A Review of Gerotor Technology in Hydraulic Machines
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[1] Chul Kim,et al. Performance improvement of an oil pump: Design of port assembled with gerotor (2-ellipses-combined lobe) , 2016 .
[2] Yang Wenming,et al. Design of gerotor oil pump with new rotor profile for improving performance , 2016 .
[3] Paolo Pennacchi,et al. Non Undercutting Conditions in Internal Gears , 2000 .
[4] Sasa Cukovic,et al. Modeling of the Meshing of Trochoidal Profiles With Clearances , 2012 .
[5] Blaža Stojanović,et al. COMPARATIVE ANALYSIS OF ANALYTICAL AND NUMERICAL CALCULATIONS OF CONTACT STRESSES AT ROTATIONAL ELEMENTS OF GEROTOR PUMPS , 2017 .
[6] Chul Kim,et al. Development of a new gerotor for oil pumps with multiple profiles , 2011 .
[7] Won Jee Chung,et al. Application of SolidWorks ® & AMESim ® – based Updated Simulation Technique to Backflow Analysis of Trochoid Hydraulic Pump for Lubrication , 2014 .
[8] Blaza Stojanovic,et al. The Selection of Optimal Parameters of Gerotor Pump by Application of Factorial Experimental Design , 2017 .
[9] Hyung-Ki Min,et al. Design and experimental verification of a port plate in a gerotor pump to reduce pressure pulsation , 2018 .
[10] Salvatore Manco,et al. Effects of timing and odd/even number of teeth on noise generation of gerotor lubricating pumps for IC engines , 2000 .
[11] J. Stryczek,et al. Visualization study of the flow processes and phenomena in the external gear pump , 2018, Archives of Civil and Mechanical Engineering.
[12] Jarosław Stryczek,et al. Gerotor pump with POM gears: Design, production technology, research , 2014 .
[13] Massimo Rundo,et al. Computational Fluid Dynamics Analysis of Gerotor Lubricating Pumps at High-Speed: Geometric Features Influencing the Filling Capability , 2016 .
[14] Luigi Arnone,et al. A Tridimensional CFD Analysis of the Lubrication Circuit of a Non-Road Application Diesel Engine , 2013 .
[15] Y. Yoshimura,et al. High-output micro-trochoid pump fabricated by a surface treatment technique , 2002 .
[16] Chiu-Fan Hsieh,et al. Geometric Design Using Hypotrochoid and Nonundercutting Conditions for an Internal Cycloidal Gear , 2007 .
[17] F. Majdič,et al. The Pressure and Efficiency Characteristic of Hydraulic Gerotor Motor with the Floating Outer Ring , 2018 .
[18] Chiu-Fan Hsieh,et al. Flow Characteristics of Gerotor Pumps With Novel Variable Clearance Designs , 2015 .
[19] Goran Devedzic,et al. Analysis of Forces and Moments in Gerotor Pumps , 2010 .
[20] Jia Yan,et al. A New Gerotor Design Method With Switch Angle Assignability , 2009 .
[21] R. Elayaraja,et al. PERFORMANCE OF GEROTOR OIL PUMP FOR AN AUTOMOTIVE ENGINE - PREDICTION USING CFD ANALYSIS AND EXPERIMENTAL VALIDATION , 2009 .
[22] Sheng Gang,et al. Flow characteristics of accelerating pump in hydraulic-type wind power generation system under different wind speeds , 2017 .
[23] Andrea Vacca,et al. A Lumped Parameter Approach for GEROTOR Pumps: Model Formulation and Experimental Validation , 2016 .
[24] Gordon R. Pennock,et al. Geometry for trochoidal-type machines with conjugate envelopes , 1994 .
[25] Yuki Nishida,et al. Development of Continuously Variable Discharge Oil Pump , 2018 .
[26] Adolfo Senatore,et al. Analysis and Simulation of an Oil Lubrication Pump for Internal Combustion Engines , 2015 .
[27] M. Khamashta,et al. GEROLAB Package System: Innovative Tool to Design a Trochoidal-Gear Pump , 2009 .
[28] Jang-Ping Wang,et al. High-precision technology with negative punch clearance for the manufacturing of a cycloid pump , 2018 .
[29] Massimo Rundo,et al. Models for Flow Rate Simulation in Gear Pumps: A Review , 2017 .
