Fast-moving industrial robots exert large varying reaction forces and moments on their base frame, inducing vibrations, wear and accuracy degeneration. These shaking forces and moments can be eliminated by a specific design of the mass distribution of the robot links, resulting in a dynamically balanced mechanism. Obtaining the conditions for dynamic balance proves to be a hurdle even for simple planar parallel mechanisms due to the required inclusion and inspection of the kinematic relations. In this paper, a screw theory based methodology is presented, which gives and solves the necessary instantaneous dynamic balance conditions for planar and spatial mechanisms in an uniform and geometrical manner. Instantaneous dynamic balance yields a ...
This paper addresses the mass balancing of mechanisms using a single rigid body („balancing body“). ...
International audienceIn the present Chapter, we consider the shaking moment and shaking force balan...
Dynamic balance eliminates the fluctuating reaction forces and moments induced by high-speed robots ...
Fast-moving industrial robots exert large varying reaction forces and moments on their base frame, i...
Fast-moving industrial robots exert large varying reaction forces and moments on their base frame, i...
A mechanism or robotic manipulator that is dynamically balanced does not cause base vibrations when ...
Dynamic balancing aims to reduce or eliminate the shaking base reaction forces and moments of mechan...
In robotics, machine elements are accelerated in order for the machine to perform certain tasks, suc...
Shaking forces and shaking moments in high-speed machines and manipulators are a significant cause o...
Robotic manipulators are desired to keep their settling time as low as possible for the pick-and-pla...
Dynamic balance has been studied to eliminate the shaking forces and vibration at the base induced b...
High accelerations in unbalanced robotic manipulators can induce significant base vibrations, which ...
Dynamic balance has been studied to eliminate the shaking forces and vibration at the base induced b...
International audienceIn the present Chapter, we consider the shaking moment and shaking force balan...
Dynamic balance eliminates the fluctuating reaction forces and moments induced by high-speed robots ...
This paper addresses the mass balancing of mechanisms using a single rigid body („balancing body“). ...
International audienceIn the present Chapter, we consider the shaking moment and shaking force balan...
Dynamic balance eliminates the fluctuating reaction forces and moments induced by high-speed robots ...
Fast-moving industrial robots exert large varying reaction forces and moments on their base frame, i...
Fast-moving industrial robots exert large varying reaction forces and moments on their base frame, i...
A mechanism or robotic manipulator that is dynamically balanced does not cause base vibrations when ...
Dynamic balancing aims to reduce or eliminate the shaking base reaction forces and moments of mechan...
In robotics, machine elements are accelerated in order for the machine to perform certain tasks, suc...
Shaking forces and shaking moments in high-speed machines and manipulators are a significant cause o...
Robotic manipulators are desired to keep their settling time as low as possible for the pick-and-pla...
Dynamic balance has been studied to eliminate the shaking forces and vibration at the base induced b...
High accelerations in unbalanced robotic manipulators can induce significant base vibrations, which ...
Dynamic balance has been studied to eliminate the shaking forces and vibration at the base induced b...
International audienceIn the present Chapter, we consider the shaking moment and shaking force balan...
Dynamic balance eliminates the fluctuating reaction forces and moments induced by high-speed robots ...
This paper addresses the mass balancing of mechanisms using a single rigid body („balancing body“). ...
International audienceIn the present Chapter, we consider the shaking moment and shaking force balan...
Dynamic balance eliminates the fluctuating reaction forces and moments induced by high-speed robots ...