Arama Sonuçları - (car OR care) tires.
Önerilen Konular
Önerilen Konular
- Automotive Engineering 3
- Automotive engineering 3
- Mechanics, Applied 2
- Multibody Systems and Mechanical Vibrations 2
- Multibody systems 2
- Vibration 2
- Aerodynamics 1
- Applied Dynamical Systems 1
- Automobiles, Racing 1
- Automobiles, Racing-Aerodynamics 1
- Automobiles, Racing-Chassis 1
- Automobiles-Safety appliances 1
- Car tires 1
- Chassis 1
- Classical Mechanics 1
- Complex Systems 1
- Disability: social aspects 1
- Dynamics 1
- Machine engineering 1
- Makina Muhendisligi 1
- Mathematical Modeling and Industrial Mathematics 1
- Mathematical models 1
- Mechanics 1
- Motor vehicles--Dynamics 1
- Nonlinear Optics 1
- Nonlinear theories 1
- People with disabilities 1
- Research 1
- Social Science, People with Disabilities 1
- Social life and customs 1
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1
Passenger Car Tires and Wheels Development - Manufacturing - Application /
Baskı/Yayın Bilgisi 2018Full-text access
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2
Basic Course in Race Car Technology : Introduction to the Interaction of Tires, Chassis, Aerodynamics, Differential Locks and Frame.
Baskı/Yayın Bilgisi 2023İçindekiler: “…Intro -- Series Foreword -- Greeting -- Second Edition: Racing Car Technology Handbook - Six Volumes -- Preface -- Contents -- Symbols, Units and Abbreviations -- Chapter 4 -- Chapter 5 -- Chapter 6 -- Chapter 7 -- Chapter 8 -- Chapter 9 -- Chapter 10 -- Abbreviations -- 1: Introduction -- References -- 2: History and Motivation -- 2.1 History of Motor Sport -- 2.1.1 1900-1910 -- 2.1.2 1911-1920 -- 2.1.3 1921-1930 -- 2.1.4 1931-1940 -- 2.1.5 1941-1950 -- 2.1.6 1951-1960 -- 2.1.7 1961-1970 -- 2.1.8 1971-1980 -- 2.1.9 1981-1990 -- 2.1.10 1991-2000 -- 2.1.11 2001-2010 -- 2.1.12 2011 To Date -- 2.2 Motivation for Motor Sports -- References -- 3: Organization and Regulation -- 3.1 Associations and Vehicle Categories -- 3.2 Technical Regulations -- 3.2.1 FIA Technical Regulations for Formula One Cars (2018) -- 3.2.2 FIA Technical Regulations for LMP1 Hybrid Cars (2017) -- 3.2.3 Technical Regulations of Other Racing Series -- References -- 4: Racing Tires -- 4.1 Friction Circle -- 4.2 Mechanisms of Force Transmission -- 4.3 Lateral and Longitudinal Forces -- 4.4 Influence of Wheel Camber -- 4.5 Power Losses and Heating -- 4.6 Inflation Pressure -- 4.7 Tire Construction -- 4.8 Wear and Damage Patterns -- References -- 5: Driving Dynamics Basics -- 5.1 Movement Variables on the Vehicle -- 5.2 Single Track Model -- 5.3 Two-Track Model -- 5.4 Influence of Wheel Load Changes on Vehicle Dynamics -- 5.5 Driving Behavior as a Function of Balance, Brake Force Distribution and Drive Type -- 5.6 Basic Driving Techniques -- References -- 6: Aerodynamics -- 6.1 Aerodynamic Forces on the Complete Vehicle -- 6.2 Driving Performance -- 6.3 Basic Description of Flow Processes -- 6.4 Drag -- 6.5 Wing Profiles -- 6.5.1 Basic Characteristics of Wing Profiles -- 6.5.2 Influence of the Wing Geometry -- 6.5.3 Multi-Element Wings -- 6.5.4 Ground Effect of Wing Profiles.…”
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3
Taşıt Lastikleri ve Kaplanmış Lastikler /
Baskı/Yayın Bilgisi 2009Konular: “…Car tires. 1173…”
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4
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5
Advanced Tire Mechanics.
