CN115891186A - Production device and production method of high-strength composite belt - Google Patents

Production device and production method of high-strength composite belt Download PDF

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Publication number
CN115891186A
CN115891186A CN202211411174.8A CN202211411174A CN115891186A CN 115891186 A CN115891186 A CN 115891186A CN 202211411174 A CN202211411174 A CN 202211411174A CN 115891186 A CN115891186 A CN 115891186A
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China
Prior art keywords
roller
frame
bolted
water
material roller
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CN202211411174.8A
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Chinese (zh)
Inventor
何在专
郑楠
沙崇民
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Shenzhen Zhongjin Lingnan Xinyue New Material Co ltd
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Shenzhen Zhongjin Lingnan Xinyue New Material Co ltd
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Priority to CN202211411174.8A priority Critical patent/CN115891186A/en
Publication of CN115891186A publication Critical patent/CN115891186A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

The invention discloses a production device and a production method of a high-strength composite belt, which are applied to the technical field of composite belt pressing, wherein a front section treatment mechanism is arranged to clean the adhesive surface of a belt-shaped material, a water pump extracts an external cleaning water source, an adhesive sheet of a plate is wetted through a water pipe, water can be atomized through the arrangement of an atomizing nozzle to be uniformly sprayed and avoid excessive spraying amount of water flow, then attached water drops and surface impurities are scraped off through a scraper, a spring always props against a knife rest to slide on the inner side of a limiting frame, the scraper is in contact with the coating surface and scrapes the attached water and impurities, the wet surface is air-dried through an air drying fan, cleaning water falls into a discharge assembly, the impurities are filtered by filter residues, and the water falls into a bottom bent frame and is discharged through a discharge pipe.

Description

Production device and production method of high-strength composite belt
Technical Field
The invention belongs to the technical field of composite belt pressing, and particularly relates to a production device and a production method for a high-strength composite belt.
Background
The composite belt is widely applied to the fields of modern industrial optical cables, special optical cables and cable communication production, for example, the ELE type aluminum-plastic composite belt is formed by coating ethylene-methacrylic acid copolymer (EMAA) resin on the A and B surfaces of an aluminum-based belt to reach a certain bonding degree, and the color is natural color or blue
At present, the chinese patent with publication number CN215313430U discloses a production line for a rough oil-surface aluminum foil composite tape, which includes a PLC controller, where the discharge of an unwinding roller of the aluminum foil composite tape is opposite to the inlet of a lubricating oil atomization spraying device through an unwinding guide roller, the outlet of the lubricating oil atomization spraying device is opposite to the inlet of a drying channel, the outlet of the drying channel is opposite to a winding roller of the rough oil-surface aluminum foil composite tape through a winding guide shaft, and the winding roller of the rough oil-surface aluminum foil composite tape is driven by a motor and drives the unwinding roller of the aluminum foil composite tape to rotate through an aluminum foil composite tape. The advantages are that: the production line of the rough oil surface aluminum foil composite belt is implemented, so that the rough oil surface aluminum foil composite belt is wrapped by the overmould wrapping surface to realize omnibearing rough oil surface wrapping, the friction coefficient is small when a wrapping cable and an optical cable are wrapped by the overmould wrapping surface, the phenomenon of dragging cannot occur, the consumption of materials and energy required by the rough surface is reduced, the overmould wrapping efficiency is high, the rough oil surface aluminum foil composite belt is not broken, the drying speed is high, and the environment-friendly effect is realized without harmful gas leakage.
Present high strength composite band is because the material passes through the roll-like rolling when production and processing, so contact between the adhesion face is contaminated easily, and the contaminated surface produces easily when smearing the adhesive and falls to glue or run glue and lead to that the even adhesive of spraying originally produces easily to float and lead to the adhesion effect not good, paints earlier when using moreover, and the rethread is another equipment with the bonding of banded material, and the rubberizing face of in-process banded material is air-dried easily.
Disclosure of Invention
The invention aims to solve the problems that the existing high-strength composite belt production device and method have the advantages that the contact time of a glue coating surface and air before plate pressing is shortened, and an adhesion surface is cleaned.
