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Dynamic characteristics of the planetary gear train excited by time-varying meshing stiffness in the wind turbine 被引量:3
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作者 Rui-ming Wang Zhi-ying Gao +2 位作者 Wen-rui Wang Yang Xue De-yi Fu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第9期1104-1112,共9页
Wind power has attracted increasing attention as a renewable and clean energy. Gear fault frequently occurs under extreme environment and complex loads. The time-varying meshing stiffness is one of the main excitation... Wind power has attracted increasing attention as a renewable and clean energy. Gear fault frequently occurs under extreme environment and complex loads. The time-varying meshing stiffness is one of the main excitations. This study proposes a 5 degree-of-freedom torsional vibration model for the planetary gear system. The influence of some parameters(e.g., contact ratio and phase difference) is discussed under different conditions of a single teeth pair and double pairs of teeth. The impact load caused by the teeth face fault, ramped load induced by the complex wind conditions, and the harmonic excitation are investigated. The analysis of the time-varying meshing stiffness and the dynamic meshing force shows that the dynamic design under different loads can be made to avoid resonance, can provide the basis for the gear fault location of a wind turbine, and distinguish the fault characteristics from the vibration signals. 展开更多
关键词 wind TURBINE PLANETARY GEAR time-varying meshing stiffness dynamic characteristics
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Time-Varying Mesh Stiffness Calculation and Dynamic Modeling of Spiral Bevel Gear with Spalling Defects
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作者 Keyuan Li Baijie Qiao +2 位作者 Heng Fang Xiuyue Yang Xuefeng Chen 《Journal of Dynamics, Monitoring and Diagnostics》 2024年第2期143-155,共13页
Time-varying mesh stiffness(TVMS)is a vital internal excitation source for the spiral bevel gear(SBG)transmission system.Spalling defect often causes decrease in gear mesh stiffness and changes the dynamic characteris... Time-varying mesh stiffness(TVMS)is a vital internal excitation source for the spiral bevel gear(SBG)transmission system.Spalling defect often causes decrease in gear mesh stiffness and changes the dynamic characteristics of the gear system,which further increases noise and vibration.This paper aims to calculate the TVMS and establish dynamic model of SBG with spalling defect.In this study,a novel analytical model based on slice method is proposed to calculate the TVMS of SBG considering spalling defect.Subsequently,the influence of spalling defect on the TVMS is studied through a numerical simulation,and the proposed analytical model is verified by a finite element model.Besides,an 8-degrees-of-freedom dynamic model is established for SBG transmission system.Incorporating the spalling defect into TVMS,the dynamic responses of spalled SBG are analyzed.The numerical results indicate that spalling defect would cause periodic impact in time domain.Finally,an experiment is designed to verify the proposed dynamic model.The experimental results show that the spalling defect makes the response characterized by periodic impact with the rotating frequency of spalled pinion. 展开更多
关键词 dynamic modeling slice method SPALLING spiral bevel gear time-varying mesh stiffness(TVMS)
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Effect analysis of friction and damping on anti-backlash gear based on dynamics model with time-varying mesh stiffness 被引量:7
