代表性论文:
[1] Chen Liaoyuan, Wang Junhua, Wang Qiang, Zhao Shuaifeng, Yu Tianbiao*, Zhao Yu**. Multi-scale and multi-field coupling simulations of rapid melting and solidification process during laser DED Ni-based high-temperature alloy[J]. International Journal of Heat and Mass Transfer, 2025,239:126538.
[2] Chen Liaoyuan, Li Juncai, Ma Zhelun, Jiang Chuang, Yu Tianbiao*, Gu Ruijie**. Grinding performance and parameter optimization of laser DED TiC reinforced Ni-based composite coatings[J]. Journal of Manufacturing Processes, 2025,134:466-481.
[3] Chen Liaoyuan, Guan Chuang, Ma Zhelun, Cui Zhijie, Zhang Zhuangya, Yu Tianbiao*, Gu Ruijie**. Modeling and simulation of grinding surface morphology for laser cladding in situ TiC reinforced Ni-based composite coatings[J]. Surface and Coatings Technology, 2025,498:131831.
[4] Gu, Ruijie; Wang, Junhua; Ma, Zhelun; Guan, Chuang; Jiang, Chuang; Yu, Tianbiao; Chen, Liaoyuan*. Microstructure and mechanical property of in situ TiC reinforced Ni-based composite coatings fabricated by ultrasonic vibration assisted laser cladding. International Journal of Refractory Metals and Hard Materials 134 (2026). 107494.
[5] Gu Ruijie, Fu Yutong, Shang Ziyang, Wang Qiang, Tong Yi, Lan Shan, Ma Zhenyu, Chen Liaoyuan*. Stress model and evolution process of hot bulging wind turbine bearing rings with irregular cross-sections[J]. Journal of Materials Research and Technology, 2026,41:7437-7455.
[6] Gu Ruijie, Fu Yutong, Shang Ziyang, Zhang Zhuangya, Lan Shan, Wang Tongxun, Wang Qiang, Chen Liaoyuan*. Stress-strain and dimension evolution of wind turbine bearing ring with non-standard section during hot bulging process[J]. Materials, 2026,19(5):938.
[7] Chen Liaoyuan, Chen Ying, Chen Xin, Yu Tianbiao*, Wang Zixuan. Microstructure and Properties of in situ TiC/Ni functionally gradient coatings by powder-fed laser cladding[J]. Ceramics International, 2022(24):36789-36801.
[8] Chen Liaoyuan, Zhao Yu, Meng Fanwei, Yu Tianbiao*, Ma Zhelun, Qu Sheng, Sun Zhengyu. Effect of TiC content on the microstructure and wear performance of in situ synthesized Ni-based composite coatings by laser direct energy deposition[J]. Surface and Coatings Technology, 2022,444:128678.
[9] Chen Liaoyuan, Yu Tianbiao*, Guan Chuang, Zhao Yu. Microstructure and properties of metal parts remanufactured by laser cladding TiC and TiB2 reinforced Fe-based coatings[J]. Ceramics International, 2022,48(10):14127-14140.
[10] Chen Liaoyuan, Yu Tianbiao*, Chen Xin, Zhao Yu, Guan Chuang. Process optimization, microstructure and microhardness of coaxial laser cladding TiC reinforced Ni-based composite coatings[J]. Optics & Laser Technology, 2022,152:108129.
[11] Chen Liaoyuan, Zhao Yu, Chen Xin, Yu Tianbiao*, Xu Pengfei. Repair of spline shaft by laser cladding coarse TiC reinforced Ni-based coating: Process, Microstructure and Properties[J]. Ceramics International, 2021, 47: 30113–28.
[12] Chen Liaoyuan, Zhao Yu, Song Boxue, Yu Tianbiao*, Liu Zhe. Modeling and simulation of 3D geometry prediction and dynamic solidification behavior of Fe-based coatings by laser cladding[J]. Optics & Laser Technology, 2021,139:107009.
[13] Chen Liaoyuan, Yu Tianbiao*, Xu Pengfei, Zhang Bo. In-situ NbC reinforced Fe-based coating by laser cladding: Simulation and experiment[J]. Surface and Coatings Technology, 2021:127027.
[14] Chen Liaoyuan, Zhao Yu, Guan Chuang, Yu Tianbiao*. Effects of CeO2 addition on microstructure and properties of ceramics reinforced Fe-based coatings by laser cladding[J]. The International Journal of Advanced Manufacturing Technology, 2021, 115: 2581–93.
[15] Chen Liaoyuan, Yu Tianbiao*, Chen Ying, Wang Wanshan. Slicing strategy and process of laser direct metal deposition (DMD) of the inclined thin-walled part under open-loop control[J]. Rapid Prototyping Journal, 2021,28(1):68-86.
代表性专利:
[1] 陈辽原, 苏家琳, 石梓挥, 商子扬, 王军华, 谷瑞杰. 一种大型风电轴承套圈激光熔覆修复设备及方法, 申请号: CN202511569940.7(发明专利).
[2] 陈辽原, 钟永健, 岑首镓, 符宇童, 王军华, 谷瑞杰. 一种风电轴承套圈激光修复层超声振动车削装置及方法, 申请号: CN202511570150.0 (发明专利).
[3] 陈辽原, 张超, 程述伟, 于天彪, 赵雨. 激光熔覆密封装置, 中国, CN201711091050.5 (发明专利).
[4] 陈辽原,于天彪, 赵雨,刘清正. 东北大学激光熔覆系统温度调控软件V1.0,中国, 2018SR670807 (软件著作).
[5] 陈新, 梁赢东, 陈辽原, 于天彪, 赵继. 插入cohesive单元的颗粒随机分布增强复合材料微观建模方法. 中国, CN202011477041.1 (发明专利).
[6] 谷瑞杰, 符宇童, 赵帅峰, 王强, 陈辽原. 一种风电轴承套圈内胀整圆机构,中国,CN202410475846.4 (发明专利).
专著与教材:
无