主持和参与的主要科研项目情况 [1]国家自然科学基金面上项目,热力耦合作用的高速电驱动系统硬齿面齿轮冷胶合机理与评价方法研究,52675197,2027/01-2030/12,50万元,在研,主持 [2]国家自然科学基金面上项目,精密行星机电执行器系统精度保持理论与实验研究,52375051,2024/01~2027/12,50万元,在研,参与 [3]企业委托开发项目,人形机器人一体化旋转关节模组开发,W2026JSKF0303,2026/05-2027/05,50万元,在研,主持 [4]企业委托开发项目,基于振动数据和AI大模型的齿轮故障诊断方法研发, W2025JSKF0305,2025/05-2027/04,50万元,在研,主持 [5]企业委托开发项目,转轮吸湿式除湿机关键技术开发,W2023JSKF0720,2023/09-2024/05,30万元,结题,主持 [6]企业委托开发项目,排水牵引器开发,W2023JSKF0400,2023/06-2024/05,30万元,在研,主持 [7]企业委托开发项目,齿轮和轴承故障诊断模拟试验台开发,W2022JSKF0619,2022//06-2024/05,15万元,在研,主持 [8]企业委托开发项目,食物循环机执行器开发, W2022JSKF1032,2022/10-2023/03,30万元,结题,主持 [9]安徽省重点研究与开发计划项目,机器人用机密减速器寿命评价关键技术及平台研发,202004h07020013,2020/01-2022/12,10万元,结题,主持 [10]安徽省自然科学基金,基于脂润滑条件下的金属-塑料微线段齿轮副接触机理及承载特性研究,1908085QE228,2019/07-2021/06,10万元,结题,支 发表论文情况(第一作者或通讯作者) [1]Xiong YS, GuoZX, Huang K, et al.Study on the Friction and Wear Characteristics of ADC12–POM Gear Pairs Considering Temperature[J].ASME Journal of Tribology, 2026,148(11): 111701. [2]Xiong YS, Zhang HY, Wang MY, et al. Research on the wear model of ADC12-POM gear pair based on Archard theory[J]. Industrial Lubrication and Tribology, 2025,77 (6), 1101-1110. [3]Zhu GD, Huang K,Xiong YS*,et al.An improved model for time-varying mesh stiffness of super-high-contact-ratio helical gear pair considering contact disparities on differently sliced fractal surfaces[J].Communications in Nonlinear Science and Numerical Simulation, 2025,146,108806. [4]Zhu GD, Huang K*,Xiong YS*, et al. Nonlinear dynamics modeling and analysis of spur gear pair with uncertain fractal backlash and assembly error based on interval theory. Nonlinear Dynamics, 2025, 113(23):32059-32090. [5]Huang K, Zhu GD,Xiong YS*, et al. Bifurcation and chaos analysis of super-high-contact-ratio gear pair in full speed range considering backlash and friction nonlinearity[J]. Nonlinear Dynamics, 2025, 113(9):9459-9483. [6]Xiong YS, WangMY, Huang K, et al. Research on friction and meshing efficiency of ADC12-POM gear pair considering off-line meshing. Tribology International, 2024, 200,110116. [7]Xiong YS, Yu DY, Huang K, et al. Research on the time-varying mesh stiffness and dynamic characteristics of steel–POM gear pair with off-line meshing. Nonlinear Dynamics, 2024,112 (8), 6015-6035. [8]Zhu GD, Huang K,Xiong YS*,et al. Computational model for fractal dimension of anisotropic gear surfaces based on improved structure function method[J].Surface Topography: Metrology and Properties, 2024, 12, 045011. [9]Han GZ, Huang K,Xiong YS*, et al. Fluid analysis of the cavitation of the microsegment gear pump operating at high-pressure condition. