蘭亮

發布者⚇:阮勤超發布時間🙇🏻‍♂️:2024-09-06瀏覽次數:15

蘭亮,博士👋🏻,副教授🌱,碩士生導師。主要從事激光/電子束增材製造鈦合金與鈦鋁合金,激光沖擊表面改性🤗,疲勞損失機製以及異種材料連接工藝等研究👨🏿‍🎤。在Journal of Materials Science & Technology, International Journal of Fatigue, Materials Science and Engineering: A等國內外SCI期刊發表論文20篇;受邀兼任Crystal國際SCI期刊客座編輯,以及International Journal of Fatigue, Journal of Manufacturing Processes, Materials Letters等期刊審稿人,授權國家發明專利3項。主持或參與上海市教委青培計劃項目,國家重點實驗開放課題,上海市科委重大基礎研究“面向復雜精細結構的金屬增材製造”,國家工信部“先進渦輪發動機熱端部件綠色關鍵工藝系統集成”等項目。指導本科生獲得中國大學生鑄造工藝設計大賽全國三等獎;已培養碩士研究生4名🧑🏼‍🎓,其中考取上海交大博士研究生1名,獲得國家獎學金以及校級優秀碩士論文2名。


通訊地址🚚:上海市松江區龍騰路333號實訓樓1318


聯系電話:021-67796016


電子郵箱cumtlanliang@163.com


教育經歷:


2010.09—2016.10, 上海大學,  工學博士

2006.09—2010.07,中國礦業大學🏌🏼‍♀️,工學學士


研究方向:


激光/電子束增材製造(3D打印);激光沖擊表面改性💅🏿;疲勞損傷行為🤒;異種材料連接


代表性論文:


[1] Lulu Jiang, Liang Lan*, Haoyu Wang, Xiao Yan, Shuang Gao, Bo He*, Chaoyue Chen, Laser shock peening of laser melting deposited TiAl alloy for enhancing its corrosion resistance👨🏼‍🎤,Surface & Coatings Technology, 2024, 483: 130745.

[2] Lulu Jiang, Liang Lan*, Chengyan Bai, Haoyu Wang, Shuang Gao, Bo He*. Research progress on powder bed fusion additive manufacturing of TiAl-based alloy. The International Journal of Advanced Manufacturing Technology. 2024, 133:1045–1061.

[3] Lulu Jiang, Liang Lan*, Chengyan Bai, Ruyi Xin, Shuang Gao, Haoyu Wang, Bo He*. Influence of laser shock peening on the microstructure and high-temperature oxidation resistance of Ti45Al8Nb alloy fabricated via laser melting deposition, Transactions of Nonferrous Metals Society of China 2024, online.

[4] Jun Wang, Bo He*, Caiyan Liu, Liang Lan*, Shuang Gao, Yonghua Rong. Thermal stability of nanocrystals in SLM-printed Ti64 alloy treated by laser shock peening and plasma nitriding, Metals and Materials International, 2024, online.

[5] Junmei Huo, Bo He*, Liang Lan*. Effects of boron on microstructure and mechanical properties of high-Nb TiAl alloy fabricated via laser melting deposition, Journal of Materials Engineering and Performance 2023, 32:10104–10114.

[6] Chengyan Bai, Liang Lan*, Ruyi Xin, Shuang Gao, Bo He*. Microstructure evolution and cyclic deformation behavior of Ti-6Al-4V alloy via electron beam melting during low cycle fatigue, International Journal of Fatigue 2022, 159: 106784.

[7] Ruyi Xin, Liang Lan*, Chengyan Bai, Shuang Gao, Bo He*, Jiang Wang. Fatigue properties of selective laser melted Ti-6Al-4V alloy subjected to laser shock processing. Journal of Materials Science 2022, 57: 9619–9630.

[8] Liang Lan, Ruyi Xin, Xinyuan Jin, Shuang Gao, Bo He*. Influences of multiple laser shock peening impacts on microstructure and mechanical properties of Ti-6Al-4V alloy fabricated by electron beam melting. International Journal of Minerals, Metallurgy and Materials 2022, 29: 1780-1787.

[9] Xinyuan Jin, Liang Lan*, Shuang Gao, Bo He*, Yonghua Rong. Effects of laser shock peening on microstructure and fatigue behavior of Ti-6Al-4V alloy fabricated via electron beam melting. Materials Science and Engineering: A 2020, 780: 139199.

[10] Liang Lan, Xinyuan Jin, Shuang Gao, Bo He*, Yonghua Rong. Microstructural evolution and stress state related to mechanical properties of electron beam melted Ti-6Al-4V alloy modified by laser shock peening. Journal of Materials Science & Technology 2020, 50: 153-161.


授權發明專利:


(1) 蘭亮; 何博; 白澄巖; 高雙; 一種改善增材製造金屬構件疲勞性能的復合裝置及方法, 2023-11-10, 中國, ZL202210099202.0.

(2) 蘭亮; 何博; 辛如意; 高雙; 一種電子束增材製造全等軸晶金屬構件的方法, 2022-09-23, 中國, ZL202110919218.7.

(3) 何博; 蘭亮; 金鑫源; 高雙; 潘宇飛; 一種基於增材製造技術製備梯度結構金屬件的方法, 2021-07-20, 中國, ZL201910233988.9.


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