Surface polishing device for mold processing part
Technical Field
The utility model relates to the technical field of part machining, in particular to a surface polishing device for a die machining part.
Background
At present, various moulds and tools for injection molding, blow molding, extrusion, die casting or forging forming, smelting, stamping and other methods are used for obtaining required products in the industrial production of the mould, and parts machined by the mould are required to be polished, and partial polishing or manual feeding and discharging by staff are required to be carried out, so that the working efficiency is low, and therefore, the polishing optimization of the parts machined by the mould is necessary.
The utility model in China patent publication No. CN212351569U discloses a polishing device for processing mold parts, the prior art is high in efficiency and high in practicability, polishing of each part requires manual feeding and discharging of a worker, so that one part requires more time, the mold production speed is high, a large number of parts are produced each time, each part is fed and discharged manually by the worker, time is wasted, the worker is hard to concentrate on due to the operation with high repeatability, and the working efficiency is reduced again, so that the device for polishing the surface of the mold processing part is necessary.
Disclosure of utility model
The utility model provides a surface polishing device for a part to be processed by a die, which aims to solve the technical problem that working efficiency is low because a worker needs to manually feed and discharge during part polishing.
The surface polishing device for the die processing parts comprises two supporting plates and a plurality of parts, wherein one side of each supporting plate is provided with a conveying assembly for conveying the parts, a polishing assembly for polishing the die processing parts is arranged between the two supporting plates, two sides of each polishing assembly are provided with moving assemblies for enabling the polishing assemblies to move up and down according to the thickness of the parts, and a feeding assembly for automatically feeding and polishing the conveying assembly is arranged between the two supporting plates.
Through the technical scheme, a plurality of parts needing to be polished are placed in the feeding assembly, and the parts can be automatically brought to the polishing assembly by the conveying assembly to be polished.
As a further improvement of the scheme, the polishing assembly comprises two rotating rollers arranged between the two supporting plates in a rotating mode and polishing belts sleeved on the two rotating rollers, one side of one rotating roller is provided with a servo motor, and the output end of the servo motor is provided with a connecting rod fixedly installed with the adjacent rotating roller.
Through the technical scheme, the servo motor drives the rotating roller to polish the parts by the polishing belt.
As the further improvement of above-mentioned scheme, two move mouthful has all been seted up to one side of backup pad, two move the both sides of mouthful and all seted up the sliding tray, two move the bottom of mouthful and all seted up the rotation hole, move the subassembly including setting up at adjacent movable plate that moves the mouth inside, fix in movable plate both sides and with adjacent sliding tray sliding fit's sliding strip and set up in movable plate one side and one end screw thread run through adjacent movable plate's screw thread post, screw thread post's one end fixed mounting has one end to extend to the inside rotation post of rotation hole, movable plate and connecting rod rotate the cover and establish.
Through above-mentioned technical scheme, rotate the screw thread post just can adjust the height of polishing area, conveniently polish according to the part height.
As the further improvement of above-mentioned scheme, two one side of backup pad all is equipped with the threaded rod, two the one end of threaded rod all runs through adjacent backup pad and extends to the inside in adjacent pivoted hole and laminating mutually with adjacent pivoted post, two the equal fixed mounting of the other end of threaded rod has the turning block.
Through above-mentioned technical scheme, rotate the threaded rod just can fix the spliced pole, prevent that the spliced pole from rotating by oneself.
As the further improvement of above-mentioned scheme, the material loading subassembly is including setting up between two backup pads and for the material loading case of cavity setting and fixed mounting at material loading case one side and be the baffle that "L" shape set up, a plurality of the part all sets up at the inside of material loading case, two all be equipped with a plurality of promotion pieces that release the part from the material loading case on the conveying subassembly.
Through above-mentioned technical scheme, the part falls on the baffle, will promote the piece when removing on will promoting the conveying assembly and remove.
As a further improvement of the scheme, one side of the servo motor is fixedly provided with a fixed plate fixedly installed with an adjacent movable plate, a supporting block for supporting part polishing is arranged between the two conveying components, and one side of the two supporting plates is provided with a collecting box for collecting polished workpieces.
Through the technical scheme, the parts automatically fall into the collecting box to be collected after polishing.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the polishing assembly, the moving assembly and the feeding assembly are arranged, when a plurality of parts are required to be polished, the parts are placed in the feeding assembly, the pushing block pushes the parts to the conveying assembly to move under the movement of the conveying assembly, the height of the polishing assembly is adjusted by using the moving assembly according to the thickness of the parts, and thus the parts are polished by the polishing assembly when moving to one side of the polishing assembly, and the parts can be fed for polishing at one time, so that the working efficiency is improved, and the labor that workers need to manually polish and feed is avoided.
Drawings
FIG. 1 is a schematic view of a three-dimensional structure of the present utility model;
FIG. 2 is a schematic diagram of a mobile device according to the present utility model;
fig. 3 is a schematic structural view of the feeding assembly of the present utility model.
