金沙(8888js-官方UEFA Champions League)-BinG百科

骆红云

发布时间:2018-10-23  浏览次数:

职务职称:教授,博士生导师


所在单位:材料科学系

联系电话:010-82339905

电子邮箱:luo7128@163.com

办公地点:D-541




Ø 基本情况:

骆红云,女,博士,教授,博士生导师,教育部新世纪人才;美国伊利诺伊大学香槟分校访学教授,中国质量协会理事,中国机械工程学会失效分析分会副理事长和秘书长。先后承担及参与了多项国家自然基金、国家重大专项、重点研发计划等国家级项目。获得省部级奖5项,发表文章100余篇,其中70余篇被SCI检索。主编及参与编写著作4部,在国内外国际会议上作大会特邀报告2次。获授权国家发明专利20余项。

Ø 主讲课程:

研究生课程:《材料试验优化技术》

本科生课程:《核材料导论》

Ø 研究方向:

1)材料损伤机制及完整性研究;

2)仿生材料制备及其性能研究;

(3) 纳米金属材料制备及其表面完整性;


Ø 教学科研成果:

发明专利:

(1)骆红云,张林燕,陈国伟,高佳佳,田乾乾. 三维空间多项容错早期缺陷检测表征方法[P]. 北京市:CN112540068B,2021-11-23.

(2)骆红云,杨浩宇,陈国伟,田乾乾,林振英,赵天舒. 基于EAFLAP复合策略的桥式起重机箱式梁声发射检测装置及损伤检测方法[P]. 北京市:CN107271564B,2019-09-20.

(3)骆红云,赵天舒,张涛,马莎,马文彬,杨浩宇. 一种原油罐底板腐蚀产物状态的无损检测系统[P]. 北京市:CN107422005B,2019-06-18.


代表性论文:

[1] Chen G, Luo H. Asymmetric flexural process and fracture behaviors of natural bamboo node with gradient discontinuous fibers[J]. Composites Communications, 2021, 24: 100647.

[2] Luo J, Luo H, Zhao T, et al. Effect of magnetic field on dislocation morphology and precipitation behaviour in ultrafine-grained 7075 aluminium alloy[J]. Journal of Materials Science & Technology, 2021, 93: 128-146.

[3] Luo J, Luo H, Li S, et al. Effect of pre-ageing treatment on second nucleating of GPII zones and precipitation kinetics in an ultrafine grained 7075 aluminum alloy[J]. Materials & Design, 2020, 187: 108402.

[4] Luo J, Luo H, Liu C, et al. Effect of magnetic field on precipitation kinetics of an ultrafine grained Al–Zn–Mg–Cu alloy[J]. Materials Science and Engineering: A, 2020, 798: 139990.

[5] Peng W, Luo H, Tang J. Electron transfer kinetics and corrosion resistance of electrodeposited composit coating on titanium alloy[J]. Corrosion Science, 2020, 176: 108918.

[6] Kang C, Tang J, Luo H, et al. Study on the deformation mechanism of the inflection point in tensile curve of nano/ultrafine-grained austenite stainless steel rolled at different temperature[J]. Materials Science and Engineering: A, 2020, 786: 139367.

[7]Chen G, Luo H, Yang H, et al. Water effects on the deformation and fracture behaviors of the multi-scaled cellular fibrous bamboo[J]. Acta Biomaterialia, 2018, 65: 203-215.

[8]Chen G, Luo H, Wu S, et al. Flexural deformation and fracture behaviors of bamboo with gradient hierarchical fibrous structure and water content[J]. Composites Science and Technology, 2018, 157: 126-133.

[9]Qi Y, Luo H, Zheng S, et al. Effect of immersion time on the hydrogen content and tensile properties of A350LF2 steel exposed to hydrogen sulphide environments[J]. Corrosion Science, 2013, 69: 164-174.


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