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1.
以一个两对斜齿轮耦合的三平行轴转子系统为研究对象,考虑静态传递误差和齿轮几何偏心等因素的影响,建立了全自由度通用齿轮啮合动力学模型。将其与转子系统有限元模型进行耦合,建立了平行轴系齿轮转子系统有限元模型。转子系统采用梁单元模拟,齿轮之间的啮合通过啮合刚度矩阵和阻尼矩阵模拟,并分析了不同自由度耦合下系统的固有特性和振动响应特性。研究结果表明,考虑弯扭耦合和弯扭轴摆耦合会产生较多的弯扭耦合频率,响应计算结果出现的峰值点均对应系统的固有频率,而考虑弯扭轴摆耦合可以更好地表征系统的不同自由度的耦合振动情况。此研究结果可为齿轮耦合转子系统设计提供参考。  相似文献   

2.
魏兵 《机械工程学报》2001,37(2):100-104
针对斜齿轮副动特性的灵敏度问题 ,考虑轴和轴承的柔性以及由于轮齿啮合而产生的横向运动、扭转运动、轴向运动与旋转 (摆动 )运动间的动态耦合的影响 ,建立了斜齿轮传动系统的动力学模型 ,推导了固有频率及动态啮合挠度相对于斜齿轮副支承结构参数的灵敏度计算公式 ,并给出了实例。这一方法可用于斜齿轮传动系统的动态优化设计及改进设计  相似文献   

3.
为分析齿轮传动复杂轴系的振动问题,根据有限元法和拉格朗日法,考虑陀螺效应、油膜支承等因素,得到了转子-轴承系统的弯扭耦合振动模型;在此基础上,根据齿轮副运动过程中啮合刚度和啮合阻尼的变化,得到了齿轮副系统的弯扭耦合振动模型。然后,根据齿轮副的实际排列方式,引入方位角,使得转子模型与齿轮副模型坐标统一化,并将其耦合到一起,得到了更加接近实际的齿轮转子模型,并且计算了其临界转速和振型。研究结果表明,耦合后转子的临界转速低于单转子的临界转速,齿轮传动对转子轴系振动有着明显影响。  相似文献   

4.
Transmission error is an important reason for instability in helical gears. A six-degree-of-freedom dynamic model coupled flexional, torsional and axial motion of a helical gear transmission system, which includes time varying mesh stiffness, bearing supporting stiffness, mesh damping and backlash, is developed, after taking into account the dynamic characteristics and vibration responses of helical gear in three dimensions. Influences of involute contact ratio, bearing supporting stiffness, mesh damping and backlash on the dynamic transmission errors and vibration stability of the helical gear system are investigated using numerical simulation technique. The effects on dynamic transmission errors and stabilities by contact ratio, supporting stiffness and mesh damping as well as gear backlash are analyzed. The intrinsic relationship between above parameters and dynamic transmission errors and stabilities for helical gear system are presented. The stable and unstable regions under different parameters are given. The results in this paper can be helpful to the dynamic and stable design of a helical gear transmission system.  相似文献   

5.
Time-varying mesh stiffness (TVMS) and the dynamic coupling between the helical gears have a great influence on the vibration characteristics of a helical gear rotor system. Considering the effects of TVMS and adopting two coupling models (lateral-torsional coupling model and lateral-torsional-axial-swing coupling model), the dynamic behavior of a helical gear system was studied. First, an analytical model was used to analyze TVMS of a helical gear pair where the helical tooth is simulated by many spur tooth slices along the direction of the tooth width and the mesh stiffness of each slice is calculated using the energy method. Then, considering the effects of the TVMS excitation, the finite element model of a helical gear rotor system was established. Gear mesh was simulated by the above-mentioned two coupling models to investigate the effects of coupling forms on the system vibration characteristics. The strain energy was used to distinguish the dominant mode and dominant shaft of a gear system in natural characteristics analysis. The results show that the full coupling model can analyze accurately the vibration characteristics of the system and the axial and swing motions cannot be ignored in vibration analysis. Finally, the effects of helix angle on TVMS and vibration responses of a helical gear system were also studied.  相似文献   