Main symbol description:
1. The device comprises a supporting plate, a conveying assembly, 301, a rotating roller, 302, a polishing belt, 401, a moving plate, 402, a sliding bar, 403, a threaded column, 501, a feeding box, 502, a baffle, 6, a servo motor, 7, a connecting rod, 8, a rotating column, 9, a threaded rod, 10, parts, 11, a pushing block, 12 and a collecting box.
Detailed Description
The present utility model will be further described with reference to the accompanying drawings and detailed description, wherein it is to be understood that, on the premise of no conflict, the following embodiments or technical features may be arbitrarily combined to form new embodiments.
Please combine fig. 1-3, a polishing device for a surface of a machined part of a mold in this embodiment includes two support plates 1 and a plurality of parts 10, one sides of the two support plates 1 are respectively provided with a conveying component 2 for conveying the parts 10, polishing components for polishing the mold and the parts 10 are arranged between the two support plates 1, two sides of the polishing components are respectively provided with a moving component for enabling the polishing components to move up and down according to the thickness of the parts 10, and a feeding component for automatically feeding and polishing the conveying components 2 is arranged between the two support plates 1.
Referring to fig. 2 and 3, the polishing assembly includes two rotating rollers 301 rotatably disposed between the two support plates 1 and a polishing belt 302 sleeved on the two rotating rollers 301, wherein one side of one rotating roller 301 is provided with a servo motor 6, an output end of the servo motor 6 is provided with a connecting rod 7 fixedly mounted with an adjacent rotating roller 301, and the servo motor 6 drives the rotating rollers 301 to enable the polishing belt 302 to polish the component 10.
In combination with fig. 1 and 2, the moving port has all been seted up to one side of two backup pads 1, the sliding tray has all been seted up to both sides of two moving ports, the rotation hole has all been seted up to the bottom of two moving ports, moving assembly is including setting up at adjacent inside movable plate 401 of moving port, fix in movable plate 401 both sides and with adjacent sliding tray sliding fit's slip strip 402 and set up in movable plate 401 one side and one end screw thread run through adjacent movable plate 401's screw thread post 403, screw thread post 403's one end fixed mounting has one end to extend to the inside rotation post 8 of rotation hole, movable plate 401 and connecting rod 7 rotate the cover and establish, one side of two backup pads 1 all is equipped with threaded rod 9, the one end of two threaded rod 9 all runs through adjacent backup pad 1 and extends to the inside of adjacent rotation hole and laminating mutually with adjacent rotation post 8, the other end of two threaded rod 9 all fixed mounting has the turning block, the height that rotates screw thread post 403 just can adjust area 302, the polishing is carried out according to part 10 height conveniently.
Referring to fig. 1 and 3, the loading assembly includes a loading box 501 disposed between two support plates 1 and disposed in a hollow manner, and a baffle 502 fixedly mounted on one side of the loading box 501 and disposed in an L-shape, a plurality of parts 10 are disposed in the loading box 501, a plurality of pushing blocks 11 pushing the parts 10 out of the loading box 501 are disposed on two conveying assemblies 2, a fixed plate fixedly mounted on one side of the servo motor 6 and an adjacent moving plate 401 are fixedly mounted, a supporting block supporting polishing of the parts 10 is disposed between the two conveying assemblies 2, a collecting box 12 for collecting polished workpieces is disposed on one side of the two support plates 1, the parts 10 fall on the baffle 502, and the pushing blocks 11 push the parts 10 onto the conveying assemblies 2 to move when moving.
The implementation principle of the surface polishing device for the die processing parts in the embodiment of the application is that when a plurality of parts 10 need to be polished, the height of a polishing belt 302 is adjusted according to the thickness of the parts 10, namely, a moving plate 401 which is in threaded fit with a rotating threaded column 403 is moved up and down, the moving plate 401 moves to drive a rotating roller 301 and the polishing belt 302 to move together, after the position adjustment is finished, a threaded rod 9 is rotated to fix a rotating column 8, so that the threaded column 403 is fixed, after the position adjustment of the polishing belt 302 is finished, the plurality of parts 10 are stacked in a loading box 501, the bottommost parts 10 fall on a baffle 502, except that the bottommost parts 10 can not be blocked by the loading box 501, a conveying assembly 2 and a servo motor 6 are started, a pushing block 11 on the conveying assembly 2 can move and push the bottommost parts 10 onto the conveying assembly 2 from two sides of the parts 10, so that the parts 10 can move to one side of the polishing belt 302 to be polished, the height of the pushing block 11 is smaller than the parts 10, the polishing box 501 can not be influenced, and the loading box, the baffle 502 and the pushing block 11 can be removed or the parts 10 can be replaced or the parts 10 can be prevented from being collected by a worker to manually after the parts 10 are required to be placed in the box.
The above embodiments are only preferred embodiments of the present utility model, and the scope of the present utility model is not limited thereto, but any insubstantial changes and substitutions made by those skilled in the art on the basis of the present utility model are intended to be within the scope of the present utility model as claimed.