山东大学学报 (工学版) ›› 2018, Vol. 48 ›› Issue (4): 78-87.doi: 10.6040/j.issn.1672-3961.0.2017.373
马驰骋1,2,郭宗和1,刘灿昌1,代祥俊1,张希农2,毛伯永2
MA Chicheng1,2, GUO Zonghe1, LIU Canchang1, DAI Xiangjun1, ZHANG Xinong2, MAO Boyong2
摘要: 以变质量弹性梁结构为力学模型,利用模态叠加法推导系统的运动方程,分析质量变化引起的非结构阻尼对系统振动的影响,使用自适应Newmark法求解系统的振动响应。设计变质量-弹性梁结构动力学测试试验,通过控制液体的流入流出实现系统质量的变化。采用时频分析技术处理时变系统的非平稳响应信号,在时频域上更全面得到了系统的振动特性。数值仿真和试验结果一致,说明建模以及试验设计的有效性。研究表明:系统质量减小会引起一个非结构负阻尼,对系统的振动影响非常显著,在机械臂等高精度结构设计时,不能忽略该非结构阻尼对系统振动特性的影响。
中图分类号:
| [1] | 杨来伍,梅凤翔.变质量系统动力学[M].北京:北京理工大学出版社,1989. |
| [2] | 孙焕纯,宋亚新,张典仁.变质量变阻尼变刚度结构系统的动力响应[J].计算结构力学及其应用,1996,13(2):127-137. SUN Huanchun, SONG Yaxin, ZHANG Dianya. A method for analyzing the dynamic response of a structural system with variable mass damping and stiffness[J]. Computational Structural Mechanics and Applications, 1996, 13(2): 127-137. |
| [3] | 陈占清,缪协兴,荆武兴.变质量挠性体动力学普遍方程(1)[J].湘潭大学自然科学学报,2001,23(4):56-59. CHEN Zhanqing, MIAO Xiexing, JING Wuxing. Universal dynamic equations for flexiable body with variable mass(I)[J]. Natural Science Journal of Xiangtan University, 2001, 23(4): 56-59. |
| [4] | 缪协兴,陈占清,荆武兴.变质量挠性体动力学普遍方程(二)[J].哈尔滨工业大学学报,2001,33(6):736-739. MIAO Xiexing, CHEN Zhanqing, JING Wuxing. Universal dynamic equations for flexiable body with variable mass(II)[J]. Journal of Harbin Engineering University, 2001, 33(6): 736-739. |
| [5] | 张耀良,朱卫兵.变质量非完整系统Hamilton正则方程的积分因子和守恒定理[J].哈尔滨工程大学学报,2002, 23(4):118-121. ZHANG Yaoliang, ZHU Weibing. Integrating factors and conservation theorems for Hamilton's canonicals equations of motion of variable mass nonholonomic nonconservative dynamical systems[J]. Journal of Harbin Engineering University, 2002, 23(4):118-121. |
| [6] | 朱岩,王树林.一类变质量振动系统的近似求解[J].振动与冲击,2008,27(11):160-162,167,206. ZHU Yan, WANG Shulin. Analytical solution for vibration system with time varying mass[J]. Journal of vibration and shock, 2008, 27(11): 160-162,167,206. |
| [7] | KALYONCU M, BOTSALI F M. Vibration analysis of an elastic robot manipulator with prismatic joint and a time-varying end mass[J]. Arabian Journal for Science and Engineering, 2004, 29(1): 27-38. |
| [8] | NHLEKO S. Free vibration states of an oscillator with a linear time-varying mass[J]. Journal of Vibration and Acoustics, 2009, 131(5): 051011-1-8. |
| [9] | MACIEJEWSKI I, MEYER L, KRZYZYNSKI T. The vibration damping effectiveness of an active seat suspension system and its robustness to varying mass loading[J]. Journal of Sound and Vibration, 2010, 329(19): 3898-3914. |
| [10] | CVETICANIN L. Van der Pol oscillator with time variable parameters[J]. Acta Mechanica, 2013, 224(5): 945. |
| [11] | CVETICANIN L. Dynamics of bodies with time-variable mass[M]. Cham(ZG), Switzerland:Springer International Publishing, 2016. |
| [12] | RICHARDS J A. Analysis of periodically time-varying systems[M]. Springer-Verlag Berlin Heidelberg:Springer Science & Business Media, 2012. |
| [13] | VAN HORSSEN W T, PISCHANSKYY O V, DUBBELDAM J L A. On the forced vibrations of an oscillator with a periodically time-varying mass[J]. Journal of Sound and Vibration, 2010, 329(6): 721-732. |
| [14] | PISCHANSKYY O V, VAN HORSSEN W T. On the nonlinear dynamics of a single degree of freedom oscillator with a time-varying mass[J]. Journal of Sound and Vibration, 2012, 331(8): 1887-1897. |
| [15] | ABRAMIAN A K, VAN HORSSEN W T, VAKULENKO S A. Nonlinear vibrations of a beam with time-varying rigidity and mass[J]. Nonlinear Dynamics, 2013, 71(1-2): 291-312. |
