
浏览全部资源
扫码关注微信
1.中南大学 极端服役性能精准制造全国重点实验室,长沙 410083
2.中国航发湖南动力机械研究所 直升机传动技术国家级重点实验室,株洲 412002
3.河池学院 人工智能与制造学院,宜州 546300
韦大涣,男,1994年生,广西河池人,博士生;主要研究方向为机械信号处理;233702039@csu.edu.cn。
严宏志(通信作者),男,1964年生,湖南常德人,博士,教授;主要研究方向为高性能航空传动设计制造论与技术;yhzcsu@163.com。
修回:2025-06-03,
网络首发:2026-04-30,
移动端阅览
韦大涣,李松柏,李小康,等.直升机传动系统振动/噪声抑制技术研究综述[J].机械传动,XXXX,XX(XX):1-15.
WEI Dahuan,LI Songbai,LI Xiaokang,et al.Review of vibration and noise suppression technologies for helicopter transmission systems[J].Journal of Mechanical Transmission,XXXX,XX(XX):1-15.
直升机传动系统是舱内噪声的关键来源,显著影响飞行品质与乘坐舒适性。系统梳理其振动/噪声抑制技术,可为工程设计、系统集成与国产化替代提供技术依据与路径参考。本文对国内外直升机传动系统振动/噪声抑制技术的研究进展进行综述。阐述了被动抑振技术(包括结构优化、阻振、吸振和隔振)和主动抑振技术(涵盖作动器和有源控制算法);梳理了共轴反转双旋翼直升机、倾转旋翼直升机等具备高速飞行特性的特殊构型直升机传动系统振动抑制技术的研究现状。同时,探讨了磁性齿轮、陶瓷轴承和复合材料轴、机匣等新型传动部件的减振机理,以及电动尾桨、全电驱动等革命性电驱动技术的研究进展。最后,结合我国研究现状,提出多维度优化主动抑振技术、技术创新推动新型传动部件升级和发展新能源直升机等建议,以期提升我国直升机的国际竞争力。
The helicopter transmission system is the key source of cabin noise
which significantly affects the flight quality and ride comfort. Systematically combing its vibration/noise suppression technology can provide technical basis and path reference for engineering design
system integration and localization replacement. This article provides a review of the research progress on vibration/noise suppression technology for helicopter transmission systems both domestically and internationally. Passive vibration suppression techniques (including structural optimization
damping
absorption
and isolation) and active vibration suppression techniques (covering actuators and active control algorithms) have been elucidated in this review. The research status of vibration suppression technology for transmission systems of special configurations of helicopters with high-speed flight characteristics
such as coaxial reverse twin rotor helicopters and tilt rotor helicopters
has been summarized. At the same time
the vibration reduction mechanism of new transmission components such as magnetic gears
ceramic bearings
composite shafts
and casings has been explored
as well as the research progress of revolutionary electric drive technologies such as electric tail rotor and fully electric drive. Finally
based on the current research status in China
suggestions are proposed for multidimensional optimization of active vibration suppression technology
technological innovation to promote the upgrading of new transmission components
and the development of new energy helicopters
in order to enhance the international competitiveness of China's helicopters.
尹中伟 , 王刚 , 林长亮 , 等 . 某民用直升机舱内噪声水平仿真分析研究 [J]. 测控技术 , 2023 , 42 ( 6 ): 124 - 129 .
YIN Zhongwei , WANG Gang , LIN Changliang , et al . Simulation analysis of noise level in civil helicopter cabin [J]. Measurement & Control Technology , 2023 , 42 ( 6 ): 124 - 129 .
SCHEIDLER J J . A review of noise and vibration control technologies for rotorcraft transmissions [C]// INTER-NOISE and NOISE-CON Congress and Conference Proceedings . Hamburg,German : Institute of Noise Control Engineering , 2016 : 2986 - 2997 .
孙曜 , 汪鸿振 . 直升机旋翼噪声研究概述 [J]. 噪声与振动控制 , 2003 , 23 ( 4 ): 22 - 25 .
SUN Yao , WANG Hongzhen . A overview on investigation of helicopter rotor noise [J]. Noise and Vibration Control , 2003 , 23 ( 4 ): 22 - 25 .
MILLOTT T A , WELSH W A , YOERKIE C A , et al . Flight test of active gear-mesh noise control on the S-76 aircraft [C]// Proceedings of the AmericanHelicopter Society 54th Annual Forum . Washington,USA : The American Helicopter Society Inc , 1998 : 1 - 5 .
殷鹏 , 黄斌根 , 刘忠超 . 直升机舱内噪声特性分析 [J]. 直升机技术 , 2019 ( 4 ): 28 - 31 .
YIN Peng , HUANG Bingen , LIU Zhongchao . Analysis of noise characteristics in helicopter cabin [J]. Helicopter Technique , 2019 ( 4 ): 28 - 31 .
HANSEN B , SALERNO M , WINKELMANN L . Isotropic superfinishing of S--76C+ main transmission gears [R]. Alexandria : AGMA , 2006 : 1 - 12 .
王俊 , 潘文斌 . 直升机传动系统面齿轮传动技术的发展 [J]. 航空动力 , 2018 ( 5 ): 44 - 46 .
WANG Jun , PAN Wenbin . The development of face gear transmission technology of helicopter transmission system [J]. Aerospace Power , 2018 ( 5 ): 44 - 46 .
BOSSLER R , HEATH G . Advanced rotorcraft transmission (ART) program status [C]// 27th Joint Propulsion Conference , 1991 : 1906 .
PARKER R G . A physical explanation for the effectiveness of planet phasing to suppress planetary gear vibration [J]. Journal of Sound and Vibration , 2000 , 236 ( 4 ): 561 - 573 .
LUU T T , TRAN T T , WU Y R . A novel topology modification of spur gear flanks to enhance contact performance and lubrication ability [J]. Mechanism and Machine Theory , 2024 , 199 : 105670 .
S R 萨姆马塔罗 , J G 基斯 , C J 伊萨贝勒 . 行星齿轮驱动系统的隔音齿圈 : CN1077255C [P]. 2002-01-02 .
SAMMATARO S R , KEITH J G , ISABELLE C J . Vibretion isolation ring gear for planetary gear drive system : CN1077255C [P]. 2002-01-02 .
李大庆 . 直齿面齿轮啮合性能预控及碟形砂轮磨齿关键技术研究 [D]. 镇江 : 江苏大学 , 2013 : 120 .
LI Daqing . Research on pre-control of meshing performance of straight tooth surface gear and key technology of grinding with disc grinding wheel [D]. Zhenjiang : Jiangsu University , 2013 : 120 .
胡明辉 , 曾利 , 陈广艳 , 等 . 一种用于共轴直升机主减速器的分扭齿轮传动减速装置 : CN113483060A [P]. 2021-10-08 .
HU Minghui , ZENG Li , CHEN Guangyan , et al . A torque splitting gear transmission reducer for coaxial helicopter main reducer : CN202110766401.8 [P]. 2021-10-08 .
HUANG K , XU F W , XIONG Y S , et al . Nonlinear dynamic analysis of a microsegment gear system with a time-varying base circle [J]. Transactions of the Canadian Society for Mechanical Engineering , 2020 , 44 ( 2 ): 279 - 293 .