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作者 杨政 尚建忠 罗自荣 《Journal of Central South University》 SCIE EI CAS 2013年第12期3461-3470,共10页
A nonlinear model of anti-backlash gear with time-varying friction and mesh stiffness was proposed for the further study on dynamic characteristics of anti-backlash gear. In order to improve the model precision, appli... A nonlinear model of anti-backlash gear with time-varying friction and mesh stiffness was proposed for the further study on dynamic characteristics of anti-backlash gear. In order to improve the model precision, applied force analysis was completed in detail, and single or double tooth meshing states of two gear pairs at any timing were determined according to the meshing characteristic of anti-backlash gear. The influences of friction and variations of damping ratio on dynamic transmission error were analyzed finally by numerical calculation and the results show that anti-backlash gear can increase the composite mesh stiffness comparing with the mesh stiffness of the normal gear pair. At the pitch points where the frictions change their signs, additional impulsive effects are observed. The width of impulsive in the same value of center frequency is wider than that without friction, and the amplitude is lower. When gear pairs mesh in and out, damping can reduce the vibration and impact. 展开更多
关键词 FRICTION DAMPING anti-backlash gear dynamics time-varying mesh stiffness dynamic transmission error
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Dynamic Characteristics of Double-Helical Planetary Gear Sets Under Time-Varying Mesh Stiffness 被引量:3
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作者 He Lin Sanmin Wang +2 位作者 Earl HDowell Jincheng Dong Cong Ma 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2016年第4期44-51,共8页
Internal and external meshes are two of primary excitation sources which induce vibration while double-helical planetary gear sets are in transmission. Based on the analysis of tooth movement principle,three cases of ... Internal and external meshes are two of primary excitation sources which induce vibration while double-helical planetary gear sets are in transmission. Based on the analysis of tooth movement principle,three cases of mesh stiffness are derived via investigating the length of action lines,and catalogued in terms of β < β0,β = β0and β > β_0. The simulation demonstrates mesh stiffness between gear pairs performs as a trapezoid waveform( TW) and changes along with the line of action simultaneously,total mesh stiffness comes from the superposition of each engaged gear. While governing equations of motion contained 16 DOFs( degree of freedom) are constructed and effectively solved through the combination of numerical approaches. Comparing with sinusoidal waveform mesh stiffness( SW),the results show that dynamical factors and perturbation under the excitation of TW( β < β_0) are greater and remarkable than that from SW,with respect to the mean dynamic factors about 1. 51 and 1. 28,respectively. The fluctuation response between ring- planet( R- P) is stronger than sun-planet( S-P) which is also validated by both approach studies,frequency spectra analyses identifies larger distinct rotational resonance and more frequencies under TW excitation. 展开更多
关键词 time-varying mesh stiffness TRAPEZOID WAVEFORM mean DYNAMICAL factors frequency spectra
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Analysis of the Relationship Between the Meshing Stiffness and the Inherent Characteristics of Planetary Gear Transmission Mechanism 被引量:1
