Degumming and paper-removing equipment and degumming and paper-removing line for flap wheel abrasive disc mold disc
By designing an automated feeding, cleaning and conveying mechanism, the problem of low cleaning efficiency of sanding wheel grinding sheet mold plates is solved, and efficient, precise positioning and fully automated cleaning effects are achieved.
Patent Information
- Application Number
- CN202421984824.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-08-16
AI Technical Summary
In the prior art, the cleaning efficiency of the sanding wheel grinding sheet mold plate is low, the degree of automation is low, and the mold plate is easily displaced during the cleaning process, which affects the cleaning effect.
A device including a feeding mechanism, a cleaning mechanism and a conveying mechanism is designed to send the mold plate to the cleaning station by pushing the assembly, and positioning and cleaning using positioning action parts, rotating scraping parts, rotating brushing parts and cleaning parts, and fully automated operation is achieved in combination with the servo control device.
It realizes efficient, precise positioning and fully automated cleaning of mold plates, improves cleaning efficiency, reduces manual intervention, and ensures cleaning effect.
Smart Images

Figure CN223236072U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flake wheel manufacturing, in particular to a flake wheel grinding plate mold plate degumming and depapering device and a degumming and depapering line. Background Art
[0002] When producing sand sheets and paddle wheel grinding discs, it is necessary to use a mold disc to discharge, shape, glue, press and incinerate the sand sheets and paddle wheel grinding discs 360 degrees. During the several hours of incineration process, the glue on the paddle wheel grinding discs partially overflows and adheres to the mold disc. Therefore, after the paddle wheel grinding discs are produced, it is generally necessary to clean the glue and paper scraps on the mold disc. The traditional cleaning method is through manual cleaning, generally through manual scraping and burning in a furnace for 4 hours, and then switching to manual cleaning, resulting in dozens of people required for the cleaning operation, low cleaning efficiency, time-consuming and labor-intensive. There are also cleaning methods using equipment, which can improve cleaning efficiency, but still requires manual loading, and the mold disc cannot be effectively positioned during cleaning. Therefore, the cleaning efficiency is still not high enough, the degree of automation is low, and the mold disc is prone to shifting during cleaning, affecting the cleaning effect.
[0003] Therefore, further improvements are necessary. Utility Model Content
[0004] The purpose of the utility model is to provide a degumming and depapering device and a degumming and depapering line for a grinding wheel, a grinding plate, a mold plate, which has a simple structure, high cleaning efficiency, good positioning effect, high degree of automation and strong practicality, so as to overcome the shortcomings of the existing technology.
[0005] A degumming and depapering device for a grinding wheel grinding sheet mold disc designed for this purpose includes a machine body, and is characterized in that it also includes a loading mechanism, a cleaning mechanism and a conveying mechanism arranged on the machine body, the loading mechanism includes a barrel for stacking the mold discs, the cleaning mechanism includes a plurality of cleaning components, a cleaning station is arranged between the cleaning mechanism and the conveying mechanism, and the cleaning components are arranged on the cleaning station; when the cleaning equipment is working, the loading mechanism pushes the mold disc at the bottom of the barrel onto the conveying mechanism, and the conveying mechanism conveys the mold disc to the cleaning station so that the mold disc can be positioned and cleaned in sequence through the cleaning components.
[0006] The feeding mechanism also includes a feeding plate assembly and a pushing assembly. There are multiple positioning plates for placing the mold plate distributed on the conveying mechanism. When the mold plate is loaded, the pushing assembly pushes the mold plate at the bottom of the barrel so that the mold plate falls onto the positioning plate through the feeding plate assembly.
[0007] The loading plate assembly includes a first loading plate and a second loading plate arranged upper and lower, and several barrels are distributed on the first loading plate. A loading gap is set between the first loading plate and the second loading plate. The mold plate at the bottom of the barrel is located on the loading gap, and a blanking hole is set on the second loading plate; the pushing assembly pushes the mold plate on the loading gap so that the mold plate falls onto the positioning plate through the blanking hole.
[0008] The pushing assembly includes a first driver and a push plate. The first driver is fixed on the loading plate assembly and drives the push plate. The first driver drives the push plate to move on the loading gap to push the mold plate on the loading gap.
