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Loaded tooth contact analysis and meshing stiffness calculation for cracked spiral bevel gears
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作者 Zhen LIU Fucai LI +2 位作者 Wenjie BAO Xiaolei XU Freeda A.AMIR 《Chinese Journal of Aeronautics》 2025年第3期593-623,共31页
Tooth cracks may occur in spiral bevel gear transmission system of the aerospace equipment.In this study,an accurate and efficient loaded tooth contact analysis(LTCA)model is developed to predict the contact behavior ... Tooth cracks may occur in spiral bevel gear transmission system of the aerospace equipment.In this study,an accurate and efficient loaded tooth contact analysis(LTCA)model is developed to predict the contact behavior and time-varying meshing stiffness(TVMS)of spiral bevel gear pair with cracked tooth.The tooth is sliced,and the contact points on slices are computed using roll angle surfaces.Considering the geometric complexity of crack surface,a set of procedures is formulated to generate spatial crack and determine crack parameters for contact points.According to the positional relationship between contact point and crack path,each sliced tooth is modeled as a non-uniform cantilever beam with varying reduced effective load-bearing tooth thickness.Then the compliance model of the cracked tooth is established to perform contact analysis,along with TVMS calculations utilizing three different models.By employing spiral bevel gear pairs with distinct types of cracks as examples,the accuracy and efficiency of the developed approach are validated via comparative analyses with finite element analysis(FEA)outcomes.Furthermore,the investigation on effects of cracks shows that tooth cracks can induce alterations in meshing performance of both entire gear pair and individual tooth pairs,including not only cracked tooth pair but also adjacent non-cracked tooth pairs.Hence,the proposed model can serve as a useful tool for analyzing the variations in contact behavior and meshing stiffness of spiral bevel gears due to different cracks. 展开更多
关键词 Bevel gears Gear teeth Cracks Loaded tooth contact analysis Time-varying meshing stiffness tooth compliance
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Geometry Design and Tooth Contact Analysis of Crossed Beveloid Gears for Marine Transmissions 被引量:12
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作者 ZHU Caichao SONG Chaosheng +1 位作者 LIM Teik Chin VIJAYAKAR Sandeep 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第2期328-337,共10页
Beveloid gears,also known as conical gears,gain more and more importance in industry practice due to their abilities for power transmission between parallel,intersected and crossed axis.However,this type of gearing wi... Beveloid gears,also known as conical gears,gain more and more importance in industry practice due to their abilities for power transmission between parallel,intersected and crossed axis.However,this type of gearing with crossed axes has no common plane of action which results in a point contact and low tooth durability.Therefore,a geometry design approach assuming line contact is developed to analyze the tooth engagement process of crossed beveloid gears with small shaft angle for marine transmission applications.The loaded gear tooth contact behavior is simulated by applying a quasi-static analysis to study the effects of gearing parameters on mesh characteristics.Using the proposed method,a series of sensitivity analyses to examine the effects of critical gearing parameters such as shaft angle,cone angle,helix angle and profile-shift coefficient on the theoretical gear mesh is performed.The parametric analysis of pitch cone design shows that the dominant design parameters represented by the angle between the first principle directions(FPD) and normal angular factor are more sensitive to the shaft and cone angles than they are to the helix angle.The theoretical contact path is highly sensitive to the profile-shift