CN111098418A - Mica plate and belt waste recycling and reusing system - Google Patents

Mica plate and belt waste recycling and reusing system Download PDF

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Publication number
CN111098418A
CN111098418A CN201811252336.1A CN201811252336A CN111098418A CN 111098418 A CN111098418 A CN 111098418A CN 201811252336 A CN201811252336 A CN 201811252336A CN 111098418 A CN111098418 A CN 111098418A
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CN
China
Prior art keywords
mica
dust
dust cover
mica plate
frame
Prior art date
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Granted
Application number
CN201811252336.1A
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Chinese (zh)
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CN111098418B (en
Inventor
郑敏敏
王维刚
金水林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhejiang Rongtai Electrical Equipment Co.,Ltd.
Original Assignee
Glory Mica Co ltd
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Application filed by Glory Mica Co ltd filed Critical Glory Mica Co ltd
Priority to CN201811252336.1A priority Critical patent/CN111098418B/en
Publication of CN111098418A publication Critical patent/CN111098418A/en
Application granted granted Critical
Publication of CN111098418B publication Critical patent/CN111098418B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D1/00Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor
    • B28D1/32Methods and apparatus specially adapted for working materials which can easily be split, e.g. mica, slate, schist
    • B28D1/327Methods and apparatus specially adapted for working materials which can easily be split, e.g. mica, slate, schist for cutting or shearing easily splittable working materials
    • B08B1/12
    • B08B1/20
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D7/00Accessories specially adapted for use with machines or devices of the preceding groups
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D7/00Accessories specially adapted for use with machines or devices of the preceding groups
    • B28D7/02Accessories specially adapted for use with machines or devices of the preceding groups for removing or laying dust, e.g. by spraying liquids; for cooling work
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D7/00Accessories specially adapted for use with machines or devices of the preceding groups
    • B28D7/04Accessories specially adapted for use with machines or devices of the preceding groups for supporting or holding work or conveying or discharging work

Abstract

The invention discloses a mica plate and belt waste recycling system, relates to the technical field of waste recycling and reutilization, and solves the problem that water resources are wasted due to the fact that dust is mixed in mica waste and mica powder generated by processing of a mica plate during processing. The technical scheme is that a mica plate, take waste recovery and system of recycling, which comprises a frame, be provided with the transport mechanism who carries out the transmission to the mica plate in the frame, still be provided with the dust cover that covers partial transport mechanism in the frame, the both ends opening of dust cover is with business turn over material, still be provided with the processingequipment who carries out processing to the mica plate in the frame, and processingequipment sets up in the dust cover, processingequipment's below is provided with carries out the conveying pipeline of carrying to the mica waste material, and one side of conveying pipeline still is provided with the dust absorption mechanism who inhales the mica powder in the conveying pipeline. The invention has reasonable structure and can avoid dust from mixing into mica waste and mica powder generated by processing the mica plate during processing.

