Patent classifications
B23Q1/26
Collaborative robot hand bearing for high-torque tightening applications
An apparatus for coupling a robot arm to a tool that is suspended by an ergonomic arm capable of supporting 3D motion of the tool within a working volume. The apparatus includes a tool sleeve configured to accept the tool, a freely rotating rotary fitting coupled to the tool sleeve, and a coupling that couples a distal end of the robot arm to the rotary fitting. When the tool is inserted into the tool sleeve, the tool is free to rotate around the rotational axis with respect to the robot arm, such that a motion of the distal end of the robot arm does not impose a torque between the robot arm and the tool around the rotational axis, and such that motion of the distal end of the robot arm repositions or reorients the tool within at least a portion of the working volume.
IMPROVED TRANSFER MACHINE
A transfer machine comprising: includes a frame, a table which is supported on the frame and can rotate with respect to the frame about a main vertical axis, and work holding assemblies mounted on the table. Each work holding assembly has at least one collet assembly for retaining a workpiece being machined. The collet assembly is able to rotate with respect to the table about a vertical workpiece rotation axis.
The transfer machine includes at least one actuation motor in order to actuate rotationally the collet assembly and is provided with a driving shaft which can rotate about a respective driving axis.
At least one transmission assembly can be activated selectively and is configured to transmit motion from the driving shaft to the collet assembly.
At least one actuation motor is integral with the frame of the machine, with the respective driving shaft arranged horizontally.
IMPROVED TRANSFER MACHINE
A transfer machine comprising: includes a frame, a table which is supported on the frame and can rotate with respect to the frame about a main vertical axis, and work holding assemblies mounted on the table. Each work holding assembly has at least one collet assembly for retaining a workpiece being machined. The collet assembly is able to rotate with respect to the table about a vertical workpiece rotation axis.
The transfer machine includes at least one actuation motor in order to actuate rotationally the collet assembly and is provided with a driving shaft which can rotate about a respective driving axis.
At least one transmission assembly can be activated selectively and is configured to transmit motion from the driving shaft to the collet assembly.
At least one actuation motor is integral with the frame of the machine, with the respective driving shaft arranged horizontally.
OVERHEAD MACHINING DEVICE BASED ON PORTABLE FIVE-DEGREE-OF-FREEDOM FULL PARALLEL MODULE
The present invention discloses an overhead machining device based on a portable 5-DOF full parallel module. The overhead machining device based on a portable 5-DOF full parallel module comprises: a sliding table for moving a parallel module to increase the stroke of the machine tool such that the machine tool can machine large components and can also simultaneously conduct the mounting and the machining of workpieces at different stations; a CNC rotary table; and a portable 5-DOF full parallel module. The portable parallel module has a large swing angle range, can conduct the conversion between vertical and horizontal machining modes and can achieve five-face machining in one setup in cooperation with the CNC rotary table. The parallel module can move flexibly, and can machine large and complex components after mounted on the sliding table.
OVERHEAD MACHINING DEVICE BASED ON PORTABLE FIVE-DEGREE-OF-FREEDOM FULL PARALLEL MODULE
The present invention discloses an overhead machining device based on a portable 5-DOF full parallel module. The overhead machining device based on a portable 5-DOF full parallel module comprises: a sliding table for moving a parallel module to increase the stroke of the machine tool such that the machine tool can machine large components and can also simultaneously conduct the mounting and the machining of workpieces at different stations; a CNC rotary table; and a portable 5-DOF full parallel module. The portable parallel module has a large swing angle range, can conduct the conversion between vertical and horizontal machining modes and can achieve five-face machining in one setup in cooperation with the CNC rotary table. The parallel module can move flexibly, and can machine large and complex components after mounted on the sliding table.
LINEAR POSITIONER
Systems, methods, and apparatus for positioning and/or processing items, such as workpieces. The systems, methods, and apparatus may include or use a linear positioner forming a track. In some embodiments, the linear positioner may include a carriage configured to be driven along the track to a desired position, in response to a signal(s), such as a radiofrequency signal(s), received from a computer, which may be a general-purpose, handheld computer, such as a phone or tablet. In some embodiments, the linear positioner may comprise a shuttle including a motor and a carriage, and may be configured to drive itself as a unit along the track. In some embodiments, the track may include a rack having a linear array of teeth formed by two or more frame sections, such as table sections, coupled end to end, with each support section providing a segment of the rack.