Baskı/Yayın Bilgisi 2019İçindekiler: “…3.8 MLT of the Buckling of a Two-Ply Bias Belt Under an In-plane Bending Moment -- 3.8.1 Buckling of a Two-Ply Bias Belt Under an In-plane Bending Moment -- 3.8.2 Fundamental Equations for the Buckling of a Tire Belt Under an In-plane Bending Moment -- 3.8.3 Buckling Analysis of Passenger-Car Tires Under an In-plane Bending Moment -- 3.8.4 Simplified Equation for Buckling Analysis of Passenger-Car Tires Under an in-Plane Bending Moment -- 3.9 MLT of the Buckling of a Two-Ply Bias Belt Under a Compressive Force -- 3.9.1 MLT of the Buckling of a Two-Ply Bias Belt Under a Compressive Force -- 3.9.2 Buckling Analysis of Passenger-Car Tires Under a Compressive Force -- Appendix: Beam Theory for a Tire Belt Under Buckling Caused by an In-plane Bending Moment -- Notes -- References -- 4 Discrete Lamination Theory -- 4.1 DLT of a Two-Ply Bias Belt with Out-of-Plane Coupling Deformation Under an Extensional Load -- 4.1.1 Fundamental Equations for DLT -- 4.1.2 Displacements in DLT -- 4.1.3 Strain Energy of Parts of a Two-Ply Bias Laminate -- 4.1.4 Stationary Condition of Total Strain Energy -- 4.1.5 Solution of the Differential Equation for Two-Ply Bias Laminate -- 4.1.6 Determination of Integral Constants by Boundary Conditions -- 4.1.7 Equivalent Young's Modulus for a Two-Ply Bias Laminate -- 4.1.8 Interlaminar Shear Stress and Interfacial Shear Stress -- 4.1.9 Analysis of a Two-Ply Bias Laminate Using DLT -- 4.2 DLT of a Two-Ply Bias Belt Without Out-of-Plane Coupling Deformation Under a Bending Moment -- 4.2.1 Displacements of DLT -- 4.2.2 Strain Energies of the Cord and Rubber -- 4.2.3 Stationary Condition and Natural Boundary Conditions -- 4.2.4 Solution to the Differential Equation for a Two-Ply Bias Laminate -- 4.2.5 Analysis of a Two-Ply Bias Laminate Using DLT.…”
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6
Vehicle Dynamics of Modern Passenger Cars
Baskı/Yayın Bilgisi 2019Full-text access
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7
The Science of Vehicle Dynamics Handling, Braking, and Ride of Road and Race Cars /
Baskı/Yayın Bilgisi 2018İçindekiler: “…Introduction -- Mechanics of the Wheel with Tire -- Vehicle Model for Handling and Performance -- Braking Performance -- The Kinematics of Cornering -- Handling of Road Cars -- Handling of Race Cars -- Ride Comfort and Road Holding -- Handling with Roll Motion -- Tire Models.…”
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8
Generalized Vehicle Dynamics.
Baskı/Yayın Bilgisi 2022İçindekiler: “…Cover -- Contents -- Foreword -- Acknowledgments -- 1 Introduction -- 1.1 Overview -- 1.2 Historical Perspective -- 1.3 Structure of the Text -- References -- 2 Simple Suspension as a Linear Dynamic System -- 2.1 Introduction -- 2.2 The Simply Suspended Mass and Linear Systems Theory -- 2.3 A Suspended Mass with Damping -- 2.4 Basic Frequency Responses -- 2.5 State Space and Block Diagram Algebra -- 2.6 State Space Realization -- 2.7 First-Order Matrix Differential Equations -- 2.8 Summary -- 3 The Quarter-Car Model -- 3.1 Introduction -- 3.2 Representing Reality with the Quarter-Car Model -- 3.3 Two Fundamental Frequencies of Interest -- 3.4 The Conventional Quarter-Car Model -- 3.5 Stochastic Road Input and Human Sensitivity to Vibration -- 3.6 Nonlinear Damping -- 3.7 Summary -- References -- 4 The Pitch-Plane Model -- 4.1 Introduction -- 4.2 Basic Pitch-Plane Model -- 4.3 Pitch-Plane-Free Response -- 4.4 Road Inputs to the Pitch-Plane Model -- 4.5 Pitch-Plane Ride Quality and the Olley Ride Criteria -- 4.6 Pitch-Plane Model with Damping -- 4.7 Generalized Pitch-Plane Model and Olley Solution -- 4.8 Three-Axle Vehicle Example -- 4.9 Summary -- References -- 5 The Roll-Plane Model -- 5.1 Introduction -- 5.2 Simple Two-Axle Roll-Plane Model -- 5.3 The Roll Mode for a Single Axle -- 5.4 The Roll-Plane Model with Stabilizer Bar -- 5.5 Single-Wheel Inputs -- 5.6 Passenger Car Roll -- 5.7 Generalized Roll-Plane Model -- 5.8 Roll and Handling -- 5.9 Summary -- 6 Active Suspension to Optimize Ride -- 6.1 Introduction -- 6.2 Inertial Damping -- 6.3 Lotus Modal Control -- 6.4 Modal Inertial Damping -- 6.5 Sprung Mass Acceleration Feedforward -- 6.6 Quarter-Car Optimal Control -- 6.7 Full Vehicle Optimal Control -- 6.8 Modal Inertial Damping and Handling -- 6.9 Summary -- References -- 7 Handling Basics -- 7.1 Introduction.…”
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9
Control Applications of Vehicle Dynamics.
Baskı/Yayın Bilgisi 2021İçindekiler: “…Tire Force Properties -- 3.2.1. Longitudinal Tire Force -- 3.2.2. …”
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10
Nonlinear Approaches in Engineering Applications Energy, Vibrations, and Modern Applications /
Baskı/Yayın Bilgisi 2018İçindekiler: “….- Vibration Analysis of Oscillators with Generalized Inertial and Geometrical Nonlinearities.- Quarter Car Suspension Model with Provision for Loss of Contact with The Road.- Friction Coefficient of Pneumatic Tires and Bitumen Roads.- Solutions for Path Planning using Spline Parameterization.- Section 3: Modern Engineering Applications.- Diagnosis of nonlinear stochastic dynamics of active slider in nanometer spacing.- Formation Control of Nonholonomic Mobile Robots using an Acoustic Sensor.- Nonlinear Size-dependent Instability of Hybrid FGM Nanoshells -- Section 4: Analytical-Numerical Analysis Applications.- An exact solution technique for impact oscillators.- A semi-analytical solution for bending of nonlinear magnetostrictive beams.- Limted Data Modelling Approaches for Engineering Applications.- Theoretical and Numerical Investigation of The Elastic-Plastic Behavior of Thick-walled Cylinders.- A Complex Variable Method to Predict an Aerodynamics of Arbitrary Shape Ballistic Projectiles.- Extension of substructuring technique in the nonlinear domain -- Index.…”
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11
New narratives of disability : constructions, clashes, and controversies /
Baskı/Yayın Bilgisi 2019Full-text access
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