coefficient,which is determined from the theoretical tooth contact analysis.The FPD angle is found to change the distribution of contact pattern,contact pressure and root stress as well as the translational transmission error and the variation of the mesh stiffness significantly.The contact pattern is clearly different between the drive and coast sides due to different designed FPD angles.Finally,a practical experimental setup for marine transmission is performed and tooth bearing test is conducted to demonstrate the proposed design procedure.The experimental result compared well with the simulation.Results of this study yield a better understanding of the geometry design and loaded gear mesh characteristics for crossed beveloid gears used in marine transmission. 展开更多
关键词 beveloid gears loaded tooth contact analysis crossed axes marine transmission
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Mathematic model and tooth contact analysis of a new spiral non-circular bevel gear 被引量:5
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作者 HAN Xing-hui ZHANG Xuan-cheng +2 位作者 ZHENG Fang-yan XU Man TIAN Jun 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第1期157-172,共16页
A novel spiral non-circular bevel gear that could be applied to variable-speed driving in intersecting axes was proposed by combining the design principles of non-circular bevel gears and the manufacturing principles ... A novel spiral non-circular bevel gear that could be applied to variable-speed driving in intersecting axes was proposed by combining the design principles of non-circular bevel gears and the manufacturing principles of face-milling spiral bevel gears.Unlike straight non-circular bevel gears,spiral non-circular bevel gears have numerous advantages,such as a high contact ratio,high intensity,good dynamic performance,and an adjustable contact region.In addition,while manufacturing straight non-circular bevel gears is difficult,spiral non-circular bevel gears can be efficiently and precisely fabricated with a 6-axis bevel gear cutting machine.First,the generating principles of spiral non-circular bevel gears were introduced.Next,a mathematical model,including a generating tooth profile,tooth spiral,pressure angle,and generated tooth profile for this gear type was established.Then the precision of the model was verified by a tooth contact analysis using FEA,and the contact patterns and stress distributions of the spiral non-circular bevel gears were investigated. 展开更多
关键词 non circular gear spiral bevel gear mathematic model tooth contact analysis(TCA)
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TOOTH CONTACT ANALYSIS OF CONICAL INVOLUTE GEARS 被引量:6
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作者 HE Jingliang WU Xutang +1 位作者 CUI Yahui NIE Gang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第1期105-108,共4页
The mathematical model of conical involute gears is developed based on the theory of gearing and the generating mechanism. Tooth contact analysis (TCA) is performed to examine the meshing and bearing contact of the ... The mathematical model of conical involute gears is developed based on the theory of gearing and the generating mechanism. Tooth contact analysis (TCA) is performed to examine the meshing and bearing contact of the conical involute gear pairs with intersected and crossed axes. In addition, the principal directions and curvatures of the gear surfaces are investigated and the contact ellipses of the mating tooth surfaces are also studied. Finally, the numerical illustrative examples are provided to demonstrate the computational results, test gears are made for tooth-bearing tests, and the conclusion is verified that the theory has the applicability. 展开更多
关键词 Conical involve gears tooth contact analysis(TCA) Computer aided analysis
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Complex geometric modeling and tooth contact analysis of a helical face gear pair with arc-tooth