| [16] | 王宇楠,邢誉峰.变质量梁的自适应Newmark法[J]. 北京航空航天大学学报, 2014, 40(6):829-833. WANG Yunan, XING Yufeng. Self-adaptive Newmark method of variable-mass beam dynamic system[J]. Journal of Beijing University of Aeronautics and Astronautics, 2014, 40(6): 829-833. |
| [17] | ZHAO Rui, YU Kaiping. Hamilton's law of variable mass system and time finite element formulations for time-varying structures based on the law[J]. International Journal for Numerical Methods in Engineering, 2014, 99(10): 711-736. |
| [18] | MAZENC F, MALISOFF M, NICULESCU S I. Reduction model approach for linear time-varying systems with delays[J]. IEEE Transactions on Automatic Control, 2014, 59(8): 2068-2082. |
| [19] | 杜妍辰,高雷,周燕瑜,等.变质量振动系统的求解与分析[J].上海理工大学学报,2015,37(5):462-466. DU Yanchen, GAO Lei, ZHOU Yanyu, et al. Solution and analysis of vibration system with variable mass[J]. Journal of University of Shanghai for Science and Technology. 2015, 37(5): 462-466. |
| [20] | 于开平.变质量航天器结构动响应分析[M]. 西安:中国力学大会,2013:119-119. |
| [21] | FLORES J, SOLOVEY G, GILL S. Variable mass oscillator[J]. American Journal of Physics, 2003, 71(7): 721-725. |
| [22] | 舒俊成.变质量SD振子动力学分析与试验研究[D].哈尔滨:哈尔滨工业大学,2016. SHU Juncheng. Dynamical analysis and experiment of variable mass SD oscillator[D]. Harbin: Harbin Institute of Technology, 2016. |
| [23] | BARTKOWIAK T, GRABSKI J K, KOŁODZIEJ J A. Numerical and experimental investigations of the dynamics of a variable mass pendulum[J]. Proceedings of the Institution of Mechanical Engineers:Part C: Journal of Mechanical Engineering Science, 2016, 230(12): 2124-2132. |
| [24] | 科恩L.时-频分析:理论与应用[M].白居宪,译.西安:西安交通大学出版社,1998. |
| [25] | 李小彭,姚红良,任朝晖,等.时频分析在质量慢变碰摩转子系统中的应用[J].机械制造,2005,43(10):20-22. LI Xiaopeng, YAO Hongliang, REN Chaohui, et al. Application of time frequency analysis for a slow-varying rotor system with rubbing fault[J]. Machinery, 2005, 43(10): 20-22. |
| [26] | 马驰骋,张希农,柳征勇,等.变质量贮箱类流固耦合系统的振动响应及时频特性分析[J].振动与冲击,2014,33(21):166-171. MA Chicheng, ZHANG Xinong, LIU Zhengyong, et al. Dynamic responses and time-frequency feature analysis for a fluid-structure coupling system with avariable mass tank[J]. Journal of Vibration and Shock, 2014, 33(21): 166-17. |
| [1] | 谢裕鹏,熊二刚,李思锋,刘丰玮,王尚. 预制节段拼装桥墩塑性铰性能[J]. 山东大学学报 (工学版), 2025, 55(6): 129-141. |
| [2] | 耿麒,李晓斌,黄雨枫,汪学斌,杨沐霖,郭惠川,章慧健. 基于小尺度滚刀直线切割试验的岩石强度预测[J]. 山东大学学报 (工学版), 2025, 55(3): 111-120. |
| [3] | 郑衍磊,徐龙伟,张汉玉,王桂梅,付涛. UHPC加固钢筋混凝土方形桥墩抗震性能参数分析[J]. 山东大学学报 (工学版), 2025, 55(3): 128-140. |
| [4] | 崔广芹, 张航, 朱巩硕, 张成志, 公衍德. 基于低pH一相注浆法的微生物固化土体试验研究[J]. 山东大学学报 (工学版), 2025, 55(1): 117-124. |
| [5] | 王鹏, 黄成, 赵国浩, 张峰. 混凝土单箱三室箱梁水化热温度场及应变场模型试验[J]. 山东大学学报 (工学版), 2024, 54(1): 109-122. |
| [6] | 江健宏,舒晓锐,刘志鲲,孙杰,荆树举,张宏博. 废旧轮胎碎片(TDA)复合填料中竖向锚定板承载特性[J]. 山东大学学报 (工学版), 2023, 53(6): 92-99. |
| [7] | 李尧,董星,陈厚先,郭张龙,杜旭超. 活动门试验中土体变形及破坏规律[J]. 山东大学学报 (工学版), 2023, 53(5): 92-102. |
| [8] | 曹卫东,任宪富,娄术荣,张同国,侯宗良,张吉哲. 纤维增强型桥面防水层优化设计与性能[J]. 山东大学学报 (工学版), 2023, 53(3): 96-103. |
| [9] | 李连祥,李红波,韩刚,郭龙德,赵仕磊. 济南非饱和土基坑支护设计[J]. 山东大学学报 (工学版), 2023, 53(3): 41-49. |
| [10] | 于洋,石南,高磊,赵国浩,张峰. 预应力混凝土空心板梁抗剪承载力分析[J]. 山东大学学报 (工学版), 2023, 53(3): 88-95. |
| [11] | 许英东,崔言继,朱志鑫,任晓倩,陈帅,张朋,付涛. 配置HTRB600E高强钢筋装配式圆形桥墩的抗震性能[J]. 山东大学学报 (工学版), 2023, 53(3): 104-112. |
| [12] | 李尧,李嘉评,韩宽. 单剪试验试样应力状态与破坏模式[J]. 山东大学学报 (工学版), 2022, 52(4): 201-209. |
| [13] | 付涛,朱志鑫,孟凌霄,孙中华,朱经纬. 中空夹层预制装配式桥墩的抗震性能[J]. 山东大学学报 (工学版), 2022, 52(4): 191-200. |
| [14] | 章清涛,刘晓威,高健,孙玉海,闫庆亮,刘源,王昊. 坡顶荷载作用下废旧轮胎条带加筋边坡承载特性[J]. 山东大学学报 (工学版), 2022, 52(3): 70-79. |
| [15] | 田利,张来仪,王彦明,刘俊才. 台风作用下建筑结构的研究进展[J]. 山东大学学报 (工学版), 2022, 52(1): 28-38. |
|