
王毅,1993年生,河南洛阳人。2024年12月毕业于河南理工大学,获工学博士学位。主要从事先进制造技术、硬脆材料精密加工理论与装备的教学科研工作。参与国家自然科学基金面上项目2项,重点项目1项,横向课题6项;授权国家发明专利6项,美国发明专利1项,实用新型专利9项;在Tribology International、Chinese Journal of Aeronautics、Ultrasonics Sonochemistry和稀有金属材料与工程等国内外学术期刊发表论文16篇,均被SCI/EI收录。
主要科研情况:
(1)国家自然科学基金,“高温Ti-Al系化合物熔覆层多维超声干式铣削机理及组织调控”项目编号:52275419,参与,50万。
(2)国家自然科学基金,“金属间化合物多维超声加工表层状态主动可控的超声诱导机制研究”,项目编号:51875179,参与,60万。
(3)国家自然科学基金重点项目,“高性能齿轮的抗疲劳制造基础理论与关键技术研究”,项目编号:U1604255,参与,210万。
主要论文情况:
[1]WANG Y, GAO G, ZHANG K, et al. Modelling of tribological behavior and wear for micro-textured surfaces of Ti2AlNb intermetallic compounds machined with multi-dimensional ultrasonic vibration assistance[J/]. Tribology International, 2023, 191: 109167.(中科院一区,TOP,IF=6.2)
[2] GAO G,WANG Y, FU Z, et al. Review of multi-dimensional ultrasonic vibration machining for aeronautical hard-to-cut materials[J]. The International Journal of Advanced Manufacturing Technology, 2023, 124(3-4): 681-707.(中科院三区,IF=3.4)
[3] GAO G,WANG Y, ZHAO B, et al. Multi-objective optimization of processing parameters for ultrasonic surface rolling 12Cr2Ni4A gear steel based on an improved gray correlation analysis[J]. Multiscale and Multidisciplinary Modeling, Experiments and Design, 2023, 6(1): 165-177.(EI,IF=2.2)
[4] ZHANG K, GAO G, ZHAO C,WANG Y, et al. Review of the design of power ultrasonic generator for piezoelectric transducer[J]. Ultrasonics Sonochemistry, 2023, 96: 106438.(中科院一区,TOP,IF=8.7)
[5] XIA Z, GAO G,WANG Y, et al. Surface micro-texture and tribological properties in longitudinal-torsional ultrasonic-assisted milling Ti2AlNb [J]. The International Journal of Advanced Manufacturing Technology, 2023, 126(5) : 1919–1935.(中科院三区,IF=6.2)
[6] FU Z, GAO G,WANG Y, et al. Investigation of acoustic softening and microstructure evolution characteristics of Ti3Al intermetallics undergoing ultrasonic vibration-assisted tension[J]. Materials & Design, 2022, 222: 111015.(中科院一区,TOP,IF=9.4)
[7] FU Z, GAO G,WANG Y, et al. Research on dynamic mechanical properties and plastic constitutive relation of Ti3Al intermetallic compounds under mechanical-thermal coupling[J]. Journal of Materials Research and Technology, 2022, 19: 4154-4170.(中科院一区,TOP,IF=6.2)
[8] YUAN Z, GAO G,WANG Y, et al. Experimental study on a two-dimensional ultrasonic vibration platform and milling of Ti2AlNb intermetallic alloy [J]. The International Journal of Advanced Manufacturing Technology, 2022, 121(5) : 4187–4208.(中科院三区,IF=3.5)
[9] BIE W, ZHAO B, WANG X,WANG Y, et al. Experimental study on the effect of tool parameters on the vibrational characteristic of ultrasonic vibration-assisted drilling system[J]. Machining Science and Technology,2022, 26(1) : 72–94.(中科院四区,IF=2.5)
[10]高国富,浮宗霞,王毅,等. Ti-Al系金属间化合物精密加工研究进展[J].稀有金属材料与工程,2021, 50(05) : 1867–1882.(中科院四区)
[11]焦锋,兰帅领,王毅,等.超声滚压12Cr2Ni4A齿轮钢残余压应力特性研究及参数优化[J].表面技术,2020, 49(11) : 334–341.(EI)
[12]原路生,赵波,王毅,等.椭圆振动辅助车削7075铝合金表面微织构及其特性[J].中国机械工程,2020, 31(15) : 1831–1838.(EI)
主要专利情况:
[1]王晓博,赵重阳,王毅,等.孔式模态叠加纵-扭复合超声振动加工方法及装置:中国, CN201810957684.2[P]. 41(河南):, 2023-09-08.
[2]高国富,袁照杰,王毅,等.基于金属冷热形变的滚压钢球快捷安装装置及其使用方法:中国, CN201910693117.5[P]. 41(河南):, 2023-09-05.
[3]赵波,李鹏涛,王毅,等.基于电磁感应原理的多用超声工作态振幅测量方法及装置:中国, CN201810620514.5[P]. 41(河南):, 2023-09-01.
[4]高国富,袁照杰,王毅,等.便携式多方位超声辅助振动滚压装置及其使用方法:中国, CN201910693285.4[P]. 41(河南):, 2023-08-25.
[5]张宽,高国富,王毅,等.一种陶瓷辅热的超声波焊接笔装置:中国, CN202120051244.8[P]. 41(河南):, 2021-10-22.
[6] Guofu GAO, Zhaojie Y,Wang Y, et al. Portable multi-azimuth ultrasonic-assisted vibration rolling device and application method thereof: U.S. Patent 11,041,224[P]. 2021-6-22.
[7]王毅,彭培成,王振洲,等.主轴有冷却孔的高温超声铣削加工装置:中国, CN202021955843.4[P]. 41(河南):, 2021-06-08.
[8]赵波,王毅,彭培城,等.适用于主轴无冷却孔的3D打印高温超声铣削装置:中 国, CN202021955845.3[P]. 41(河南):, 2021-06-04.
[9]王毅,赵重阳,王晓博.带油雾自润滑冷却的超声热装刀柄系统:中国, CN201921205863.7[P]. 41(河南):, 2020-08-14.
[10]王毅,赵波,高国富,等.具有扭振二次放大的双激励超声纵-扭复合切削装置:中国, CN201821763673.2[P]. 41(河南):, 2019-09-13.