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作者 Qiang Zhang Rong He +1 位作者 Yudong Zhang Jin Xu 《Journal of Beijing Institute of Technology》 EI CAS 2019年第4期811-818,共8页
According to the relationship between the meshing stiffness and the inherent characteristics of a seven-speed three-row coupled planetary transmission mechanism,a equivalent concentrated mass dynamics model of the pla... According to the relationship between the meshing stiffness and the inherent characteristics of a seven-speed three-row coupled planetary transmission mechanism,a equivalent concentrated mass dynamics model of the planetary transmission mechanism is established.The natural frequency of the planetary gear train at a specific gear is calculated and extracted.The relationship between the meshing stiffness of each row and the natural frequency of the system is analyzed,thereby avoiding possible resonance behavior by changing the meshing stiffness.These results show that the meshing stiffness,in its range of possible values,has nearly no effect on the low order natural frequency(<4.000.Hz),and that the time-varying meshing stiffness mainly affects the natural frequencies of the higher-and middle-order parts of the system.Changes of the natural frequencies lead to the change of the system's corresponding vibration mode,which will change the vibration situation of the system. 展开更多
关键词 planetary transmission DYNAMICS meshing stiffness inherent characteristics
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Simulation study on dynamics of cylindrical gear meshing with the evolution meshing stiffness
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作者 Ma Chao Liu Lingtao +2 位作者 Wang Shaohong Xu Xiaoli Peng Yumin 《仪器仪表学报》 EI CAS CSCD 北大核心 2016年第S1期146-151,共6页
Simulation study on the cylindrical gear meshing with the evolution gear meshing stiffness is being done for better understanding the dynamic characteristics of the kinematics.With consideration of damping,bearing cle... Simulation study on the cylindrical gear meshing with the evolution gear meshing stiffness is being done for better understanding the dynamic characteristics of the kinematics.With consideration of damping,bearing clearance and gear backlash nonlinearity,the dynamic model is set up and computed in MATLAB.The analysis about the relationship between the kinematic responses and the meshing stiffness are carried out.And the results showed that as the gear mesh stiffness is changed from small to large,the performance of the system is changed from the harmonic stable periodic motion to with one times,two times,four times,ending chaos of the stability of the bifurcation.The research results would have theoretical guidance value for the fault diagnosis in engineering. 展开更多
关键词 cylindrical gear meshing stiffness BIFURCATION
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Investigation on Instantaneous Meshing Stiffness and Profile Modification of Involute Helical Gear
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作者 孟祥生 常山 陈谌闻 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 1996年第4期54-58,共5页
An efficient finite element model of involute helical gear is presented. A program based on compliance matrix method is developed for the calculation of instantaneous meshing stiffness, and the relationship between th... An efficient finite element model of involute helical gear is presented. A program based on compliance matrix method is developed for the calculation of instantaneous meshing stiffness, and the relationship between the rate of meshing stiffness and overlap ratio is given. On the basis of stiffness calculation, an optimization program for the optimal design of profile modification is developed according to the principle of internal point punishment function method. 展开更多