[0009] The cleaning component includes a rotatable component and a positioning component that moves up and down, a rotating scraping component, a rotating brush component and a cleaning component. The cleaning station includes a positioning station, a coarse and fine rotary scraping station, a four-time rotary brushing station and a cleaning station which are arranged in sequence. The positioning component, the rotating scraping component, the rotating brush component and the cleaning component are respectively arranged on the positioning station, the coarse and fine rotary scraping station, the four-time rotary brushing station and the cleaning station. The conveying mechanism conveys the mold disc on the positioning disc to the positioning station, the coarse and fine rotary scraping station, the four-time rotary brushing station and the cleaning station in sequence, so as to position, scrape, brush and clean the mold disc in sequence through the positioning component, the rotating scraping component, the rotating brush component and the cleaning component.
[0010] There are several positioning pins distributed in a circle on the positioning plate, and several positioning holes distributed in a circle on the mold plate. When the positioning member moves downward and rotates, it acts on the mold plate, so that the mold plate is positioned on the positioning plate through the cooperation of the positioning pins and the positioning holes.
[0011] The positioning part, rotating scraper part, rotating brush part and cleaning part are distributed horizontally in sequence. The positioning part is distributed longitudinally on the positioning station, the rotating scraper part is distributed longitudinally on the coarse and fine rotary scraper station, the rotating brush part is distributed longitudinally on the four rotary brush stations, and the cleaning part is distributed longitudinally on the cleaning station.
[0012] The cleaning mechanism also includes a rotating device and a lifting device;
[0013] The rotating device includes a second driver and multiple pulley assemblies, the second driver drives and connects each pulley assembly respectively, the pulley assembly includes two pulleys and a transmission belt arranged between the two pulleys, each pulley is respectively connected to the positioning member, the rotating scraping member, the rotating brush member or the cleaning member, and the second driver drives the positioning member, the rotating scraping member, the rotating brush member and the cleaning member to rotate respectively through the pulley assembly;
[0014] The lifting device includes a third drive, a worm gear assembly and a lifting platform. The third drive drives the worm gear assembly, which is connected to the lifting platform. The positioning member, the rotating scraper member, the rotating brush member and the cleaning member are respectively rotatably arranged on the lifting platform. The third drive drives the lifting platform to move up and down on the machine body through the worm gear assembly, and the lifting platform drives the positioning member, the rotating scraper member, the rotating brush member and the cleaning member to move up and down respectively.
[0015] The conveying mechanism includes a fourth drive and a chain plate line assembly. The chain plate line assembly includes a driving wheel, a driven wheel, and a chain plate line arranged between the driving wheel and the driven wheel. The fourth drive drives the driving wheel, and the positioning disk is distributed horizontally and vertically on the chain plate line. The fourth drive drives the chain plate line to operate through the cooperation of the driving wheel and the driven wheel, so that the chain plate line transports the mold disk placed on the positioning disk to the positioning station, the coarse and fine scraping station, the four-time rotary brushing station and the cleaning station in sequence.
[0016] A servo control device is provided on the machine body, and the servo control device is electrically connected to the feeding mechanism, the cleaning mechanism and the conveying mechanism respectively.
[0017] A degumming and depapering line designed for this purpose is characterized in that it includes: a mold plate front degumming and depapering device, an automatic loading and flanging conveying mechanism, a mold plate back degumming and depapering device, an automatic wax dipping device, an automatic air-drying mechanism, a front vibrator and a discharge mechanism, the mold plate front degumming and depapering device and the mold plate back degumming and depapering device are the sand leaf wheel grinding sheet mold plate degumming and depapering devices, the automatic loading and flanging conveying mechanism is arranged between the mold plate front degumming and depapering device and the mold plate back degumming and depapering device, one end of the automatic loading and flanging conveying mechanism is connected to the conveying mechanism of the mold plate front degumming and depapering device, and the other end is connected to the material barrel of the mold plate back degumming and depapering device, the material barrel of the mold plate front degumming and depapering device is connected to the front vibrator, the automatic wax dipping device is arranged between the mold plate back degumming and depapering device and the automatic air-drying mechanism, the automatic air-drying mechanism is provided with a conveying device, one end of the conveying device is arranged in the automatic wax dipping device, the conveying mechanism of the mold plate back degumming and depapering device is connected to the automatic wax dipping device, and the other end of the conveying device is connected to the discharge mechanism.