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作者 MO Shuai SONG Wen-hao +3 位作者 ZHU Sheng-ping FENG Zhi-you TANG Wen-jie GAO Han-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第4期1213-1225,共13页
A complex geometric modeling method of a helical face gear pair with arc-tooth generated by an arc-profile cutting(APC)disc is proposed,and its tooth contact characteristics are analyzed.Firstly,the spatial coordinate... A complex geometric modeling method of a helical face gear pair with arc-tooth generated by an arc-profile cutting(APC)disc is proposed,and its tooth contact characteristics are analyzed.Firstly,the spatial coordinate system of an APC face gear pair is established based on meshing theory.Combining the coordinate transformation matrix and the tooth profile of the cutter,the equations of the curve envelope of the APC face gear pair are obtained.Then the surface equations are solved to extract the point clouds data by programming in MATLAB,which contains the work surface and the fillet surface of the APC face gear pair.And the complex geometric model of the APC face gear pair is built by fitting its point clouds.At last,through the analysis of the tooth surface contact,the sensitivity of the APC face gear to the different types of mounting errors is obtained.The results show that the APC face gear pair is the most sensitive to mounting errors in the tooth thickness direction,and it should be strictly controlled in the actual application. 展开更多
关键词 arc-tooth face gear complex geometric modeling point clouds mounting errors tooth contact analysis
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Dynamics of a Dual Power-split Transmission Based on Loaded Tooth Contact Analysis
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作者 DONG Hao FANG Zong-de DU Jin-fu 《International Journal of Plant Engineering and Management》 2013年第1期30-36,共7页
In order to implement the dynamic characteristic of a dual power-split transmission, a dynamic me- chanics model is built. Firstly, according to the method of theoretical analysis of the tooth contact analysis (TCA)... In order to implement the dynamic characteristic of a dual power-split transmission, a dynamic me- chanics model is built. Firstly, according to the method of theoretical analysis of the tooth contact analysis (TCA) and loaded tooth contact analysis (LTCA), the actual meshing process of each gear pairs is simulated, and the time-varying mesh stiffness excitations are obtained, which can improve the numerical precision. Second- ly, by using the lumped mass method, the bending-torsional coupling three dimensional dynamic model of the dual power-split transmission is established, and the identical dimensionless equations are deduced by elimina- ting the effect of rigid displacement and the method of dimensional normalization. Finally, by the method of the fourth order Runge-Kutta algorithm with variable step lengths, the responses of this system in a frequency domain and time domain are obtained, and the dynamic load change characteristics of each gear pairs are analyzed. The results show that the establishment, solution and analysis of the system dynamics model could provide a basis for the dynamic design, and have an important significance for the dynamic efficiency analysis and dynamic perform- ance optimization design of the dual power-split transmission. 展开更多
关键词 dual power split transmission loaded tooth contact analysis time-varying mesh stiffness excitation bending-torsional coupling dynamic load
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An innovative design driven by contact performances for skiving of spur face gear drive with single cutter
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作者 TANG Zhong-wei ZHOU Yuan-sheng +4 位作者 MO Shuai TANG Jin-yuan MA Chi ZHANG Wu-ji HE Hai-yu 《Journal of Central South University》 2026年第1期175-188,共14页