The technical purpose of the invention is realized by the following technical scheme: the treatment device comprises a front section treatment mechanism, the front section treatment mechanism comprises a front section casing and a treatment mechanism, the treatment mechanism is arranged on the inner side of the front section casing, the treatment mechanism comprises two support plates, the support plates are bolted on the inner wall of the front section casing, the top and the bottom of each support plate are respectively bolted with a limiting frame, the inner sides of the limiting frames are connected with a knife rest in a sliding manner, the inner sides of the knife rests are provided with scrapers, the inner wall of each limiting frame is bolted with a spring, one side of the spring, which is close to the knife rest, is bolted with the knife rest, the front side of the front section casing is bolted with a water pump, the inner side of the front section casing is bolted with two straightening rollers, the inner wall of the front section casing is bolted with a water pipe, the front side of the water pipe penetrates through the front side of the front section casing and is communicated with the water pump, and the top and the bottom of the water pipe are both bolted with atomizing nozzles, the rear side bolt of anterior segment casing has air-drying fan, the inboard bolt of anterior segment casing has been met and has been discharged the subassembly, the left side of anterior segment casing is provided with spacing subassembly, one side that spacing subassembly was kept away from and is discharged the subassembly is provided with puts the roller assembly, the right side of anterior segment casing is provided with paints the mechanism, paint the mechanism and include frame roller assembly and the adhesive that is located frame roller assembly rear side and put in the structure, the material pump has been tied in the top of adhesive input structure, the pan feeding end of material pump and the inside intercommunication of putting in the structure, the front side bolt of material pump has the conveyer pipe, the front side and the frame roller assembly bolt of conveyer pipe, the right side of painting the mechanism is provided with compound hot-pressing structure, one side that compound hot-pressing structure kept away from and paint the mechanism is provided with rolling structure.
Adopt above-mentioned technical scheme, through setting up anterior segment processing mechanism, clear up the adhesive surface of band-shaped material, the outside water source of washing of water pump extraction, and drench the sticker of panel through the raceway, setting through atomizer, can carry out atomization process with water, make it spray evenly and avoid the jet capacity of rivers too much, scrape adnexed drop of water and surperficial impurity down through the scraper afterwards, the knife rest of contradicting all the time, make it slide in spacing frame's inboard, and let the scraper use and paint the face contact and strike off adnexed water and impurity, air-dry to moist surface when air-drying the fan.
The invention is further configured to: the discharging assembly comprises a bottom bent frame which is bolted on the inner side of the front section casing, a discharging pipe is fixedly communicated with the bottom of the bottom bent frame, and a filter residue net is placed at the top of the bottom bent frame.
Adopt above-mentioned technical scheme, through setting up the emission subassembly, can be together with impurity through the filter residue net when the clean water falls down, impurity is strained by the filter residue net, and water falls in the curved frame to the end and discharges through the delivery pipe.
The invention is further configured to: the roller placing assembly comprises a support frame, an EMAA material roller rotatably connected to the top of the support frame, a steel belt material roller rotatably connected to the top of the support frame and a PE material roller rotatably connected to the top of the support frame, the top of the support frame is in a step shape, the EMAA material roller is located above the steel belt material roller, and the PE material roller is located below the steel belt material roller.
By adopting the technical scheme, the position of the EMAA material roller, the position of the PE material roller and the position of the steel belt material roller are more reasonable by arranging the roller placing assembly, and subsequent processing is facilitated.
The invention is further configured to: the limiting assembly comprises an H-shaped frame, the H-shaped frame is located between one side, opposite to the roller placing assembly and the front section processing mechanism, of the H-shaped frame, the inner side of the H-shaped frame is movably connected with two movable plates, one sides, opposite to the two movable plates, of the two movable plates are rotatably connected with adjusting screws, and one sides, far away from the movable plates, of the adjusting screws penetrate through the H-shaped frame and are in threaded connection with the H-shaped frame.
By adopting the technical scheme, the position of the movable plate relative to the H-shaped frame is adjusted by rotating the adjusting screw rod, so that the movable plate is attached to the outer side of the strip-shaped material and is limited.
The invention is further configured to: the inner wall of the H-shaped frame is bolted with a guide rail, the inner side of the guide rail is connected with a sliding block in a sliding manner, and the top of the sliding block is bolted with a movable plate.
By adopting the technical scheme, the moving position of the movable plate is limited by arranging the guide rail to be matched with the sliding block.
The invention is further configured to: the adjusting screw is characterized in that a rotating handle is highly connected to one side, far away from the movable plates, of the adjusting screw, anti-skid lines are arranged on the surface of the rotating handle, and a contact pad is bolted between the opposite sides of the two movable plates.