Description

Mica plate and belt waste recycling and reusing system
Technical Field
The invention relates to the technical field of waste recovery and recycling, in particular to a mica plate and belt waste recovery and recycling system.
Background
The mica plate and the mica tape are prepared by bonding mica paper and organic silicon glue, heating and pressing, wherein the content of mica is about 90 percent, and the content of organic silicon glue is about 10 percent.
After the addition of the mica plates and tapes is completed, the mica plates and tapes need to be cut or punched to be processed into required shapes, mica waste materials and mica powder are generated during processing, and the mica waste materials and the mica powder are generally collected and recycled to avoid waste.
However, when the mica plate and the mica tape are processed, dust can be mixed into the mica waste and the mica powder, and the quality of the manufactured mica plate and the manufactured mica tape can be reduced due to the mixing of the dust, so that the mica waste and the mica powder can be cleaned after the mica waste and the mica powder are recycled, and a part of mica powder is lost due to the mode of cleaning with water, and a large amount of water resources can be wasted.
Disclosure of Invention
The invention aims to provide a mica plate and belt waste recycling and reusing system, which is used for processing mica plates and belts in a dust-free environment and recycling and processing mica waste and mica powder generated by processing, so that the mica waste and the mica powder are not required to be washed by water, the loss of the mica powder is avoided, and water resources are saved.
The technical purpose of the invention is realized by the following technical scheme: the utility model provides a mica plate, take waste recycling and system of recycling, includes the frame, be provided with the transport mechanism who carries out the transmission to the mica plate in the frame, still be provided with in the frame and cover the part transport mechanism's dust cover, the both ends opening of dust cover is with business turn over material, still be provided with the processingequipment who carries out processing to the mica plate in the frame, just processingequipment sets up in the dust cover, processingequipment's below is provided with carries out the conveying pipeline of carrying to the mica waste material, just one side of conveying pipeline still is provided with inhales the mica powder dust absorption mechanism in the conveying pipeline.
By adopting the scheme, when the mica plate is processed, the mica plate is placed on the transmission mechanism, the mica plate is transmitted into the dust cover by the transmission mechanism, the mica plate moves to the position of the processing device in the dust cover along with the transmission mechanism, the processing device is generally a cutting machine, the processing device processes the mica plate, mica waste and mica powder are generated after processing, because the processing of the mica plate is completed in the dust cover, the dust cover blocks external dust, the dust outside the dust cover is prevented from entering the dust cover and mixing into the mica waste and the mica powder, the processed mica plate continuously moves along with the transmission mechanism until the mica waste is output out of the dust cover, the processed mica waste falls into the material conveying pipe for conveying under the action of gravity, and the processed mica powder is sucked into the material conveying pipe by the dust collection mechanism for conveying, the dust is prevented from being mixed into the mica waste and the mica powder when the mica plate is processed, so that the mica waste and the mica powder are prevented from being cleaned, and water resources are saved.
The invention is further configured to: the transmission mechanism comprises a plurality of transmission rollers which are rotatably connected to the rack, the transmission rollers are arranged side by side, and a driving motor which drives the transmission rollers to rotate synchronously is further fixed on the rack.
Through adopting above-mentioned scheme, when transmitting the mica plate, the mica plate is placed on the transmission roller, then each transmission roller of driving motor drive rotates, at the transmission roller pivoted in-process, utilizes the frictional force effect between transmission roller and the mica plate for the mica plate removes on the transmission roller, thereby realizes the transmission of mica plate.
The invention is further configured to: the dust absorption mechanism is including setting up the dust absorption pipe of conveying pipeline one side, the dust absorption pipe with the conveying pipeline intercommunication, be connected with the air exhauster on the dust absorption pipe.