[30] Andreas Almqvist,et al. A wear model for EHL contacts in gerotor type hydraulic motors , 2015 .
[31] Shoji Maruo,et al. Optically driven micropump produced by three-dimensional two-photon microfabrication , 2006 .
[32] Rathindranath Maiti,et al. Kinematics of active contact in modified epitrochoid generated rotary piston machines , 1988 .
[33] P. J. Gamez-Montero,et al. Method for Fluid Flow Simulation of a Gerotor Pump Using OpenFOAM , 2017 .
[34] Yanjun Xia,et al. Analysis and Optimization of an Electrohydraulic Power Pack for Use in a Fully-Active Vehicle Suspension Through the Use of Computational Fluid Dynamics , 2013 .
[35] Gordon R. Pennock,et al. The effects of the generating pin size and placement on the curvature and displacement of epitrochoidal gerotors , 1992 .
[36] C-F Hsieh,et al. Non-undercutting region and property evaluation of epitrochoidal gerotor geometry , 2010 .
[37] P. J. Gamez-Montero,et al. Teeth Clearance and Relief Grooves Effects in a Trochoidal-Gear Pump Using New Modules of GeroLAB , 2012 .
[38] Pedro-Javier Gamez-Montero,et al. Influence of the interteeth clearances on the flow ripple in a gerotor pump for engine lubrication , 2012 .
[39] Matteo Pellegri. A SIMULATION APPROACH FOR THE EVALUATION OF POWER LOSSES IN THE AXIAL GAP OF GEROTOR UNITS , 2019 .
[40] Lozica Ivanović,et al. Reduction of the maximum contact stresses by changing geometric parameters of the trochoidal gearing teeth profile , 2016 .
[41] F. J. Robinson,et al. An Analysis of Epitrochoidal Profiles With Constant Difference Modification Suitable for Rotary Expanders and Pumps , 1976 .
[42] Nicola Nervegna,et al. Lubrication pumps for internal combustion engines: a review , 2015 .
[43] Harumitsu SASAKI,et al. Development of High Efficiency P / M Internal Gear Pump Rotor ( Megafloid Rotor ) , 2008 .
[44] B Paffoni,et al. Pressure and film thickness in a trochoidal hydrostatic gear pump , 2003 .
[45] Colin O’Shea,et al. Hydraulic Flow Ripple Cancellation Using the Primary Flow Source , 2016 .
[46] Tomas Germann,et al. Numerical simulation of low-pulsation gerotor pumps for use in the pharmaceutical industry and in biomedicine , 2015 .
[47] Andrea Vacca,et al. Numerical analysis and experimental validation of Gerotor pumps: A comparison between a lumped parameter and a computational fluid dynamics-based approach , 2017 .
[48] Chiu-Fan Hsieh,et al. Influence of Gerotor Performance in Varied Geometrical Design Parameters , 2009 .
[49] P. J. Gamez-Montero,et al. Experimental study on the impulsion port of a trochoidal wheeled pump , 2017 .
[50] Joong-Ho Shin,et al. Rotor profile design in a hypogerotor pump , 2009 .
[51] Giovanni Mimmi,et al. Theoretical analysis of internal epitrochoidal and hypotrochoidal machines , 2009 .
[52] Chiu-Fan Hsieh,et al. Fluid and Dynamics Analyses of a Gerotor Pump Using Various Span Angle Designs , 2012 .
[53] Francesco Gherardini,et al. Modelling and Simulation of a Hydrostatic Steering System for Agricultural Tractors , 2018 .
[54] Y. Murai,et al. Visualization of Internal Flow in an Inscribed Trochoid Gear Pump , 2006 .
[55] Chul Kim,et al. Design and CFD analysis of gerotor with multiple profiles (ellipse–involute–ellipse type and 3-ellipses type) using rotation and translation algorithm , 2016 .
[56] Yasuhiko Sasaki,et al. Development of High-Power Micropump , 1999 .
[57] Adolfo Senatore,et al. Modelling Approach on a Gerotor Pump Working in Cavitation Conditions , 2016 .
[58] Eduardo Carlos Bianchi,et al. Replacement of metallic parts for polymer composite materials in motorcycle oil pumps , 2017 .
[59] Adolfo Senatore,et al. Gerotor pump cavitation monitoring and fault diagnosis using vibration analysis through the employment of auto-regressive-moving-average technique , 2017, Simul. Model. Pract. Theory.
