用户名: 密码: 验证码:
物料装载工况刮板输送机纵扭耦合振动分析
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Analysis of Longitudinal and Torsional Pendulum Coupling Vibration of Scraper Conveyor Under Material Loading Condition
  • 作者:刘治翔 ; 谢春雪 ; 毛君 ; 谢苗
  • 英文作者:LIU Zhixiang;XIE Chunxue;MAO Jun;XIE Miao;Research Institute of Technology and Equipment for the Exploitation and Utilization of Mineral Resources,Liaoning Technical University;
  • 关键词:刮板输送机 ; 扭摆振动 ; 纵向振动 ; 物料装载
  • 英文关键词:scraper conveyor;;torsional vibration;;longitudinal vibration;;material loading
  • 中文刊名:ZDCS
  • 英文刊名:Journal of Vibration,Measurement & Diagnosis
  • 机构:辽宁工程技术大学矿产资源开发利用技术及装备研究院;
  • 出版日期:2019-02-15
  • 出版单位:振动.测试与诊断
  • 年:2019
  • 期:v.39;No.189
  • 基金:国家自然科学基金资助项目(51774162)
  • 语种:中文;
  • 页:ZDCS201901023
  • 页数:7
  • CN:01
  • ISSN:32-1361/V
  • 分类号:153-158+233
摘要
为提高刮板输送运行可靠性,研究了刮板输送机纵向与扭摆耦合振动特性。基于Voigt模型和逐点张力法建立刮板链条体系的扭摆振动分析模型,研究货载激励作用下激励作用点前后方有无物料的刮板链条体系扭摆振动特性。以求解可靠性和精度为前提,研究物料装载工况的扭摆振动影响区域和衰减特性,确定沿线不同区段扭摆振动单元的刮板最大数量,构建扭摆振动缩略模型。建立刮板链条体系的纵向与扭摆耦合振动力学模型,研究货载激励作用下刮板链条体系纵向与扭摆振动特性。理论和实验研究表明:物料装载工况下,货载激励引起激励施加处最大值为119.5%的刮板速度波动和78.6%的张力波动;在货载激励单元区段内两根链条的张力差最大为8.6%,并且初始时刻无物料情况下,货载激励引起的扭摆振动更明显。
        In order to improve the operational reliability of scraper conveyer,the coupling vibration characteristics between longitudinal and torsional pendulum of scraper conveyor are studied.Based on Voigt model and point-to-point tension method,the torsional vibration analysis model of scraper chain system is established.The influence area and attenuation characteristic of torsion pendulum vibration under material loading condition are studied.Based on the premise of solving reliability and precision,the maximum number of scraper plates of torsion pendulum vibration units in different sections along the line is determined,and a torsional pendulum vibration abbreviated model is constructed.The dynamic model of longitudinal and torsional pendulum coupling vibration of scraper chain system is established to study the longitudinal and torsional vibration characteristics of scraper chain system under load excitation.Theoretical and experimental studies show that:The maximum fluctuation of the speed and the tension of the scraper are119.5%and 78.6%,respectively,in imposition of incentives caused by cargo incentive.The tension difference of two chains in the load excitation section is up to 8.6%,and torsion vibration caused by load excitation is more obvious under no material circumstances in the initial time.
引文
[1]Dolipski M,Remiorz E,Sobota P.Determination of dynamic loads of sprocket drum teeth and seats by means of amathematical model of the longwall conveyor[J].Archives of Mining Sciences,2012,57(4):1101-1119.
    [2]Zhang Qiang,Wang Haijian,Guo Tong.Fatigue damage of V-lock chain ring under radom load[J].Polish Maritime Research,2016,23(S1):4-9.
    [3]Sobota P.Determination of the friction work of a link chain interworking with a sprocket drum[J].Archives of Mining Sciences,2013,58(3):805-822.
    [4]Dolipski M,Remiorz E,Sobota P.Dynamics of nonuniformity loads of afc drives[J].Archives of Mining Sciences,2014,59(1):155-168.
    [5]李惟慷,毛君,李建刚,等.刮板输送机刮板间距的优化[J].辽宁工程技术大学学报,2008,27(6):912-914.Li Weikang,Mao Jun,Li Jiangang,et al.Optimization for scraper spacing of scraper conveyor[J].Journal of Liaoning Technical University,2008,27(6):912-914.(in Chinese)
    [6]徐广明,杨伟红.刮板输送机运行阻力计算分析[J].煤矿机械,2009,30(1):3-5.Xu Guangming,Yang Weihong.Analysis of scraper conveyor running resistance[J].Coal Mine Machinery,2009,30(1):3-5.(in Chinese)
    [7]韩德炯,李冬浩,宋伟刚.刮板输送机动力学问题的差分数值解法与计算机仿真[J].矿山机械,2009,37(11):22-26.Han Dejiong,Li Donghao,Song Weigang.Differential numerical solution and computer simulation of dynamic problems of the scraper conveyor[J].Mining Machinery,2009,37(11):22-26.(in Chinese)
    [8]Zhang Xing,Li Wei,Zhu Zhencai,et al.Tension monitoring for the ring chain transmission system using an observer-based tension distribution estimation method[J].Advances in Mechanical Engineering,2017,9(9):1-16.
    [9]马树焕.刮板输送机动态分析中货载量的处理[J].煤矿机械,2011,32(1):192-193.Ma Shuhuan.Dealed with load in dynamics characteristic analysis of scraper conveyer[J].Coal Mine Machinery,2011,32(1):192-193.(in Chinese)
    [10]蔡柳.煤散料在刮板输送机中部槽内的运输状态与力学行为[D].太原:太原理工大学,2016.
    [11]Shi Zhiyuan,Zhu Zhencai.Wear analysis of the middle plate of a heavy-load scraper conveyor chute under a range of operating conditions[J].Wear,2017,380(6):36-41.
    [12]王亚滨.重型刮板输送机可控启动装置控制系统研究[D].太原:太原理工大学,2016.
    [13]文孝霞,杜子学,许舟洲,等.单轨车辆耦合动力学模型与振动响应特性[J].振动、测试与诊断,2017,37(3):462-468.Wen Xiaoxia,Du Zixue,Xu Zhouzhou,et al.The coupling dynamic model and vibration response of straddle type monorail vehicle[J].Journal of Vibration,Measurement&Diagnosis,2017,37(3):462-468.(in Chinese)
    [14]汤宝平,罗雷,邓蕾,等.风电机组传动系统振动监测研究进展[J].振动、测试与诊断,2017,37(3):417-425.Tang Baoping,Luo Lei,Deng Lei,et al.Research progress of vibration monitoring for wind turbine transmission system[J].Journal of Vibration,Measurement&Diagnosis,2017,37(3):417-425.(in Chinese)
    [15]杨超峰,殷智宏,吕兆平,等.多通道式液压衬套动态特性的测试与计算分析[J].振动、测试与诊断,2016,36(6):1057-1064.Yang Chaofeng,Yin Zhihong,LüZhaoping,et al.Experiment and calculation of the low frequency performance of a hydraulic bushing with multiple tracks[J].Journal of Vibration,Measurement&Diagnosis,2016,36(6):1057-1064.(in Chinese)

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700