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工程设计学报  2016, Vol. 23 Issue (5): 468-480    DOI: 10.3785/j.issn.1006-754X.2016.05.010
建模、分析、优化和决策     
曲柄群驱动机构刚柔耦合的动平衡研究
吴垚, 曹巨江, 刘言松, 燕卫亮
陕西科技大学机电工程学院, 陕西 西安 710021
Research of the rigid-flexible coupling dynamic balancing on crank-group driving mechanism
WU Yao, CAO Ju-jiang, LIU Yan-song, YAN Wei-liang
College of Mechanical and Electrical Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China
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摘要:

针对曲柄群驱动机构运转过程存在较大振动和噪音的问题,根据平面连杆机构动平衡理论中质量矩替代法和动量矩替代法推导出曲柄群驱动机构的动平衡条件.利用ADAMS软件建立刚性体六曲柄群驱动机构的动力学模型,并对比分析模型配重前后各曲柄固定转动副处的受载曲线,基于刚性体虚拟样机模型仿真结果得到机构刚柔耦合虚拟样机动平衡模型.该刚柔耦合模型仿真结果说明六曲柄群驱动机构摆动力和摆动力矩均得到了较好的平衡,揭示了只靠施加配重质量的曲柄群驱动机构并不能实现理想的动平衡效果.这种刚柔耦合的动平衡方法为进一步研究曲柄群驱动机构的动力学特性提供了新的思路.

关键词: 曲柄群驱动机构动平衡条件部分柔性连杆桁架刚柔耦合模型ADAMS软件    
Abstract:

Aiming at the problems of serious vibration and noise during the operation of the crank-group driving mechanism, the mass moment substitution method and the momentum moment substitution method in the dynamic balance theory of the planar linkage mechanism were used to derive the dynamic balancing condition of crank-group driving mechanism. Then ADAMS software package was utilized to establish the dynamic models of rigid six crank-group both before and after adding counterweight and the loading curve of crank's fixed rotate pair of each model was comparatively analyzed. Based on the former simulation results of rigid virtual prototype model, the rigid-flexible coupling virtual prototype model of mechanism was obtained. The simulation results of rigid-flexible coupling dynamic balancing model showed that the unbalanced force and moment of six crank-group mechanism were well balanced. Therefore, the desired dynamic balancing effect can not be achieved by merely imposing counterweight mass so that the application of rigid-flexible coupling dynamic balancing method provide a new approach for the research of dynamic characteristics of crank-group driving mechanism.

Key words: crank-group driving mechanism    dynamic balance condition    partially flexible linkage truss    rigid-flexible coupling model    ADAMS software
收稿日期: 2016-04-08 出版日期: 2016-10-28
CLC:  TH113  
基金资助:

国家自然科学基金资助项目(51175313).

通讯作者: 曹巨江(1955-),男,陕西户县人,教授,博士生导师,从事机械工程、凸轮机构及先进制造技术等研究,E-mail:1787626716@qq.com.http://orcid.org//0000-0002-0264-0867     E-mail: 1787626716@qq.com
作者简介: 吴垚(1989-),男,山东菏泽人,硕士,从事曲柄群驱动机构动力学实验研究,E-mail:1696199213@qq.com.
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引用本文:

吴垚, 曹巨江, 刘言松, 燕卫亮. 曲柄群驱动机构刚柔耦合的动平衡研究[J]. 工程设计学报, 2016, 23(5): 468-480.

WU Yao, CAO Ju-jiang, LIU Yan-song, YAN Wei-liang. Research of the rigid-flexible coupling dynamic balancing on crank-group driving mechanism. Chinese Journal of Engineering Design, 2016, 23(5): 468-480.

链接本文:

https://www.zjujournals.com/gcsjxb/CN/10.3785/j.issn.1006-754X.2016.05.010        https://www.zjujournals.com/gcsjxb/CN/Y2016/V23/I5/468