By adopting the technical scheme, the adjusting screw rod can be conveniently rotated by arranging the rotating handle, and the arranged contact pad can avoid the damage to the belt-shaped material in the limiting process.
The invention is further configured to: the top of the supporting frame is bolted with three groups of roller mounting brackets, and the inner sides of the three groups of roller mounting brackets are respectively connected with the surface rotation of the EMAA material roller, the surface rotation of the steel strip material roller and the surface rotation of the PE material roller.
By adopting the technical scheme, the replacement of the EMAA material roller, the steel belt material roller and the PE material roller can be facilitated by arranging the roller mounting frame.
The invention is further configured to: the frame roller assembly comprises two side plates, the side plates are located between one sides, opposite to the front section processing mechanism and the composite hot pressing structure, spraying pipes are bolted between the opposite sides of the two side plates, the number of the spraying pipes is two, the top of each spraying pipe at the top and the bottom of each spraying pipe at the bottom are respectively bolted with a gluing nozzle, one side, close to the conveying pipe, of each spraying pipe is communicated with the conveying pipe, and a pressing roller is bolted between the opposite sides of the two side plates.
Adopt above-mentioned technical scheme, through the applying mechanism who sets up, can reduce the time of applying face and air contact, banded material is during applying the mechanism, because the restriction of pressfitting roller, so make the material of PE material roller and the material of EMAA material roller be gather together the shape and draw close to the banded material of steel band material roller, the material pump of putting in the structure from the adhesive passes through the conveyer pipe and carries the inside of spraying pipe with the adhesive, and spray to the adhesion face through the rubber coating shower nozzle, and carry out preliminary pressfitting through the pressfitting roller.
The invention is further configured to: two limiting rods are rotatably connected between one opposite sides of the two side plates.
Adopt above-mentioned technical scheme, through setting up the gag lever post, can be convenient for carry on spacingly to banded material, avoid the angle of opening and shutting to be not convenient for paint.
The invention is further configured to: a production method of a high-strength composite belt production device comprises the following specific steps:
s1, mounting an EMAA material roller, a steel belt material roller and a PE material roller on a support frame for feeding, enabling a belt-shaped material on the EMAA material roller, the steel belt material roller and the PE material roller to pass through a limiting component, a front section processing mechanism, a coating mechanism, a composite hot pressing structure and a rolling structure, and then starting equipment;
s2, rotating an adjusting screw to adjust the position of a movable plate relative to the H-shaped frame, enabling the movable plate to be attached to the outer side of the strip-shaped material to limit the strip-shaped material, enabling the material to enter a front-section shell, pumping external cleaning water through a water pump, wetting an adhesive sheet of the plate through a water conveying pipe and an atomizing nozzle, scraping attached water beads and surface impurities through a scraper, and air-drying the wet surface when passing through an air-drying fan;
s3, when the strip-shaped materials pass through the smearing mechanism, the strip-shaped materials are gathered through the pressing roller, a material pump for extracting the adhesive from the adhesive feeding structure is conveyed to the inside of the spraying pipe through the conveying pipe and is sprayed to the adhesion surface through the gluing sprayer, the strip-shaped materials are preliminarily pressed through the pressing roller, are stably hot-pressed through the composite hot-pressing structure, and are finally rolled and formed through the rolling structure.
In conclusion, the invention has the following beneficial effects:
1. through setting up anterior segment processing mechanism, the adhesive surface of band-shaped material is cleared up, the outside washing water source of water pump extraction, and wet the sticker of panel through the raceway, through the setting of atomizer, can carry out atomization treatment with water, make it spray evenly and avoid the injection quantity of rivers too much, scrape adnexed drop of water and surface impurity through the scraper afterwards, the spring is all the time contradicted the knife rest, make it slide in the inboard of spacing frame, and let the scraper use with scribble the face contact and strike off adnexed water and impurity, air-dry the moist surface when air-drying the fan, clean water falls into the emission subassembly, impurity is filtered by the filter residue net, water falls in the bent frame to the end and discharges through the delivery pipe;
2. the coating mechanism who sets up can reduce the time of coating face and air contact, banded material is when coating the mechanism, because the restriction of pressfitting roller, so make the material of PE material roller and the material of EMAA material roller be the form of gathering together and draw close to the banded material of steel band material roller, put in the material pump of structure extraction adhesive from the adhesive and pass through the conveyer pipe and carry the inside of spraying pipe with the adhesive, and spray to the adhesion face through the rubber coating shower nozzle on, need not pass through extra conveying distance, can carry out preliminary pressfitting with banded material through the pressfitting roller.