董宇 . 某直升机主减速器新齿形齿轮接触承载能力研究 [D]. 合肥 : 合肥工业大学 , 2016 : 31 - 48 .
DONG Yu . Research of the new tooth gear in helicopter main reducer with load and contact capacity [D]. Hefei : Hefei University of Technology , 2016 : 31 - 48 .
GAO P , LIU H , YAN P F , et al . Research on application of dynamic optimization modification for an involute spur gear in a fixed-shaft gear transmission system [J]. Mechanical Systems and Signal Processing , 2022 , 181 : 109530 .
李政民卿 , 陈宏尚 , 朱如鹏 . 主要参数对面齿轮传动噪声辐射的影响分析 [J]. 航空动力学报 , 2015 , 30 ( 11 ): 2803 - 2809 .
LI Zhengminqing , CHEN Hongshang , ZHU Rupeng . Influence predictions of base parameters on noise radiations of face gear drives [J]. Journal of Aerospace Power , 2015 , 30 ( 11 ): 2803 - 2809 .
陈宏尚 . 基于亥姆霍兹理论的微穿孔腹板面齿轮传动降噪方法研究 [D]. 南京 : 南京航空航天大学 , 2015 : 50 - 65 .
CHEN Hongshang . Construction of Low Noise Face Gear Drives Associated with Micro Punch Web Based on Helmholtz Effects [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2015 : 50 - 65 .
FLEMING D P . Vibration transmission through bearings with application to gearboxes:NASA-TM-214954 [R]. Washington,D.C. NASA , 2007 : 1 - 6 .
ENE N M , DIMOFTE F . Effect of fluid film wave bearings on attenuation of gear mesh noise and vibration [J]. Tribology International , 2012 , 53 : 108 - 114 .
RICHARDS D , PINES D J . Passive reduction of gear mesh vibration using a periodic drive shaft [J]. Journal of Sound and Vibration , 2003 , 264 ( 2 ): 317 - 342 .
ATZRODT H , MAYER D , MELZ T . Reduction of bearing vibrations with shunt damping [C]// 16th International Congress on Sound and Vibration , 2009 : 1 - 7 .
BERARDENGO M , MERCATO M , MANZONI S . Magnetostrictive shunt for vibration control and isolation:model,characteristics and similarities with piezoelectric shunt [J]. Smart Materials and Structures , 2025 , 34 ( 1 ): 015043 .
马豪 . 直升机尾传动系统轴承故障振动传递路径研究 [D]. 重庆 : 重庆大学 , 2022 : 65 .
MA Hao . Vibration transfer path research on bearing fault of helicopter's tail transmission system [D]. Chongqing : Chongqing University , 2022 : 65 .
代鹤 , 罗顺安 , 龙新华 , 等 . 齿轮轴孔位置误差作用下行星齿轮啮合相位波动及其统计特性预测 [J]. 机械工程学报 , 2024 , 60 ( 15 ): 123 - 133 .
DAI He , LUO Shun’an , LONG Xinhua , et al . Mesh phasing variation of planetary gears induced by gear pinhole position errors and its statistical characteristics prediction [J]. Journal of Mechanical Engineering , 2024 , 60 ( 15 ): 123 - 133 .
王锡龙 , 朱如鹏 , 靳广虎 , 等 . 支承对传动轴系稳态不平衡响应的影响研究 [J]. 机械制造与自动化 , 2012 , 41 ( 6 ): 7 - 11 .
WANG Xilong , ZHU Rupeng , JIN Guanghu , et al . Research on effect of support on drive shaft system’s steady-state unbalance response [J]. Machine Building & Automation , 2012 , 41 ( 6 ): 7 - 11 .
张庶 , 胡伟平 , 扶碧波 , 等 . 直升机机匣轴承与支座刚度强度相互影响的有限元分析 [J]. 机械设计与制造 , 2014 ( 7 ): 15 - 18 .
ZHANG Shu , HU Weiping , FU Bibo , et al . Finite element analysis of the interaction of stiffness and strength between bearing and support on an helicopter gearbox [J]. Machinery Design & Manufacture , 2014 ( 7 ): 15 - 18 .
HE H , TAN X , HE J C , et al . A novel ring-shaped vibration damper based on piezoelectric shunt damping:theoretical analysis and experiments [J]. Journal of Sound and Vibration , 2020 , 468 : 115125 .
BADGLEY R H , CHIANG T . Investigation of gearbox design modifications for reducing helicopter gearbox noise:AD742735 [R]. Eustis Directorate,US Army Air Mobility Research and Development Laboratory , 1972 : 1 - 5 .
CAILLET J , MARROT F , UNIA Y , et al . Comprehensive approach for noise reduction in helicopter cabins [J]. Aerospace Science and Technology , 2012 , 23 ( 1 ): 17 - 25 .
SINGH R , LIM T C . A Review of Gear Housing Dynamics and Acoustics Literature [R]. Columbus : The Ohio State University Research Foundation , 1988 : 66 - 69 .
王燕 , 李书 , 许秋怡 . 基于Hyperworks二次开发的直升机主减机匣结构振动分析与优化 [C]// 第26届全国振动与噪声高技术及应用会议论文选集 . 北京 , 2015 : 183 - 190 .
WANG Yan , LI Shu , XU Qiuyi . Analysis and optimization of the structural vibration of the main reduction gearbox casing of a helicopter based on HyperWorks secondary development [C]// Proceedings of the 26th National High-Tech Conference on Vibration and Noise and Its Applications . Beijing , 2015 : 183 - 190 .
马英群 , 张锴 , 王云飞 , 等 . 不平衡激励作用下周向加肋机匣振动能量传递机理 [J]. 航空动力学报 , 2018 , 33 ( 11 ): 2583 - 2592 .
MA Yingqun , ZHANG Kai , WANG Yunfei , et al . Vibration energy transmitting mechanism of ring-stiffened casing excited by rotor unbalance [J]. Journal of Aerospace Power , 2018 , 33 ( 11 ): 2583 - 2592 .
龙伦 , 李坚 , 赵勇铭 , 等 . 动力传动轴-机匣系统耦合振动特性 [J]. 科学技术与工程 , 2021 , 21 ( 33 ): 14422 - 14427 .
LONG Lun , LI Jian , ZHAO Yongming , et al . Coupled vibration characteristics of the power driving shaft-casing system [J]. Science Technology and Engineering , 2021 , 21 ( 33 ): 14422 - 14427 .
PAOLO B , JOSEPH S . Cabin noise reduction for the Agusta A-109 helicopter [C]// Proceedings of the 4th European Rotorcraft and Powered Lift Aircraft Forum . Stresa,Italy , 1978 : 1 - 5 .
ASIRI S , BAZ A , PINES D . Periodic struts for gear⁃box support system [J]. Modal Analysis , 2005 , 11 ( 6 ): 709 - 721 .
ASIRI S , ALJAWI AAN . Periodic mounts to isolate the vibrations of automotive vehicle engine [J]. Journal of King Abdulaziz University-Engineering Sciences , 2006 , 17 ( 1 ): 97 - 115 .
SMITH M R , PASCAL R J , LEE T , et al . Results from the dynamically tailored airframe structures program [C]// Proceedings of the American Helicopter Society 58th Annual Forum . Fairfax,USA : The American Helicopter Society Inc , 2002 : 1 - 5 .