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2023: 09544089231223070. [10]Xiong YS, Wang QW, Huang K, et al. Study on Friction Characteristics of ADC12-POM Gear Pair[J]. Tribology Transactions,2023, 66(4): 771-785. [11]Cheng Z, Huang K,Xiong Y, et al. An improved model for dynamic characteristics analysis of high-contact-ratio spur gears considering localised tooth spall defect[J]. Engineering Failure Analysis, 2022, 140: 106600. [12]Cheng Z, Huang K,Xiong Y, et al. Effect of localised tooth spall defect on dynamic performance of a high-contact-ratio spur gear system[J]. Surface Topography: Metrology and Properties, 2022, 10(2): 025035. [13]桑萌,黄康,熊杨寿.基于机电耦合动力学的3K行星轮系裂纹故障电流信号研究[J].振动与冲击,2022,41(21):129-139. [14]熊杨寿,韩广志,黄康,等.考虑时变摩擦系数的微线段齿轮系统动态特性分析[J].机械工程学报,2021,57(19):113-127. [15]Xiong Y, Zhou Z, Huang K, et al. An improved fractal model for tangential contact damping of high contact ratio gear considering friction effect[J]. Chaos Solitons & Fractals, 2021, 153: 111510. 授权发明专利 [1]熊杨寿;俞东洋;黄康.一种塑料斜齿轮脱模装置:中国专利, ZL20231 03778381[P].2025-06-17(已转化) [2]熊杨寿;王铭宇;黄康;翟华.锂电池正负极拆解废料回收的精细分选装置及方法:中国专利, ZL202311247485X[P].2024-11-22 [3]熊杨寿;王铭宇;黄康;翟华.基于视觉识别的锂电池正负极废料回收分选装置:中国专利, ZL2023112489179[P].2024-11-22 [4]熊杨寿;周宗山;黄康;赵韩.一种具有限位功能的电梯导轨自动生产加工设备:中国专利, ZL2021105404228[P].2023-06-23 [5]熊杨寿;黄康;赵韩.一种防跌落爬墙机器人:中国专利, ZL2021105419596[P].2023-06-23 [6]熊杨寿;周宗山;黄康.一种基于铰杆-杠杆-铰杆三级力放大机构的手动冲孔器:中国专利, ZL 2020111684151[P].2023-06-20 [7]熊杨寿;周宗山;黄康;赵韩.一种电机转子内槽自动打磨装置:中国专利, ZL2021105419581[P].2022-11-29 [8]熊杨寿;周宗山;黄康;赵韩.一种基于机器视觉的农业采摘机器人:中国专利, ZL2021113009644[P].2022-11-29(已转化) [9]熊杨寿;周宗山;黄康;张乐然.一种电动葫芦行程限位装置:中国专利, ZL2021101636156[P].2022-11-25 [10]熊杨寿;张乐然;黄康;田阳.一种带传动提升装置控制系统:中国专利, ZL2020104268611[P].2022-06-10 [11]熊杨寿;周宗山;黄康;赵韩.一种行动不便患者护理设备:中国专利, ZL2021103084206[P].2022-04-12 [12]熊杨寿;张乐然;黄康;田阳.一种能用于不规则形状产品且具有自锁功能的夹具:中国专利, ZL2020104257157[P].2022-03-18 [13]熊杨寿;黄康;韩广志;王青松.一种适用于智能提升设备的翻转自平衡夹具:中国专利, ZL2020104310873[P]. 2021-10-01 [14]熊杨寿;张乐然;黄康;田阳;韩广志.一种适用于电动葫芦安全保护装置的控制方法:中国专利, ZL2019113549984[P]. 2021-01-01 [15]熊杨寿;黄康;王青松.一种适用于智能提升设备的按压机械式勾爪:中国专利, ZL2020104545794[P]. 2021-11-12 [16]熊杨寿;黄康;赵韩;邱明明;孙浩.一种同轴试验台:中国专利, ZL2019105926748 [P]. 2020-11-10(已转化) [17]熊杨寿;黄康;赵韩;许锋炜.一种智能助力机械手控制系统:中国专利, ZL 2019102601068[P].2020-12-29(已转化) [18]熊杨寿;黄康;翟华;许锋炜.一种搭扣:中国专利, ZL2018110819845[P]. 2019-11-19 [19]熊杨寿;黄康;翟华;严建文;许锋炜.一种振动器:中国专利, ZL2018104921850 [P]. 2019-07-16 [20]熊杨寿;黄康;翟华;许锋炜.一种振动筛:中国专利, ZL2018110972760[P]. 2019-12-13 参与国家标准: [1]中国标准,第15完成人;精密齿轮传动装置疲劳寿命试验方法, GB/T 407 29-2021,全国齿轮标准化技术委员会, 2021-10-11 |