This study develops a contact performance-driven method for skiving face gear drives using a single cutter,eliminating the traditional need for separate cutters to reduce production costs and time.First,the mathematic... This study develops a contact performance-driven method for skiving face gear drives using a single cutter,eliminating the traditional need for separate cutters to reduce production costs and time.First,the mathematical models of the tooth flanks for the face gear drives are established based on the gear skiving processes.Then,load tooth contact analysis(LTCA)model is established to calculate the contact performance data.Next,a two-stage optimization model is employed to determine the optimal parameters of the cutting edge with improved contact performances.The effectiveness of this method is validated through simulations and rolling tests.Compared with the traditional method,the proposed method can machine both the face gear and its mating pinion with a single cutter.Simulation results show that the proposed method avoids tooth surface edge contact,with the maximum tooth surface contact stress reduced by 31.7%,the contact ratio decreases by 21.5%,and the transmission error increases by 22.3%.Rolling tests verify the consistency of tooth surface contact patterns between simulations and experiments.The proposed method provides a reference for the cutting edge design of skiving cutters for face gear pairs. 展开更多
关键词 face gear drives gear skiving load tooth contact analysis contact performances cutter design
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Mesh excitations of spur gear considering strong correlation among tooth contact parameters,contact force,and tooth profile deviations 被引量:2
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作者 LI ZhengFa CHEN ZaiGang ZHAI WanMing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第9期2500-2516,共17页
Gear mesh excitations are widely concerned in the dynamic studies of the gear transmission system.Meanwhile,intentional and unintentional tooth profile deviations often occur in gears.At present,the established calcul... Gear mesh excitations are widely concerned in the dynamic studies of the gear transmission system.Meanwhile,intentional and unintentional tooth profile deviations often occur in gears.At present,the established calculation models of gear mesh excitations consider tooth profile deviations as displacement excitation.However,gear mesh excitations calculated by such models have reduced stability compared with the actual situation.Therefore,in this study,an improved analytical model of gear mesh excitations with tooth profile deviations is established.This established model considers tooth profile deviations,extended tooth contact,and the structure coupling effect of the gear body simultaneously.More importantly,the model considers the strong correlation among tooth contact parameters,contact force,and tooth profile deviations to better reflect the actual gear mesh.A calculation flowchart with a simple calculation method of contact forces is also proposed to calculate the gear mesh excitations.Finally,the effects of tooth profile deviations on gear mesh excitations are studied.The results show that the effects of tooth profile deviations on tooth contact position,the direction of contact force,and equivalent basic circle radii should be considered in the calculation of gear mesh excitations because of smaller system transmission errors,larger double-teeth meshing area,and slighter extended tooth contact.Tooth profile deviations also cause jumps in tooth contact position and time-varying mesh stiffness.Thus,our findings show that the proposed model can be used to calculate the gear mesh excitations more accurately when the tooth profile deviates greatly. 展开更多
关键词 mesh stiffness extended tooth contact structural coupling effect tooth contact stability analysis
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Generation Principle of Helix Tooth Profile in Hypocycloid Pinw heel Transmission and Its Contact Characteristics