MCGUIRE D P . High stiffness (“rigid”) helicopter pylon vibration isolation systems [C]// Proceedings of the American Helicopter Society 58th Annual Forum . Fairfax,USA : The American Helicopter Society Inc , 2003 : 1 - 5 .
KONSTANZER P , ENENKL B , AUBOURG P , et al . Recent advances in Eurocopter's passive and active vibration control [C]// Proceedings of the American Helicopter Society 64th Annual Forum . Alexandria,USA : The American Helicopter Society Inc , 2008 : 1 - 18 .
LAUDIEN E , NIESL G . Noise level reduction inside helicopter cabins [C]// Proceedings of the 16th Europe an Rotorcraft Forum . Glasgow,United Kingdom , 1990 : 1 - 11 .
沈安澜 , 刘续兴 , 张方 , 等 . 新型主减隔振装置隔振性能测试试验研究 [J]. 南京航空航天大学学报 , 2020 , 52 ( 2 ): 247 - 254 .
SHEN Anlan , LIU Xuxing , ZHANG Fang , et al . Vibration isolation performance of a new type of gearbox vibration isolation device [J]. Journal of Nanjing University of Aeronautics & Astronautics , 2020 , 52 ( 2 ): 247 - 254 .
宋玉宝 , 李征初 , 黄奔 , 等 . 周期隔振设计用于直升机舱内噪声抑制的研究 [J]. 振动工程学报 , 2020 , 33 ( 4 ): 764 - 771 .
SONG Yubao , LI Zhengchu , HUANG Ben , et al . Reduction of helicopter cabin noise using periodic isolation design [J]. Journal of Vibration Engineering , 2020 , 33 ( 4 ): 764 - 771 .
赵志娟 , 张树桢 , 范学伟 . 直升机聚焦式弹性主减隔振系统仿真分析 [J]. 直升机技术 , 2023 ( 1 ): 25 - 28 .
ZHAO Zhijuan , ZHANG Shuzhen , FAN Xuewei . Simulation analysis of the focal elastic vibration isolation system of helicopter main gearbox [J]. Helicopter Technique , 2023 ( 1 ): 25 - 28 .
王风娇 , 陆洋 . 用于直升机舱内降噪的主减周期撑杆研究 [J]. 航空学报 , 2016 , 37 ( 11 ): 3370 - 3384 .
WANG Fengjiao , LU Yang . Research on gearbox periodic strut for helicopter cabin noise reduction [J]. Acta Aeronautica et Astronautica Sinica , 2016 , 37 ( 11 ): 3370 - 3384 .
王风娇 , 李明强 , 彭海锋 , 等 . 用于直升机舱内降噪的新型径向周期撑杆研究 [J]. 振动与冲击 , 2023 , 42 ( 4 ): 286 - 294 .
WANG Fengjiao , LI Mingqiang , PENG Haifeng , et al . A study on a novel radial periodic strut for noise reduction in a helicopter cabin [J]. Journal of Vibration and Shock , 2023 , 42 ( 4 ): 286 - 294 .
GUAN Y H , LI M F , LIM T C , et al . Comparative analysis of actuator concepts for active gear pair vibration control [J]. Journal of Sound and Vibration , 2004 , 269 ( 1/2 ): 273 - 294 .
CHEN M H , BRENNAN M J . Active control of gear vibration using specially configured sensors and actuators [J]. Smart Materials and Structures , 2000 , 9 ( 3 ): 342 - 350 .
RAI A , HAZARIKA K , JAIN M . Adaptive Volterra filters for active control of nonlinear noise processes [C]// Advances in System Optimization and Control . Singapore : Springer Singapore , 2019 : 229 - 235 .
GEORGE N V , PANDA G . A reduced complexity adaptive Legendre neural network for nonlinear active noise control [C]// 2012 19th International Conference on Systems,Signals and Image Processing (IWSSIP) , 2012 : 560 - 563 .
LI Z , WANG H , ZHU R P . Effect predictions of web active control on dynamic behaviors of face gear drives [J]. Journal of Low Frequency Noise,Vibration and Active Control , 2019 , 38 ( 2 ): 753 - 764 .
李以农 , 张锋 , 王雷 , 等 . 次级通道在线辨识的齿轮啮合振动主动控制 [J]. 振动与冲击 , 2013 , 32 ( 16 ): 7 - 12 .
LI Yinong , ZHANG Feng , WANG Lei , et al . Active vibration control of gear meshing based on online secondary path identification algorithm [J]. Journal of Vibration and Shock , 2013 , 32 ( 16 ): 7 - 12 .
李自强 , 李以农 , 钟银辉 , 等 . 基于非线性自适应滤波算法的齿轮传动系统振动主动控制 [J]. 振动与冲击 , 2017 , 36 ( 6 ): 181 - 187 .
LI Ziqiang , LI Yinong , ZHONG Yinhui , et al . Nonlinear adaptive filtering algorithm for the active vibration control of gear transmission [J]. Journal of Vibration and Shock , 2017 , 36 ( 6 ): 181 - 187 .
李以农 , 张锋 , 丁庆中 , 等 . 齿轮啮合振动的主动控制方法与实验研究 [J]. 振动工程学报 , 2014 , 27 ( 2 ): 215 - 221 .
LI Yinong , ZHANG Feng , DING Qingzhong , et al . Method and experiment study for active vibration control of gear meshing [J]. Journal of Vibration Engineering , 2014 , 27 ( 2 ): 215 - 221 .
查建平 , 王风娇 , 郭俊贤 , 等 . 直升机主减速器噪声源控制技术概述 [J]. 航空学报 , 2022 , 43 ( 6 ): 526123 .
ZHA Jianping , WANG Fengjiao , GUO Junxian , et al . An overview of noise source control technology for helicopter main gearbox [J]. Acta Aeronautica et Astronautica Sinica , 2022 , 43 ( 6 ): 526123 .
GUAN Y H , LIM T C , STEVE SHEPARD W . Experimental study on active vibration control of a gearbox system [J]. Journal of Sound and Vibration , 2005 , 282 ( 3/4/5 ): 713 - 733 .
REBBECHI B , HOWARD C , HANSEN C . Active control of gearbox vibration [J]. Proceedings of Active , 1999 : 295 - 304 .
TOSO M , BAZ A , PINES D . Active vibration control of periodic rotating shafts [C]// ASME 2004 International Mechanical Engineering Congress and Exposition , 2008 : 179 - 186 .
ZHAO G Y , ALUJEVIĆ N , DEPRAETERE B , et al . Adaptive-passive control of structure-borne noise of rotating machinery using a pair of shunted inertial actuators [J]. Journal of Intelligent Material Systems and Structures , 2016 , 27 ( 12 ): 1584 - 1599 .
ZHAO G , ALUJEVIĆ N , DEPRAETERE B , et al . Experimental study on active structural acoustic control of rotating machinery using rotating piezo-based inertial actuators [J]. Journal of Sound and Vibration , 2015 , 348 : 15 - 30 .
李以农 , 范振华 , 李贵彦 , 等 . 基于模糊控制的齿轮传动系统振动主动控制与仿真 [J]. 江苏大学学报(自然科学版) , 2011 , 32 ( 3 ): 281 - 286 .
