This paper presents the dynamical equations of motion governing a six degrees-of-freedom mathematical model of a three-wheeled all-terrain vehicle/rigid-rider system. The parameter values associated with two commercially available three-wheeled all-terrain vehicles, a 1980 Honda ATC 110D and a 1980 Kawasaki KLT 200, are presented. In addition, tire properties such as non-rolling vertical stiffness, cornering stiffness and damping ratio for a 22×11-8 Ohtsu tire and a 22×11-8 Goodyear tire are given. These parameter values are used to simulate the motions of the vehicle/rider system with the results presented in Part II (1)* © 1984 Society of Automotive Engineers, Inc
This study presents an analytical approach for the mechanics of the pneumatic tires and the vehicle ...
AbstractRide dynamics models may be used to study the vehicle vibration levels over various terrain ...
A three degree of freedom vehicle dynamics model that includes longitudinal and lateral tire force m...
This paper presents the dynamical equations of motion governing a six degrees-of-freedom mathematica...
This paper is the second in a series on three-wheeled all-terrain vehicles and investigates the hand...
The nonlinear dynamical equations governing a thirteen degrees-of-freedom mathematical model of a th...
The primary objective of this research was to theoretically investigate what effects the spring-damp...
The main agenda of this paper is to study the different parameters or characteristics of suspension ...
Over the past decade, all-terrain-vehicles (ATVs) became a popular form of off-road recreational rid...
[Departement_IRSTEA]EA [TR1_IRSTEA]TESAD / MOSTThe growing popularity of light All Terrain Vehicles ...
AbstractThe article describes a three-dimensional non-linear dynamic model of a 8×8 wheeled vehicle....
We describe in some detail the process of development of a dynamic model of a three wheeled vehicle ...
Stability control system plays a significant role in vehicle dynamics to improve the vehicle handlin...
In this work the modal analysis of a three-wheeled tilting motorcycle is presented. This new kind of...
It is known in literature that a wheeled mobile robot (WMR), with fixed length axle, will undergo sl...
This study presents an analytical approach for the mechanics of the pneumatic tires and the vehicle ...
AbstractRide dynamics models may be used to study the vehicle vibration levels over various terrain ...
A three degree of freedom vehicle dynamics model that includes longitudinal and lateral tire force m...
This paper presents the dynamical equations of motion governing a six degrees-of-freedom mathematica...
This paper is the second in a series on three-wheeled all-terrain vehicles and investigates the hand...
The nonlinear dynamical equations governing a thirteen degrees-of-freedom mathematical model of a th...
The primary objective of this research was to theoretically investigate what effects the spring-damp...
The main agenda of this paper is to study the different parameters or characteristics of suspension ...
Over the past decade, all-terrain-vehicles (ATVs) became a popular form of off-road recreational rid...
[Departement_IRSTEA]EA [TR1_IRSTEA]TESAD / MOSTThe growing popularity of light All Terrain Vehicles ...
AbstractThe article describes a three-dimensional non-linear dynamic model of a 8×8 wheeled vehicle....
We describe in some detail the process of development of a dynamic model of a three wheeled vehicle ...
Stability control system plays a significant role in vehicle dynamics to improve the vehicle handlin...
In this work the modal analysis of a three-wheeled tilting motorcycle is presented. This new kind of...
It is known in literature that a wheeled mobile robot (WMR), with fixed length axle, will undergo sl...
This study presents an analytical approach for the mechanics of the pneumatic tires and the vehicle ...
AbstractRide dynamics models may be used to study the vehicle vibration levels over various terrain ...
A three degree of freedom vehicle dynamics model that includes longitudinal and lateral tire force m...