This work describes the influence of temperature on the identification of the dynamic model of an industrial manipulator. The tests show that the joint friction changes during the robot operation. The variation is due to the heat generated by friction. A model is used to estimate the temperature and related friction variation. Experimental data collected on an industrial robot are discussed. Repetitive tests performed on different days showed that the inertial and friction parameters can be robustly estimated
The warm-up and cool-down behaviour of a KUKA KR-15/2 six-axis industrial robot for a particular tas...
In this paper we propose the use of a dynamic model in which the effects of temperature on friction ...
This paper investigates both positional dependence in systems with friction and the influence an inc...
This work describes the influence of temperature on the identification of the dynamic model of an in...
The estimation of the friction torque in joints transmissions is a crucial task in the robotics fiel...
In this paper we present a new friction model for industrial robot manipulators that takes into acco...
The paper presents a second-order friction model for the joints of industrial robot manipulators tha...
This paper presents a model that describes the effect of heat exchange on dynamic friction in the jo...
This paper deals with a modelling technique that takes into account the effects of the temperature ...
The quality of industrial robots essentially depends on the properties of their kinematic couples. T...
This article illustrates a model that describes the behaviour of power loss (friction) in mechanical...
Dynamic parameters are crucial for the definition of high-fidelity models of industrial manipulators...
Friction is the result of complex interactions between contacting surfaces in a nanoscale perspectiv...
It is well-known that friction changes with the temperature in robotic joints, and the temperature d...
This paper considers the problem of wear estimation in a standard industrial robot joint. The effect...
The warm-up and cool-down behaviour of a KUKA KR-15/2 six-axis industrial robot for a particular tas...
In this paper we propose the use of a dynamic model in which the effects of temperature on friction ...
This paper investigates both positional dependence in systems with friction and the influence an inc...
This work describes the influence of temperature on the identification of the dynamic model of an in...
The estimation of the friction torque in joints transmissions is a crucial task in the robotics fiel...
In this paper we present a new friction model for industrial robot manipulators that takes into acco...
The paper presents a second-order friction model for the joints of industrial robot manipulators tha...
This paper presents a model that describes the effect of heat exchange on dynamic friction in the jo...
This paper deals with a modelling technique that takes into account the effects of the temperature ...
The quality of industrial robots essentially depends on the properties of their kinematic couples. T...
This article illustrates a model that describes the behaviour of power loss (friction) in mechanical...
Dynamic parameters are crucial for the definition of high-fidelity models of industrial manipulators...
Friction is the result of complex interactions between contacting surfaces in a nanoscale perspectiv...
It is well-known that friction changes with the temperature in robotic joints, and the temperature d...
This paper considers the problem of wear estimation in a standard industrial robot joint. The effect...
The warm-up and cool-down behaviour of a KUKA KR-15/2 six-axis industrial robot for a particular tas...
In this paper we propose the use of a dynamic model in which the effects of temperature on friction ...
This paper investigates both positional dependence in systems with friction and the influence an inc...