LI Yinong , FAN Zhenhua , LI Guiyan , et al . Active vibration control and simulation of gear transmission system based on fuzzy algorithm [J]. Journal of Jiangsu University (Natural Science Edition) , 2011 , 32 ( 3 ): 281 - 286 .
SUN W , LI Y N , ZHANG F , et al . Active gear pair vibration control based on filtered-X RLS algorithm [J]. Applied Mechanics and Materials , 2011 , 86 : 166 - 169 .
李海燕 . 基于神经网络的齿轮传动系统振动主动控制研究 [D]. 泉州 : 华侨大学 , 2020 : 31 - 54 .
LI Haiyan . Research on active vibration control of gear transmission system based on neural network [D]. Quanzhou : Huaqiao University , 2020 : 31 - 54 .
PALAZZOLO A B , KASCAK A F . Piezoelectric pushers for active vibration control of rotating achinery:N88-23229 [R]. Washington,D. C. NASA , 1988 : 87 - 102 .
MONTAGUE G T , KASCAK A F , PALAZZOLO A , et al . Feedforward control of gear mesh vibration using piezoelectric actuators [J]. Shock and Vibration , 1994 , 1 ( 5 ): 473 - 484 .
DIMOFTE F , HENDRICKS R . Active-controlled fluid film based on wave-bearing technology:NASA/TM 2011-210987 [R]. Washington,D.C. NASA , 2011 : 1 - 21 .
YOGARAJU R , RAVIKUMAR L , SARAVANAKUMAR G , et al . Experimental investigation on the effect of housing profile and its relative position on the performance of semi-active journal bearing [M]// Proceedings of the 6th National Symposium on Rotor Dynamics . Singapore : Springer Singapore , 2020 : 307 - 316 .
CHEN Y , WICKRAMASINGHE V , ZIMCIK D G . Development of smart structure systems for helicopter vibration and noise control [J]. Transactions of the Canadian Society for Mechanical Engineering , 2007 , 31 ( 1 ): 39 - 56 .
顾家柳 , 王强 . 可控挤压油膜轴承主动控制转子系统振动 [J]. 应用力学学报 , 1990 , 7 ( 2 ): 41 - 47,142 .
GU Jialiu , WANG Qiang . Active vibration control of rotor-support system by the controlled sfdb [J]. Chinese Journal of Applied Mechanics , 1990 , 7 ( 2 ): 41 - 47,142 .
刘雍 , 顾家柳 , 朱均 . 可控挤压油膜阻尼器轴承主动鲁棒 H ∞ 控制转子系统振动 [J]. 振动工程学报 , 1996 , 9 ( 1 ): 69 - 74 .
LIU Yong , GU Jialiu , ZHU Jun . Active robust H ∞ control for vibration of rotor system by controlled squeeze film damper bearing [J]. Journal of Vibration Engineering , 1996 , 9 ( 1 ): 69 - 74 .
宋非非 . 一种新型减振环的动力学建模和仿真分析 [D]. 南京 : 南京航空航天大学 , 2017 : 11 - 35 .
SONG Feifei . Dynamic modeling and simulation analysis of a new type of vibration reduction rin [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2017 : 11 - 35 .
李晓博 , 舒进 , 牛瑞杰 , 等 . 基于主动电磁控制的滑动轴承-转子系统自激振动抑制数值仿真 [J]. 热力发电 , 2020 , 49 ( 9 ): 80 - 86 .
LI Xiaobo , SHU Jin , NIU Ruijie , et al . Numerical simulation of self-excited vibration suppression of oil-film bearing-rotor system based on active electromagnetic control [J]. Thermal Power Generation , 2020 , 49 ( 9 ): 80 - 86 .
BRENNAN M J , PINNINGTON R J , ELLIOTT S J . Mechanisms of noise transmission through helicopter gearbox support struts [J]. Journal of Vibration and Acoustics , 1994 , 116 ( 4 ): 548 - 554 .
BEBESEL M , MAIER R , HOFFMANN F . Reduction of interior noise in helicopters by using active gearbox struts-Results of flight tests [C]// 27th European Rotorcraft Forum , 2001 : 1 - 7 .
HOFFMANN F , MAIER R , JÄNKER P , et al . Helicopter interior noise reduction by using active gearbox struts [C]// 12th AIAA/CEAS Aeroacoustics Conference (27th AIAA Aeroacoustics Conference) , 2006 : 2604 .
WALTER CORBETTA , EDOARDO VIGONI , ALESSANDRO TOSO , et al . Active control of helicopter's gearbox vibrations and effects on the cabin noise [C]// 34th European Rotorcraft Forum , 2008 : 1 - 11 .
BELANGER P , BERRY A , PASCO Y , et al . Multi-harmonic active structural acoustic control of a helicopter main transmission noise using the principal component analysis [J]. Applied Acoustics , 2009 , 70 ( 1 ): 153 - 164 .
LE HEN F , SMITH E , LESIEUTRE G , et al . Actively-enhanced periodically-layered mount for helicopter gearbox isolation [C]// 46th AIAA/ASME/ASCE/AHS/ASC Structures , Structural Dynamics and Materials Conference , 2005 : 2250 .
ASIRI S , BAZ A , PINES D . Active periodic struts for a gearbox support system [J]. Smart Materials and Structures , 2006 , 15 ( 6 ): 1707 - 1714 .
LU Y , MA X J . Active control of multifrequency helicopter vibrations using discrete model predictive sliding mode control [J]. Proceedings of the Institution of Mechanical Engineers ,Part G:Journal of Aerospace Engineering, 2016 , 230 ( 4 ): 668 - 680 .
MA X J , LU Y , WANG F J . Active structural acoustic control of helicopter interior multifrequency noise using input-output-based hybrid control [J]. Journal of Sound and Vibration , 2017 , 405 : 187 - 207 .
LI H Y , WANG L M . Adaptive fixed-time anti-synchronization of neural networks:potential application in active noise control [J]. IFAC-PapersOnLine , 2023 , 56 ( 2 ): 6400 - 6405 .
宋春生 , 熊学春 , 陈泊远 , 等 . 一种基于NARX神经网络的振动主动控制方法 [J]. 噪声与振动控制 , 2024 , 44 ( 2 ): 1 - 7,260 .
SONG Chunsheng , XIONG Xuechun , CHEN Boyuan , et al . An active vibration control method based on NARX neural network [J]. Noise and Vibration Control , 2024 , 44 ( 2 ): 1 - 7,260 .
孙卫兵 , 苏宏庆 , 王风娇 , 等 . 直升机高频吸振器性能测试试验方法研究 [J]. 装备环境工程 , 2024 , 21 ( 7 ): 124 - 131 .
SUN Weibing , SU Hongqing , WANG Fengjiao , et al . Research on performance test method for helicopter highfrequency vibration absorber [J]. Equipment Environmental Engineering , 2024 , 21 ( 7 ): 124 - 131 .
PASCO Y , ROBIN O , BÉLANGER P , et al . Multi-input multi-output feedforward control of multi-harmonic gearbox vibrations using parallel adaptive Notch filters in the principal component space [J]. Journal of Sound and Vibration , 2011 , 330 ( 22 ): 5230 - 5244 .
