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Victor Scheinman's MIT Arm, built for MIT's Artificial Intelligence Lab ca. 1972, the first arm designed with a 321 kinematic structure 321 kinematic structure is a design method for robotic arms ( serial manipulators ), invented by Donald L. Pieper and used in most commercially produced robotic arms.
One end of the arm is attached to a firm base while the other has a tool. They can be controlled by humans either directly or over a distance. A computer-controlled mechanical arm is called a robotic arm. However, a robotic arm is just one of many types of different mechanical arms. [1]
A robotic arm is a type of mechanical arm, usually programmable, with similar functions to a human arm; the arm may be the sum total of the mechanism or may be part of a more complex robot. The links of such a manipulator are connected by joints allowing either rotational motion (such as in an articulated robot ) or translational (linear ...
Absolute accuracy is the difference between a point instructed by the robot control system and the point actually achieved by the manipulator arm, while repeatability is the cycle-to-cycle variation of the manipulator arm when aimed at the same point. Repeatability: See Figure. The ability of a system or mechanism to repeat the same motion or ...
Regardless of the system used for printing (gantry crane or robotic arm), the coordination between the nozzle travel speed and the material flow rate is crucial to the outcome of the printed filament. [95] In some cases, multiple 3D printing robotic arms can be programmed to run simultaneously resulting in decreased construction time. [96]
PUMA 560 C robot arm segment measurements. [4] 6 Axis arm with 3 axis making up a spherical wrist. [5] Maximum reach 878mm from center axis to center of wrist [5] Software selectable payloads from 4 kg to 2.5 kg [5] Arm weight: 83 kg (approximate) [6] Repeatability ±0.1mm [7] 2.5 kg max velocity: 500mm/sec straight line moves [7]
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