Patent classifications
B25J9/1669
COMPUTER NUMERICAL CONTROL ASSEMBLY OR PROCESSING OF COMPONENTS
The invention relates to a device, system and method of automated manufacture comprising: delivering a workpiece with a delivery device; receiving the workpiece with a receiving device, the delivering of the workpiece and the receiving of the workpiece being electronically synchronized; processing the workpiece with a processing tool while the workpiece is on the receiving device; transferring the workpiece to a completion device, the ejection of the workpiece and the transferring of the workpiece being electronically synchronized. In particular the workpiece may comprise: a platform with mounts supporting a first component in a selected orientation; and a locating surface, the method comprising: engaging and disengaging the locating surface of the workpiece with releasable connectors on the delivery device, on the receiving device and on the completion device.
Three-Dimensional Object Printing Method And Data Generation Method
Disclosed is a three-dimensional object printing method using a head and a robot that changes relative position and relative orientation of a workpiece and the head. The method includes a first data processing step of acquiring first initial route data that represents, in a workpiece coordinate system, a route along which the head is to move; a second data processing step of acquiring first head reference point data that represents, in a robot coordinate system, position and orientation of the head; a third data processing step of generating, based on the first initial route data and the first head reference point data, first print route data that represents, in the robot coordinate system, the route along which the head is to move; and a first printing step of ejecting the liquid from the head onto the workpiece while the robot is operated based on the first print route data.
ROBOT CONTROL PROGRAM GENERATION METHOD AND APPARATUS
This method includes a step for the extraction of robot control program creation data (12, 15) from an animation program (2) displaying an assembly sequence for the manufacturing of an assembled product with a plurality of parts, a step for the addition of predetermined robot control data (16) to the robot control program creation data (12, 15), and a step for the creation of a robot control program relating to the assembly operations of the assembled product using the robot control program creation data (12, 15) and the predetermined robot control data (16). A robot control program for manufacturing an assembled product a plurality of parts can be easily generated.
Work vehicle
A work vehicle includes a plurality of traveling devices driven for traveling, a plurality of articulated link mechanisms having a plurality of links pivotally coupled to each other to provide two or more joints and configured to independently support the traveling devices to a vehicle body with allowing lifting/lowering of the traveling devices independently relative to the vehicle body, and a plurality of hydraulic cylinders capable of changing respective postures of the plurality of links included in the articulated link mechanisms. A first link located at a position nearest the vehicle body is supported to be pivotable about a body side coupling portion. A first hydraulic cylinder for operating the first link has its cylinder tube side pivotally coupled to a coupled portion on the side of the vehicle body and has its piston rod side pivotally coupled to a coupled portion on the side of the first link.
Device and method for plugging an expansion board into a plug-in coupling
Device for plugging a plug-in region of an expansion board into a plug-in coupling including: a first interface providing the coupling; a second interface providing the board; a robot manipulator having an effector; and a controller controlling the robot manipulator to plug the region into the coupling, the controller configured to execute a program for the robot manipulator to perform operations including: picking up the board at the second interface using the effector; guiding the board along a trajectory and target orientation of the region to the coupling; carrying out tilting motions of the region until reaching or exceeding a limit value condition G1 for a torque acting on the effector and/or a limit value condition G2 of a force acting on the effector, and/or reaching or exceeding a force/torque signature and/or a position/velocity/acceleration signature at the effector, indicating completion of plugging the region into the coupling within predefined tolerances.
MULTI-AXIS ROBOT INCLUDING DRIVES, A TOOL HEAD AND A DRAG CHAIN FOR GUIDING FLEXIBLE LINES
A multi-axis robot includes robot drives, a tool head, a drag chain for guiding flexible lines along at least a part of the robot up to the tool head, and an auxiliary system for moving a tool head-side end of the drag chain. The auxiliary system includes at least one auxiliary system drive for moving the tool head-side end. The auxiliary system drive is different than the robot drives. The multi-axis robot advantageously allows collisions between the tool-side end of the drag chain and the object to be treated or other objects in the vicinity of the robot to be avoided, ensuring that the surface of the object may be treated, in particular printed on by an inkjet print head, without disruption.
SYSTEMS AND METHODS FOR DYNAMIC PROCESSING OF OBJECTS USING BOX TRAY ASSEMBLIES
A box handling system is disclosed for use in an object processing system. The box handling system includes a box tray including a recessed area for receiving a box, and the recessed area includes a plurality of floor and edge portions for receiving the box that contains objects to be processed.
CABLE TERMINAL END DETECTION METHOD AND HAND
A cable terminal end detection method includes a gripping step for gripping, using a hand including a first gripping section and a second gripping section disposed to be separated on an X axis and configured to open and close in a direction along a Z axis, a cable in two places separated in a longitudinal direction with the first gripping section and the second gripping section, a moving step for, in a state in which the cable is gripped by the hand, moving the cable to the first gripping section side in a direction along the X axis relatively to the hand, and a detecting step for detecting, with a tactile sensor disposed in the second gripping section to be in contact with the cable, that the cable has slipped out from the second gripping section and detecting that a terminal end of the cable is located between the first gripping section and the second gripping section.
CONTROL METHOD FOR ROBOT SYSTEM AND ROBOT SYSTEM
A control method for a robot system is a control method for a robot system including a conveying device configured to convey a target object and a robot configured to perform work while following the target object conveyed by the conveying device, the control method for the robot system including an image acquiring step for imaging, a plurality of times, the target object conveyed by the conveying device and acquiring a plurality of images, a reciprocating displacement information acquiring step for acquiring, based on the plurality of images, reciprocating displacement information indicating periodical reciprocating displacement in a width direction orthogonal to a conveying direction of the target object, and a correcting step for correcting a position command for the robot based on the reciprocating displacement information.
Mechanical equipment control system, control apparatus for mechanical equipment, and method for controlling mechanical equipment
A mechanical equipment control system includes a mechanical apparatus, a load ratio detection circuit, and an integration control circuit. The mechanical apparatus includes a motor which is configured to drive the mechanical apparatus. The load ratio detection circuit is configured to detect a load ratio of the motor. The integration control circuit is configured to control the mechanical apparatus based on an operation parameter while keeping the load ratio in an allowable load state.