ZHANG D L , CUI J , ZHU R P , et al . Dynamic modeling and analysis of the rotor-stator coupling system of a coaxial contra-rotating gearbox [J]. Scientific Reports , 2023 , 13 : 22177 .
GMIRYA Y . Split torque gearbox for rotary wing aircraft with translational thrust system : US7413142 [P]. 2008-08-19 .
Torque split gearbox for rotary wing aircraft : US9278760 [P]. 2016-03-08 .
COMPANY T B , BOUWER S , KAISER E . Design and development of the main rotor gearbox for the Sikorsky boeing SB>1 DEFIANT JMR technology demonstrator aircraft [C]// Proceedings of the Vertical Flight Society 75th Annual Forum , 2019 : 1 - 5 .
BURGESS R K . The ABC TM rotor—A historical perspective [C]// Proceedings of The 60th Annual Forum of the American Helicopter Society . Baltimore,MD : AHS , 2004 : 1 - 6 .
倪德 , 李苗苗 , 胡志安 , 等 . 共轴反转直升机传动系统构型现状 [J]. 南京航空航天大学学报 , 2021 , 53 ( 2 ): 226 - 235 .
NI De , LI Miaomiao , HU Zhian , et al . Research status of transmission system configuration of coaxial reversal helicoper [J]. Journal of Nanjing University of Aeronautics & Astronautics , 2021 , 53 ( 2 ): 226 - 235 .
KWON Y M , PARK J S , WIE S Y , et al . Aeromechanics analyses of a modern lift-offset coaxial rotor in high-speed forward flight [J]. International Journal of Aeronautical and Space Sciences , 2021 , 22 ( 2 ): 338 - 351 .
CAMERON C , FEIL R , et al . Measurement of transient loads and blade deformation in a coaxial counter-rotating rotor [C]// Proceedings of the Vertical Flight Society 73rd Annual Forum , 2017 : 1 - 11
CHO Sung Hyeok . Comparison of co-rotating and contra-rotating coaxial quadcopter hover dynamics using frequency domain system identification [D]. California State Polytechnic University , Pomona , 2021 : 2 - 50 .
JACOBELLIS G , GANDHI F . Investigation of performance,loads,and vibration of a coaxial helicopter in high-speed flight [C]// AHS 72nd Annual Forum , West Palm Beach,Florida,May 17 – 19 , 2016 : 1402 - 1417 .
HO J C , YEO H . Variations in thrust sharing for torque-balanced lift-offset coaxial rotors [J]. Journal of the American Helicopter Society , 2023 , 68 ( 2 ): 84 - 95 .
KWON Y M , HONG S B , PARK J S , et al . Active vibration reductions of a lift-offset compound helicopter using individual blade pitch control with multiple harmonic inputs [J]. Aircraft Engineering and Aerospace Technology , 2022 , 94 ( 6 ): 994 - 1008 .
HONG S H , BAE J S , JUNG S N , et al . Vibratory loads behavior of a high-speed lift-offset coaxial rotor system [J]. Journal of Mechanical Science and Technology , 2022 , 36 ( 11 ): 5425 - 5436 .
刘帅 . 面齿轮分路共轴高速直升机齿轮系统构型设计与参数优化 [D]. 南京 : 南京航空航天大学 , 2021 : 10 - 72 .
LIU Shuai . Configuration design and parameter optimization of coaxial high speed helicopter gear system with face gear power-split [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2021 : 10 - 72 .
张玉姣 . 锥齿轮分路共轴高速直升机齿轮系统设计与扭转振动分析 [D]. 南京 : 南京航空航天大学 , 2021 : 28 - 96 .
ZHANG Yujiao . Design and torsional vibration analysis of bevel gear power-split coaxial high speed helicopter gear system [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2021 : 28 - 96 .
程俊杰 . 差动式同轴反转主传动系统动态载荷分析 [D]. 重庆 : 重庆交通大学 , 2024 : 18 - 65 .
CHENG Junjie . Dynamic load analysis of the differential coaxial contra-rotating main transmission system [D]. Chongqing : Chongqing Jiaotong University , 2024 : 18 - 65 .
倪德 , 钟团结 , 魏静 , 等 . 某直升机传动系统旋翼轴扭振计算及优化设计 [J]. 机械传动 , 2022 , 46 ( 1 ): 80 - 86 .
NI De , ZHONG Tuanjie , WEI Jing , et al . Calculation and optimal design of rotor shaft torsional vibration of a helicopter transmission system [J]. Journal of Mechanical Transmission , 2022 , 46 ( 1 ): 80 - 86 .
张世飞 , 陈鹏 , 吴文敏 , 等 . 共轴双旋翼高速直升机主减轮系功率流向分析 [J]. 机械传动 , 2018 , 42 ( 5 ): 26 - 30 .
ZHANG Shifei , CHEN Peng , WU Wenmin , et al . Power flow analysis of the main reducing gear of coaxial counter-rotating high-speed helicopter [J]. Journal of Mechanical Transmission , 2018 , 42 ( 5 ): 26 - 30 .
YANG S . Adaptive bounding-based dynamic inversion control of a coaxial compound helicopter [J]. IEEE Transactions on Aerospace and Electronic Systems , 2023 , 59 ( 6 ): 9451 - 9462 .
赵昌盛 , KARIMIAN A , 刘宇 . 实验探究共轴反转旋翼直径不匹配对其气动力和气动噪声的影响 [C]// 第十三届全国流体力学学术会议摘要集(上) . 哈尔滨 , 2024 : 363 .
ZHAO Changsheng , KARIMIAN A , LIU Yu . Experimental investigation on the effects of diameter mismatch of coaxial counter-rotating rotors on aerodynamic forces and noise [C]// Proceedings of the 13th National Conference on Fluid Mechanics (Part I) . Harbin , 2024 : 363 .
李超逸 , 谭武中 , 林晓婷 . 倾转旋翼机传动系统构型技术特点和难点 [J]. 科技与创新 , 2025 ( 6 ): 124 - 127 .
LI Chaoyi , TAN Wuzhong , LIN Xiaoting . Technical characteristics and difficulties of tilting rotorcraft transmission system configuration [J]. Science and Technology & Innovation , 2025 ( 6 ): 124 - 127 .
CONNER D A , MARCOLINI M A , EDWARDS B D , et al . XV-15 Tiltrotor Low Noise Terminal Area Operations [C]// American Helicopter Society 53rd Annual Forum . Virginia Beach,VA : American Helicopter Society,April 29 – May 1 , 1997 : 1 - 10 .
DROANDI G , GIBERTINI G , GRASSI D , et al . Proprotor–wing aerodynamic interaction in the first stages of conversion from helicopter to aeroplane mode [J]. Aerospace Science and Technology , 2016 , 58 : 116 - 133 .
FEIL R , HAJEK M , RAULEDER J . Vibratory load predictions of a high-advance-ratio coaxial rotor system validated by wind tunnel tests [J]. Journal of Fluids and Structures , 2020 , 92 : 102764 .
MARANO A D , POLITO T , GUIDA M , et al . Tiltrotor acoustic data acquisition and analysis [J]. Aerotecnica Missili & Spazio , 2021 , 100 ( 2 ): 111 - 122 .