[0018] The utility model provides a feeding mechanism, a cleaning mechanism and a conveying mechanism. The feeding mechanism pushes the mold tray at the bottom of the barrel onto the conveying mechanism, and the conveying mechanism conveys the mold tray to the cleaning station, so that the mold tray is positioned and cleaned in turn by the cleaning components. The cleaning process is automatically controlled by a PLC servo motor and a single-chip microcomputer with a built-in control program, thereby realizing fully automatic feeding and cleaning of the mold tray. Manual feeding and manual cleaning are not required, which greatly improves the cleaning efficiency and cleaning effect, saves time and effort, and can accurately position the mold tray, so that the mold tray will not shift during the cleaning process, thereby not affecting the cleaning of glue and paper scraps, and further improving the cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic diagram of the overall structure of the degumming and depapering equipment in one embodiment of the present invention.
[0020] Figure 2 This is a schematic diagram of a cleaning mechanism in one embodiment of the present invention.
[0021] Figure 3 It is a partial structural diagram of the feeding mechanism in one embodiment of the present utility model.
[0022] Figure 4 This is a front view of a pushing component in one embodiment of the present invention.
[0023] Figure 5 This is a schematic diagram of the coordination of the barrel, the second loading plate and the push plate in one embodiment of the present invention.
[0024] Figure 6 This is a schematic diagram of the cooperation between the barrel and the second loading plate in one embodiment of the present utility model.
[0025] Figure 7 This is a schematic diagram of the overall structure of the positioning plate in one embodiment of the present utility model.
[0026] Figure 8 This is a schematic diagram of the overall structure of the mold plate in one embodiment of the present invention.
[0027] Figure 9 It is a front view of a positioning member in one embodiment of the utility model.
[0028] Figure 10 This is a front view of a rotating scraper component in one embodiment of the present invention.
[0029] Figure 11 This is a front view of the rotating brush component in one embodiment of the present utility model.
[0030] Figure 12 It is a front view of the cleaning component in one embodiment of the utility model.
[0031] Figure 13 This is a schematic diagram of the overall structure of the rotating scraper component in one embodiment of the present utility model.
[0032] Figure 14 This is a schematic diagram of the assembly structure of the chain plate line and the positioning plate in one embodiment of the present utility model.
[0033] Figure 15 This is a schematic diagram of the assembly structure of the chain plate line and the positioning plate in another orientation in one embodiment of the present utility model.
[0034] Figure 16 This is a schematic diagram of the overall structure of a degumming and depapering line in one embodiment of the present invention. DETAILED DESCRIPTION
[0035] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0036] See also Figures 1-16 The degumming and depapering equipment for the mold disc of the abrasive wheel grinding sheet includes a body 1, a feeding mechanism 2, a cleaning mechanism 3 and a conveying mechanism 4 arranged on the body 1. The feeding mechanism 2 includes a barrel 6 for stacking the mold discs 5, and the barrel 6 is used to store the mold discs 5 ready for loading; the cleaning mechanism 3 includes a plurality of cleaning components, and a cleaning station is provided between the cleaning mechanism 3 and the conveying mechanism 4, and the cleaning components are provided on the cleaning station; when the cleaning equipment is working, the feeding mechanism 2 pushes the mold disc 5 at the bottom of the barrel 6 onto the conveying mechanism 4, and the conveying mechanism 4 conveys the mold disc 5 to the cleaning station so that the mold disc 5 can be positioned and cleaned in turn by the cleaning components.
[0037] The loading mechanism 2 also includes a loading plate assembly 7 and a pushing assembly 8. A plurality of positioning plates 9 for placing the mold tray 5 are distributed on the conveying mechanism 4. When the mold tray 5 is loaded, the pushing assembly 8 pushes the mold tray 5 at the bottom of the barrel 6 so that the mold tray 5 falls onto the positioning plate 9 through the loading plate assembly 7. At this time, the mold tray 5 on the barrel 6 will fall to the height of a mold tray 5.