[60] Tarique Hussain,et al. In-House Development of Gerotor Pump for Lubrication System of a Gas Turbine Engine , 2015 .
[61] Jarosław Stryczek,et al. Visualisation research of the flow processes in the outlet chamber–outlet bridge–inlet chamber zone of the gear pumps , 2015 .
[62] R. Singh,et al. Study of Effect of Air Content in Lubrication Oil on Gerotor Pump Performance Using CFD Simulations , 2019, SAE Technical Paper Series.
[63] Andrea Vacca,et al. Gerotor Pumps for Automotive Drivetrain Applications: A Multi Domain Simulation Approach , 2011 .
[64] Chul Kim,et al. Development of an Integrated System for Automated Design of Gerotor Oil Pump , 2007 .
[65] Justyna Krawczyk,et al. Construction and Experimental Research on Plastic Cycloidal Gears Used in Gerotor Pumps , 2014 .
[66] Yamamoto Michitaka,et al. Development of Engine Lubrication System with New Internal Gear Fully Variable Discharge Oil Pump , 2017 .
[67] Jia Yan,et al. Design of deviation-function based gerotors , 2009 .
[68] Nigel Johnston,et al. Variable Displacement Gear and Gerotor Pumps , 2015 .
[69] J. R. Colbourne,et al. Reduction of the Contact Stress in Internal Gear Pumps , 1976 .
[70] Y. Inaguma. Oil temperature influence on friction torque characteristics in hydraulic pumps , 2012 .
[71] Massimo Sorli,et al. Optimization of Gerotor Pumps with Asymmetric Profiles through an Evolutionary Strategy Algorithm , 2019, Machines.
[72] Chul Kim,et al. Optimal design of the gerotor (2-ellipses) for reducing maximum contact stress , 2016 .
[73] K Biernacki,et al. Analysis of Stress and Deformation in Plastic Gears Used in Gerotor Pumps , 2010 .
[74] Faydor L. Litvin,et al. Geometry of a cycloidal pump , 2001 .
[75] Adolfo Senatore,et al. A Tridimensional CFD Analysis of the Oil Pump of an High Performance Motorbike Engine , 2014 .
[76] Chiu-Fan Hsieh. Flow characteristics of Roots pumps with multistage designs by CFD investigation , 2015 .
[77] M. K. Karamooz Ravari. Elliptical lobe shape gerotor pump design to minimize wear , 2011 .
[78] R. Maiti,et al. Limits on modification of epitrochoid used in rotary piston machines and the effects of modification on geometric volume displacement and ripple , 1990 .
[79] Chul Kim,et al. Design of rotor profile of internal gear pump for improving fuel efficiency , 2015 .
[80] R. Lopez,et al. Three dimensional simulation of gerotor with deforming mesh by using OpenFOAM , 2018 .
[81] Sung-Yuen Jung,et al. Design of Rotor for Internal Gear Pump Using Cycloid and Circular-Arc Curves , 2012 .
[82] Michał Banaś,et al. The Fluid Power Elements and Systems Made of Plastics , 2017 .
[83] Myeong-Kwan Park,et al. Design of port plate in gerotor pump for reduction of pressure pulsation , 2006 .
[84] A. Dietzel,et al. Rotational micro actuator for microsurgery , 2014 .
[85] Salvatore Manco,et al. Miniature Gerotor Pump Prototype for Automotive Applications , 2002 .
[86] Salvatore Manco,et al. Modelling and simulation of gerotor gearing in lubricating oil pumps , 1999 .
[87] Y. Inaguma. Friction torque characteristics of an internal gear pump , 2011 .
[88] Paul W. Michael,et al. Hydraulic Fluid Efficiency Studies in Low-Speed High-Torque Motors , 2009 .
[89] D C H Yang,et al. Flowrate formulation and displacement analyses for deviation function-based gerotor pumps , 2011 .
[90] J. Stryczek,et al. Visualization research on the influence of an ultrasonic degassing system on the operation of a hydraulic gear pump , 2018 .
[91] Giovanni Mimmi,et al. Theoretical Analysis of an Original Rotary Machine , 2010 .
[92] Yoshiharu Inaguma,et al. A practical approach for analysis of leakage flow characteristics in hydraulic pumps , 2013 .