Through adopting above-mentioned scheme, add man-hour at processingequipment to the mica plate, the air exhauster work to make the dust absorption pipe be close to a port production suction of mica plate processing position, thereby add the mica powder that produces with the mica plate in man-hour and inhale in the dust absorption pipe, because dust absorption pipe and conveying pipeline intercommunication set up the inclination when dust absorption pipe and conveying pipeline are connected, thereby make the air exhauster also can make the interior production air current of conveying pipeline, thereby make mica powder and mica waste material export smoothly.
The invention is further configured to: the cleaning mechanism comprises an upper brush roll and a lower brush roll for cleaning the upper surface and the lower surface of the mica plate, the upper brush roll and the lower brush roll are rotationally connected to the frame and are linked with the transmission roll, the cleaning mechanism also comprises a left brush roll and a right brush roll for cleaning two sides of the mica plate, the left brush roll and the right brush roll are rotationally connected to the frame and are linked with the transmission roll, the cleaning mechanism also comprises a front brush roll and a rear brush roll for cleaning two ends of the mica plate, the frame is slidably connected with an installation frame, the front brush roll and the rear brush roll are rotationally connected to the installation frame, a power motor for driving the front brush roll and the rear brush roll to rotate is fixed on the installation frame, and a proximity switch for detecting the position of the mica plate is fixed on the frame, and a control cylinder for driving the mounting frame to move is further fixed on the rack, and the control cylinder and the driving motor are controlled by the detection signal of the proximity switch.
By adopting the scheme, when the mica plate is placed on the transmission mechanism and is transmitted to the processing device for processing, some dust is adhered to the surface of the mica plate, and the dust is mixed into mica waste and mica powder along with the processing of the mica plate, so the cleaning mechanism is arranged for cleaning the mica plate before processing, the upper brush roller and the lower brush roller are linked with the transmission roller to control the length of the brush hair, when the mica plate is transmitted on the transmission roller, the mica plate moves between the upper brush roller and the lower brush roller, so the upper brush roller and the lower brush roller can brush the upper surface and the lower surface of the mica plate, similarly, the left brush roller and the right brush roller are arranged to rotate along with the transmission roller, when the mica plate passes through the left brush roller and the right brush roller on the transmission roller, the two side surfaces of the left brush roller and the right brush roller brush the two side surfaces of the mica plate, and when the proximity switch detects the mica plate, the proximity switch sends a signal to control the driving motor to stop working, so that the mica plate is positioned at the position on the transmission roller, the proximity switch sends a signal to the control cylinder to enable the mica plate to work, the front brush roller and the rear brush roller are driven to rotate by the power motor, and the front brush roller and the rear brush roller brush the two ends of the mica plate along with the movement of the mounting frame, so that the outer surface of the mica plate is brushed by the brush roller, dust on the outer surface of the mica plate is brushed, and the dust on the mica plate is prevented from entering mica waste materials and mica powder generated in processing.
The invention is further configured to: and two positioning plates for limiting the positions of the two sides of the mica plate are also fixed on the frame.
Through adopting above-mentioned scheme, when putting the mica plate and transmitting on the transmission roller, the position of mica plate too squints then can lead to preceding brush roll, back brush roll, left brush roll and right brush roll can't brush the mica plate surface smoothly, so set up the locating plate, the locating plate can carry on spacingly to the both sides of mica plate, places the position of mica plate between two locating plates and transmits for the mica plate on the transmission roller can smoothly be brushed the dust on surface.