[0038] The loading plate assembly 7 includes a first loading plate 10 and a second loading plate 11 arranged upper and lower. The first loading plate 10 and the second loading plate 11 are connected by screws. Several barrels 6 are linearly distributed on the first loading plate 10. The barrels 6 are welded to the first loading plate 10. A loading gap 12 is provided between the first loading plate 10 and the second loading plate 11. The mold plate 5 at the bottom of the barrel 6 is located on the loading gap 12, and a blanking hole 13 is provided on the second loading plate 11; the pushing assembly 8 pushes the mold plate 5 on the loading gap 12 so that the mold plate 5 falls onto the positioning plate 9 through the blanking hole 13.
[0039] The first loading plate 10 is provided with a plurality of through holes 37 , and the through holes 37 correspond to the barrels 6 one by one. The barrels 6 are connected to the loading gap 12 through the corresponding through holes 37 .
[0040] The pushing assembly 8 includes a first driver 14 and a push plate 15. The first driver 14 is fixed on the loading plate assembly 7, and the first driver 14 drives the connected push plate 15. The first driver 14 drives the push plate 15 to move on the loading gap 12 to push the mold plate 5 on the loading gap 12.
[0041] The pushing assembly 8 further includes a connecting block 38 . The first driver 14 drives and connects the connecting block 38 . The connecting block 38 is cooperatively connected with the pushing plate 15 . The first driver 15 is a cylinder.
[0042] Two pushing parts 39 for pushing the mold disc 6 are provided on the pushing plate 15. The shape of the pushing part 39 matches the shape of the mold disc 5. Two pushing components 8 are provided and four barrels 6 are provided. The pushing parts 39 correspond one to one with the barrels 6. By providing multiple barrels 6 and pushing parts 39, multiple mold discs 5 can be loaded at the same time, thereby improving loading efficiency.
[0043] The cleaning component includes a rotatable component and a positioning component 16, a rotating scraping component 17, a rotating brush component 18 and a cleaning component 19 that move up and down. The cleaning station includes a positioning station 20, a coarse and fine scraping station 21, a four-time rotary brushing station 22 and a cleaning station 23 that are arranged in sequence. The positioning component 16, the rotating scraping component 17, the rotating brush component 18 and the cleaning component 19 are respectively arranged on the positioning station 20, the coarse and fine scraping station 21, the four-time rotary brushing station 22 and the cleaning station 23. The conveying mechanism 4 conveys the mold disc 5 on the positioning disc 9 to the positioning station 20, the coarse and fine scraping station 21, the four-time rotary brushing station 22 and the cleaning station 23 in sequence, so as to position, scrape, brush and clean the mold disc 5 in sequence through the positioning component 16, the rotating scraping component 17, the rotating brush component 18 and the cleaning component 19.
[0044] There are several positioning pins 24 distributed in a ring on the positioning disk 9, and several positioning holes 25 distributed in a ring on the mold disk 5. The positioning member 16 acts on the mold disk 5 when it moves downward and rotates, so that the mold disk 5 is positioned on the positioning disk 9 through the cooperation of the positioning pins 24 and the positioning holes 25; when the positioning member 16 acts on the mold disk 5, the mold disk 5 moves slightly, and the mold disk 5 drives the positioning holes 25 to move to find the position of the positioning pins 24. When the positioning holes 25 are aligned with the positioning pins 24, the positioning pins 24 are inserted into the positioning holes 25 to achieve the positioning cooperation between the two.
[0045] The rotating scraper component 17, the rotating brush component 18 and the cleaning component 19 act on the mold disc 5 when they move downward and rotate, so as to respectively scrape, brush and clean the residual glue layer and paper layer on the mold disc 5 placed on the positioning disc 9.
[0046] The positioning member 16 is a wire brush, which is provided with a steel wire 40 for acting on the mold disk 5; the rotating scraping member 17 is a scraper, and blades 41 are respectively provided on both sides of the rotating scraping member 17. When the rotating scraping member 17 rotates, the blades 41 are used to cut the residual glue and residual paper scraps on the mold disk 5; the rotating brush member 18 is a wire brush, which is used to remove the residual glue and residual paper scraps on the mold disk 1 after rotary scraping and then rotary brushing in multiple times; the cleaning member 19 is a brush for cleaning paper scraps and the like on the mold disk 5.