6.
为了模拟工程应用中齿轮—转子系统的动态响应,考虑齿侧间隙、时变啮合刚度、静态传动误差、不平衡质量和弹性转轴的影响,建立齿轮—转子耦合系统的动力学模型。对动力学方程进行数值仿真,研究转速对动态响应的影响、齿侧间隙的变化对振幅跳跃现象的影响规律和转速与动态啮合力之间的关系。研究结果表明,随着齿侧间隙的增大,齿轮—转子系统的振幅跳跃现象变得更明显。振动加速度的频谱图主要包括啮合频率及其高次谐波。随着转速的逐渐升高,1倍频的振幅也逐渐增大,并且在啮合频率及其高次谐波附近还会出现边频带。动态啮合力的频谱图与动态响应的频谱图类似。对一个齿轮—转子试验台进行理论计算和试验测试,试验数据基本上验证对试验台的理论计算结果,试验测量结果和数值仿真之间的差别主要来源于建模误差和测量误差。  相似文献   

7.
分析了具有斜齿圆柱齿轮传动的多平行轴转子系统,在统一的坐标系下,建立了系统的动力学模型,考虑了系统的弯扭耦合、陀螺力矩及滑动轴承的支承刚度和阻尼。计算了系统的固有频率、动态响应及幅频特性,重点分析了齿轮的刚度、阻尼和制造误差对多平行轴转子系统动力学性能的影响  相似文献   

8.
The modeling of the dynamic behavior of a two-stage gear system is made for a general configuration of wheels location. The excitation is induced by the periodic variation of the mesh stiffness. This case describes the real working of the gearings. The variation of the mesh phasing is related to the number of teeth and also to the wheels location. We developed a plane model of a two-stage gear system. The modal analysis of the system was then treated. The calculation of the dynamic response was done by a step-by-step time integration method (Newmark algorithm). Three cases of wheels location are treated. The solutions are presented both in the frequency domain and in the time domain. Three types of geometric defects of the toothed wheels are introduced in the model: defect of eccentricity, profile error and assembly defect. An analysis of the effects of these defects on the gear system dynamic behavior is then treated.  相似文献   

9.
以一个两对斜齿轮耦合的三平行轴转子系统膨胀机子系统为研究对象,建立了斜齿轮啮合副动力学模型和转子系统有限元模型,考虑了齿轮啮合刚度、方位角、啮合角、螺旋角以及主动轴转动方向的影响,推导出齿轮啮合刚度矩阵。基于模态叠加法,对弯-扭耦合转子系统膨胀机子系统进行了固有特性分析和瞬态方式的不平衡响应分析,得到齿轮啮合前、后系统加载处的不平衡响应变化曲线。研究表明,齿轮间的耦合使系统之间的振动强烈,系统可能会在某个非固有频率处不平衡响应进行积累叠加,出现最大振动的现象,同时识别出共振峰的产生机理。齿轮耦合对转子系统动力学特性产生了很大的影响,使系统振型表现为耦合振型,必须以耦合的方式分析系统的振动特性,为防止系统发生大的振动提供依据,对齿轮系统的设计和故障分析具有指导意义。  相似文献   

10.
为了分析齿轮系统动力学中的全耦合振动,提出采用虚拟样机建模的方法,将柔性转子引入到啮合耦合系统中,考虑齿轮时变啮合刚度、齿侧间隙和轴承间隙的影响,建立齿轮-柔性转子-轴承系统虚拟样机模型,通过求解模型的动力学方程得到系统的非线性动力学响应。仿真结果表明:考虑柔性转子的耦合系统,啮合冲击峰值下降明显;转子柔性增加,齿轮低频扭转振动出现"拍"现象;高速轻载时啮合振动非线性特性增强;轴承间隙增大使啮合力振动幅值显著增大。  相似文献   

11.
含间隙的斜齿轮副扭振分析与试验研究   总被引:2,自引:0,他引:2  
建立了科齿轮副的间隙型非线性扭振模型,其中考虑了斜齿轮副的啮合综合误差,齿侧间隙和时变啮合刚度。采用三维有限元法计算了斜齿轮副啮合刚度,用三次样条插值拟合得到时变啮合刚度函数。用数值积分方法对系统的非线性动力学微分方程进行了求解,获得了斜齿轮副在外转矩作用下受静态传动误差激励的非线性稳态强迫响应,并对系统的动态响应进行了测试,试验和理论计算结果了一致性证实了本文所提出模型和解法的正确性。  相似文献   