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作者 陈兵奎 向东云 +3 位作者 谭儒龙 杨语 胡鹏 姜耘哲 《Journal of Donghua University(English Edition)》 EI CAS 2016年第3期352-357,共6页
The transmission characteristics of gear drive can be improved with the use of novel tooth profiles.A theoretical study on tooth profile of the hypocycloid pinwheel transmission and contact analysis of gear pair based... The transmission characteristics of gear drive can be improved with the use of novel tooth profiles.A theoretical study on tooth profile of the hypocycloid pinwheel transmission and contact analysis of gear pair based on finite element method(FEM) are carried out,respectively.The line contact between mated tooth surfaces becomes point contact according to a plus movement.Through loaded tooth contact analysis(LTCA),the contact stress and load distributions for the proposed hypocycloid pinwheel transmission and the traditional one are discussed.The analysis results show that the developed tooth surfaces have anticipatory point contact characteristics under loads and contact fatigue dangerous area locates around the ultimate contact position. 展开更多
关键词 hypocycloid pinwheel transmission finite element method(FEM) loaded tooth contact analysis(LTCA) modified tooth profile
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Analysis of meshing characteristics of planetary gear system considering tooth surface roughness and elastohydrodynamic lubrication
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作者 LIU Ning MA Hui +4 位作者 GUAN Hong ZHOU Sai-nan ZHAO Tian-yu CAO Peng WU Yu-ping 《Journal of Central South University》 2025年第7期2511-2534,共24页
The contact characteristics of the rough tooth surface during the meshing process are significantly affected by the lubrication state.The coupling effect of tooth surface roughness and lubrication on meshing character... The contact characteristics of the rough tooth surface during the meshing process are significantly affected by the lubrication state.The coupling effect of tooth surface roughness and lubrication on meshing characteristics of planetary gear is studied.An improved three-dimensional(3 D)anisotropic tooth surface roughness fractal model is proposed based on the experimental parameters.Considering asperity contact and elastohydrodynamic lubrication(EHL),the contact load and flexibility deformation of the tooth surface are derived,and the deformation compatibility equation of the 3 D loaded tooth contact analysis(3 D-LTCA)method is improved.The asperity of the tooth surface changes the system from EHL to mixed lubrication and reduces the stiffness of the oil film.Compared with the sun planet gear,the asperity has a greater effect on the meshing characteristics of the ring-planet gear.Compared with the proposed method,the comprehensive stiffness obtained by the traditional calculation method considering the lubrication effect is smaller,especially for the ring-planet gear.Compared with roughness,speed and viscosity,the meshing characteristics of planetary gears are most sensitive to torque. 展开更多
关键词 planetary gear tooth surface roughness three-dimensional loaded tooth contact analysis elastohydrodynamic lubrication meshing stiffness
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Influence of Setting Error of Tool on Tooth Profile and Contact Point of Face Gear Drive 被引量:2
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作者 李晓贞 朱如鹏 +1 位作者 李政民卿 李发家 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第4期370-376,共7页
In order to analyze the influence of setting error of tool on both tooth profile and contact characteristic of orthogonal face gear drive,the coordinate systems with and without setting error are established.Moreover,... In order to analyze the influence of setting error of tool on both tooth profile and contact characteristic of orthogonal face gear drive,the coordinate systems with and without setting error are established.Moreover,the equations of tooth profile and contact points of face gear drive are derived by envelope principle.According to the equations,the change of tooth profile and the contact points position on face gear are analyzed.The tooth surface and contact points are obtained by numerical simulation.Results show that the tooth profile and contact characteristic of face gear drive are not sensitive to the setting error of tool. 展开更多