[0047] The positioning member 16, the rotating scraper member 17, the rotating brush member 18 and the cleaning member 19 are distributed laterally in sequence, the positioning member 16 is distributed longitudinally on the positioning station 20, the rotating scraper member 17 is distributed longitudinally on the coarse and fine scraper station 21, the rotating brush member 18 is distributed longitudinally on the four-time rotary brush station 22, and the cleaning member 19 is distributed longitudinally on the cleaning station 23; in this embodiment, the positioning member 16, the rotating scraper member 17, the rotating brush member 18 and the cleaning member 19 are respectively arranged 2 laterally and 4 longitudinally, that is, the positioning member 16, the rotating scraper member 17, the rotating brush member 18 and the cleaning member 19 are arranged in 8 rows laterally, a total of 32, which can clean multiple mold plates 5 at the same time, further improving the cleaning efficiency.
[0048] The positioning discs 9 are distributed horizontally and vertically on the conveying mechanism 4. Four positioning discs 9 are arranged vertically, corresponding to the number of positioning members 16, rotating scraper components 17, rotating brush components 18 and cleaning components 19 arranged vertically. The positioning discs 9 are horizontally distributed on the conveying mechanism 4.
[0049] The cleaning mechanism 3 also includes a rotating device and a lifting device;
[0050] The rotating device includes a second driver 26 and four groups of pulley assemblies 27. The four groups of pulley assemblies 27 are arranged longitudinally, corresponding to the number of the positioning role 16, the rotating scraper component 17, the rotating brush component 18 and the cleaning component 19 arranged longitudinally. Each group of pulley assemblies 27 includes a plurality of pulley assemblies 27 arranged transversely and connected in sequence. The second driver 26 drives and connects each group of pulley assemblies 27 respectively. The pulley assembly 27 includes two pulleys 28 and a transmission belt 29 arranged between the two pulleys 28. Each pulley 28 is respectively connected to the positioning role 16, the rotating scraper component 17, the rotating brush component 18 or the cleaning component 19. There are 32 pulleys 28. The second driver 26 drives the positioning role 16, the rotating scraper component 17, the rotating brush component 18 and the cleaning component 19 to rotate respectively through the pulley assembly 27; the second driver 26 is a motor. Two second drivers 26 are provided. Each second driver 26 drives and connects the active pulley (not shown in the figure) respectively, and the active pulley is respectively connected to the two groups of pulley assemblies 27.
[0051] The pulley assembly 27 is distributed laterally and longitudinally on the cleaning mechanism 3 (lifting platform 32 ).
[0052] The lifting device includes a third driver 30, a worm gear assembly 31 and a lifting platform 32. The third driver 30 drives the worm gear assembly 31, which is connected to the lifting platform 32. The positioning member 16, the rotating scraper member 17, the rotating brush member 18 and the cleaning member 19 are respectively rotatably arranged on the lifting platform 32. The third driver 30 drives the lifting platform 32 to move up and down on the machine body 1 through the worm gear assembly 31, and the lifting platform 32 drives the positioning member 16, the rotating scraper member 17, the rotating brush member 18 and the cleaning member 19 to move up and down respectively; two worm gear assemblies 31 are provided and connected by a synchronous shaft 42. The worm gear assembly 31 includes a worm gear 43 and a screw 44. The third driver 30 drives the worm gear 43, which is movably arranged on the worm gear 43, and the lower end of the screw 44 is connected to the lifting platform 32 to drive the lifting platform 32 to move up and down; the third driver 30 is a motor.
[0053] The positioning station 20 , the coarse and fine rotary scraping station 21 , the four-time rotary brushing station 22 and the cleaning station 23 are arranged between the lifting platform 32 and the chain plate line 36 .
[0054] Each pulley 28 is connected to a rotating shaft 45 , which is rotatably arranged on the lifting platform 32 . The positioning member 16 , the rotating scraping member 17 , the rotating brush member 18 and the cleaning member 19 are respectively installed on the corresponding rotating shaft 45 .