The invention is further configured to: and air blowers are further arranged at the opening positions at the two ends of the dust cover, the air blowers are communicated with the inside of the dust cover through air pipes and blow air to the outside of the opening of the dust cover, and a dust filtering net is arranged at the air inlet end of the air blowers.
Through adopting above-mentioned scheme, when each brush roll brushes the dust on mica plate surface, the dust can get into in the air to the dust that floats in the air outside the dust cover also gets into in the dust cover along with the open position of dust cover easily along with the flow of air current, so set up the air-blower in the both ends open position of dust cover, the air inlet end of air-blower sets up the dust screen, do not have the dust in the wind that makes the air-blower drum, the air-blower passes through intercommunication in tuber pipe and the dust cover, and outside the opening of outside dust cover air blast, then the wind of air-blower drum can make the air current follow the dust cover and outwards flow, thereby avoid the dust outside the dust cover to flow along with the air current and get.
The invention is further configured to: the dust cover is characterized in that dust collectors are further arranged at the two ends of the dust cover, air inlets of the dust collectors are communicated with the interior of the dust cover through pipelines, and the cleaning mechanism is located between the position where the air blower is connected with the dust cover through an air pipe and the position where the dust collectors are connected with the dust cover through pipelines.
Through adopting above-mentioned scheme, the direct dust that brushes except mica plate surface in the dust cover outside causes great raise dust easily, the dust gets into people's respiratory track along with breathing easily in the air, be unfavorable for people's healthy, so establish a dust catcher again, can set up the position of each brush roll near dust cover open-ended position, the raise dust that the brush roll brush produced when removing mica plate surface dust is restricted in the dust cover, and the air-blower thinks the outer blast air of opening of dust cover this moment, make the raise dust be difficult to remove in the dust cover, and the dust catcher passes through intercommunication in pipeline and the dust cover, the dust that the air-blower blew off can be absorbed by the dust catcher, thereby avoid causing great raise dust and harm healthy.
The invention is further configured to: and a soft door curtain for blocking the opening is fixed at the opening position of the dust cover.
Through adopting above-mentioned scheme, set up the soft door curtain that is used for blocking the open-ended at the opening position of dust cover at the opening of dust cover, when the whole out-of-operation of system, soft door curtain can seal the both ends opening of dust cover, avoids the outer dust of dust cover to get into in the dust cover along with the air flow.
The invention is further configured to: the discharge end of conveying pipeline is connected with carries out kibbling rubbing crusher to the mica waste material, just rubbing crusher's discharge gate position still is fixed with detachable filter screen bag.
By adopting the scheme, the mica waste and the mica powder are required to be crushed into small particles again after being recycled and added into mica slurry for making the mica plate again, in order to avoid mixing dust in the moving process, a crusher is directly arranged, the mica waste and the mica powder are directly input into the crusher to be crushed after being collected, the crushed mica small particles and the crushed mica powder are stored in the filter screen bag, and then the filter screen bag is detached, so that the mica particles and the mica powder in the bag can be poured into the mica slurry for making the mica plate again.
In conclusion, the invention has the following beneficial effects: a dustproof environment is created, and mica waste and mica powder generated during processing of the mica plate are prevented from being mixed.
Drawings
FIG. 1 is a schematic view of the overall structure of the embodiment;
fig. 2 is a partial structure of the embodiment to embody the structure of the inside of the dust cover.
