5、奥地利K1-MET项目,Basic understanding of wear of refractories in metallurgical vessels;

6、湖北省对外科技合作专项,高品质钢冶炼用新一代钢包耐火材料高温服役行为研究(2016AHB026),第3;

7、湖北自然科学基金创新群体项目,功能耐火材料制备新方法及高温服役性能(2017CFA004);

8、湖北省高等学校优秀中青年科技创新团队,非氧化物复合冶金耐火材料(T201602),第4。

:成果获奖情况

1、钒钛磁铁矿冶炼用耐火材料关键技术及工业应用,湖北省科技进步一等奖,2018,排3;

2、大容积长寿命焦炉工程精准高效全流程清洁建造关键技术及应用(2018020),冶金科学技术一等奖,2018,排7;

3、节能高效氧化铝原料制备技术与工业应用(2017-J2-026-R05),浙江省科技进步二等奖,2017,排5;

4、大型工业炉耐火材料修复关键技术与应用(2016J-232-2-073-014-R02),湖北省科技进步二等奖,2016,排2;

5、低导热高温炉衬材料一体化设计与制备及工业应用(2015J-234-1-033-012-R11),湖北省科技进步一等奖,2015,排11

6、高强度轻质绝热板(2015-F-3-002-R04),浙江省技术发明三等奖,2015,排4;

7、钢包用刚玉尖晶石预制块(2014-J-3-066-R03),浙江省科技进步三等奖,2014,排3;

8、Simulation of possible slag entrainment in asteel ladle particularlywith regard to refractory wear,MontauniversitaetLeoben,“Hans Theisbacher”杰出科研成果奖,2013;

9、超纯净钢中间包冶金耐火材料关键技术(2010J-230-1-037-007-R12),湖北省科技进步一等奖,2010,排12。