RIVETING AND GRINDING ASSEMBLY FOR THER NOZZLE OF A SCREW SHAFT VALVE
The present invention generally relates to assembly equipment of valve body, especially to riveting and grinding assembly for nozzle of screw shaft valve. The invention may include a rack, a power control box, a turntable and a turntable divider. A carrier assembly which engages with the screw shaft valve body is installed on the edge of the turntable with uniform distribution. On the center part of the turntable, a support shaft which is installed on and fixed with the rack is vertically interposed and on the top of the support shaft, an upper supporting disc is installed. A valve pipe feeding device, a valve pipe preloading device, a valve pipe riveting device and a valve pipe grinding device which engage with the carrier assembly are installed on the said rack on the rotational direction of turntable. As the threaded pipe is put into the carrier assembly by valve pipe feeding device, the carrier assembly rotates counterclockwise along the turntable and rotates to the valve pipe feeding device to the press threaded pipe into the valve seat. Thereafter the carrier assembly rotates the valve pipe riveting device and rivets threaded pipe with a valve flange in order to finish assembling process. Finally, the carrier assembly rotates the valve pipe grinding device to grind nozzle of valve to finish grinding and riveting process of threaded pipe with high positioning accuracy of assembly and marvelous hermetic sealing.
RIVETING AND GRINDING ASSEMBLY FOR THER NOZZLE OF A SCREW SHAFT VALVE
The present invention generally relates to assembly equipment of valve body, especially to riveting and grinding assembly for nozzle of screw shaft valve. The invention may include a rack, a power control box, a turntable and a turntable divider. A carrier assembly which engages with the screw shaft valve body is installed on the edge of the turntable with uniform distribution. On the center part of the turntable, a support shaft which is installed on and fixed with the rack is vertically interposed and on the top of the support shaft, an upper supporting disc is installed. A valve pipe feeding device, a valve pipe preloading device, a valve pipe riveting device and a valve pipe grinding device which engage with the carrier assembly are installed on the said rack on the rotational direction of turntable. As the threaded pipe is put into the carrier assembly by valve pipe feeding device, the carrier assembly rotates counterclockwise along the turntable and rotates to the valve pipe feeding device to the press threaded pipe into the valve seat. Thereafter the carrier assembly rotates the valve pipe riveting device and rivets threaded pipe with a valve flange in order to finish assembling process. Finally, the carrier assembly rotates the valve pipe grinding device to grind nozzle of valve to finish grinding and riveting process of threaded pipe with high positioning accuracy of assembly and marvelous hermetic sealing.
SUPPORT MECHANISM
A support mechanism includes a fixed body, a rotating unit, a moving unit and a driving unit. The rotating unit is rotationally mounted to the fixed body. The moving unit, disposed at the fixed body, includes a ball screw spline shaft, a ball screw nut and a ball spline nut. The ball screw nut and the ball spline nut are both rotatably disposed at the ball screw spline shaft moved together with the rotating unit. The driving unit, disposed at the fixed body, includes a first driving member and a second driving member to rotate the ball screw nut and the ball spline nut, respectively. With different rotation pairs of the ball screw nut and the ball spline nut to the ball screw spline shaft, the ball screw spline shaft is driven to move, and the ball screw spline shaft is further to move the rotating unit.
Invertible part loading system
An invertible part loading system includes a pallet adapted for holding articles for machining, a frame adapted for receiving the pallet, and latching mechanisms adapted for holding the pallet within the frame. A support structure is adapted to support the frame above a machining tool. An axle rotatably couples the frame with the support structure for allowing the pallet to be inverted, enabling the articles to face the machining tool from above, which allows chips of material to fall away from the articles. The axle rotates about a pivot axis aligned centrally through the frame. The pallet is adapted for rapid transfer on and off the part loading system via a compatible loading and storage assembly to reduce machining down time between swapping pallets. A two-sided pallet may be adapted to enable switching between parts, or between two sides of the same part, by inverting the pallet via the axle.