Reference numerals: 1. a frame; 2. a transport mechanism; 3. a dust cover; 4. a processing device; 5. a delivery pipe; 6. a dust suction mechanism; 7. a transfer roller; 8. a drive motor; 9. a dust collection pipe; 10. an exhaust fan; 11. a cleaning mechanism; 12. an upper brush roll; 13. a lower brush roll; 14. a left brush roll; 15. a right brush roll; 16. a front brush roller; 17. a rear brush roll; 18. a mounting frame; 19. a power motor; 20. a proximity switch; 21. controlling the cylinder; 22. positioning a plate; 23. a blower; 24. a dust filter screen; 25. a vacuum cleaner; 26. a soft door curtain; 27. a pulverizer; 28. and (4) a filter screen bag.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, a mica plate and belt waste recycling and reusing system comprises a frame 1, a transmission mechanism 2 for transmitting mica plates, a dust cover 3 covering part of the transmission mechanism 2, two ends of the dust cover 3 are opened, the transmission mechanism 2 enters the dust cover 3 from an opening position on the dust cover 3 and penetrates out of the dust cover 3 from another opening position, a processing device 4 for processing the mica plates is arranged on the frame 1, the processing device 4 is arranged in the dust cover 3, a material conveying pipe 5 for conveying mica waste is arranged below the processing device 4, a dust suction mechanism 6 for sucking mica powder into the material conveying pipe 5 is arranged on one side of the material conveying pipe 5, a discharge end of the material conveying pipe 5 is connected to a feed end of a pulverizer 27, three-stage pulverization is generally adopted, a detachable filter screen bag 28 is connected to a discharge end of the pulverizer 27, a connecting sleeve is arranged at the opening of the filter screen bag 28 and is in threaded connection with the discharge end of the pulverizer 27. The processing device 4 is typically a cutting machine, and a robot (not shown) is also provided on the cutting machine to work in cooperation with cutting the mica boards.
When the mica plates are processed, the mica plates are placed on the transmission mechanism 2, the mica plates are transmitted into the dust cover 3 by the transmission mechanism 2 and are moved to the position of the processing device 4 in the dust cover 3 along with the transmission mechanism 2, the processing device 4 is generally a cutting machine, the mica plates are processed by the processing device 4, mica waste materials and mica powder are generated after processing, the processing of the mica plates is completed in the dust cover 3, so that the dust cover 3 blocks external dust, the dust outside the dust cover 3 is prevented from entering the dust cover 3 and mixing into the mica waste materials and the mica powder, the processed mica plates continue to move along with the transmission mechanism 2 until the dust cover 3 is output, the mica waste materials generated by processing fall into the material conveying pipe 5 for conveying under the action of gravity, and the mica powder generated by processing is sucked into the material conveying pipe 5 by the dust suction mechanism 6 for conveying, the conveying pipe conveys the mica waste and the mica powder into the pulverizer 27 to be pulverized, the pulverizer 27 pulverizes the mica waste into required small particles, the mica small particles and the mica powder generated by final processing are conveyed into the filter screen bag 28 to be stored, after a certain amount of mica powder and mica small particles are stored in the filter screen bag 28, the connecting sleeve and the filter screen bag 28 are detached, and the mica small particles and the mica powder in the filter screen bag 28 can be directly poured into the mica guiding slurry to be reused for manufacturing the mica plate.
The transmission mechanism 2 comprises a plurality of transmission rollers 7 which are rotatably connected to the rack 1, the transmission rollers 7 are arranged side by side, and a driving motor 8 which drives the transmission rollers 7 to rotate synchronously is further fixed on the rack 1.
When the driving motor 8 works, the mica plate is placed on the transmission roller 7, and the mica plate can be transmitted by utilizing the action of friction force between the transmission roller 7 and the mica plate.
In order to conveniently position the mica plate, the mica plate can be smoothly transmitted to the processing device 4 through the transmission roller 7 to be processed, two positioning plates 22 for positioning the mica plate are further fixed on the frame 1, the positioning plates 22 are arranged above the transmission roller 7 at the feeding end of the transmission mechanism 2, and the mica plate can be positioned by being placed between the two positioning plates 22.
The dust suction mechanism 6 comprises a dust suction pipe 9 arranged on one side of the material conveying pipe 5, the dust suction pipe 9 is communicated with the material conveying pipe 5, and an exhaust fan 10 is connected to the dust suction pipe 9.
