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考虑畸变的起重机薄壁箱梁的自由振动分析
引用本文:谭敏尧,程文明,李杭飞,臧付连.考虑畸变的起重机薄壁箱梁的自由振动分析[J].西南交通大学学报,2022,57(5):1040-1046.
作者姓名:谭敏尧  程文明  李杭飞  臧付连
作者单位:西南交通大学机械工程学院, 四川 成都 610031
基金项目:国家自然科学基金(51675450)
摘    要:为了提高薄壁箱梁固有频率的计算精确度,基于广义坐标原理,对薄壁箱梁的动力特性进行了分析. 首先,通过虚功原理且考虑畸变形变的影响,获取了5种高度耦合模态(延伸、弯曲、扭转、翘曲和畸变)的自由振动微分方程组;其次,考虑转动惯性运动项的影响,建立了简支边界条件下的运动学模型,获得了薄壁箱形梁自由振动固有频率的四阶代数方程,进而求得固有频率的精确解;最后,通过算例将考虑畸变的固有频率精确解与Proki? 理论以及有限元分析方法的结果进行比较,验证了该方法的有效性和准确性. 结果表明:考虑畸变效应能够更准确地反映高阶状态下薄壁箱形梁的自由振动固有频率;对自由振动的4阶固有频率进行比较,当箱形梁长度为3 m时,本文理论的相对误差相较于Proki? 理论的0.42%下降至0.38%;当箱梁长度分别为4 m和5 m时,相对误差进一步下降至0.30% 和0.40%. 

关 键 词:弯曲    扭转    畸变    薄壁箱梁    自由振动
收稿时间:2020-09-09

Free Vibration Analysis of Thin-Walled Box Beam of Crane Considering Distortion
TAN Minyao,CHENG Wenming,LI Hangfei,ZANG Fulian.Free Vibration Analysis of Thin-Walled Box Beam of Crane Considering Distortion[J].Journal of Southwest Jiaotong University,2022,57(5):1040-1046.
Authors:TAN Minyao  CHENG Wenming  LI Hangfei  ZANG Fulian
Affiliation:School of Mechatronics Engineering, Southwest Jiaotong University, Chengdu 610031, China
Abstract:In order to improve the calculation accuracy of the natural frequency of thin-walled box beams, the dynamic characteristics of thin-walled box beams are analyzed using the generalized coordinate principle. Firstly, the free vibration differential equations of five highly coupled modes (i.e., extension, bending, torsion, warping and distortion) are obtained by the virtual work principle and considering the influence of the distortion deformation. Secondly, considering the influence of the rotational inertial motion term, the kinematics model under the simply supported boundary condition is established. The fourth order algebraic equation of free vibration of the thin-walled box beam and the exact solution of the natural frequency are obtained. Finally, a numerical example is provided to compare the exact solution of natural frequency considering distortion with the results of Proki? theory and finite element analysis, so that the effectiveness and accuracy of present method are verified. The results show that when taking the distortion effect into consideration, the natural frequency of free vibration of the thin-walled box beam can be more accurately reflected in high-order modes. Comparison of natural frequencies at four orders of the free vibration indicates that when the length of the box girder is 3 m, the relative error of the present theory was reduced to 0.38% from Proki?’s 0.42%; when the length of the box girder is 4 and 5 m, the relative error can be further reduced to 0.30% and 0.40%, respectively. 
Keywords:
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