[0055] The conveying mechanism 4 includes a fourth driver 33 and a chain plate line assembly. The chain plate line assembly includes a driving wheel 34, a driven wheel 35, and a chain plate line 36 arranged between the driving wheel 34 and the driven wheel 35. The fourth driver 33 drives the driving wheel 34, and the positioning disk 9 is distributed horizontally and vertically on the chain plate line 36. The fourth driver 33 drives the chain plate line 36 to run through the cooperation of the driving wheel 34 and the driven wheel 35, so that the chain plate line 36 can convey the mold plate 5 placed on the positioning disk 9 to the positioning station 20, the coarse and fine scraping station 21, the four-time rotary brushing station 22 and the cleaning station 23 in sequence. The fourth driver 33 is a combination of a motor and a reducer; sliding wheels 46 are respectively provided on both sides of the chain plate line 36, and the chain plate line 36 is slidably set on the machine body 1 through the sliding wheels 46.
[0056] A servo control device is provided on the machine body 1, and the servo control device is electrically connected to the first driver 15, the second driver 26, the third driver 30 and the fourth driver 33 respectively. The servo control device is a control circuit board. The servo control device controls the first driver 15, the second driver 26, the third driver 30 and the fourth driver 33 to work in an orderly manner through a servo numerical control program, so as to fully automatically and efficiently clean the residual glue and residual paper objects in the original page wheel mold plate 5.
[0057] The positioning plate 9 is provided with a positioning cavity 47 for placing the mold plate 5 . The positioning pin 24 is provided on the positioning cavity 47 . The mold plate 5 is positioned on the positioning cavity 47 through the cooperation between the positioning pin 24 and the positioning hole 25 .
[0058] The degumming and depapering line includes a mold plate front degumming and depapering device a, an automatic loading and flanging conveying mechanism b, a mold plate back degumming and depapering device c, an automatic wax dipping device d, an automatic air drying mechanism e, a front vibrator (not shown in the figure) and a feeding mechanism f. The mold plate front degumming and depapering device a and the mold plate back degumming and depapering device c are the sand leaf wheel grinding plate mold plate degumming and depapering devices. The automatic loading and flanging conveying mechanism b is arranged between the mold plate front degumming and depapering device a and the mold plate back degumming and depapering device c. One end of the automatic loading and flanging conveying mechanism b is connected to the conveying mechanism 4 (chain) of the mold plate front degumming and depapering device a. The plate line 36) is connected to the plate line 36, and the other end is connected to the barrel 6 of the mold plate back degumming and depapering equipment c. The barrel 6 of the mold plate front degumming and depapering equipment a is connected to the front vibrator. The mold plates 5 enter the barrel 6 one by one in an orderly manner through the vibrator and are stacked and arranged. The automatic wax dipping device d is arranged between the mold plate back degumming and depapering equipment c and the automatic air-drying mechanism e. The automatic air-drying mechanism e is provided with a conveying device g. One end of the conveying device g is arranged in the automatic wax dipping device d. The conveying mechanism 4 (chain plate line 36) of the mold plate back degumming and depapering equipment c is connected to the automatic wax dipping device d, and the other end of the conveying device g is connected to the unloading mechanism f.
[0059] The front side degumming and depapering equipment a of the mold tray scrapes, brushes and cleans the residual glue and paper layers on the front side of the mold tray 5. After the front side of the mold tray 5 is cleaned, it is transported to the automatic loading and flanging conveying mechanism b through the conveying mechanism 4. After the mold tray 5 falls into the automatic loading and flanging conveying mechanism b, it changes from the front side facing up to the back side facing up, and then is conveyed to the barrel 6 of the mold tray back side degumming and depapering equipment c through the automatic loading and flanging conveying mechanism b. Then, the mold tray back side degumming and depapering equipment c scrapes, brushes and cleans the residual glue and paper layers on the back side of the mold tray 5. After the back side of the mold tray 5 is cleaned, it is transported to the automatic wax dipping device d through the conveying mechanism 4. The mold tray 5 falls into the automatic wax dipping device d for wax dipping. After the wax dipping is completed, it is transported to the automatic air-drying mechanism e through the conveying device g for air-drying. The wax dipping and air-drying time is approximately 10-15 minutes. After the air-drying is completed, it is transported to the unloading mechanism f through the conveying device g, and the mold tray 5 falls into the unloading mechanism f for unloading.