关键词 ss: Instantaneous meshing stiffness PROFILE MODIFICATION compliance matrix METHOD internal point PUNISHMENT function METHOD
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Mesh stiffness calculation of cycloid-pin gear pair with tooth profile modification and eccentricity error 被引量:6
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作者 LI Xuan CHEN Bing-kui +1 位作者 WANG Ya-wen LIM Teik Chin 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1717-1731,共15页
Cycloid speed reducers are widely used in many industrial areas due to the advantages of compact size, high reduction ratio and high stiffness. However, currently, there are not many analytical models for the mesh sti... Cycloid speed reducers are widely used in many industrial areas due to the advantages of compact size, high reduction ratio and high stiffness. However, currently, there are not many analytical models for the mesh stiffness calculation, which is a crucial parameter for the high-fidelity gear dynamic model. This is partially due to the difficulty of backlash determination and the complexity of multi-tooth contact deformation during the meshing process. In this paper, a new method to calculate the mesh stiffness is proposed including the effects of tooth profile modification and eccentricity error. The time-varying mesh parameters and load distribution of cycloid-pin gear pair are determined based on the unloaded tooth contact analysis (TCA) and the nonlinear Hertzian contact theory, allowing accurate calculations of the contact stiffness of single tooth pair and the torsional stiffness of multi-tooth pairs. A detailed parametric study is presented to demonstrate the influences of tooth profile modification, applied torque and eccentricity error on the torsional mesh stiffness, loaded transmission error, Hertzian contact stiffness and load sharing factor. This model can be applied to further study the lost motion and dynamic characteristics of cycloid speed reducer and assist the optimization of its precision, vibration and noise levels. 展开更多
关键词 cycloid speed reducer mesh stiffness tooth contact analysis load distribution MODIFICATION
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Influence Predictions of Contact Effects on Mesh Stiffness of Face Gear Drives with Spur Gear 被引量:1
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作者 李政民卿 王晶 朱如鹏 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第5期566-570,共5页
Mesh stiffness is one of important base parameters of face gear dynamic studies.However,a calculation solution of mesh stiffness of face gear drives is not to be constructed due to complex geometric flakes of face gea... Mesh stiffness is one of important base parameters of face gear dynamic studies.However,a calculation solution of mesh stiffness of face gear drives is not to be constructed due to complex geometric flakes of face gear teeth.Thus,a calculation solution of mesh stiffness of face gear drives with a spur gear,which is based on the proposed equivalent face gear teeth and Ishikawa model,is constructed,and the influence of contact effects on mesh stiffness of face gear drives is investigated.The results indicate the mesh stiffness of face gear drives is sensitive to contact effects under heavy loaded operating conditions,specially.These contributions will benefit to improve dynamic studies of face gear drives. 展开更多
关键词 face gear drive mesh stiffness contact effect equivalent tooth Ishikawa model