HWANG U J , PARK J S , LEE M K . Performance,vibration,load,and whirl flutter stability analyses of tiltrotors with swept-back blades [J]. International Journal of Aeronautical and Space Sciences ,(Early Access),Sep 2024 : 1 - 17 . https://doi.org/10.1007/s42405-024-00815-4 https://doi.org/10.1007/s42405-024-00815-4
NIXON M W , KVATERNIK R G , SETTLE T B . Higher harmonic control for tiltrotor vibration reduction [C]// 53rd Annual Forum of the American Helicopter Society . Virginia Beach,VA : American Helicopter Society , 1997 : 1 - 14 .
NASA , IVANCO T , LABORATORY U A R , et al . Experimental testing of advanced generalized predictive control for stability augmentation and vibration reduction of tiltrotor aircraft [C]// Proceedings of the Vertical Flight Society 79th Annual Forum , 2023 : 1 - 21 .
DOUSIS D A . V-22 tiltrotor aircraft vibration monitoring from design to field operations [C]// Proceedings , IEEE Aerospace Conference , 2003 : 6 .
胡东根 . 100公斤级倾转旋翼机传动系统设计及关键动态行为分析 [D]. 南京 : 南京航空航天大学 , 2021 : 35 - 80 .
HU Donggen . Design and key dynamic behavior analysis of transmission system of 100kg tiltrotor [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2021 : 35 - 80 .
李蛟龙 . 变直径倾转旋翼振动载荷分析 [D]. 南京 : 南京航空航天大学 , 2023 : 19 - 37 .
LI Jiaolong . Vibration load analysis of tilting rotor with variable diameter [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2023 : 18 - 37 .
方喜德 . 带嵌入式阻尼器的倾转旋翼机气动弹性分析 [D]. 南京 : 南京航空航天大学 , 2022 : 18 - 74 .
FANG Xide . Aeroelastic analysis of tiltrotor with embedded damper [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2022 : 18 - 74 .
邓旭东 , 郭俊贤 , 陈国军 . 倾转旋翼动载荷高阶谐波主动控制 [J]. 动力学与控制学报 , 2024 , 22 ( 8 ): 75 - 82 .
DENG Xudong , GUO Junxian , CHEN Guojun . Tiltrotor vibration load reduction based on higher harmonic control [J]. Journal of Dynamics and Control , 2024 , 22 ( 8 ): 75 - 82 .
马锦超 , 陆洋 , 王亮权 , 等 . 基于高阶谐波控制的倾转旋翼近场气动噪声主动控制试验 [J]. 航空学报 , 2024 , 45 ( 9 ): 528602 .
MA Jinchao , LU Yang , WANG Liangquan , et al . Active control test of tiltrotor near-field aeroacoustics based on higher harmonic control [J]. Acta Aeronautica et Astronautica Sinica , 2024 , 45 ( 9 ): 528602 .
郭家舜 , 王三民 , 刘海霞 . 某新型直升机传动系统弯-扭耦合振动特性研究 [J]. 振动与冲击 , 2009 , 28 ( 10 ): 132 - 136 .
GUO Jiashun , WANG Sanmin , LIU Haixia . Lateral-torsional coupled vibration characteristics of transmission of a new type helicopter [J]. Journal of Vibration and Shock , 2009 , 28 ( 10 ): 132 - 136 .
王成 , 李政民卿 , 盛伟 , 等 . 倾转旋翼机齿轮-丝杠作动器动力学建模及响应分析 [J]. 机械传动 , 2024 , 48 ( 11 ): 8 - 15 .
WANG Cheng , LI Zhengminqing , SHENG Wei , et al . Dynamics modeling and response analysis of gear-screw actuators of tiltrotor aircrafts [J]. Journal of Mechanical Transmission , 2024 , 48 ( 11 ): 8 - 15 .
缪君 , 王三民 , 宁嵩 . 倾转旋翼机传动系统多状态响应特性研究 [J]. 航空动力学报 , 2008 , 23 ( 8 ): 1427 - 1431 .
MIAO Jun , WANG Sanmin , NING Song . Dynamic response analysis of the transmission of tilt-rotor in different modes [J]. Journal of Aerospace Power , 2008 , 23 ( 8 ): 1427 - 1431 .
朱源 . 倾转旋翼飞机过渡模式动力学建模与控制研究 [D]. 南京 : 南京航空航天大学 , 2005 : 24 - 76 .
ZHU Yuan . A mathematical model of tilt-rotor flight dynamics and investigation of flight control in transition mode [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2005 : 24 - 76 .
崔超 . 基于机翼控制的倾转旋翼机回转颤振主动抑制研究 [D]. 南京 : 南京航空航天大学 , 2019 : 23 - 71 .
CUI Chao . Active suppression on whirl flutter of tiltrotor aircraft by wing controlled [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2019 : 23 - 71 .
WANG C , TAN W Q , SUN L G , et al . Flying qualities based time-varying stability augmentation system design for tiltrotor conversion control [J]. Chinese Journal of Aeronautics , 2024 , 37 ( 11 ): 366 - 385 .
SCHEIDLER J J , ASNANI V M , TALLERICO T F . NASA’s magnetic gearing research for electrified aircraft propulsion [C]// 2018 AIAA/IEEE Electric Aircraft Technologies Symposium (EATS) , 2018 : 1 - 12 .
CENTER N G R , SCHEIDLER J , CAMERON Z , et al . Dynamic testing of a high-specific-torque concentric magnetic gear [C]// Proceedings of the Vertical Flight Society 75th Annual Forum , 2019 : 1 - 7 .
WONG H Y , BANINAJAR H , DECHANT B , et al . Design and experimental testing of a magnetic gear for an electric aircraft drivetrain [J]. IEEE Transactions on Industry Applications , 2023 , 59 ( 4 ): 3934 - 3944 .
ASNANI V , SCHEIDLER J , TALLERICO T . Magnetic gearing research at NASA [C]// the AHS International 74th Annual Forum & Technology Display,Phoenix,Arizona, USA , May 14 - 17 , 2018 : 1 - 14 .
TALLERICO T , CAMERON Z A , SCHEIDLER J J . Design of a magnetic gear for NASA’s vertical lift quadrotor concept vehicle [C]// AIAA Propulsion and Energy 2019 Forum , 2019 : 4477 .
PRASLICKA B , KNIGHT D F , STEFANELLI T L , et al . Design and analysis of an axial flux coaxial magnetic gear with balanced axial forces for precision aerospace actuation application [C]// 2022 IEEE Energy Conversion Congress and Exposition (ECCE) , 2022 : 1 - 8 .
NGUYEN M D , JUNG W S , HOANG D T , et al . Fast analysis and optimization of a magnetic gear based on subdomain modeling [J]. Mathematics , 2024 , 12 ( 18 ): 2922 .
PRASLICKA B , GARDNER M C , JOHNSON M , et al . Review and analysis of coaxial magnetic gear pole pair count selection effects [J]. IEEE Journal of Emerging and Selected Topics in Power Electronics , 2022 , 10 ( 2 ): 1813 - 1822 .
WONG H Y , BANINAJAR H , DECHANT B W , et al . Experimentally testing a halbach rotor coaxial magnetic gear with 279 nm/L torque density [J]. IEEE Transactions on Energy Conversion , 2023 , 38 ( 1 ): 507 - 518 .