The air exhauster 10 during operation for dust absorption pipe 9 is close to a port of mica plate processing position and produces suction, thereby adds the mica powder that produces with the mica plate and inhales dust absorption pipe 9 in, because dust absorption pipe 9 and conveying pipeline 5 intercommunication set up the inclination when dust absorption pipe 9 and conveying pipeline 5 are connected, thereby make air exhauster 10 also can make and produce the air current in the conveying pipeline 5, thereby make mica powder and mica waste material export smoothly.
In order to prevent dust outside the dust cover 3 from being carried into the dust cover 3 with the air flow, soft curtains 26 are further provided at both opening positions of the dust cover 3 to seal the openings. Further, a dust collector 25 for sucking air, a cleaning mechanism 11 for cleaning the mica boards being conveyed, and a blower 23 for blowing dust generated when cleaning the mica boards to a dust collection position are provided in this order at the port where the dust cover 3 is fed. Whereas the port where the dust cap 3 is discharged is provided with only one blower 23.
The air inlet of the dust collector 25 is communicated with the inside of the dust cover 3 through a pipeline. The cleaning mechanism 11 comprises an upper brush roll 12 and a lower brush roll 13 for cleaning the upper surface and the lower surface of a mica plate, the upper brush roll 12 and the lower brush roll 13 are rotationally connected to the frame 1 and are linked with the transmission roller 7, the cleaning mechanism 11 further comprises a left brush roll 14 and a right brush roll 15 for cleaning two sides of the mica plate, the left brush roll 14 and the right brush roll 15 are rotationally connected to the frame 1 and are linked with the transmission roller 7, the cleaning mechanism 11 further comprises a front brush roll 16 and a rear brush roll 17 for cleaning two ends of the mica plate, an installation frame 18 is slidably connected to the frame 1, the front brush roll 16 and the rear brush roll 17 are rotationally connected to the installation frame 18, a power motor 19 for driving the front brush roll 16 and the rear brush roll 17 to rotate is fixed on the installation frame 18, a proximity switch 20 for detecting the position of the mica plate is also fixed on the frame 1, and a control cylinder 21 for driving the installation frame 18 to move is also fixed on the frame 1, and the control cylinder 21 and the drive motor 8 are controlled by the detection signal of the proximity switch 20. The blower 23 is communicated with the interior of the dust cover 3 through an air pipe and blows air to the outside of the opening of the dust cover 3, and a dust filtering net 24 is arranged at the air inlet end of the blower 23.
The brush lengths of the brush rolls are set, when the mica plate is transferred on the transfer roll 7, the mica plate moves between the upper brush roll 12 and the lower brush roll 13, so that the upper brush roll 12 and the lower brush roll 13 in rotation can brush the upper surface and the lower surface of the mica plate, similarly, the left brush roll 14 and the right brush roll 15 are set to rotate along with the transfer roll 7, when the mica plate passes through the left brush roll 14 and the right brush roll 15 on the transfer roll 7, the left brush roll 14 and the right brush roll 15 brush both sides of the mica plate, when the proximity switch 20 detects the mica plate, the proximity switch 20 sends a signal to control the driving motor 8 to stop working, so that the position of the mica plate on the transfer roll 7 is positioned, at this time, the proximity switch 20 sends a signal to the control cylinder 21 to make it work, the front brush roll 16 and the rear brush roll 17 are driven to rotate by the power motor 19, and the front brush roll 16 and the rear brush roll 17 pass both ends of the, therefore, the outer surfaces of the mica plates are brushed by the brush rollers, so that dust on the outer surfaces of the mica plates is brushed off, the dust on the mica plates is prevented from entering mica waste materials and mica powder generated in processing, and the mica plates are continuously transmitted by the transmission rollers 7 after the surfaces of the mica plates are brushed.
At this moment, some dust can be brushed off on the surface of mica plate, sets up the shape of dust cover 3 this moment for this section of dust cover 3 is a passageway, then air blower 23 blows air in to dust cover 3 through the tuber pipe, thereby blows the dust of scrubbing to the open position, and dust catcher 25 work this moment, and will blow through the pipeline and come the dust to suck away, thereby accomplish the processing of the dust of brushing off on the mica plate, avoid the dust of brushing off to derive to be diffused.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present invention.