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Analysis of lubrication performance for internal meshing gear pair considering vibration 被引量:3
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作者 JIAN Guang-xiao WANG You-qiang +2 位作者 ZHANG Ping LI Yun-kai LUO Heng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期126-139,共14页
The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-var... The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-varying meshing stiffness.Based on dynamic theory of the gear system,a dynamic model of the planetary gear train was established.The lubrication performances of modified gear systems under vibrations and static loads were analyzed.Compared with other transmission types,the best lubrication effect could be produced by the positive transmission.A thicker lubricating oil film could be formed,and the friction coefficient and oil film flash temperature are the smallest.Increasing modification coefficient improves the lubrication performance continuously but intensifies the engage-in and tooth-change impact.For the planetary and inner gears,the increase in the modification coefficient also leads a decrease in the oil film stiffness. 展开更多
关键词 internal meshing gears dynamic model modification coefficient lubrication performance oil film stiffness
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Nonlinear Dynamic Analysis of Planetary Gear Train System with Meshing Beyond Pitch Point
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作者 TANG Xin BAO Heyun +1 位作者 LU Fengxia JIN Guanghu 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第6期884-897,共14页
Nonlinear dynamic analysis was performed on a planetary gear transmission system with meshing beyond the pitch point.The parameters of the planetary gear system were optimized,and a two-dimensional nonlinear dynamic m... Nonlinear dynamic analysis was performed on a planetary gear transmission system with meshing beyond the pitch point.The parameters of the planetary gear system were optimized,and a two-dimensional nonlinear dynamic model was established using the lumped-mass method.Time-varying meshing stiffness was calculated by the energy method.The model consumes the backlash,bearing clearance,time-varying meshing stiffness,time-varying bearing stiffness,and time-varying friction coefficient.The time-varying bearing stiffness was calculated according to the Hertz contact theory.The load distribution among the gears was computed,and the time-varying friction coefficient was calculated according to elastohydrodynamic lubrication(EHL)theory.The dynamical equations were solved via numerical integration.The global bifurcation characteristics caused by the input speed,backlash,bearing clearance,and damping were analyzed.The system was in a chaotic state at natural frequencies or frequency multiplication.The system transitioned from a single-period state to a chaotic state with the increase of the backlash.The bearing clearance of the sun gear had little influence on the bifurcation characteristics.The amplitude was restrained in the chaotic state as the damping ratio increased. 展开更多
关键词 meshing beyond pitch point planetary gear system nonlinear time-varying bearing stiffness timevarying meshing stiffness multiple clearances BIFURCATION time-varying friction coefficient
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Mechanical property of cylindrical sandwich shell with gradient core of entangled wire mesh
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作者 Xin Xue Chao Zheng +1 位作者 Fu-qiang Lai Xue-qian Wu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期510-522,共13页