[1] 汪玉琪,曹巨江.曲柄群驱动机构的运动特点研究[J].机械传动,2013,37(10): 79-81. WANG Yu-qi,CAO Ju-jiang.Study on the motion feature of crank-group driving mechanism[J].Journal of Mechanical Transmission,2013,37(10): 79-81.
[2] 焦楠.曲柄群驱动装置虚拟样机研究[D].西安:陕西科技大学机电工程学院,2014: 1-4. JIAO Nan.Virtual prototyping of crank-group driving device[D].Xi'an: Shanxi University of Science and Technology, College of Mechanical and Electrical Engineering, 2014: 1-4.
[3] 任升,曹巨江,刘言松,等.曲柄群驱动机构单元化平衡[J].轻工机械,2015,33(1): 8-10. REN Sheng,CAO Ju-jiang,LIU Yan-song,et al.Inertia force balance of crank-group driving mechanism based on crank unit[J].Journal of Light Industrial Machinery,2015,33(1): 8-10.
[4] 洪光辉.框架传动机构集成优化动力平衡研究[D].长沙:湖南大学机械与汽车工程学院,2006: 1-3. HONG Guang-hui.The research of integrated optimization dynamical balancing in framework transmission mechanism[D].Changsha: Hunan University, College of Mechanical and Automobile Engineering, 2006: 1-3.
[5] BERKOF R S,LOWEN G G.A new method for completely force balancing simple linkages[J].Journal of Engineering for Industry, 1969, 91(1):21-26.
[6] HINANSHU Chaudhary,SUBIR Kumar Saha.Balancing of four-bar linkages using maximum recursive dynamic algorithm[J].Mechanism and Machine Theory,2007,42(2): 216-232.
[7] HIMANSHU Chaudhary,SUBIR Kumar Saha.Balancing of shaking forces and shaking moments for planar mechanisms using the equimomental systems[J].Mechanism and Machine Theory,2008,43(3): 310-334.
[8] 黄真,石镇德.平衡机构摆动力矩的非园齿轮法[J].东北重型机械学院学报,1986(4): 40-45. HUANG Zhen,SHI Zhen-de.Non-circular gear method for balancing shaking moment of mechanism[J].Journal of Northeast Heavy Machinery College,1986(4): 40-45.
[9] 张会芳,沈惠平,杨廷力.机构摆动力完全平衡有限位置法及其应用[J].机械科学与技术,2009,28(3): 360-366. ZHANG Hui-fang,SHEN Hui-ping,YANG Ting-li.A finite place method for balancing the shaking force of mechanism and its application[J].Mechanical Science and Technology for Aerospace Engineering,2009,28(3): 360-366.
[10] 沈惠平,张会芳,丁少华,等.机构摆动力矩完全平衡的有限位置法[J].机械科学与技术,2011,30(6): 861-864. SHEN Hui-ping,ZHANG Hui-fang,DING Shao-hua,et al.A finite place method for solving the shaking moment of a mechanism[J].Mechanical Science and Technology for Aerospace Engineering, 2011,30(6): 861-864.
[11] 朱波儿,黎东升.曲拐传动及其在机加工中的应用[J].机电工程技术,2002,31(1): 44-45. ZHU Bo-er,LI Dong-sheng.Crankshaft transmission and its application in machining[J].Journal of Electromechanical Technology,2002,31(1): 44-45.
[12] 谢明金,刘子建,汪祥,等.卸载方式在高速框架传动机构中的应用研究[J].现代制造工程,2008(5): 99-102. XIE Ming-jin,LIU Zi-jian,WANG Xiang,et al.The application research of unloading methods in high-speed framework transmission mechanism[J].Journal of Modern Manufacturing Engineering,2008(5): 99-102.
[13] 杨敬涵,黄季灵.平面连杆机构震动力矩平衡的行星转子法[J].机械工程师,1988(4): 2-4. YANG Jing-han,HUANG Ji-ling.Planetary rotor method for balancing shaking moment of planar linkage mechanisms[J].Journal of Mechanical Engineer,1998(4): 2-4.
[14] 郭瑞琴,孔宪文.平面连杆机构摆动力完全平衡的质量矩替代法[J].机械传动,2000,24(1): 9-12. GUO Rui-qin,KONG Xian-wen.Mass moment substitution method for balancing shaking force of planar linkage mechanism[J].Journal of Mechanical Transmission,2000,24(1): 9-12.
[15] 孔宪文,杨廷力.全R副空间连杆机构摆动力和摆动力矩的完全平衡[J].机械科学与技术,1997(3): 442-447. KONG Xian-wen,YANG Ting-li.Complete balance of the swing force and the swing moment of spatial linkage mechanism with only R pairs[J].Mechanical Science and Technology for Aerospace Engineering,1997(3): 442-447.
[16] 童宝宏,桂长林,陈华,等.内燃机曲柄连杆机构的建模与仿真研究[J].计算机仿真,2007,24(12): 229-234. TONG Bao-hong,GUI Chang-lin,CHEN Hua,et al.Modeling and simulation of the crank-connecting rod mechanism in internal combustion engine[J].Journal of Computer Simulation,2007,24(12): 229-234.
[17] 姜峣,李铁民,王立平.过约束并联机构动力学建模方法[J].机械工程学报,2013,49(17): 123-129. JIANG Yao,LI Tie-min,WANG Li-ping.Research on the dynamic model of an over-constrained parallel mechanism[J].Journal of Mechanical Engineering,2013,49(17): 123-129.
[18] 刘剑钊,党建军,张进军.基于ADAMS的摆盘机构动力学仿真分析[J].机械设计与制造,2012(4): 76-78. LIU Jian-zhao,DANG Jian-jun,ZHANG Jin-jun.ADAMS-based dynamic simulation analysis for wobble-plate mechanism[J].Journal of Mechanical Design and Manufacturing,2012(4): 76-78.
[19] 吴艳荣,金国光,李东福.基于ADAMS的变胞机构动力学仿真[J].机械设计与制造,2007(5): 87-88. WU Yan-rong,JIN Guo-guang,LI Dong-fu.Dynamic simulation of metamorphic mechanism with ADAMS software[J].Machinery Design & Manufacture,2007(5): 87-88.
[20] 孙建锐.基于刚柔耦合模型的门座起重机动力学仿真研究[D].武汉:武汉理工大学物流工程学院,2010: 61-67. SUN Jian-rui.Crane based on rigid-flexible multiply model[D].Wuhan: Wuhan University of Technology,College of Logistics Engineering, 2010: 61-67.
[21] DYER S S,SHI Jian-jun.Robust optimal influence-coefficient control of multiple-plane active rotor balancing systems[J].Journal of Dynamic Systems (Measurement and Control),2002,124(1):41-46.

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