[0060] The shapes of the front and back sides of the mold disc 5 are different, so the shapes of the rotating scraping parts 17 of the mold disc front side degumming and paper stripping device a and the mold disc back side degumming and paper stripping device c are different.
[0061] The automatic loading and flanging conveying mechanism b and the conveying device g are conveying belts, the automatic wax dipping device d is a wax dipping machine, the automatic air drying mechanism e is an air drying machine, and the unloading mechanism f is a collection box.
[0062] The above is a preferred embodiment of the present invention, which illustrates and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. A degumming and depapering device for a grinding wheel, abrasive sheet, a mold plate, comprising a body (1), characterized in that: The machine also includes a feeding mechanism (2), a cleaning mechanism (3) and a conveying mechanism (4) arranged on the machine body (1), wherein the feeding mechanism (2) includes a barrel (6) for stacking the mold discs (5), and the cleaning mechanism (3) includes a plurality of cleaning components. A cleaning station is provided between the cleaning mechanism (3) and the conveying mechanism (4), and the cleaning components are provided on the cleaning station. When the cleaning device is working, the feeding mechanism (2) pushes the mold disc (5) at the bottom of the barrel (6) onto the conveying mechanism (4), and the conveying mechanism (4) conveys the mold disc (5) to the cleaning station, so that the mold disc (5) is positioned and cleaned in sequence by the cleaning components.
2. The degumming and depapering equipment for abrasive wheel grinding disc mold plate according to claim 1, characterized in that: The feeding mechanism (2) further comprises a feeding plate assembly (7) and a pushing assembly (8), and a plurality of positioning plates (9) for placing the mold plate (5) are distributed on the conveying mechanism (4); when the mold plate (5) is fed, the pushing assembly (8) pushes the mold plate (5) at the bottom of the barrel (6) so that the mold plate (5) falls onto the positioning plate (9) through the feeding plate assembly (7).
3. The degumming and depapering equipment for abrasive leaf wheel grinding disc mold plate according to claim 2, characterized in that: The loading plate assembly (7) includes a first loading plate (10) and a second loading plate (11) arranged upper and lower, a plurality of barrels (6) are distributed on the first loading plate (10), a loading gap (12) is provided between the first loading plate (10) and the second loading plate (11), a mold plate (5) at the bottom of the barrel (6) is located on the loading gap (12), and a drop hole (13) is provided on the second loading plate (11); the pushing assembly (8) pushes the mold plate (5) on the loading gap (12) so that the mold plate (5) falls onto the positioning plate (9) through the drop hole (13).
4. The degumming and depapering equipment for abrasive wheel grinding disc mold plate according to claim 3, characterized in that: The pushing assembly (8) includes a first driver (14) and a push plate (15), wherein the first driver (14) is fixed on the loading plate assembly (7), and the first driver (14) drives the connected push plate (15), and the first driver (14) drives the push plate (15) to move on the loading gap (12) to push the mold plate (5) on the loading gap (12).
5. The degumming and depapering equipment for abrasive wheel grinding disc mold plate according to claim 4, characterized in that: The cleaning component includes a rotatable component and a positioning member (16) that moves up and down, a rotating scraping component (17), a rotating brush component (18) and a cleaning component (19), and the cleaning station includes a positioning station (20), a coarse and fine rotary scraping station (21), a four-time rotary brush station (22) and a cleaning station (23) that are arranged in sequence. The positioning member (16), the rotating scraping component (17), the rotating brush component (18) and the cleaning component (19) are respectively arranged at the positioning station (20), the coarse and fine rotary scraping station (21), the four-time rotary brush station (22) and the cleaning station (23). The conveying mechanism (4) sequentially conveys the mold plate (5) on the positioning plate (9) to the positioning station (20), the coarse and fine rotary scraping station (21), the four-time rotary brushing station (22) and the cleaning station (23), so as to sequentially position, scrape, brush and clean the mold plate (5) through the positioning member (16), the rotary scraping member (17), the rotary brushing member (18) and the cleaning member (19).
6. The degumming and depapering equipment for abrasive wheel grinding disc mold plate according to claim 5, characterized in that: A plurality of positioning pins (24) are distributed in an annular manner on the positioning disk (9), and a plurality of positioning holes (25) are distributed in an annular manner on the mold disk (5). The positioning member (16) acts on the mold disk (5) when it moves downward and rotates, so that the mold disk (5) is positioned on the positioning disk (9) through the cooperation of the positioning pins (24) and the positioning holes (25).