[93] L. Rodionov,et al. VISUALIZATION OF LEAKAGE FLOW THROUGH ACTIVE CONTACTS IN TOOTHED EXTERNAL GEAR PUMPS - CFD AND PHOTO IMAGING TECHNIQUES , 2016 .
[94] J. Aktaa,et al. Dynamic finite element analysis of a micro lobe pump , 2003 .
[95] Fabrizio Paltrinieri,et al. A Combined Methodology for Studying the Axial Balancing Mechanism of Orbit Annular Hydraulic Machines , 2015 .
[96] P. J. Gamez-Montero,et al. Magnet-Sleeve-Sealed Mini Trochoidal-Gear Pump Prototype with Polymer Composite Gear , 2017 .
[97] A. Almqvist,et al. A strategy for wear analysis using numerical and experimental tools, applied to orbital type hydraulic motors , 2016 .
[98] Blaža Stojanović,et al. THE DEVELOPMENT OF MAGNETIC GEARS FOR TRANSPORTATION APPLICATIONS , 2017 .
[99] Rathindranath Maiti,et al. Unification of epitrochoid origin profile design approaches for external lobed star member used in hydrostatic and gear units , 2013 .
[100] Salvatore Manco,et al. Displacement vs Flow Control in IC Engines Lubricating Pumps , 2004 .
[101] Salvatore Manco,et al. A Contribution to the Design of Hydraulic Lube Pumps , 2002 .
[102] Fumihiko Toyoda,et al. Development of Variable Discharge Oil Pump , 2008 .
[103] J. Harrison,et al. Modeling Gerotor Oil Pumps in 1D to Predict Performance with Known Operating Clearances , 2016 .
[104] P. J. Gamez-Montero,et al. GeroMAG: In-House Prototype of an Innovative Sealed, Compact and Non-Shaft-Driven Gerotor Pump with Magnetically-Driving Outer Rotor , 2017 .
[105] Eduardo Gubbiotti Ribeiro,et al. Strategies for Energy Savings with Use of Constant and Variable Oil Pump Systems , 2011 .
[106] R. Gras,et al. Teeth clearance effects upon pressure and film thickness in a trochoidal hydrostatic gear pump , 2004 .
[107] Baoqing Deng,et al. Parametric Design on Internal Gear of Cycloid Gear Pump with NX10.0 , 2017 .
[108] M. Khamashta,et al. Numerical Study in a Mini Trochoidal-Gear Pump With Multi-Meshing Contact Points , 2016 .
[109] R. Squarcini,et al. Design Process of an Electric Powered Oil Pump , 2014 .
[110] Anurag Kamal,et al. Design Analysis & Parametric Optimization of Gerotor Oil Pump for Improving Volumetric Efficiency , 2016 .
[111] Giovanni Mimmi,et al. Design and simulation of meshing of a particular internal rotary pump , 2012 .
[112] P. J. Gamez-Montero,et al. Computational fluid dynamics and particle image velocimetry assisted design tools for a new generation of trochoidal gear pumps , 2015 .
[113] Mohammad Reza Karamooz Ravari. Elliptical lobe shape gerotor pump design to minimize wear , 2011 .
[114] Andrea Vacca,et al. Energy Efficiency and Controllability of Fluid Power Systems , 2018 .
[115] Andrea Vacca,et al. A fast lumped parameter approach for the prediction of both aeration and cavitation in Gerotor pumps , 2018 .
[116] H Ding,et al. A CFD model for orbital gerotor motor , 2012 .
[117] J. R Colbourne,et al. The geometry of trochoid envelopes and their application in rotary pumps , 1974 .
[118] Rathindranath Maiti. Torque characteristics of epitrochoid generated orbital rotary piston type hydraulic motors , 1993 .
[119] Chiu-Fan Hsieh,et al. Geometric Design for a Gerotor Pump With High Area Efficiency , 2007 .
[120] H. Kwak,et al. Design of port shape for reducing irregularity of oil pump , 2017 .
[121] Honghyun Cho,et al. Theoretical investigation of the effect of a relief groove on the performance of a gerotor oil pump , 2018, Journal of Mechanical Science and Technology.
[122] Won Jee Chung,et al. On new methodology of AMESim® & CATIA® V5 — Based cavitation simulation for flow rate control of trochoid hydraulic pump , 2011, 2011 IEEE International Conference on Mechatronics and Automation.
