Abstract:
A machine control system includes an input module, a worktable, a first sliding module, a second sliding module, a lathe feeding module, a lathe tool connected to the lathe feeding module, a scraping feeding module, a scraping cutter connected to the scraping feeding module, and a control module. The control module is electrically connected to the input module, the worktable, the first sliding module, the second sliding module, the lathe feeding module, and the scraping feeding module wherein the input module inputs control parameters into the control module to control the first sliding module and the second sliding module. The lathe feeding module controls the lathe tool to slide along a third direction perpendicular to the first direction and the second direction reciprocally, and the scraping feeding module controls the scraping cutter to slide along the third direction and rotate along a first axis.
Abstract:
A machine control system includes an input module, a worktable, a first sliding module, a second sliding module, a lathe feeding module, a lathe tool connected to the lathe feeding module, a milling feeding module, a milling cutter connected to the milling feeding module, and a control module. The control module is electrically connected to the input module, the worktable, the first sliding module, the second sliding module, the lathe feeding module, and the milling feeding module, wherein the input module inputs control parameters into the control module to control the first sliding module and the second sliding module. The lathe feeding module controls the lathe tool to slide along a third direction perpendicular to the first direction and the second direction reciprocally, and the milling feeding module controls the milling cutter to slide along the third direction and rotate along a first axis.
Abstract:
A packing assembly for transporting workpieces which have a plurality of pins, includes at least one packing member. Each packing member includes a top wall which includes at least one packing portion. Each packing portion defines a plurality of receiving grooves for receiving the workpieces. In each receiving groove, a bottom surface and two side surfaces are defined. The two side surfaces extend from opposite sides of the bottom surface. Each packing portion further includes a plurality of connecting surfaces. Each connecting surface connects two adjacent side surfaces of two adjacent receiving grooves, and defines a retrieving groove for facilitating the picking up and extraction of each workpiece. The bottom surface defines a plurality of passing-through holes for receiving and protecting the plurality of pins of the workpieces during transport.
Abstract:
A turning mechanism for turning over workpieces includes a supporting bracket, a turning assembly, and a suction assembly. The turning assembly includes a first driving member mounted on the supporting bracket and a turning member connected to the first driving member. The suction assembly includes a plurality of suction members and a second driving member connected to the plurality of suction members. The plurality of suction members is separately mounted on the turning member. The second driving member is mounted on the supporting bracket and is capable of generating negative air pressure in the plurality of suction members to enable the plurality of suction members to suction adhere to the workpiece, thereby holding the workpiece on the turning member. The first driving member is capable of rotating the turning member to turn over the workpiece.
Abstract:
A screw-removing device used for removing a number of screws screwed into a workpiece includes a support frame, a removing mechanism, a positioning mechanism, and a transporting mechanism. The removing mechanism includes a first driving member mounted on the support frame and a number of universal shafts. The universal shaft comprises a main body, a transmitting portion connected to the first driving member, and a connection portion. A removing member is connected to the connection portion. The positioning mechanism is mounted in the support frame to position the workpiece below the removing member. The transporting mechanism is mounted on the support frame to transport the workpiece to the positioning mechanism.
Abstract:
A transferring mechanism includes a first transferring assembly, a second transferring assembly, and a catcher. The first transferring assembly and the second transferring assembly are arranged side by side. A transferring direction of the first transferring assembly is opposite to a transferring direction of the second transferring assembly. The catcher includes a pair of mounting blocks, a guiding member, a sliding member, a telescoping member, and a clamping member. The mounting blocks are positioned on the first transferring assembly and the second transferring assembly. Opposite ends of the guiding member are mounted on the pair of mounting blocks, the guiding member across the first transferring assembly and the second transferring assembly. The sliding member is slidably sleeved on the guiding member. The telescoping member is mounted on the sliding member. The catcher is mounted on the telescoping member for clamping a workpiece on the first transferring assembly.
Abstract:
A dismantling device, comprising a base, a bearing mechanism, a moving mechanism and a pulling-out assembly, the bearing mechanism supports a product to be dismantled; the pulling-out assembly comprises a connecting mechanism, a drive mechanism, a catching member and a sliding block; the connecting mechanism comprises an outer framework and an inner framework sliding relative to the outer framework; the outer framework is connected to the moving mechanism and presses against the product; the drive mechanism is connected to the inner framework and the sliding block; the catching member is slidably arranged in the inner framework; the sliding block slides with the catching member; and the drive mechanism drives the catching member to clamps the part and the inner framework dismantles the part from the product.
Abstract:
A reshaping method for metal product includes acquiring position data information of a workpiece; converting the position data information into coordinate information, and fitting the coordinate information to obtain a surface contour curve of the workpiece; comparing the surface contour curve with a standard contour curve to generate a comparison result; obtaining reshaping information of the workpiece based on the comparison result; and controlling the reshaping system to reshape the workpiece. The disclosure acquires position data information of the workpiece by measuring, converts the position data information into coordinate information, fits the coordinate information to obtain the surface contour curve of the workpiece, compares the surface contour curve with the standard contour curve to obtain deformation situation, and reshapes the workpiece according to the reshaping information based on the deformation situation, which improves efficiency of workpiece reshaping and reducing labor costs. An electronic device is also provided.
Abstract:
A sticking machine able to automatically remove films on either side of a sheet to be pasted to a workpiece includes a sheet supply component, a sheet selection component, a drive component, a first film-removing component, a second film-removing component, a carrier, and a transmission line. The sheet supply component stores sheets. The sheet selection component applies suction to the sheet. The first film-removing component tears off a first film, the second film-removing component tears off a second film on the reverse side. The transmission line carries the workpiece to the carrier. The sticking machine is fed by the sheet supply component, and after removal of the first film, the sheet selection component lays the sheet on the surface of the workpiece, then the second film-removing component tears off the second film, realizing automatic sticking of the sheet on the workpiece, improving the processing efficiency and accuracy.
Abstract:
A press mechanism includes a driving mechanism, a connecting plate connected to the driving mechanism, an installation plate, and a press assembly. The press assembly includes a base defining at least one first resisting groove, at least one first press block and at least one second press block positioned on the base. The first press block includes at least one first elastic member and a first connecting block defining at least one second resisting groove. A predetermined distance is defined between the first connecting block and the base, and the first elastic member is received in the first resisting groove and the second resisting groove.