Drawings
FIG. 1 is a schematic structural view of a main body structure according to the present invention;
FIG. 2 is a schematic external view of a front-end processing mechanism according to the present invention;
FIG. 3 is a schematic view of the front end treatment mechanism and the exhaust assembly of the present invention;
FIG. 4 is a schematic view of the structure of a processing mechanism according to the present invention;
FIG. 5 is a schematic structural view of a spacing assembly of the present invention;
FIG. 6 is a schematic view of the roll-releasing assembly according to the present invention;
FIG. 7 is a schematic view of the structure of the coating mechanism of the present invention;
FIG. 8 is a schematic view of the construction of a frame roller assembly according to the present invention;
FIG. 9 is a schematic flow chart of the production process of the present invention.
Reference numerals: 1. a front-end processing mechanism; 101. a front-section housing; 102. a processing mechanism; 1021. a carrier plate; 1022. a limiting frame; 1023. a tool holder; 1024. a scraper; 1025. a spring; 103. a water delivery pipe; 104. an atomizing spray head; 2. a water pump; 3. a discharge assembly; 301. a bottom-bending frame; 302. a discharge pipe; 303. filtering a residue net; 4. a limiting component; 401. an H-shaped frame; 402. a movable plate; 403. adjusting the screw rod; 5. a roller placing assembly; 501. supporting a frame; 502. an EMAA material roller; 503. a steel strip material roller; 504. PE material roller; 6. a smearing mechanism; 601. a frame roller assembly; 6011. a side plate; 6012. a spray pipe; 6013. a gluing nozzle; 6014. a press-fit roller; 602. an adhesive delivery structure; 603. a material pump; 604. a delivery pipe; 7. compounding the hot-pressed structure; 8. rolling the structure; 9. straightening rollers; 10. air drying the fan; 11. a guide rail; 12. a slider; 13. a limiting rod; 14. a handle is rotated; 15. a contact pad; 16. a roller mounting bracket.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example 1:
referring to fig. 1-9, a high strength composite belt production device and method, comprising a front section processing mechanism 1, the front section processing mechanism 1 comprising a front section casing 101 and a processing mechanism 102, the processing mechanism 102 being disposed inside the front section casing 101, the processing mechanism 102 comprising two carrier plates 1021, the carrier plates 1021 being bolted to the inner wall of the front section casing 101, the top and bottom of the carrier plates 1021 being bolted to a limiting frame 1022, the inner side of the limiting frame 1022 being slidably connected to a knife rest 1023, the inner side of the knife rest 1023 being mounted with a scraper 1024, the inner wall of the limiting frame 1022 being bolted to a spring 1025, the side of the spring 1025 near the knife rest 1023 being bolted to the knife rest 1023, the front side of the front section casing 101 being bolted to a water pump 2, the inner side of the front section casing 101 being bolted to two straightening rollers 9, the inner wall of the front section casing 101 being bolted to a water pipe 103, the front side of the water pipe 103 penetrating to the front side of the front section casing 101 and being communicated with the water pump 2, atomizing nozzles 104 are bolted at the top and the bottom of the water pipe 103, a drying fan 10 is bolted at the rear side of the front-section machine shell 101, a discharge component 3 is bolted at the inner side of the front-section machine shell 101, a limiting component 4 is arranged at the left side of the front-section machine shell 101, a roller component 5 is arranged at one side, far away from the discharge component 3, of the limiting component 4, through the arrangement of the front-section processing mechanism 1, the bonding surface of the band-shaped material is cleaned, a water pump 2 extracts an external cleaning water source, the bonding sheet of the plate is wetted through the water pipe 103, through the arrangement of the atomizing nozzles 104, water can be atomized, so that the water is uniformly sprayed and the excessive spraying amount of the water flow is avoided, then, adhered water beads and surface impurities are scraped through a scraper 1024, a spring 1025 always abuts against a knife rest 1023 to slide at the inner side of the limiting frame 1022, and the scraper 1024 is in contact with the coating surface and scrapes the adhered water and impurities, the air drying device is characterized in that a wet surface is air-dried when the air drying fan 10 passes through, the discharging assembly 3 comprises a bottom bending frame 301, the bottom bending frame 301 is bolted on the inner side of the front-section machine shell 101, a discharging pipe 302 is fixedly communicated with the bottom of the bottom bending frame 301, a filter residue net 303 is placed on the top of the bottom bending frame 301, through the arrangement of the discharging assembly 3, cleaning water can pass through the filter residue net 303 together with impurities when falling down, the impurities are filtered by the filter residue net 303, water falls into