李福伟 . 磁性齿轮的理论研究及其应用 [J]. 林业机械与木工设备 , 2010 , 38 ( 8 ): 22 - 24 .
LI Fuwei . Theoretical study and application of magnetic gears [J]. Forestry Machinery & Woodworking Equipment , 2010 , 38 ( 8 ): 22 - 24 .
JING L B , HUANG Z X , CHEN J L , et al . Design,analysis,and realization of a hybrid-excited magnetic gear during overload [J]. IEEE Transactions on Industry Applications , 2020 , 56 ( 5 ): 4812 - 4819 .
JING L B , GONG J , CHEN J L , et al . A novel coaxial magnetic gear with unequal halbach arrays and non-uniform air gap [J]. IEEE Transactions on Applied Superconductivity , 2020 , 30 ( 4 ): 5000105 .
LI X L , LIU S W , WANG Q S , et al . Performance investigation and experimental testing of a stator-PM-excitation axial-flux magnetic gear [J]. IEEE Transactions on Transportation Electrification , 2023 , 9 ( 2 ): 2593 - 2605 .
JACKSON K M . Evaluation testing of ceramic hybrid bearings for helicopter hanger bearing applications [J]. Journal of the American Helicopter Society , 2009 , 54 ( 3 ): 32002 - 3200210 .
张珂 , 张立奇 , 王展 , 等 . 考虑滚动体滑移的全陶瓷角接触球轴承非线性动态特性分析 [J]. 振动与冲击 , 2024 , 43 ( 5 ): 131 - 138 .
ZHANG Ke , ZHANG Liqi , WANG Zhan , et al . Nonlinear dynamic characteristics analysis of full ceramic angular contact ball bearing considering ball slip [J]. Journal of Vibration and Shock , 2024 , 43 ( 5 ): 131 - 138 .
KUMAR K , KIM M J , PARK Y J , et al . Twofold increase in Weibull modulus of hot-pressed Si 3 N 4 ceramic by modified pressing profile [J]. Materials Today Communications , 2022 , 32 : 103979 .
LEE S M , KIM H N , KO J W , et al . Experimental study on ELID grinding of silicon nitride ceramics for G5 class bearing balls [J]. Applied Sciences , 2023 , 13 ( 19 ): 10584 .
PESSOLANO FILOS I , SESANA R , DI BIASE M , et al . New abrasive coatings:abraded volume measurements in ceramic ball production [J]. Journal of Manufacturing and Materials Processing , 2021 , 5 ( 3 ): 81 .
NAZIR M H , KHAN Z A , SAEED A . Experimental analysis and modelling of c-crack propagation in silicon nitride ball bearing element under rolling contact fatigue [J]. Tribology International , 2018 , 126 : 386 - 401 .
ZOLOTAREVSKIY V , KADIN Y , VIEILLARD C , et al . Modelling the criticality of silicon nitride surface imperfections under rolling and sliding contact [J]. Tribology International , 2020 , 148 : 106317 .
尹美 , 陈兴明 , 易长乐 . 陶瓷滚动体轴承在直升机传动系统中的应用研究 [J]. 航空动力 , 2018 ( 3 ): 72 - 74 .
YIN Mei , CHEN Xingming , YI Changle . The application of ceramic rolling element bearings in helicopter transmission system [J]. Aerospace Power , 2018 ( 3 ): 72 - 74 .
姚灿 . 陶瓷滚动体轴承在直升机传动系统中的应用 [J]. 直升机技术 , 2022 ( 4 ): 70 - 72 .
YAO Can . Application of ceramic rolling element bearings in helicopter transmission [J]. Helicopter Technique , 2022 ( 4 ): 70 - 72 .
张亚光 . 髙性能氮化硅陶瓷粉体研究 [D]. 杭州 : 浙江大学 , 2015 : 25 - 54 .
ZHANG Yaguang . Study on high-performance silicon nitride ceramic powder [D]. Hangzhou : Zhejiang University , 2015 : 25 - 54 .
CHEN X , WANG C Y , JIANG J Y , et al . Effect of picosecond laser texturing on the friction behavior of silicon carbide in hybrid ceramic bearings under dry and water lubrication [J]. Ceramics International , 2023 , 49 ( 18 ): 29857 - 29869 .
WANG P F , LI S H , WU Y H , et al . Research on calculation of allowable radial load of silicon nitride full ceramic ball bearing [J]. Journal of Mechanical Science and Technology , 2024 , 38 ( 12 ): 6757 - 6767 .
LI T , SHI H T , BAI X T , et al . Early performance degradation of ceramic bearings by a twin-driven model [J]. Mechanical Systems and Signal Processing , 2023 , 204 : 110826 .
文湘隆 , 何珍钟 , 臧猛 , 等 . 基于黏弹性材料的高阻尼复合材料传动轴减振性能研究 [J]. 复合材料科学与工程 , 2024 ( 6 ): 87 - 94 .
WEN Xianglong , HE Zhenzhong , ZANG Meng , et al . Research on vibration damping performance of high-damping composite drive shaft based on viscoelastic material [J]. Composites Science and Engineering , 2024 ( 6 ): 87 - 94 .
PRASAD A S , RAMAKRISHNA S , MADHAVI M . Experimental investigations on static and dynamic parameters of steel and composite propeller shafts with an integrated metallic joints [J]. Materials Today:Proceedings , 2018 , 5 ( 13 ): 26925 - 26933 .
JARRETT W , JEFFS S P , KORKEES F , et al . The opportunities and challenges of hybrid composite driveshafts and their couplings in the aerospace industry:a review [J]. Composite Structures , 2023 , 320 : 117203 .
GEBREHIWET L , ABATE E , NEGUSSIE Y , et al . Abeselom E. Application of composite materials in aerospace & automotive industry:Review [J]. International Journal of Advances in Engineering and Management , 2023 , 5 ( 3 ): 697 - 723 .
王帥 , 梁福東 , 魯雄 . 复合材料在直升机传动系统的应用与发展趋势 [J]. 航空动力 , 2019 ( 5 ): 22 - 24 .
WANG Shuai , LIANG Fudong , LU Xiong . Application and development trend of composite materials in helicopter drive system [J]. Aerospace Power , 2019 ( 5 ): 22 - 24 .
HENRY T C , MILLS B T . Optimized design for projectile impact survivability of a carbon fiber composite drive shaft [J]. Composite Structures , 2019 , 207 : 438 - 445 .
BILALIS E P , KERAMIDIS M S , TSOUVALIS N G . Structural design optimization of composite materials drive shafts [J]. Marine Structures , 2022 , 84 : 103194 .
李华雷 , 杨斌 , 李云龙 , 等 . 基于恒应变方法的碳纳米管/聚酰亚胺复合材料的粗粒化力场开发 [J]. 材料科学与工程学报 , 2023 , 41 ( 5 ): 791 - 798 .
LI Hualei , YANG Bin , LI Yunlong , et al . Coarse-grained field parameters calibration of CNT/PI composites based on constant strain method [J]. Journal of Materials Science and Engineering , 2023 , 41 ( 5 ): 791 - 798 .
SUN Z Y , XIAO J , YU X D , et al . Vibration characteristics of carbon-fiber reinforced composite drive shafts fabricated using filament winding technology [J]. Composite Structures , 2020 , 241 : 111725 .