7. The degumming and depapering equipment for abrasive wheel grinding disc mold plate according to claim 6, characterized in that: The cleaning mechanism (3) further includes a rotating device and a lifting device; The rotating device includes a second driver (26) and a plurality of pulley assemblies (27). The second driver (26) drives and connects each pulley assembly (27) respectively. The pulley assembly (27) includes two pulleys (28) and a transmission belt (29) arranged between the two pulleys (28). Each pulley (28) is respectively connected to the positioning member (16), the rotating scraping member (17), the rotating brush member (18) or the cleaning member (19). The second driver (26) drives the positioning member (16), the rotating scraping member (17), the rotating brush member (18) and the cleaning member (19) to rotate respectively through the pulley assembly (27). The lifting device includes a third driver (30), a worm gear assembly (31) and a lifting platform (32). The third driver (30) drives the worm gear assembly (31), the worm gear assembly (31) is connected to the lifting platform (32), and the positioning member (16), the rotating scraping member (17), the rotating brush member (18) and the cleaning member (19) are respectively rotatably arranged on the lifting platform (32). The third driver (30) drives the lifting platform (32) to move up and down on the machine body (1) through the worm gear assembly (31). The lifting platform (32) drives the positioning member (16), the rotating scraping member (17), the rotating brush member (18) and the cleaning member (19) to move up and down respectively.
8. The degumming and depapering equipment for abrasive leaf wheel and grinding plate mold disc according to claim 7, characterized in that: The conveying mechanism (4) includes a fourth driver (33) and a chain plate line assembly, the chain plate line assembly includes a driving wheel (34), a driven wheel (35), and a chain plate line (36) arranged between the driving wheel (34) and the driven wheel (35), the fourth driver (33) drives the driving wheel (34), the positioning disk (9) is distributed on the chain plate line (36) in the transverse and longitudinal directions, and the fourth driver (33) drives the chain plate line (36) to run through the cooperation of the driving wheel (34) and the driven wheel (35), so that the chain plate line (36) sequentially conveys the mold plate (5) placed on the positioning disk (9) to the positioning station (20), the coarse and fine rotary scraping station (21), the four-time rotary brushing station (22) and the cleaning station (23).
9. The degumming and depapering equipment for abrasive leaf wheel and grinding plate mold disc according to claim 8, characterized in that: A servo control device is provided on the machine body (1), and the servo control device is electrically connected to the feeding mechanism (2), the cleaning mechanism (3) and the conveying mechanism (4).
10. A degumming and depapering line, characterized by: The invention comprises a mold plate front degumming and depapering device (a), an automatic feeding and flanging conveying mechanism (b), a mold plate back degumming and depapering device (c), an automatic wax dipping device (d), an automatic air drying mechanism (e), a front vibrator and a feeding mechanism (f), wherein the mold plate front degumming and depapering device (a) and the mold plate back degumming and depapering device (c) are the abrasive wheel grinding sheet mold plate degumming and depapering devices as described in any one of claims 1 to 9, the automatic feeding and flanging conveying mechanism (b) is arranged between the mold plate front degumming and depapering device (a) and the mold plate back degumming and depapering device (c), and one end of the automatic feeding and flanging conveying mechanism (b) is connected to the mold plate front degumming and depapering device (a). The conveying mechanism (4) of the paper device (a) is docked, and the other end is docked with the barrel (6) of the degumming and depapering device (c) on the back of the mold plate. The barrel (6) of the degumming and depapering device (a) on the front of the mold plate is docked with the front vibrator. The automatic wax dipping device (d) is arranged between the degumming and depapering device (c) on the back of the mold plate and the automatic air-drying mechanism (e). The automatic air-drying mechanism (e) is provided with a conveying device (g). One end of the conveying device (g) is arranged in the automatic wax dipping device (d). The conveying mechanism (4) of the degumming and depapering device (c) on the back of the mold plate is docked with the automatic wax dipping device (d), and the other end of the conveying device (g) is docked with the unloading mechanism (f).