the bottom bending frame 301 and is discharged through the discharging pipe 302, the discharging roller assembly 5 comprises a support frame 501, an EMAA material roller 502 rotatably connected to the top of the support frame 501, a steel strip material roller 503 rotatably connected to the top of the support frame 501 and a PE material roller 504 rotatably connected to the top of the support frame 501, the top of the support frame 501 is in a stepped shape, the EMAA material roller 502 is positioned above the steel strip material roller 503, the PE material roller 504 is positioned below the steel strip material roller 503, the EMAA material roller 502, the PE material roller 504 and the steel belt material roller 503 are more reasonable in position by arranging the roller placing assembly 5, and the subsequent processing is convenient, the limiting assembly 4 comprises an H-shaped frame 401, the H-shaped frame 401 is positioned between the roller placing assembly 5 and one side opposite to the front section processing mechanism 1, two movable plates 402 are movably connected to the inner side of the H-shaped frame 401, adjusting screws 403 are rotatably connected to the opposite sides of the two movable plates 402, one side of each adjusting screw 403, far away from the corresponding movable plate 402, penetrates through the H-shaped frame 401 and is in threaded connection with the H-shaped frame 401, the position of the corresponding movable plate 402 to the H-shaped frame 401 is adjusted by rotating the adjusting screws 403, the movable plates 402 are attached to the outer side of the belt-shaped material and limited, a guide rail 11 is bolted to the inner wall of the H-shaped frame 401, a sliding block 12 is slidably connected to the inner side of the guide rail 11, the top of the sliding block 12 is bolted to the corresponding movable plate 402, and the movable position of the movable plate 402 is limited by arranging the guide rail 11 and the sliding block 12 to be matched with the movable plate 402, the side, far away from the movable plate 402, of the adjusting screw 403 is highly connected with the rotating handle 14, anti-skid grains are arranged on the surface of the rotating handle 14, the contact pad 15 is bolted between the opposite sides of the two movable plates 402, the adjusting screw 403 can be conveniently rotated by arranging the rotating handle 14, the arranged contact pad 15 can avoid damage to the strip materials in limiting, the top of the support frame 501 is bolted with three sets of roller mounting frames 16, the inner sides of the three sets of roller mounting frames 16 are respectively and rotatably connected with the surfaces of the EMAA material roller 502, the steel strip material roller 503 and the PE material roller 504, the EMAA material roller 502, the steel strip material roller 503 and the PE material roller 504 can be conveniently replaced, the produced high-strength composite steel strip is formed by compounding three layers, the composite steel strip is formed by compounding the EMAA material, the PE material and the steel strip material roller, the steel strip is arranged in the middle after forming, the EMAA sheet and the PE sheet are respectively arranged on two sides of the steel strip material, the composite strip produced by the process and the device effectively improve flatness and smoothness, the uniformity and the impurity removal effect are effectively reduced, and the material level has higher physical pattern strength.
Brief description of the use process: the EMAA material roller 502, the steel belt material roller 503 and the PE material roller 504 are installed on a support frame 501 for feeding, the strip materials on the EMAA material roller 502, the steel belt material roller 503 and the PE material roller 504 pass through a limiting component 4, a front section processing mechanism 1, a smearing mechanism 6, a composite hot pressing structure 7 and a rolling structure 8, then equipment is started, an adjusting screw 403 is rotated according to the width of the strip materials to adjust the position of a movable plate 402 relative to an H-shaped frame 401, the movable plate 402 is attached to the outer side of the strip materials and limited, then the materials enter a front section shell 101, external cleaning water is extracted through a water pump 2, an attached sheet of the plate is wetted through a water conveying pipe 103 and an atomizing nozzle 104, attached water beads and surface impurities are scraped off through a scraper 1024, the wet surface is air-dried when passing through an air drying fan 10, the high-strength composite steel belt produced by the device and the production method is three-layer composite, the main materials are formed by compositing the EMAA sheet, the PE sheet and the steel belt material are formed by the steel belt material and the steel belt, the emaA sheet and the PE sheet are located in the middle after forming, the EMAA sheet and the PE material roller are located in the two effective and the two effective unevenness removing technology, the strip area and the effective flatness improving effect is achieved, and the effective flatness improving effect is high.