张志龙 , 孙炫琪 , 郑青春 , 等 . 直升机传动系统复合材料机匣关键技术 [J]. 航空动力 , 2019 ( 4 ): 24 - 27 .
ZHANG Zhilong , SUN Xuanqi , ZHENG Qingchun , et al . The key technology for composite material of helicoper transmission housing [J]. Aerospace Power , 2019 ( 4 ): 24 - 27 .
DING G P , LU Z Y , DAI Z L . Vibration characteristics analysis and experimental study of carbon-fiber reinforced plastic-metal hybrid drive shaft [J]. Science of Advanced Materials , 2020 , 12 ( 10 ): 1457 - 1464 .
FAN B , WANG Z M , YONG X . Modelling and dynamical analysis of rotating variable-stiffness composite laminated revolving shell with elastic constraints using complete-gradient ANCF [J]. Composite Structures , 2023 , 304 : 116303 .
ZHANG H L , LI S K , WU Y R , et al . A multiscale reliability-based design optimization method for carbon-fiber-reinforced composite drive shafts [J]. Computer Modeling in Engineering & Sciences , 2024 , 140 ( 2 ): 1975 - 1996 .
杨显昆 , 谢俊岭 , 万振华 , 等 . 直升机传动系统复合材料尾传动轴铆接承载能力分析 [J]. 机械强度 , 2019 , 41 ( 2 ): 488 - 492 .
YANG Xiankun , XIE Junling , WAN Zhenhua , et al . Analysis of riveting carrying capacity for composite tail shaft of helicopter transmission system [J]. Journal of Mechanical Strength , 2019 , 41 ( 2 ): 488 - 492 .
FARMAN J . Electric tail rotor drive for the more-electric helicopter:a feasibility study [D]. Bristol,South West England,UK : University of Bristol , 2013 : 1 - 6 .
FABRI G , PARASILITI F , TURSINI M , et al . PM brushless motor for helicopters electric tail rotor drive system [C]// 2017 IEEE International Electric Machines and Drives Conference (IEMDC) , 2017 : 1 - 7 .
圈内新闻 . 贝尔研发纯电动直升机尾翼技术以更加安全的分布式电动小螺旋桨取代传统尾部大螺旋桨 [EB/OL]. 通航圈 , 2020-03-11 .
News within the circle . Bell develops pure electric helicopter tail fin technology to replace traditional tail large propellers with safer distributed electric small propellers [EB/OL]. Navigation Circle , 2020-03-11 .
建志旭 , 唐兴中 , 陈国军 , 等 . 直升机电动尾桨技术发展与展望 [J]. 直升机技术 , 2021 ( 3 ): 58 - 64 .
JIAN Zhixu , TANG Xingzhong , CHEN Guojun , et al . Development and prospect of helicopter electric tail rotor technology [J]. Helicopter Technique , 2021 ( 3 ): 58 - 64 .
VILLANI M , PARASILITI F , TURSINI M , et al . PM brushless motors comparison for a Fenestron®type helicopter tail rotor [C]// 2016 International Symposium on Power Electronics,Electrical Drives,Automation and Motion (SPEEDAM) , 2016 : 22 - 27 .
VILLANI M , COLLAZZO F P , TURSINI M , et al . PM brushless motor design for helicopter tail rotor [C]// 2016 XXII International Conference on Electrical Machines (ICEM) , 2016 : 2669 - 2675 .
ZHANG Y W , JIANG C , WANG Y J , et al . Design and application of an Electric Tail Rotor Drive Control (ETRDC) for helicopters with performance tests [J]. Chinese Journal of Aeronautics , 2018 , 31 ( 9 ): 1894 - 1901 .
王洋 , 索双富 , 杨义勇 , 等 . 一种直升机电动尾桨驱动装置 : CN108750102A [P]. 2018-11-06 .
WANG Y , SUO S F , YANG Y Y , et al . Helicopter electric tail rotor driving device : CN108750102A [P]. 2018-11-06 .
张李奇 . 全电直升机用永磁同步电机低速大转矩控制研究 [D]. 南京 : 南京航空航天大学 , 2019 : 1 - 4 .
ZHANG Liqi . Research on low speed-high torque control of permanent magnet synchronous motor for all electric helicopter [D]. Nanjing : Nanjing University of Aeronautics and Astronautics , 2019 : 1 - 4 .
MISRA A . Energy conversion and storage requirements for hybrid electric aircraft [EB/OL]. ( 2016-1-27 ).
CHRÉTIEN P . The quest for the world’s first electric manned helicopter flight:from concept to prototype in 180 days [J]. Vertiflite , 2012 , 58 ( 2 ): 38 - 42 .
朱炳杰 , 杨希祥 , 宗建安 , 等 . 分布式混合电推进飞行器技术 [J]. 航空学报 , 2022 , 43 ( 7 ): 025556 .
ZHU Bingjie , YANG Xixiang , ZONG Jian’an , et al . Review of distributed hybrid electric propulsion aircraft technology [J]. Acta Aeronautica et Astronautica Sinica , 2022 , 43 ( 7 ): 025556 .
JANOTTA F , PEINE L , HOGREVE J . Public opinions on urban air mobility:the significance of contributing to the common good [J] Katholische Universität Eichstätt-Ingolstadt , 2021 : 1 - 8 . https://doi.org/10.31219/osf.io/5m924 https://doi.org/10.31219/osf.io/5m924
乔翔 . 国产五座电动飞机即将亮相上交会 [N]. 中国证券报 , 2023-06-14 (A 07 ): 1 - 2 .
QIAO Xiang . China's five-seat electric aircraft to make debut at CIIE [N]. China Securities Journal , 2023-06-14 (A 07 ): 1 - 2 .
潘慧 . 小鹏汇天:自主研发 打造最安全的智能电动飞行汽车 [J]. 广东科技 , 2024 , 33 ( 3 ): 30 - 33 .
PAN Hui . Tucki Huitian:independent research and development to build the safest intelligent electric flying car [J]. Guangdong Science & Technology , 2024 , 33 ( 3 ): 30 - 33 .
聂资 , 陈铭 . 电动直升机飞行性能计算和分析 [J]. 北京航空航天大学学报 , 2012 , 38 ( 9 ): 1139 - 1143 .
NIE Zi , CHEN Ming . Calculation and analysis of electric-powered helicopter flight performance [J]. Journal of Beijing University of Aeronautics and Astronautics , 2012 , 38 ( 9 ): 1139 - 1143 .
赵洪 , 李建波 , 刘铖 . 电动直升机概念设计与分析 [J]. 航空学报 , 2017 , 38 ( 7 ): 520866 .
ZHAO Hong , LI Jianbo , LIU Cheng . Conceptual design and analysis of electric helicopters [J]. Acta Aeronautica et Astronautica Sinica , 2017 , 38 ( 7 ): 520866 .
何振亚 , 唐兴中 . 电动直升机关键性能指标及影响因素研究 [J]. 航空科学技术 , 2023 , 34 ( 3 ): 16 - 24 .
HE Zhenya , TANG Xingzhong . Study on key performance indexes and influencing factors of electric helicopter [J]. Aeronautical Science & Technology , 2023 , 34 ( 3 ): 16 - 24 .
0
浏览量
3
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621