[123] Adolfo Senatore,et al. Diagnostic Process by Using Vibrational Sensors for Monitoring Cavitation Phenomena in a Getoror Pump Used for Automotive Applications , 2017 .
[124] Kentaro Yoshida,et al. The Latest Trends in Oil Pump Rotors for Automobiles , 2016 .
[125] L. Ivanović,et al. Modelling of Trochoidal Gearing at the Gerotor Pump , 2013 .
[126] Andrea Vacca,et al. Multi-objective optimization of circular-toothed gerotors for kinematics and wear by genetic algorithm , 2018, Mechanism and Machine Theory.
[127] M Suresh Kumar,et al. Computational fluid dynamics integrated development of gerotor pump inlet components for engine lubrication , 2010 .
[128] Min Choel Lee,et al. A Study on Theoretical Flowrate of Gerotor Pump Using Chamber Areas , 2018, International Journal of Precision Engineering and Manufacturing.
[129] Jose M. Garcia. Surface effects on start-up friction and their application to compact gerotor motor design , 2011 .
[130] Blaža Stojanović,et al. Analysis of the flow rate and the volumetric efficiency of the trochoidal pump by application of Taguchi method , 2017 .
[131] J. Krawczyk,et al. Designing of the Gerotor Pump Body Made of Plastics , 2016 .
[132] Massimo Rundo. Energy Consumption in ICE Lubricating Gear Pumps , 2010 .
[133] Faydor L. Litvin,et al. Design and simulation of meshing of a cycloidal pump , 2002 .
[134] PJ Gamez-Montero,et al. Methodology based on best practice rules to design a new-born trochoidal gear pump , 2018 .
[135] Jae-Cheon Lee,et al. Profile Design and Numerical Calculation of Instantaneous Flow Rate of a Gerotor Pump , 2015 .
[136] Joong-Ho Shin,et al. Optimal rotor wear design in hypotrochoidal gear pump using genetic algorithm , 2011 .
[137] Francesco Leali,et al. A parametric CAD-based method for modelling and simulation of positive displacement machines , 2016 .
[138] Alen Jose,et al. Development of In-house Competency to Build Compact Gerotor Oil Pump for High Speed Diesel Engine Application , 2013 .
[139] Jarosław Stryczek,et al. Strength analysis of the polyoxymethylene cycloidal gears of the gerotor pump , 2014 .
[140] Xiao Hu,et al. Gerotor Fuel Pump Performance and Leakage Study , 2011 .
[141] Krzysztof Biernacki,et al. Selection of the optimum tooth profile for plastic cycloidal gears , 2014 .
[142] Abdelkrim Zouani,et al. CAE Simulation of Engine Tonal Noise Generated by Gerotor Oil Pumps , 2015 .
[143] Krzysztof Biernacki,et al. Analysis of the material and design modifications influence on strength of the cycloidal gear system , 2015 .
[144] Nicola Nervegna,et al. Geometric features of gerotor pumps: Analytic vs CAD methods , 2012 .
[145] Richard Franz Ansdale,et al. The Wankel RC engine : design and performance , 1968 .
[146] Soon-Man Kwon,et al. Analytical Wear Model of a Gerotor Pump without Hydrodynamic Effect , 2008 .
[147] C. Bates,et al. Case study: The effect of an amorphous hydrogenated carbon-coated gear-wheel on a hydraulic orbital motor’s efficiency over time , 2020 .
[148] Xiaoguang Liu,et al. Numerical simulation of an inner engaging gerotor based on the optimization of inlet and outlet cavities , 2015 .
[149] K. Dasgupta,et al. Theoretical and Experimental Studies of the Steady State Performance of an Orbital Rotor Low-Speed High-Torque Hydraulic Motor , 1996 .
[150] Massimo Rundo,et al. Advances in simulation of gerotor pumps: An integrated approach , 2017 .
[151] Giovanni Jacazio,et al. Influence of rotor profile geometry on the performance of an original low-pressure gerotor pump , 2016 .
[152] H. Moosavi,et al. Flow irregularity and wear optimization in epitrochoidal gerotor pumps , 2012 .
[153] D. Miloradović,et al. Modelling and simulation of the load in the epicyclic rotary pump with trochoidal gear profiles , 2018, IOP Conference Series: Materials Science and Engineering.
[154] Matteo Pellegri,et al. Numerical simulation of Gerotor pumps considering rotor micro-motions , 2017 .