Semi-analytical loaded tooth contact analysis method for spiral bevel gears
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Fucai Li | Zhen Liu | Zhongting Xu | Q. He
[1] H. Ding,et al. Loaded contact pressure distribution prediction for spiral bevel gear , 2022, International Journal of Mechanical Sciences.
[2] Weisi Guo,et al. An analytical approach for calculating thin-walled planet bearing load distribution , 2022, International Journal of Mechanical Sciences.
[3] H. Ding,et al. Carburizing effect-inspired bending fatigue forecasting model for spiral bevel gears , 2022, International Journal of Mechanical Sciences.
[4] Zhike Peng,et al. Traveling wave resonance analysis of flexible spur gear system with angular misalignment , 2022, International Journal of Mechanical Sciences.
[5] Yongsheng Wang,et al. Energy loss and mechanical efficiency forecasting model for aero-engine bevel gear power transmission , 2022, International Journal of Mechanical Sciences.
[6] Wenjun Luo,et al. Analytical approach to mesh stiffness modeling of high-speed spur gears , 2022, International Journal of Mechanical Sciences.
[7] Shunhao Zhang,et al. Modulation sidebands analysis of coupled bevel gear pair and planetary gear train system , 2022, Mechanism and Machine Theory.
[8] Zongde Fang,et al. An innovative ease-off flank modification method based on the dynamic performance for high-speed spiral bevel gear with high-contact-ratio , 2021 .
[9] Bingkui Chen,et al. Mathematical design and computerized analysis of spiral bevel gears based on geometric elements , 2021 .
[10] W. Desmet,et al. On the modelling of gear alignment errors in the tooth contact analysis of spiral bevel gears , 2021 .
[11] Han Ding,et al. An innovative semi-analytical determination approach to numerical loaded tooth contact analysis (NLTCA) for spiral bevel and hypoid gears , 2020, Adv. Eng. Softw..
[12] Hui Ma,et al. Meshing and dynamic characteristics analysis of spalled gear systems: A theoretical and experimental study , 2020 .
[13] Jinyuan Tang,et al. Machine-tool settings driven high-order topology optimization to grinding tooth flank by considering loaded tooth contact pattern for spiral bevel gears , 2020 .
[14] Bangchun Wen,et al. Investigation on meshing and dynamic characteristics of spur gears with tip relief under wear fault , 2019, Science China Technological Sciences.
[15] Wei-fang Chen,et al. Modelling and Dynamic Analysis of the Spiral Bevel Gear-Shaft-Bearing-Gearbox Coupling System , 2019, Mathematical Problems in Engineering.
[16] Han Ding,et al. Accurate numerical computation of loaded tooth surface contact pressure and stress distributions for spiral bevel gears by considering time-varying meshing characteristics , 2019, Adv. Eng. Softw..
[17] B. Wen,et al. Calculation of mesh stiffness of spur gears considering complex foundation types and crack propagation paths , 2019, Mechanical Systems and Signal Processing.
[18] Yiping Dai,et al. Vibration analysis for tooth crack detection in a spur gear system with clearance nonlinearity , 2019, International Journal of Mechanical Sciences.
[19] Rulong Tan,et al. The fundamental roughness model for face-milling spiral bevel gears considering run-outs , 2019, International Journal of Mechanical Sciences.
[20] H. Ding,et al. Numerical determination to loaded tooth contact performances in consideration of misalignment for the spiral bevel gears , 2019, International Journal of Mechanical Sciences.
[21] Wim Desmet,et al. An analytical model for accurate and numerically efficient tooth contact analysis under load, applied to face-milled spiral bevel gears , 2018, Mechanism and Machine Theory.
[22] H. Ding,et al. An innovative determination approach to tooth compliance for spiral bevel and hypoid gears by using double-curved shell model and Rayleigh–Ritz approach , 2018, Mechanism and Machine Theory.
[23] Zhao Bo,et al. An improved time-varying mesh stiffness model for helical gear pairs considering axial mesh force component , 2018, Mechanical Systems and Signal Processing.
[24] Wang Qi,et al. Optimization of the loaded contact pattern of spiral bevel and hypoid gears based on a kriging model , 2018 .
[25] Di He,et al. A new analytical identification approach to the tooth contact points considering misalignments for spiral bevel or hypoid gears , 2018 .
[26] Bangchun Wen,et al. An improved analytical method for calculating time-varying mesh stiffness of helical gears , 2018 .
[27] Mingde Zhang,et al. Research on the mold release motion for spiral bevel gear forging , 2018 .
[28] Aijun Xu,et al. Research on gear tooth forming control in the closed die hot forging of spiral bevel gear , 2018 .
[29] Ming J. Zuo,et al. Dynamic modeling of gearbox faults: A review , 2018 .
[30] Lin Hua,et al. Design and hot forging manufacturing of non-circular spur bevel gear , 2017 .
[31] Bangchun Wen,et al. Meshing characteristics of spur gear pair under different crack types , 2017 .
[32] Xu Han,et al. Analytical solution to bending and contact strength of spiral bevel gears in consideration of friction , 2017 .
[33] Bangchun Wen,et al. Time-varying mesh characteristics of a spur gear pair considering the tip-fillet and friction , 2017 .
[34] Han Ding,et al. A novel operation approach to determine initial contact point for tooth contact analysis with errors of spiral bevel and hypoid gears , 2017 .
[35] Yimin Zhang,et al. A model for analyzing stiffness and stress in a helical gear pair with tooth profile errors , 2017 .
