代表性论著:
[1] 《Advanced Laser Process for Surface Enhancement》,Springer出版社、浙江大学出版社,2021年;
[2] 《多能场激光复合表面改性技术及其应用》,机械工业出版社,2021年;
代表性论文:
[1] Qiuyue Liu, Yunpeng Wang, Xihuan Liu, Yizhen Li, Enze Yu, Zhiyong Sun, Liang Wang*, Guilin Zhuang*, Jie Yu*, Shanqiu Liu*. Robust and Ultra-Efficient Anti-/De-Icing Surface Engineered through Photo-/Electrothermal Micro-Nanostructures with Switchable Solid-Liquid States. Advanced Materials, 2025, 37, 2410941.
[2] Liang Wang, Wentao Li, Yi Rong, Anliang Ma, Lei Su, Liming Lei, Lianghui Xu, Yong He, Jianhua Yao. Microstructure and mechanical properties of WC-Co/TC4 joints by square flat-top laser brazing. International Journal of Refractory Metals and Hard Materials, 2026, 137(1):107685;
[3] Liang Wang, Feipeng Liu, Chaoyi Wang, Yi Rong, Yaxing Wang, Songyang Liu, Zhijun Chen, Zhenhe Yu, Jianhua Yao. Magnetic field-induced photothermal particle patterning and femtosecond laser ablation for fabricating excellent anti-icing superhydrophobic surfaces. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2026,737:139794;
[4] Yaxing Wang, Zhenhe Yu, Liushuai Yu, Jin Zhuo, Zhijun Chen, Jianhua Yao, Liang Wang*. Study on removal mechanism of TC4 oxide film cleaned by nanosecond pulsed laser in air environment. Optics & Laser Technology, 2025.02, 181: 111856;
[5] Jianhua Yao, Juehui Li, Honghao Ge, Yong Hu, Fei Wang, Jiaming Mao, Yunfeng Liu, Qunli Zhang, Liang Wang*. Effect of electromagnetic field on element segregation and texture via laser cladding of Inconel 718. Journal of Materials Research and Technology, 2023.10, 27: 3539-3550;
[6] Liang Wang, Jianhua Yao*, Yong Hu, Qunli Zhang, Zhuo Sun, Rong Liu. Influence of electric-magnetic compound field on the WC particles distribution in laser melt injection. Surface & Coatings Technology, 2017.04, 315:32-43 ;
[7] Liang Wang, Jianhua Yao*, Yong Hu, Shiying Song. Suppression effect of a steady magnetic field on molten pool during laser remelting. Applied Surface Science, 2015.10, 351:794-802;
[8] 王梁,于留帅,王亚星,卓金,于真鹤,陈智君,姚建华*.GH3128表面高温碳化/氧化沉积层激光烧蚀阈值及清洗工艺研究. 中国激光(卓越领军期刊). 2025 ,52 (04): 110-121;
[9] 王梁,王云鹏,刘飞鹏,王亚星,戎易,陈智君,吴国龙,于真鹤,姚建华, 飞秒激光制备多级结构协同PDMS/Fe3O4增强超疏水光热表面. 中国激光(封面论文)(卓越领军期刊). 2025 ,52 (20): 157-167;
[10] 王梁,罗建,胡勇,夏洪超,姚建华. 激光同轴熔注球形WC 增强颗粒的工艺参数研究. 机械工程学报(卓越领军期刊),2021.04,57(07):253-261;
代表性专利:
[1] Adsorbable electromagnetic field auxiliary device for large components. 2019-12-18, 美国,US12343817B2.
[2] Anbringbare elektromagnetische Feldunterstützungsvorrichtung für große Teile. 2019-12-18, 德国, Nr. 212019 000452.
[3] Flexible Self-Adaptive Composite Carbon Brush-Type Electromagnetic Composite Field Synchronous Laser Cladding Device. 2018-04-28, 美国,US 11110544 B2;
[4] 一种电磁场辅助激光-电弧复合焊接下塌缺陷自适应调控装置. 2025-03-24, 中国, ZL202510345939.X.
[5] 采用双层结构钎料的玻璃与金属激光焊接方法及其钎料. 2024-10-14, 中国, ZL202411430027.4.
[6] 一种场强可调的模块化交变磁场磁芯及线圈装置. 2021-12-28, 中国, ZL202111621675.4.
[7] 一种定向洛伦兹力作用下的激光再制造窄隙填充方法. 2020-11-13, 中国, ZL201910524631.6.
[8] 电磁场复合激光增材修复用叶片夹持装置. 2019-12-3, 中国, ZL201911220984.3.
[9] 一种磁场辅助陶瓷涂层飞秒激光掠入射烧蚀抛光方法. 2023-12-14, 中国, CN202311717035.2.
[10] 一种电磁复合场辅助激光减材制造装置. 2021-12-28, 中国, CN202111622445.X.
奖励和荣誉(省部级及以上):
[1] 2025年,中国机械工业联合会,中国机械工业科学技术,一等奖(5/15)
[2] 2023年,浙江省人民政府,浙江省科技进步奖,一等奖(7/13)
[3] 2023年,江苏省人民政府,江苏省科技进步奖,一等奖(6/10)
[4] 2019年,浙江省人民政府,浙江省技术发明奖,一等奖(2/6)
[5] 2018年,中国机械工业联合会,中国机械工业科学技术一等奖(3/15)
[6] 2014年,浙江省人民政府,浙江省科技进步奖,三等奖(5/7)