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Applications of six-dimensional force sensors
- Categories:Technical knowledge
- Time of issue:2021-06-04 10:45
(Summary description)In the study of six-dimensional force sensors, the structural design of the force sensor is the key core issue of the force sensor, as the structure of the force sensor determines the performance of the force sensor.
Applications of six-dimensional force sensors
(Summary description)In the study of six-dimensional force sensors, the structural design of the force sensor is the key core issue of the force sensor, as the structure of the force sensor determines the performance of the force sensor.
- Categories:Technical knowledge
- Time of issue:2021-06-04 10:45
- Views:
In the study of six-dimensional force sensors, the structural design of the force sensor is the key core issue of the force sensor, as the structure of the force sensor determines the performance of the force sensor.
The six-dimensional force sensor is fixedly attached to the end joint of the robot arm via a sensor mount. Under static conditions, the force and torque data measured by the six-dimensional force sensor on the mechanical wrist consists of three components, namely the systematic error of the sensor itself, the gravitational force of the load and the external contact force of the load. In industrial robot applications such as machining and assembly, the contact force between the tool or workpiece at the end of the robot and the external environment needs to be sensed and the control system can modify the robot's motion accordingly to ensure compliance with the robot's movement.
The main application areas for industrial grade six-dimensional force sensors are assembly and polishing, with polishing being a widely used area for robotic applications. From the current market situation, the main industries requiring high polishing accuracy are the 3C industry, which has a high labour intensity and an urgent need to achieve automation transformation. Coupled with the flexible needs of the 3C industry, more intelligent polishing robots are needed to better meet market demand.
Six-dimensional force sensors can examine three-dimensional orthogonal forces (fx, fy, fz) and three-dimensional orthogonal moments (mx, my, mz) in any force system in space. Due to their rich force measurement information and high measurement accuracy, they are mainly used in force and force level control applications. Six-dimensional force/torque sensors provide force sensing information for robot control and are intelligent and important sensors. Force sensors can be used as transducers, such as strain elements, which can provide a signal proportional to the deformation, i.e. the force acting on the point of contact. Force sensors can detect external forces and torques on relevant parts of the robot, such as the wrist and fingers, and can control the movement of the wrist, servo-controlled, to get the job done accurately.
The six-dimensional force sensor is a force sensor, a tactile sensor and has a wide range of applications in robotics and mechatronic devices. Force and torque sensors are used to detect internal forces in equipment or forces interacting with the external environment. Physical quantities of force cannot be measured directly, but can be measured indirectly by other physical quantities. As a newly developed type of force sensor, the six-dimensional force sensor converts multidimensional force/torque signals into electrical signals simultaneously and can be used to monitor forces and torques that vary in direction and magnitude, to measure acceleration or inertial forces, and to detect force magnitude and contact points.
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