[36] Ignacio Gonzalez-Perez,et al. Analytical determination of basic machine-tool settings for generation of spiral bevel gears and compensation of errors of alignment in the cyclo-palloid system , 2017 .
[37] Xu Jinli,et al. Influence of Bearing Stiffness on the Nonlinear Dynamics of a Shaft-Final Drive System , 2016 .
[38] Bangchun Wen,et al. Time-varying mesh stiffness calculation of spur gears with spalling defect , 2016 .
[39] Domenico Mundo,et al. Deproximating Tredgold's Approximation , 2016 .
[40] Jin Zeng,et al. An improved analytical method for mesh stiffness calculation of spur gears with tip relief , 2016 .
[41] Q. Fan,et al. Ease-Off and Application in Tooth Contact Analysis for Face-Milled and Face-Hobbed Spiral Bevel and Hypoid Gears , 2016 .
[42] Geng Liu,et al. A robust model for determining the mesh stiffness of cylindrical gears , 2015 .
[43] Haddar Mohamed,et al. Effects of gear mesh fluctuation and defaults on the dynamic behavior of two-stage straight bevel system , 2014 .
[44] Hui Ma,et al. Time-varying mesh stiffness calculation of cracked spur gears , 2014 .
[45] Saleh Akbarzadeh,et al. A numerical study on the performance of straight bevel gears operating under mixed lubrication regime , 2014 .
[46] Yimin Shao,et al. Dynamic simulation of spur gear with tooth root crack propagating along tooth width and crack depth , 2011 .
[47] Vilmos Simon,et al. Influence of tooth modifications on tooth contact in face-hobbed spiral bevel gears , 2011 .
[48] Qi Fan,et al. Optimization of Face Cone Element for Spiral Bevel and Hypoid Gears , 2011 .
[49] José I. Pedrero,et al. Load distribution model along the line of contact for involute external gears , 2010 .
[50] Ahmet Kahraman,et al. An Ease-Off Based Method for Loaded Tooth Contact Analysis of Hypoid Gears Having Local and Global Surface Deviations , 2010 .
[51] Ahmet Kahraman,et al. A load distribution model for hypoid gears using ease-off topography and shell theory , 2009 .
[52] Massimo Guiggiani,et al. Optimization of the Loaded Contact Pattern in Hypoid Gears by Automatic Topography Modification , 2009 .
[53] Vilmos Simon,et al. Computer simulation of tooth contact analysis of mismatched spiral bevel gears , 2007 .
[54] Andrey Volkov,et al. Algorithms for analysis of meshing and contact of spiral bevel gears , 2007 .
[55] Vilmos Simon,et al. Load Distribution in Spiral Bevel Gears , 2007 .
[56] Qi Fan,et al. Enhanced Algorithms of Contact Simulation for Hypoid Gear Drives Produced by Face-Milling and Face-Hobbing Processes , 2007 .
[57] Faydor L. Litvin,et al. Design, manufacture, stress analysis, and experimental tests of low-noise high endurance spiral bevel gears , 2006 .
[58] Qi Fan,et al. Computerized Modeling and Simulation of Spiral Bevel and Hypoid Gears Manufactured by Gleason Face Hobbing Process , 2006 .
[59] Faydor L. Litvin,et al. Modified approach for tooth contact analysis of gear drives and automatic determination of guess values , 2005 .
[60] Faydor L. Litvin,et al. Automatic determination of guess values for simulation of meshing of gear drives , 2004 .
[61] Philippe Velex,et al. Contribution of Gear Body to Tooth Deflections—A New Bidimensional Analytical Formula , 2004 .
[62] Anette Andersson,et al. A dynamic model to determine vibrations in involute helical gears , 2003 .
[63] Faydor L. Litvin,et al. Computerized design, simulation of meshing, and contact and stress analysis of face-milled formate generated spiral bevel gears , 2002 .
[64] Alfonso Fuentes,et al. Computerized integrated approach for design and stress analysis of spiral bevel gears , 2002 .
[65] Vilmos Simon,et al. Load Distribution in Hypoid Gears , 2000 .
[66] Faydor L. Litvin,et al. Integrated computer program for simulation of meshing and contact of gear drives , 2000 .
[67] Louis Cloutier,et al. Accurate tooth stiffness of spiral bevel gear teeth by the Finite Strip method , 1998 .
[68] Faydor L. Litvin,et al. Computerized generation and simulation of meshing and contact of spiral bevel gears with improved geometry , 1998 .
[69] A. S. Yigit,et al. Effect of Meshing Tooth Stiffness and Manufacturing Error on the Analysis of Straight Bevel Gears , 1998 .
[70] Faydor L. Litvin,et al. Computerized determination of curvature relations and contact ellipse for conjugate surfaces , 1995 .
[71] R. Lisle,et al. The Mohr circle for curvature and its application to fold description , 1995 .
[72] Louis Cloutier,et al. A general formulation for the calculation of the load sharing and transmission error under load of spiral bevel and hypoid gears , 1995 .
[73] Faydor L. Litvin,et al. Computerized design of low-noise face-milled spiral bevel gears , 1994 .
[74] G. Muthuveerappan,et al. Finite element modelling and analysis of a straight bevel gear tooth , 1993 .
[75] Donald R. Houser,et al. Optimum Profile Modifications for the Minimization of Static Transmission Errors of Spur Gears , 1986 .
[76] R. Cornell. Compliance and Stress Sensitivity of Spur Gear Teeth , 1981 .
[77] A. Seireg,et al. A Mathematical Programming Technique for the Evaluation of Load Distribution and Optimal Modifications for Gear Systems , 1973 .