关键词 face gear setting error tooth profile contact characteristic
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Design of Pinion Machine Tool-settings for Spiral Bevel Gears by Controlling Contact Path and Transmission Errors 被引量:12
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作者 曹雪梅 方宗德 +1 位作者 许浩 苏进展 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2008年第2期179-186,共8页
This paper proposes a new approach to design pinion machine tool-settings for spiral bevel gears by controlling contact path and transmission errors. It is based on the satisfaction of contact condition of three given... This paper proposes a new approach to design pinion machine tool-settings for spiral bevel gears by controlling contact path and transmission errors. It is based on the satisfaction of contact condition of three given control points on the tooth surface. The three meshing points are controlled to be on a predesigned straight contact path that meets the pre-designed parabolic function of transmission errors. Designed separately, the magnitude of transmission errors and the orientation of the contact path are subjected to precise control. In addition, in order to meet the manufacturing requirements, we suggest to modify the values of blank offset, one of the pinion machine tool-settings, and redesign pinion ma- chine tool-settings to ensure that the magnitude and the geometry of transmission errors should not be influenced apart from minor effects on the predesigned straight contact path. The proposed approach together with its ideas has been proven by a numerical example and the manufacturing practice of a pair of spiral bevel gears. 展开更多
关键词 spiral bevel gear contact path transmission error blank offset tooth contact analysis
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纯滚动单圆弧齿轮的法向阻尼分形仿真分析
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作者 赵林林 刘军 黄小平 《机械设计与制造工程》 2026年第2期37-43,共7页
基于椭圆体接触构建纯滚动单圆弧齿轮分形接触模型,修正齿面微凸体分布函数并通过数值仿真验证表面接触系数合理性。考虑微凸体弹塑性变形与域扩展因子,引入微接触截面积建立法向阻尼分形模型。仿真表明:法向阻尼与载荷呈非线性凸弧关... 基于椭圆体接触构建纯滚动单圆弧齿轮分形接触模型,修正齿面微凸体分布函数并通过数值仿真验证表面接触系数合理性。考虑微凸体弹塑性变形与域扩展因子,引入微接触截面积建立法向阻尼分形模型。仿真表明:法向阻尼与载荷呈非线性凸弧关系且随载荷、分形维数、表面长度尺度系数增大而增大,随材料特性参数增大而减小。该模型可用于接触法向阻尼计算,为齿轮接触面动态特性研究提供支撑。 展开更多
关键词 单圆弧齿轮 纯滚动齿轮 法向阻尼 分形理论 齿面接触
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考虑齿面修形的摆线针轮齿面润滑特性研究
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作者 任重义 左永龙 《润滑与密封》 北大核心 2026年第2期134-140,共7页
摆线轮齿廓修形改变齿面载荷的分布,从而影响齿面润滑性能。为研究摆线针轮主动修形对其热弹流润滑(TEHL)特性的影响,分别以接触力和接触应力为修形目标,对摆线轮齿面进行优化修形;基于热弹流润滑理论建立RV减速器中摆线针轮传动的脂润... 摆线轮齿廓修形改变齿面载荷的分布,从而影响齿面润滑性能。为研究摆线针轮主动修形对其热弹流润滑(TEHL)特性的影响,分别以接触力和接触应力为修形目标,对摆线轮齿面进行优化修形;基于热弹流润滑理论建立RV减速器中摆线针轮传动的脂润滑模型,探究两种不同修形方式下摆线轮齿面润滑特性,并通过针齿壳温升试验进行验证。结果表明:以接触力为修形目标修形后的摆线轮齿面的油膜压力变化更加平缓,达到压力峰值时位置更靠近齿廓中部,峰值压力更低,膜厚更大,啮合时产生的温升更低。因此以接触力为修形目标修形后的摆线轮齿面油膜具有更好的润滑特性,从而能更好地减小摆线轮与针齿啮合时的磨损,提升RV减速器的精度。 展开更多
关键词 摆线针轮传动 齿面修形 主动修形 线接触 热弹流润滑
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轴向偏差对弧齿锥齿轮副齿面接触印痕的影响
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作者 王瑞民 刘斌 +3 位作者 剡昌锋 魏理林 赵晓锋 田宇 《兰州理工大学学报》 北大核心 2026年第1期41-48,共8页
齿面接触印痕是检验齿轮啮合性能的重要指标.在弧齿锥齿轮实际安装过程中,大小轮不合理的轴向安装距对齿轮正确啮合造成影响,导致齿面损坏,传动效率降低,从而需要对齿轮轴向偏差进行调整.考虑在大小轮轴向偏差和两者同时存在的情况下,... 齿面接触印痕是检验齿轮啮合性能的重要指标.在弧齿锥齿轮实际安装过程中,大小轮不合理的轴向安装距对齿轮正确啮合造成影响,导致齿面损坏,传动效率降低,从而需要对齿轮轴向偏差进行调整.考虑在大小轮轴向偏差和两者同时存在的情况下,采用有限元分析方法,通过调整弧齿锥齿轮副的轴向偏差,模拟不同安装位置的啮合过程,获取3种啮合状态(啮入、啮中和啮出)的大轮齿面瞬时接触印痕.利用滚动检查机验证模拟仿真所得印痕的准确性,总结弧齿锥齿轮轴向偏差对齿面接触印痕的影响规律,为实际安装调整弧齿锥齿轮提供理论指导. 展开更多
关键词 弧齿锥齿轮 轴向偏差 齿面接触印痕 安装调整
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高阶分段拓扑修形面齿轮副啮合性能研究
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作者 何沁怡 郭辉 +4 位作者 阮宇航 周镇宇 刘李 侯智慧 梅向前 《机械强度》 北大核心 2026年第1期11-19,共9页