12.
考虑齿距偏差的直齿轮转子系统振动特性分析   总被引:2,自引:0,他引:2  
针对工程实际中的齿轮存在齿距偏差,主要研究齿距偏差对齿轮系统振动特性的影响。考虑齿距偏差,建立了齿轮啮合刚度和传递误差模型,在此基础上,建立了通用齿轮啮合动力学模型,将该模型与转子系统有限元模型进行耦合,得到了齿轮转子系统有限元模型,分析了齿距偏差对系统振动响应的影响。研究结果表明:由于齿距偏差的存在,齿轮双齿啮合区刚度降低,无载荷传递误差增大,齿轮系统振动增大,频谱图中出现啮合频率及其高次谐波的边频带成分,这些边频带主要由主动和从动齿轮的转频及其倍频组成。减小齿距偏差和增大作用扭矩均能降低齿距偏差引起的边频带幅值。研究结果可为含齿距偏差的齿轮振动分析提供理论依据。  相似文献   

13.
基于接触有限元的齿轮-转子系统动态特性分析   总被引:1,自引:0,他引:1  
考虑齿轮-转子系统各部件的弹性,基于接触有限元理论提出一种能够高保真模拟齿轮副连续啮合过程的动态特性分析方法。该方法利用实体有限元进行系统建模,可体现各部件的结构特征;基于接触有限元进行啮合过程仿真,可模拟系统的时变刚度、啮合冲击等真实激励进而得到全面准确的响应信息。以一直齿轮-转子系统为例进行啮合过程的数值仿真,利用中心差分法求得系统各动力学参量在时域上的响应,通过中心距偏差、动态传递误差、动态接触力等参数分析系统的弯曲振动、扭转振动、齿轮副的啮合特性及其耦合关系。研究结果表明:考虑各部件尤其是转子的弹性后,系统的非线性振动特性显著,齿轮副啮合存在明显的双边冲击及脱啮现象。  相似文献   

14.
研究用有限元节点建模方法建立考虑轴、齿轮转子陀螺效应的单级齿轮传动系统动力学模型,计算得到系统固有特性,与有限元软件和试验测量得到的结果进行对比,三种方法得到的系统固有频率具有一致性,验证有限元节点动力学模型有效性。由转子动力学稳定性理论计算得到系统的涡动临界转速等高速动态性能参数与响应特征,建立的齿轮轴系动力学模型为高速齿轮系统的设计及稳定性分析提供了基础参考。  相似文献   

15.
Time?varying mesh stiffness(TVMS) and gear errors include short?term and long?term components are the two main internal dynamic excitations for gear transmission. The coupling relationship between the two factors is usually neglected in the traditional quasi-static and dynamic behaviors analysis of gear system. This paper investigates the influence of short?term and long?term components of manufacturing errors on quasi?static and dynamic behaviors of helical gear system considering the coupling relationship between TVMS and gear errors. The TVMS, loaded static transmission error(LSTE) and loaded composite mesh error(LCMS) are determined using an improved loaded tooth contact analysis(LTCA) model. Considering the structure of shaft, as well as the direction of power flow and bearing location, a precise generalized finite element dynamic model of helical gear system is developed, and the dynamic responses of the system are obtained by numerical integration method. The results suggest that lighter loading conditions result in smaller mesh stiffness and stronger vibration, and the corresponding resonance speeds of the system become lower. Long?term components of manufacturing errors lead to the appearance of sideband frequency components in frequency spectrum of dynamic responses. The sideband frequency components are predominant under light loading conditions. With the increase of output torque, the mesh frequency and its harmonics components tend to be enhanced relative to sideband frequency components. This study can provide effective reference for low noise design of gear transmission.  相似文献   

16.
钢/塑齿轮组合行星传动的振动特性   总被引:3,自引:0,他引:3  
为了深入了解钢质行星齿轮传动系统引入塑料齿轮后的振动特性,建立钢/塑齿轮组合行星传动的动力学分析模型和试验模型,对SNS、SSS、SSN和NSS四种钢/塑齿轮组合行星传动的振动特性进行理论分析与试验研究,分析组合方式对行星传动振动特性的影响。数值仿真与试验研究结果表明:塑料齿轮的引入对行星齿轮传动的振动特性影响很大,显著地减小了太阳轮与行星轮和内齿圈与行星轮的啮合动载荷;有效地抑制了行星齿轮传动的齿轮啮合频带振动和高频带振动;组合方式对行星齿轮传动的振动特性影响显著,合理地采用钢/塑齿轮组合行星传动结构可以极大地降低啮合动载荷,从而有效地抑制传动系统的振动和噪声。  相似文献   