To explore the wide-frequency damping and vibration-attenuation performances in the application of aerospace components,the cylindrical sandwich shell structure with a gradient core of entangled wire mesh was proposed... To explore the wide-frequency damping and vibration-attenuation performances in the application of aerospace components,the cylindrical sandwich shell structure with a gradient core of entangled wire mesh was proposed in this paper.Firstly,the gradient cores of entangled wire mesh in the axial and radial directions were prepared by using an in-house Numerical Control weaving machine,and the metallurgical connection between skin sheets and the gradient core was performed using vacuum brazing.Secondly,to investigate the mechanical properties of cylindrical sandwich shells with axial or radial gradient cores,quasi-static and dynamic mechanical experiments were carried out.The primary evaluations of mechanical properties include secant stiffness,natural frequency,Specific Energy Absorption(SEA),vibration acceleration level,and so on.The results suggest that the vibration-attenuation performance of the sandwich shell is remarkable when the high-density core layer is at the end of the shell or abuts the inner skin.The axial gradient material has almost no influence on the vibration frequencies of the shell,whereas the vibration frequencies increase dramatically when the high-density core layer approaches the skin.Moreover,compared to the conventional sandwich shells,the proposed functional grading cylindrical sandwich shell exhibits more potential in mass reduction,stiffness designing,and energy dissipation. 展开更多
关键词 Entangled wire mesh Gradient cylindrical sandwich shell Vacuum brazing Secant stiffness Damping
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基于热弹-黏塑性本构的POM材料齿轮副啮合特性分析
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作者 刘明勇 韩新光 +2 位作者 欧阳周寰 胡俊 闫春爱 《工程科学与技术》 北大核心 2025年第2期159-170,共12页
为揭示负载、修形和温度对聚甲醛(POM-POM)齿轮副啮合特性的影响,建立热弹-黏塑性材料本构的POM-POM齿轮副3维有限元接触模型;结合POM材料的温度-模量效应,开展温度-应力顺序耦合的稳态热分析,并与POM-POM齿轮副温度服役测试结果对比;... 为揭示负载、修形和温度对聚甲醛(POM-POM)齿轮副啮合特性的影响,建立热弹-黏塑性材料本构的POM-POM齿轮副3维有限元接触模型;结合POM材料的温度-模量效应,开展温度-应力顺序耦合的稳态热分析,并与POM-POM齿轮副温度服役测试结果对比;在稳态热分析基础上,进行完全耦合瞬态热接触分析,并将瞬态温升与Blok温度结果对比;通过齿根应变试验,验证不同负载工况下齿根应变计算的有效性。结果表明:齿轮副的稳态温升呈现齿根高、齿顶与端面较低的分布规律,并随负载增大而上升;通过试验对比得到,有限元计算齿轮稳态温升与试验结果一致,且瞬态温升与Blok公式结果一致;POM-POM齿轮副仿真齿根应变位于试验测试应变误差带内,表明考虑温度-模量效应的热弹-黏塑性材料本构能够表征POM塑料齿轮的热学特性和力学特性。此外,POM-POM齿轮副传动过程中出现啮合线延长且偏离理论位置,且温度对啮合线影响较小。齿面修形可降低其啮合线长度,但不能改善其偏转程度;啮合角在啮入和啮出时会出现较大的变化,温度使其啮合角在双齿啮合区域上升约1℃。啮合刚度与负载相关,随着负载增加,啮合刚度下降且重合度上升。同等条件下,POM-POM齿轮副的传递误差幅值约是金属齿轮副的10倍,且温度使传递误差幅值上升约39%,齿面修形可降低24%左右的传递误差幅值。 展开更多
关键词 黏塑性 POM齿轮 啮合刚度 传递误差
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残余应力对斜齿轮时变啮合刚度的影响及其动力学分析
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作者 罗家元 严博 高聪 《机械传动》 北大核心 2025年第3期40-47,共8页
【目的】淬火热处理作为齿轮重要强化工艺会产生较高的残余应力,进而影响齿轮啮合刚度及动态性能。在分析淬火残余应力分布规律的基础上,揭示残余应力对齿轮啮合动态特性的量化影响。【方法】基于直接热-力耦合法建立齿轮淬火仿真模型... 【目的】淬火热处理作为齿轮重要强化工艺会产生较高的残余应力,进而影响齿轮啮合刚度及动态性能。在分析淬火残余应力分布规律的基础上,揭示残余应力对齿轮啮合动态特性的量化影响。【方法】基于直接热-力耦合法建立齿轮淬火仿真模型并求解淬火残余应力,结合单节点法将该残余应力作为预应力求解斜齿轮副的时变啮合刚度;并以此为基础,利用集中参数法建立斜齿轮副的10自由度动力学模型,使用龙格-库塔法进行数值求解,得到斜齿轮副的振动响应动载荷时域图和频域图。【结果】与不考虑残余应力相比,存在残余应力的单齿弯曲变形在4齿啮合区域变大、在5齿啮合区域变小,接触变形无明显变化,啮合刚度和动载荷的时域峰值变大,啮频处的动载荷频域幅值谱密度增大。 展开更多
关键词 斜齿轮 残余应力 时变啮合刚度 动载荷
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斜齿轮表面形貌分形特征对时变接触刚度的影响
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作者 吴石 高增阔 +1 位作者 王明珠 赵成睿 《中国机械工程》 北大核心 2025年第1期59-68,77,共11页