Claims (9)

1. The utility model provides a mica plate, take waste recycling and recycle system which characterized in that: including frame (1), be provided with transport mechanism (2) that carry out the transmission to the mica plate in frame (1), still be provided with the cover part in frame (1) dust cover (3) of transport mechanism (2), the both ends opening of dust cover (3) is with the business turn over material, still be provided with processingequipment (4) that carry out processing to the mica plate in frame (1), just processingequipment (4) set up in dust cover (3), the below of processingequipment (4) is provided with conveying pipeline (5) of carrying the mica waste material, just one side of conveying pipeline (5) still is provided with inhales the mica powder dust absorption mechanism (6) in conveying pipeline (5).
2. The mica board and tape waste recycling and reusing system according to claim 1, wherein: the conveying mechanism (2) comprises a plurality of conveying rollers (7) which are rotatably connected to the rack (1), the conveying rollers (7) are arranged side by side, and a driving motor (8) for driving the conveying rollers (7) to rotate synchronously is further fixed on the rack (1).
3. The mica board and tape waste recycling and reusing system according to claim 1, wherein: dust absorption mechanism (6) are including setting up dust absorption pipe (9) of conveying pipeline (5) one side, dust absorption pipe (9) with conveying pipeline (5) intercommunication, be connected with air exhauster (10) on dust absorption pipe (9).
4. The mica board and tape waste recycling and reusing system according to claim 2, wherein: the cleaning mechanism (11) for brushing dust on the surface of the mica plate is further arranged on the rack (1), the cleaning mechanism (11) comprises an upper brush roller (12) and a lower brush roller (13) for cleaning the upper surface and the lower surface of the mica plate, the upper brush roller (12) and the lower brush roller (13) are rotationally connected to the rack (1) and are linked with the transmission roller (7), the cleaning mechanism (11) further comprises a left brush roller (14) and a right brush roller (15) for cleaning two sides of the mica plate, the left brush roller (14) and the right brush roller (15) are rotationally connected to the rack (1) and are linked with the transmission roller (7), the cleaning mechanism (11) further comprises a front brush roller (16) and a rear brush roller (17) for cleaning two ends of the mica plate, and a mounting frame (18) is slidably connected to the rack (1), the front brush roll (16) and the rear brush roll (17) are rotationally connected to the mounting frame (18), a power motor (19) for driving the front brush roll (16) and the rear brush roll (17) to rotate is fixed to the mounting frame (18), a proximity switch (20) for detecting the position of a mica plate is further fixed to the rack (1), a control cylinder (21) for driving the mounting frame (18) to move is further fixed to the rack (1), and the control cylinder (21) and the driving motor (8) are controlled by detection signals of the proximity switch (20).
5. The mica board and tape waste recycling and reusing system according to claim 1, wherein: two positioning plates (22) for limiting the positions of two sides of the mica plate are further fixed on the frame (1).
6. The mica board and tape waste recycling and reusing system according to claim 4, wherein: the dust cover is characterized in that air blowers (23) are further arranged at opening positions of two ends of the dust cover (3), the air blowers (23) are communicated with the inside of the dust cover (3) through air pipes and blow air to the outside of the opening of the dust cover (3), and a dust filtering net (24) is arranged at an air inlet end of each air blower (23).
7. The mica board and tape waste recycling and reusing system according to claim 6, wherein: dust catcher (25) are further arranged at two ends of the dust cover (3), an air inlet of the dust catcher (25) is communicated with the inside of the dust cover (3) through a pipeline, and the cleaning mechanism (11) is located at the position where the air blower (23) is connected with the dust cover (3) through an air pipe and the position where the dust catcher (25) is connected with the dust cover (3) through a pipeline.
8. The mica board and tape waste recycling and reusing system according to claim 1, wherein: and a soft door curtain (26) for blocking the opening is further fixed at the opening position of the dust cover (3).
9. The mica board and tape waste recycling and reusing system according to claim 1, wherein: the discharging end of the conveying pipe (5) is connected with a pulverizer (27) for pulverizing mica waste, and a detachable filter screen bag (28) is further fixed at the discharging port of the pulverizer (27).
CN201811252336.1A 2018-10-25 2018-10-25 Mica plate and belt waste recycling and reusing system Active CN111098418B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811252336.1A CN111098418B (en) 2018-10-25 2018-10-25 Mica plate and belt waste recycling and reusing system

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Application Number Priority Date Filing Date Title
CN201811252336.1A CN111098418B (en) 2018-10-25 2018-10-25 Mica plate and belt waste recycling and reusing system

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CN111098418A true CN111098418A (en) 2020-05-05
CN111098418B CN111098418B (en) 2021-06-22

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113385453A (en) * 2021-05-08 2021-09-14 章龙生 Secondary deep cleaning and crushing device after separation of mica plate leftover materials

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CN207789204U (en) * 2018-01-17 2018-08-31 佛山市嘉美百利家居用品有限公司 A kind of timber cutter device of dust-proof environmental protection
CN108555994A (en) * 2018-05-08 2018-09-21 广西姿欧体育科技有限公司 A kind of plastic products shearing equipment

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CN113385453B (en) * 2021-05-08 2023-09-15 平江华众新材料科技有限公司 Secondary deep cleaning and crushing device for mica plate leftover materials after separation

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Address after: 308 Zhongxing Road, Fengqiao town, Nanhu District, Jiaxing City, Zhejiang Province, 314007

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