17.
夏伯乾 《机械科学与技术》2006,25(10):1202-1205,1245
在研究齿轮轴系的弯扭耦合振动时,有两种常用的耦合模型,即力耦合模型和几何耦合模型。本文证明,这两种耦合模型以及基于这两种耦合模型构建的齿轮轴系弯扭耦合振动方程可以被统一到一个统一的模式中;几何耦合模型是力耦合模型的特例,几何耦合模型及基于几何耦合模型的齿轮轴系弯扭耦合振动方程可分别从力耦合模型及基于力耦合模型的齿轮轴系弯扭耦合振动方程中导出,从而大大方便和简化了用几何耦合模型构建齿轮耦合轴系弯扭耦合振动方程的过程。对这两种耦合模型进行的数值计算与分析表明,在进行齿轮耦合轴系转子动力学研究时,几何耦合模型和力耦合模型具有相同的效果,而且力耦合模型中齿轮啮合刚度的取值对计算结果几乎没有影响。  相似文献   

18.
In this paper, a simplified model is studied to predict analytically the vibration from the helical gear system due to an axial excitation of helical gears. The simplified model describes gear, shaft, bearing, and housing. In order to obtain the axial force of helical gears, the mesh stiffness is calculated in the load deflection relation. The axial force is obtained from the solution of the equation of motion, using the mesh stiffness. It is used as a longitudinal excitation of the shaft, which in turn drives the gear housing through the bearing. In this study, the shaft is modeled as a rod, while the bearing is modeled as a parallel spring and damper only supporting longitudinal forces. The gear housing is modeled as a clamped circular plate with viscous damping. For the modeling of this system, transfer matrices for the rod and bearing are used, using a spectral method with four pole parameters. The model is validated by finite element analysis. Using the model, parameter studies are carried out. As a result, the linearized dynamic shaft force due to the gear excitation in the frequency domain was proposed. Out-of-plan displacement from the forced vibrating circular plate and the renewed mode normalization constant of the circular plate were also proposed. In order to control the axial vibration of the helical gear system, the plate was more important than the shaft and the bearing. Finally, the effect of the dominant design parameters for the gear system can be investigated by this model.  相似文献   

19.
This paper investigates the dynamic behaviors of a gear-rotor system with viscoelastic supports under effects of the gear eccentricity, the transmission error of gear mesh and the residual shaft bow. The investigated dynamic characteristics include system natural frequencies and steady-state response. The finite element method is used to model the system and Lagrangian approach is applied to derive the system equations of motion. The results show that the mass, the stiffness and the loss factor of the viscoelastic support will significantly affect system critical speeds and steady-state response. It needs larger loss factor and more rigid stiffness of the viscoelastic supports to suppress the systematic amplitude of resonance. As the results shown, the magnitude and phase angle of the residual bow have tremendous influence on first critical speed when the geared system mounted on stiff viscoelastic supports. The transmission error of the gear mesh is assumed to be sinusoidal with tooth passing frequency and it will induce multiple low resonant frequencies in the system response. It is observed that the excited critical speed equals to the original critical speed divided by gear tooth number.  相似文献   

20.
齿轮啮合式多平行轴高端压缩机在现代能源装备中十分重要,具有效率高,造价低,结构紧凑优点,其重要特征是多个转子通过齿轮啮合而成,使得整个转子系统的动力学特性十分复杂,这也造成了齿轮非线性啮合特性会对机组工作性能产生明显的影响。以某五轴压缩机的齿轮系统为研究对象,建立考虑齿轮时变刚度,齿侧间隙以及齿轮啮合误差的系统动力学模型,并对建立的系统的模型进行了无量纲处理。利用数值分析方法计算分析了不同啮合频率以及不同负载作用下齿轮系统的响应特性及其复杂动力学行为。计算结果表明,由于轮齿间的啮合与冲击作用,齿轮系统会随着啮合频率的变化出现明显的非线性现象;通过控制负载可以减小齿轮的冲击现象,进而保证齿轮系统工作在特定的振动状态。  相似文献   

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