基于改进的W-M分形函数,利用齿高和齿宽表征斜齿轮齿面的表面形貌。采用圆锥微凸体并考虑啮合过程中斜齿轮接触曲率半径的时变性建立了斜齿轮时变接触刚度模型,计算发现基于圆锥微凸体模型计算的时变啮合刚度与ISO6336-1—2006标准计算... 基于改进的W-M分形函数,利用齿高和齿宽表征斜齿轮齿面的表面形貌。采用圆锥微凸体并考虑啮合过程中斜齿轮接触曲率半径的时变性建立了斜齿轮时变接触刚度模型,计算发现基于圆锥微凸体模型计算的时变啮合刚度与ISO6336-1—2006标准计算所得结果接近。研究结果表明,斜齿轮的时变接触载荷和时变接触刚度随着分形维数、特征尺度系数、量纲一接触面积、材料塑性指数的变化而表现出不同的变化趋势。 展开更多
关键词 斜齿轮啮合 表面形貌 分形特征 圆锥微凸体 时变接触刚度
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航空齿轮传动系统不对中异常状态下的动力学特性分析
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作者 栾孝驰 吴承静 +2 位作者 沙云东 张引 王胜红 《燃气涡轮试验与研究》 2025年第1期66-78,共13页
针对航空发动机齿轮传动系统装配不对中引起的疲劳断裂问题,采用Hertz接触理论和瞬态动力学分析方法,考虑齿轮轴线平行不对中异常装配状态,建立了直齿轮副瞬态动力学分析模型,研究了该齿轮副的时变啮合刚度和齿面接触应力的变化规律。... 针对航空发动机齿轮传动系统装配不对中引起的疲劳断裂问题,采用Hertz接触理论和瞬态动力学分析方法,考虑齿轮轴线平行不对中异常装配状态,建立了直齿轮副瞬态动力学分析模型,研究了该齿轮副的时变啮合刚度和齿面接触应力的变化规律。结果表明:随着双齿−单齿啮合的周期性变化,时变啮合刚度也呈现出周期性变化;时变啮合刚度在双齿啮合时减小,在单齿啮合时增大,且最大啮合刚度呈现出随着齿轮平行不对中角度增大而增大的规律。齿轮轴线平行角度影响齿面接触应力和轴向振动位移响应,由于不对中角度增大,齿轮啮合印痕逐渐向下偏移,齿面接触应力增大明显,且齿根处出现应力集中现象。不对中角度由0.25°增大至1.00°时,齿面平均接触应力值由100 MPa增大至550 MPa。轴向振动位移幅值随不对中角度增大而增大,最大总位移量达到3.161 mm;随着不对中角度的增大,齿轮齿根处载荷增大,且齿根载荷的增大在频谱图上表现为转频幅值的增大。研究方法和分析结果可为航空齿轮传动系统装配异常状态的仿真分析提供一定参考。 展开更多
关键词 航空发动机 齿轮传动系统 平行不对中 动力学特性 啮合刚度 接触应力
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摆线针轮啮合刚度计算与仿真分析研究
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作者 苏建新 王东峰 +2 位作者 徐家科 张靖 吕瑞芳 《机械传动》 北大核心 2025年第4期1-7,共7页
【目的】摆线针轮减速器因具有传动比大、结构紧凑等优点被广泛推广和应用,但摆线针轮副的大接触应力和低啮合刚度影响了摆线针轮减速器的传动精度和平稳性。为提高摆线针轮减速器的承载性能,提出一种摆线针轮副啮合刚度分析方法,通过... 【目的】摆线针轮减速器因具有传动比大、结构紧凑等优点被广泛推广和应用,但摆线针轮副的大接触应力和低啮合刚度影响了摆线针轮减速器的传动精度和平稳性。为提高摆线针轮减速器的承载性能,提出一种摆线针轮副啮合刚度分析方法,通过计算和仿真分析探讨结构参数对啮合刚度的影响规律。【方法】对摆线针轮副进行受力分析,以摆线针轮的接触应力、啮合刚度为目标函数,以摆线针齿的重要结构参数(针齿分布圆半径、偏心距、针齿半径)为设计变量,构建接触应力和啮合刚度数学模型;通过VB.NET程序计算和仿真分析摆线针轮的结构参数对其啮合刚度、扭转刚度、啮合力和接触应力的影响。【结果】仿真结果表明,随着针齿分布圆半径和偏心距的增大、针齿半径的减小,摆线针轮的啮合刚度和扭转刚度增大。研究为摆线针轮减速器的结构设计和优化奠定了基础。 展开更多
关键词 摆线针轮 接触应力 啮合刚度 结构参数
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脂润滑小模数齿轮副时变啮合刚度计算方法
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作者 胡波 谭清杰 +2 位作者 董建雄 肖泽亮 尹来容 《振动与冲击》 北大核心 2025年第5期80-87,共8页
时变啮合刚度是齿轮动力学设计与分析中至关重要的参数,而充斥啮合齿面的润滑剂会改变齿轮接触特性,影响时变啮合刚度。同时,小模数齿轮副的中心距极小,其啮合角、重合度与啮合刚度等对中心距误差非常敏感。针对脂润滑与中心距误差对小... 时变啮合刚度是齿轮动力学设计与分析中至关重要的参数,而充斥啮合齿面的润滑剂会改变齿轮接触特性,影响时变啮合刚度。同时,小模数齿轮副的中心距极小,其啮合角、重合度与啮合刚度等对中心距误差非常敏感。针对脂润滑与中心距误差对小模数齿轮接触的影响,该研究基于弹流脂润滑理论,推导了油膜承载刚度的计算公式;结合势能法,构建了脂润滑齿轮的时变啮合刚度计算模型,研究了转速、黏度对脂润滑齿轮啮合刚度的影响规律。研究结果表明:脂润滑小模数齿轮的二次压力峰与膜厚紧缩现象明显,其位置随着载荷的增加向出口偏移;充斥啮合齿面之间的润滑油膜通过增大接触面积,从而强化小模数齿轮的时变啮合刚度;相反,中心距误差的增加会弱化齿轮副的时变啮合刚度;油脂黏度可以增加油膜对齿轮副啮合刚度的强化作用,但齿轮转速的上升会弱化脂润滑齿轮的啮合刚度。 展开更多
关键词 小模数齿轮 脂润滑 啮合刚度 中心距误差 势能法
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考虑齿根裂纹的行星齿轮动态响应特性研究
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作者 郭昆 张铁明 《机械设计与制造》 北大核心 2025年第2期56-62,70,共8页
针对太阳齿轮裂纹状态下的行星齿轮系统,构建了基于集总参数法的动力学模型。首先,根据齿轮过渡曲线的特征方程提出了行星齿轮系统啮合刚度计算的改进方法,该计算方法分别考虑了齿轮在正常和裂纹状态下的啮合特性。基于这些计算,进一步... 针对太阳齿轮裂纹状态下的行星齿轮系统,构建了基于集总参数法的动力学模型。首先,根据齿轮过渡曲线的特征方程提出了行星齿轮系统啮合刚度计算的改进方法,该计算方法分别考虑了齿轮在正常和裂纹状态下的啮合特性。基于这些计算,进一步求解了齿轮系统传动过程中的振动响应。仿真结果显示,齿根裂纹出现时,其振动响应呈现出明显的冲击特征,同时揭示了太阳齿轮故障的特征频率和倍频特性。为对比所提分析方法的有效性,开展了仿真与实验对比,验证了行星齿轮啮合刚度计算模型的有效性。 展开更多
关键词 齿轮裂纹 时变啮合刚度 行星齿轮 振动响应
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计入齿根裂纹的直齿轮传动系统振动特性研究
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作者 范磊 王娜 《机械设计与制造》 北大核心 2025年第1期75-81,共7页
针对裂纹故障状态下的直齿轮传动系统,提出了计入齿根裂纹不均匀分布的直齿轮传动动态仿真方法。首先将齿轮沿齿轮齿宽方向分成若干薄片,通过具有均匀分布的齿根裂纹的方法来获得每个齿轮切片的时变啮合刚度(TVMS)。考虑了齿轮和小齿轮... 针对裂纹故障状态下的直齿轮传动系统,提出了计入齿根裂纹不均匀分布的直齿轮传动动态仿真方法。首先将齿轮沿齿轮齿宽方向分成若干薄片,通过具有均匀分布的齿根裂纹的方法来获得每个齿轮切片的时变啮合刚度(TVMS)。考虑了齿轮和小齿轮的纵向/垂直相对位移,推导了外圈与轴承座之间的纵向/垂直接触力,根据达朗伯原理,得出了齿轮传动系统中齿轮和小齿轮的运动方程。最后通过仿真分析了裂纹从齿轮齿面一侧开始扩展时的轴承振动特性,同时通过统计指标验证了仿真分析的合理性。该模型可为齿轮齿根裂纹的检测与诊断提供理论指导。 展开更多
关键词 裂纹齿轮 时变啮合刚度 齿轮传动 接触力
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