Abstract:
A polishing apparatus connected to a robot arm and used to polish a workpiece includes a bracket, a polishing assembly, and a positioning assembly. The polishing assembly is mounted on the bracket and includes a driver and a polishing plate connected to the driver. The driver is capable of driving the polishing plate to rotate, and defines an annular positioning groove around the spin axis. The positioning assembly includes a first positioning plate and a second positioning plate mounted on the bracket and opposite to the first positioning plate. The first positioning plate and the second positioning plate are clamped into two sides of the positioning groove, whereby the driver is clamped between the first positioning plate and the second positioning plate.
Abstract:
A separating device for separating a continuous single piece of material into individual work pieces includes an supporting block, a moving assembly, a separating assembly and an controller. The supporting block defines a feeding portion for the single material to pass through. The moving assembly is connected to the feeding portion and blows into the feeding portion to push individual work pieces to move along the feeding portion. The separating assembly is positioned on the supporting block. The controller is positioned on either side of the supporting block for recording and signaling the creation of an individual work piece. When the controller signals another work piece, the first separating element presses a following work piece.
Abstract:
A feeding device includes a sliding member, a main shaft, a tool holding assembly, a locking assembly, and a locking assembly. The sliding member is slidably couplable to a moving member. The main shaft is rotatably coupled with the sliding member. The tool holding assembly includes a connecting member detachably connectable to the main shaft and configured for holding one of a plurality of tool heads, the connecting member defining two clamping grooves. The locking assembly is positioned on the sliding member having a driving member attached to the sliding member, and a pair of claws attached to the driving member. The disclosure also supplies a machine tool using the feeding device, and a method for manching using the machine tool.
Abstract:
A feeding device includes a guiding assembly and a clamping mechanism. The guiding assembly includes a guiding rod and a transfer rod coupled to the guiding rod. The transfer rod includes a rack. The clamping mechanism includes a driving assembly and a clamping assembly. The driving assembly includes a support frame, a first driver coupled to the support frame, a gear coupled to the first driver and meshing with the rack, and two guiding members adjustably coupled to the support frame and positioned at opposite sides of the guiding rod. The guiding members is latched to the guiding rod and configured to move the support frame to adjust a backlash between the gear and the rack. The clamping assembly is coupled to the support frame.
Abstract:
An air-sourced cleaning and deburring workpiece mechanism includes a fixed frame, a transfer assembly coupled to the fixed frame, and a cleaning assembly. The cleaning assembly includes a drive member, a slide member, and a first cleaning member. The drive member can drive the first cleaning member to move back and forth along a transfer direction of the transfer assembly, so that the first cleaning member can be applied to a workpiece.
Abstract:
A transferring device includes a conveyer system, a reloading mechanism, and a jig. The reloading mechanism includes a blocking assembly and a grasping assembly. The blocking assembly includes a holding member mounted on the conveyer system, a stopping member, and a first driving member positioned on the holding member. The stopping member is connected to the first driving member. The grasping assembly includes a fixing member mounted on the conveyer system, a second driving member mounted on the fixing member, a third driving member mounted on the second driving member, and a pair of catches. The catches are positioned at opposite ends of the third driving member. The jig includes a top cover and a bottom cover engaged with the top cover. The jig is transferred on the conveyor system.
Abstract:
A clamping device comprises a driving cylinder, a buffering assembly, a first clamping member, and a second clamping member. The first clamping member and the second clamping member are mounted to the driving cylinder. The buffering assembly comprises a fixing member, a guiding rail, a guiding rod, and an elastic member. The fixing member comprises a first mounting portion and a second mounting portion. The first mounting portion defines a through hole. The guiding rail is mounted to the fixing member and located between the first mounting portion and the second mounting portion. The driving cylinder is mounted to the guiding rail. A first end of the guiding rod is movably received through the through hole, and a second end of the guiding rod is fixed to the driving cylinder. Opposite ends of the elastic member resist against the first mounting portion and the driving cylinder, respectively.
Abstract:
A method for machining a metallic member to provide a finished appearance uses a lathe and a scraping process. A metallic member comprising a top portion and a peripheral sidewall is provided, the metallic member is positioned on the worktable. The worktable is rotated with the metallic member, the lathe tool moved backwards and forwards to machine the top portion of the rotary metallic member circumferentially. The lathe tool is moved by the moving device along a predetermined path relative to the worktable to machine curved surfaces of the top portion of the metallic member. The scraping cutter is moved to contact the peripheral sidewall of the metallic member. The scraping cutter is moved along a predetermined path, and the scraping cutter is fed the metallic member to achieve the required shape and finish.
Abstract:
A machine tool with lathe tool and milling cutter includes a machine support, a worktable, a moving device, a lathe feeding mechanism and a milling feeding mechanism. The worktable is positioned on the machine support. The moving device is slidably assembled to the machine support along a first direction and located above the worktable. The lathe feeding mechanism and the milling feeding mechanism are slidably assembled to the moving device along a second direction perpendicular to the first direction. The lathe feeding mechanism includes a feeding assembly and a lathe tool connected to the feeding assembly. The feeding assembly is configured for driving the lathe tool to move along a third direction substantially perpendicular to the first and second direction reciprocally, the milling feeding mechanism includes a milling cutter and is configured for driving the milling cutter to move along the third direction.
Abstract:
A turnover mechanism is used for turning a fixture and a workpiece positioned on the fixture, which includes a support bracket, a first turning mechanism, a movement mechanism, and a second turning mechanism. First turning mechanism includes a first rotary driver, a first clamping driver and two first clamping members oppositely positioned on the first clamping driver. The first rotary driver is positioned on the support bracket and connected to the first clamping driver. The first clamping driver drives the first clamping members to clamp the fixture and the workpiece. The first rotary driver rotate the first clamping driver and the two first clamping members to such that the fixture is driven to be rotated on a reverse side. The movement mechanism reaches the first turning mechanism to transfer the workpiece to the second turning mechanism. Second turning mechanism is mounted on the support bracket, clamping and turning the workpiece.