Intelligent Control and Automation

Intelligent Control and Automation

ISSN Print: 2153-0653
ISSN Online: 2153-0661
www.scirp.org/journal/ica
E-mail: ica@scirp.org
"Dynamic Friction Behaviors of Pneumatic Cylinders"
written by Xuan Bo Tran, Hideki Yanada,
published by Intelligent Control and Automation, Vol.4 No.2, 2013
has been cited by the following article(s):
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[2] Pressure Dependent Nonlinearities of a Compact Hydro-Pneumatic Strut with Integrated Gas-Oil Chamber
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[3] MÔ HÌNH HÓA VÀ MÔ PHỎNG HIỆN TƯỢNG DÍNH-TRƯỢT TRONG XI LANH KHÍ NÉN
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[4] Methods to improve motion servo control accuracy of pneumatic cylinders-review and prospect
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[5] Friction force estimation in pneumatic cylinders by full automation of experimental procedures
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[6] Nonlinear position control of pneumatically driven stage considering friction characteristics of pneumatic cylinder
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[7] Optimal design of automatic assembly system for bolts and nuts in sets
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[8] Modelling of two-phase expansion in a reciprocating expander
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[9] Identificazione e Modellazione di un Sistema di Posizionamento ad Azionamento Pneumatico= Identification and Modelling of a Pneumatic Drive Positioning System
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[10] A review of pneumatic cylinder positioning techniques for high positioning accuracy and minimal response time
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[11] Development of a new high-precision friction test platform and experimental study of friction characteristics for pneumatic cylinders
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[12] Development and Evaluation of Energy-Saving Electro-Hydraulic Actuator
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[13] Nonlinear control of a pneumatic actuator based on a dynamic friction model
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[14] Nonlinear Control of a Pneumatic Actuator Based on a Dynamic Friction Model.
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[15] Identification of Friction Force Model of a Pneumatic Cylinder
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[16] Effect of humid tropical climate on friction characteristic of pneumatic cylinders
Journal of Applied Engineering Science, 2021
[17] Modelling and design of a two-phase reciprocating expander for integration in a trilateral flash cycle
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[18] Gaits Stability Analysis for a Pneumatic Quadruped Robot Using Reinforcement Learning
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[19] Influence of Humid Air Temperature on Friction Behavior in Pneumatic Cylinder.
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[20] Tribology in Industry
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[21] The THE EFFECT OF HUMID TROPICAL CLIMATE ON FRICTION CHARACTERISTIC OF PNEUMATIC CYLINDERS
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[22] 宇宙展開構造の重力補償に用いるインフレータブルチューブのモデリングとその評価
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[23] Behavior of friction in pneumatic cylinders with different relative humidity
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[24] Behavior of Friction in Pneumatic Cylinders with Different Relative Humidity.
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[25] Friction Characteristics of a Cylinder Based on a Bridge-Type Pneumatic Energy-saving Circuit
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[26] PSA cycle 에서 방출되는 purge gas 의 에너지 회수를 위한 제품기체 가압공정 연구
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[27] Experimental Study of Friction Characteristics of Pneumatic Cylinders
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[28] Pneumatic actuator supported with hydraulic system
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[29] The Influence of Vacuum Level on the Friction Force Acting on the Pneumatic Cylinder Sealing Ring
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[30] Étude théorique et expérimentale des systèmes d'étanchéité par joints pneumatiques
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[31] Friction Torque Estimation Of Vane Type Semi-Rotary Pneumatic Actuators In The Form Of Combined Coulomb-Viscous Model
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[32] Development of a Test Apparatus for Estimation of Friction Parameters at Linear Pneumatic Cylinders
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[33] Siłownik pneumatyczny wspomagany układem hydraulicznym
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[34] Effects of friction models on simulation of pneumatic cylinder
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[35] Experimental and Numerical Studies of Dynamic Behaviors of a Hydraulic Power Take-Off Cylinder Using Spectral Representation Method
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[36] Trajectory tracking control of a pneumatically actuated 6-DOF Gough–Stewart parallel robot using Backstepping-Sliding Mode controller and geometry-based quasi …
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[37] Inference on results obtained by experimenting to control speed and precise extension of a pneumatic cylinder in a cost-effective manner
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[38] Dynamic modelling of ram BOP
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[39] 基于智能气缸的功能可配置机械手的设计
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[40] Effect of Friction Models on Simulation of Hydraulic Steering System
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[41] Pneumatikus lineáris hajtások energetikai optimalizálása
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[42] Energy Optimisation of Pneumatic Drives by Positioning
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[43] Dynamic friction behavior in pre-sliding regime of pneumatic actuators
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[44] DYNAMIC FRICTION BEHAVIOUR IN PRE-SLIDING REGIME OF PNEUMATIC ACTUATORS
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[45] کنترل موقعیت ربات موازی نیوماتیکی 6 درجه آزادی گاف-استوارت به کمک کنترل‌کننده‌ی پسگام مدلغزشی‎
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[46] یکیتاموین 6 فاگ یدازآ هجرد-کمک هب تراوتسا لرتنک هدننک‎
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[47] A review on recent research trends in servo pneumatic positioning systems
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[48] Initial Design of an Optical-Access Piston Expansion Chamber for Wet-Expansion
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[49] Design of an Optical-access Expansion Chamber for Two-phase Expansion
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[50] Human Energy Involved in Manual and Mechanically Facilitate Harvesting of Saffron Flowers
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[51] Experimental and numerical studies of dynamic behaviours of a hydraulic power take-off cylinder using spectral representation method
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[52] Modelling and Preliminary Design of a Variable-BVR Rotary Valve Expander with an Integrated Linear Generator
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[53] Experimental Analysis of Tribological Behaviour of Advanced Composite Spools Used in Commercial Pneumatic Spool Valves
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[54] Projektowanie i badanie adaptacyjnych pneumatycznych absorberów energii uderzenia
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[55] Human Energy Consumption During Harvesting of Saffron Flowers
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[56] Modelling and characterization of a modified 3-DoF pneumatic Gough-Stewart platform
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[57] An Experimental Study on Friction Identification of a Pneumatic Actuator and Dynamic Modeling of a Proportional Valve
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[58] DC Motor Friction Identification With ANFIS and LS-SVM Method
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[59] Modeling of a Variable-BVR Rotary Valve Free Piston Expander/Compressor
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[60] A Portable Light System for Saffron Harvesting
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[61] Повышение эксплуатационных характеристик пневмоагрегатов ударного действия путем выбора их рациональной структуры и параметров
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[62] Design of 22-DOF pneumatically actuated upper body for child android 'Affetto'
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[63] A new mathematical model of friction for pneumatic cylinders
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[64] Identification of Friction Parameters in Pneumatic Cylinders using a Combined Real-Time and Simulation Environment
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[65] A mechanical saffron flower harvesting system
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[66] A portable light weight system for saffron harvesting
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[67] EXPERIMENTAL INVESTIGATION OF FRICTION BEHAVIOR IN PRE-SLIDING REGIME FOR PNEUMATIC CYLINDER
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[68] Числове моделювання динаміки пневматичного циліндра з керованим дросельним демпірфуванням
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[69] of article:„Pneumatic actuator supported with hydraulic system”
[70] Mô phỏng đặc tính động lực học của một hệ thống servo khí nén
[71] ẢNH HƯỞNG CỦA MÔ HÌNH MA SÁT ĐẾN MÔ PHỎNG HỆ THỐNG LÁI TRỢ LỰC THỦY LỰC
NV Lại, TX Bộ
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