【目的】为提高面齿轮传动的承载性能并降低对安装错位的敏感性,提出一种基于预设接触路径的高阶分段拓扑修形方法。【方法】首先,分别设计了沿小齿轮预设接触路径与瞬时接触线方向上的2阶、4阶分段修形函数,根据曲面叠加方法建立了修... 【目的】为提高面齿轮传动的承载性能并降低对安装错位的敏感性,提出一种基于预设接触路径的高阶分段拓扑修形方法。【方法】首先,分别设计了沿小齿轮预设接触路径与瞬时接触线方向上的2阶、4阶分段修形函数,根据曲面叠加方法建立了修形后齿面方程。然后,推导了考虑安装误差的齿面接触分析方程,研究了在不同安装误差条件下预设接触路径角度、修形长度、修形曲线阶次及最大修形量等参数对面齿轮副接触特性的影响规律。最后,采用有限元法对比分析了不同修形函数和修形量条件下面齿轮副的承载接触特性。【结果】计算结果表明,相较于2阶修形,采用4阶修形方法的齿面接触应力以及承载传动误差幅值均有所降低,且接触印痕从面齿轮内径齿根向外径齿顶延伸。高阶分段修形方法能够降低面齿轮副对安装误差的敏感度,优化齿面载荷分布并提升啮合性能。 展开更多
关键词 面齿轮副 拓扑修形 承载接触分析 啮合性能 安装误差
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Pinion Tooth Surface Generation Strategy of Spiral Bevel Gears 被引量:9
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作者 LIU Guanglei FAN Hongwei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第4期753-759,共7页
Aviation spiral bevel gears are often generated by spiral generated modified(SGM) roll method.In this style,pinion tooth surface modified generation strategy has an important influence on the meshing and contact per... Aviation spiral bevel gears are often generated by spiral generated modified(SGM) roll method.In this style,pinion tooth surface modified generation strategy has an important influence on the meshing and contact performances.For the optimal contact pattern and transmission error function,local synthesis is applied to obtain the machine-tool settings of pinion.For digitized machine,four tooth surface generation styles of pinion are proposed.For every style,tooth contact analysis(TCA) is applied to obtain contact pattern and transmission error function.For the difference between TCA transmission error function and design objective curve,the degree of symmetry and agreement are defined and the corresponding sub-objective functions are established.Linear weighted combination method is applied to get an equivalent objective function to evaluate the shape of transmission error function.The computer programs for the process above are developed to analyze the meshing performances of the four pinion tooth surface generation styles for a pair of aviation spiral bevel gears with 38/43 teeth numbers.The four analytical results are compared with each other and show that the incomplete modified roll is optimal for this gear pair.This study is an expansion to generation strategy of spiral bevel gears,and offers new alternatives to computer numerical control(CNC) manufacture of spiral bevel gears. 展开更多
关键词 spiral bevel gears tooth surface generation strategy local synthesis tooth contact analysis transmission error optimization
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Mesh stiffness calculation of cycloid-pin gear pair with tooth profile modification and eccentricity error 被引量:7
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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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一种锥筒形旋转行波超声电机的研究
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作者 杨钧麟 陈晔 +1 位作者 肖世豪 何勍 《机械设计与制造》 北大核心 2026年第2期58-60,68,共4页
通过ANSYS有限元软件建立了一种内部含有梯形齿的锥筒形旋转行波超声电机参数化模型,该超声电机由锥筒形定子与锥形转子组成。对电机定子进行了动力学分析,确定了定子结构参数并选择两个同频正交的面内三阶弯曲模态为工作模态。加工试... 通过ANSYS有限元软件建立了一种内部含有梯形齿的锥筒形旋转行波超声电机参数化模型,该超声电机由锥筒形定子与锥形转子组成。对电机定子进行了动力学分析,确定了定子结构参数并选择两个同频正交的面内三阶弯曲模态为工作模态。加工试制了样机,并实验测试了样机的振动特性和输出性能。样机运行稳定且具有大速度输出,具有较好的运动和动力调节特性。当激振频率为22260.0Hz,激励电压峰-峰值为300V时,该样机的最大输出扭矩为1.06N·mm,最高空载转速可达到441.2rpm。 展开更多
关键词 旋转超声电机 锥筒型 锥齿面接触 行波 弯曲振动
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基于预置传动误差的纯滚接触锥齿轮齿面设计与分析
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作者 王旺旺 谭儒龙 +1 位作者 张卫青 郭晓东 《机械传动》 北大核心 2026年第1期112-118,共7页
【目的】针对纯滚接触锥齿轮在安装误差作用下易产生角速度突变、诱发振动和噪声的问题,提出一种对安装误差低敏感的齿面设计方法。【方法】首先,基于安装误差对角速度的影响,将传动误差曲线预置为抛物线形;其次,利用预置的传动误差曲... 【目的】针对纯滚接触锥齿轮在安装误差作用下易产生角速度突变、诱发振动和噪声的问题,提出一种对安装误差低敏感的齿面设计方法。【方法】首先,基于安装误差对角速度的影响,将传动误差曲线预置为抛物线形;其次,利用预置的传动误差曲线对小轮理论齿面进行修形,建立了小轮目标齿面的数学模型;最后,构建了修形后的锥齿轮三维实体模型,并进行了齿面接触分析。【结果】结果表明,实际导出的传动误差曲线与预置曲线基本一致,验证了齿面修形的有效性;优化后的齿面实际啮入、啮出点偏离齿面边缘,整体接触区向齿面中部靠拢,可有效避免边缘接触及应力集中。 展开更多
关键词 纯滚接触锥齿轮 传动误差 目标齿面 接触迹线 齿面接触分析
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