B25J5/04

System and Method for Automated Artificial Vision Guided Dispensing Viscous Fluids for Caulking and Sealing Operations

The present disclosure provides a method and system by which a precise amount of a viscous fluid sealing compound can be dispensed at required locations through computer vision-based observation of the fluid deposited, its rate and amount of deposition and location; and that the dispensed fluid may be accurately shaped through robotic or other special purpose mechanism motion. The invention enables instant quality inspection of the dispensing process in terms of the locations, amounts and shapes of newly created seals.

Machining system for aircraft structural components
11565831 · 2023-01-31 · ·

The disclosure relates to a processing installation for aircraft structural components having a processing station comprising a clamping frame for receiving the structural component, wherein the clamping frame extends along a station longitudinal axis which extends in a longitudinal direction and a processing unit which has an upper tool unit having an upper tool and a lower tool unit, wherein the processing installation has a processing region which is formed by a laterally delimited, first spatial portion in which the clamping frame and the processing unit are arranged during processing, wherein the processing installation has a service region for carrying out service operations, wherein the first spatial portion is separated from the second spatial portion in a transverse direction, wherein a service platform is arranged in the service region and can be positioned in a service plane which is orthogonal to the vertical direction.

BINDING DEVICE, BINDING SYSTEM, METHOD FOR CONTROLLING BINDING DEVICE, AND COMPUTER READABLE STORAGE MEDIUM STORING PROGRAM
20230226595 · 2023-07-20 · ·

A binding device including: a binding machine that binds reinforcing bars with a wire; and a transfer robot that moves the binding machine and the reinforcing bars positioned at a binding position in a direction of approaching and a direction of separating from each other by a relative movement of the binding machine and the reinforcing bars. The binding machine is configured to determine, when the binding machine starts an operation of binding the reinforcing bars with the wire, a timing of moving the binding machine and the reinforcing bars in the direction of separating from each other, and the transfer robot is configured to move the binding machine and the reinforcing bars in the direction of separating from each other at the determined timing.

BINDING DEVICE, BINDING SYSTEM, METHOD FOR CONTROLLING BINDING DEVICE, AND COMPUTER READABLE STORAGE MEDIUM STORING PROGRAM
20230226595 · 2023-07-20 · ·

A binding device including: a binding machine that binds reinforcing bars with a wire; and a transfer robot that moves the binding machine and the reinforcing bars positioned at a binding position in a direction of approaching and a direction of separating from each other by a relative movement of the binding machine and the reinforcing bars. The binding machine is configured to determine, when the binding machine starts an operation of binding the reinforcing bars with the wire, a timing of moving the binding machine and the reinforcing bars in the direction of separating from each other, and the transfer robot is configured to move the binding machine and the reinforcing bars in the direction of separating from each other at the determined timing.

Articulating apparatus of a waterjet system and related technology
11554461 · 2023-01-17 · ·

A waterjet system in accordance with at least some embodiments includes a carriage, a motion assembly configured to move the carriage horizontally relative to a workpiece, and a cutting head carried by the carriage. The waterjet system can also include a kinematic chain through which the cutting head is operably connected to the carriage. The kinematic chain can include first, second, and third joints rotatably adjustable about different first, second, and third axes, respectively. The carriage and the first and second joints can be configured to move the cutting head along a path relative to the workpiece while the cutting head directs a jet toward the workpiece to form a product. The third joint can be configured to shift a kinematic singularity away from the path to reduce or eliminate delay and corresponding reduced cutting accuracy associated with approaching the kinematic singularity.

Articulating apparatus of a waterjet system and related technology
11554461 · 2023-01-17 · ·

A waterjet system in accordance with at least some embodiments includes a carriage, a motion assembly configured to move the carriage horizontally relative to a workpiece, and a cutting head carried by the carriage. The waterjet system can also include a kinematic chain through which the cutting head is operably connected to the carriage. The kinematic chain can include first, second, and third joints rotatably adjustable about different first, second, and third axes, respectively. The carriage and the first and second joints can be configured to move the cutting head along a path relative to the workpiece while the cutting head directs a jet toward the workpiece to form a product. The third joint can be configured to shift a kinematic singularity away from the path to reduce or eliminate delay and corresponding reduced cutting accuracy associated with approaching the kinematic singularity.

SURGICAL PLATFORM WITH MOTORIZED ARMS FOR ADJUSTABLE ARM SUPPORTS

A robotic medical system can include a motorized arm that is supported by a column of the system. The robotic arm can be operated by rotating a link of the motorized arm by actuating an actuator to drive rotation of a rotary joint. A brake can then be applied to the rotary joint to stop rotation of the link. The arm can also include an arbor that can be actuated to increase a torsional stiffness of the rotary joint.

SURGICAL PLATFORM WITH MOTORIZED ARMS FOR ADJUSTABLE ARM SUPPORTS

A robotic medical system can include a motorized arm that is supported by a column of the system. The robotic arm can be operated by rotating a link of the motorized arm by actuating an actuator to drive rotation of a rotary joint. A brake can then be applied to the rotary joint to stop rotation of the link. The arm can also include an arbor that can be actuated to increase a torsional stiffness of the rotary joint.

HANDLING SYSTEM
20220410244 · 2022-12-29 ·

A handling system (1) for removing molded parts from a press device, the system comprising: a control unit; a linear axis system (10) having at least one linear guide (12) and a first guide slide (14) and a second guide slide (16), which are movable independently of each other along a direction of the at least one linear guide (12), and a guide carriage (24) held displaceably on the first guide slide (14) and the second guide slide (16), which guide carriage is movable in a direction forming an angle α with the direction of the at least one linear guide (12).

Automated systems and processes for preparing vehicle surfaces, such as an aircraft fuselage, for painting

Processe and system for preparing a vehicle surface (e.g., an aircraft fuselage) for painting include a preparation booth (100) which is sized and configured to house the vehicle (F). At least one robotic assembly (200a, 200b) is reciprocally movable within the preparation booth (100) relative to a longitudinal axis of the vehicle (F), and is provided with a robotic hand (230) having at least one abrasive disc (242a) attached to an attachment pad (242) of the robotic hand (230), and at least one nozzle (252a, 252b, 252c) for discharging a stream of rinse fluid. Operation of the at least one robotic assembly (230) will cause the at least one abrasive disc (242a) of the robot hand (230) to abrade the surface of the vehicle (F). The robotic hand (230) may thereafter be maneuvered so that the at least one nozzle (252a, 252b, 252c) is directed toward the abraded vehicle surface (F). A stream of rinse fluid may then be discharged through the at least one nozzle (252a, 252b, 252c) and towards the abraded surface of the vehicle (F) so as to rinse the abraded surface of particulate matter.