徐红梅
1.发表科研论文
(1)Hongmei Xu, Hao Yang, Yujun Shang, Yinpei Zhang, Zhangfen Liu, Qichao Wang, Guozhong Zhang. Optimization of key position parameters for tractor steering wheel based on a driver’s arm muscle load analysis. International Journal of Agricultural and Biological Engineering, 2023,16(4):1-12.
(2)Wenjie Zhang, Hao Yang, Yalin Li, Yabing Zhao, Hongmei Xu. An optimization model of tractor clutch pedal design parameters based on lower limb biomechanical characteristics. International Journal of Industrial Ergonomics,https://doi.org/10.1016/j.ergon.2023.103519.
(3)徐红梅,杨浩,李亚林,张文杰,赵亚兵,吴擎. 基于改进YOLO-Pose的复杂环境下拖拉机驾驶员关键点检测, 农业工程学报,2023,39(16): 139-149.
(4)徐红梅,王启超,张文杰,杨浩,张国忠*.基于驾驶员生物力学特性的拖拉机座椅位置参数优化,农业工程学报, 2022,38(22):32- 40.
(5)徐红梅,徐正,杨浩,王启超,张国忠*.气力式再生稻促芽追肥机的设计与试验,农业工程学报,2022,38(14): 12-20.
(6)Qichao Wang, Yujun Shang, Zengzhi Qin, Hongmei Xu *, Wei Jiang, Hang Li, Guozhong Zhang. Comfort evaluation and position parameter optimization of the steering wheel in agricultural machinery based on a three-level evaluation index system. International Journal of Agricultural and Biological Engineering, 2022,15(2):214-222
(7)Effects of Backrest and Seat-pan inclination of Tractor Seat on Biomechanical Characteristics of Lumbar, Abdomen, Leg and Spine. Computer Methods in Biomechanics and Biomedical Engineering, https://doi.org/10.1080/10255842.2022.2062229.2022,04.11.
(8)Comfort evaluation and position optimization of the clutch pedal in agricultural machinery based on a multi-level evaluation system. Transactions of the ASABE, 2021,64(6): 1805-1816.
(9)An Investigation of the Effect of Hand‑Arm Posture and Grip Force on Vibration Transmission Rate of Human Hand‑Arm System, Iranian Journal of Science and Technology-Transactions of Mechanical Engineering,2022.1.27 . https://doi.org/10.1007/s40997-021-00481-x.
(10) Finite element modal analysis and harmonic response analysis of human arm grasping model. Computer Methods in Biomechanics and Biomedical Engineering,2020,23(14): 1082-1093.
(11)Quantitative analysis and evaluation of manipulation comfort of tractor gear-shifting based on combined methods. Human Factors and Ergonomics in Manufacturing and Service Industries, 2019,29(4): 285-292.
(12) An Experimental Study of the Influence of Hand-Arm Posture and Grip Force on the Mechanical Impedance of Hand-Arm System. Shock and Vibration,Volume 2021, Article ID 9967278, 11 pages. https://doi.org/10.1155/2021/9967278.
(13)Braking Efficiency and Stability of Chassis Braking System of Combine Harvester: The Theoretical Derivation and Virtual Prototype Simulation. Mathematical Problems in Engineering. https://doi.org/10.1155/2019/6713231.
(14)Design optimization of the driving shaft of a hammer feed grinder base on the response surface method, Applied Engineering in Agriculture,2019,35(4): 453-460, Applied Engineering in Agriculture,2019,35(4): 453-460.
(15)Research of the Influence of Road Excitation on Human Body Comfort under the Harvester Working Condition, Applied Engineering in Agriculture,2019,35(4): 495-502.
(16)Wrinkled-graphene enriched MoO3 nanobelts with increased conductivity and reduced stress for enhanced electrochemical performance, Phys. Chem. Chem. Phys. 2013,15, 17165-17170.
(17)Noise source identification of cereal combining harvester based on the acoustic array technique. Applied Engineering in Agriculture,2020,36(6): 879-890.
(18)Quantitative Analysis and Evaluation of Tractor Gear Shifting Comfort with Entropy-based Matter-element Model,Recent Advances in Computer Science and Communications,2021,14(6): 1760-1770.
(19)手扶插秧机手传振动评价及振动传递特性试验.华中农业大学学报,2020,39(01):31-40.
(20)基于声强测试的联合收获机噪声源识别与定位. 江苏大学学报(自然科学版),2020,41(06):677-684.
(21)锤片式饲料粉碎机架板的有限元分析及拓扑优化. 华中农业大学学报,2019,38(05):159-167.
(22)基于刚柔耦合虚拟样机模型的收获机振动舒适性仿真分析. 华中农业大学学报,2019,38(02):123-130.
(23)基于模态的联合收获机车身框架振动特性分析与结构优化.华中农业大学学报,2018,37(03):108-116.
(24)基于CATIA的拖拉机驾驶室人机系统舒适性分析与评价.江苏大学学报(自然科学版),2017,38(1):47-51.
(25)基于ADAMS的轮式拖拉机行驶平顺性研究.华中农业大学学报,2017,36(3):93-100.
(26)基于相关系数与光谱差异法的草莓光谱特征信息提取. 江苏大学学报(自然科学版),2017,38(3):295-301.
(27)基于S变换的内燃机加速过程进气噪声时频特性研究,内燃机工程,2008,29(02):71~75.
(28)基于EMD和HHT的内燃机噪声信号时频特性研究,内燃机工程,2008,29(06):60~64+69.
(29)基于S变换的内燃机噪声信号时频特性,江苏大学学报(自然科学版),2008,29(02):115~118.
(30)基于S变换的内燃机气缸盖振动特性研究,内燃机工程,2008,29(03):68~71+75.
(31)基于小波变换技术的内燃机燃烧噪声特征提取,农业机械学报,2008,39(03):167~170+174.
(32)基于独立成分小波分析的内燃机噪声源识别,内燃机工程,2007,28(06):61~65.
2.授权专利/软件著作权
(1)一种水稻穴播排种器,授权发明专利:ZL202211103413.3.
(2)一种再生稻收割机割台,授权发明专利:ZL202210901909.9.
(3)一种改进的双齿盘-齿板式核桃剥壳装置,授权发明专利:ZL201410188892.2.
(4)一种再生稻再生季促芽肥施肥设备,授权发明专利:ZL202111070500.9.
(5)再生稻再生季促芽肥施肥设备,授权实用新型专利:ZL202122208857.0.
(6)一种测量人体手臂系统振动传递特性的振动装置,授权实用新型专利:ZL202021856188.7.
(7)一种针对小型机械零件的非接触式拍照装置,授权实用新型专利:ZL 201922136796.4.
(8)一种农机装备驾驶室的操纵调节装置,授权实用新型专利:ZL201821947704.X.
(9)一种新型桶装水桶内壁清洗装置,授权实用新型专利:ZL201721709628.4.
(10)一种新型花生脱壳装置,授权实用新型专利:201220590027.7.
(11)一种改进的双齿盘-齿板式核桃剥壳装置,授权实用新型专利:ZL201420228967.0.
(12)基于单元分析的操纵舒适性评价系统,登记号:2017SR690704.
(13)汽车七自由度振动仿真与分析系统,登记号:2017SR739277.
(14)声强测试数据分析处理分析系统,登记号:2019SR0227397.