Example 2:
referring to fig. 1-9, a high-strength composite tape production apparatus and a production method thereof, wherein an applying mechanism 6 is disposed on the right side of a front-section casing 101, the applying mechanism 6 includes a frame roller assembly 601 and an adhesive feeding structure 602 disposed on the rear side of the frame roller assembly 601, a material pump 603 is bolted on the top of the adhesive feeding structure 602, a feeding end of the material pump 603 is communicated with the inside of the feeding structure, a delivery pipe 604 is bolted on the front side of the material pump 603, the front side of the delivery pipe 604 is bolted to the frame roller assembly 601, a composite hot-pressing structure 7 is disposed on the right side of the applying mechanism 6, a rolling structure 8 is disposed on one side of the composite hot-pressing structure 7 away from the applying mechanism 6, the frame roller assembly 601 includes two side plates 6011, the side plate 6011 is disposed between the opposite sides of the front-section processing mechanism 1 and the composite hot-pressing structure 7, a spraying pipe 6012 is bolted between the opposite sides of the two side plates 6011, and the number of the spraying pipes 6012 is two, the top of the top spraying pipe 6012 and the bottom of the bottom spraying pipe 6012 are both bolted with a glue spraying nozzle 6013, one side of the spraying pipe 6012 close to the conveying pipe 604 is communicated with the conveying pipe 604, a press roller 6014 is bolted between the opposite sides of the two side plates 6011, the time of contact between a coated surface and air can be reduced through the arranged coating mechanism 6, when a strip-shaped material passes through the coating mechanism 6, due to the limitation of the press roller 6014, the material of the PE material roller 504 and the material of the EMAA material roller 502 are gathered to the strip-shaped material of the steel strip material roller 503, a material pump 603 which extracts the adhesive from the adhesive feeding structure 602 conveys the adhesive to the inside of the spraying pipe 6012 through the conveying pipe 604 and sprays the adhesive to an adhesion surface through the glue spraying nozzle 6013, and performs preliminary press fit through the press roller 6014, two limiting rods 13 are rotatably connected between the opposite sides of the two side plates 6011, and through the arrangement of the limiting rods 13, can be convenient for carry on spacingly to banded material, avoid the angle of opening and shutting to be not convenient for paint.
The using process is briefly described as follows: when a strip material passes through the smearing mechanism 6, a plurality of strip materials are gathered through the pressing roller 6014, the material pump 603 for extracting an adhesive from the adhesive feeding structure 602 is conveyed into the spraying pipe 6012 through the conveying pipe 604 and is sprayed onto an adhesion surface through the glue coating spray head 6013, the strip material is preliminarily pressed when passing through the pressing roller 6014, is subjected to hot pressing and is stabilized when passing through the composite hot pressing structure 7, and is finally rolled and formed through the rolling structure 8.
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 (10)

1. The utility model provides a compound apparatus for producing that takes of high strength, includes anterior segment processing mechanism (1), its characterized in that: the front section treatment mechanism (1) comprises a front section machine shell (101) and a treatment mechanism (102), the inner side of the front section machine shell (101) is provided with the treatment mechanism (102), the treatment mechanism (102) comprises two carrier plates (1021), the carrier plates (1021) are bolted on the inner wall of the front section machine shell (101), the tops and the bottoms of the carrier plates (1021) are all bolted with a limiting frame (1022), the inner side of the limiting frame (1022) is connected with a knife rest (1023) in a sliding manner, the inner side of the knife rest (1023) is provided with a scraper (1024), the inner wall of the limiting frame (1022) is bolted with a spring (1025), one side of the spring (1025) close to the knife rest (1023) is bolted with the knife rest (1023), the front side of the front section machine shell (101) is bolted with a water pump (2), the inner side of the front section machine shell (101) is bolted with two straightening rollers (9), the inner wall of the front section machine shell (101) is bolted with a water pipe (103), the front side of the water pipe (103) penetrates through the front section machine shell (101) and is communicated with the front side of the water pump (101), the air-drying machine shell (101) and the top of the atomizing spray head (10) are connected with the air-drying machine shell (104), and the front section spray head (101), and the spray nozzle (10) are all connected with the spray nozzle (104), the left side of anterior segment casing (101) is provided with spacing subassembly (4), one side that emission subassembly (3) was kept away from in spacing subassembly (4) is provided with puts roller assembly (5), the right side of anterior segment casing (101) is provided with daubs mechanism (6), daub mechanism (6) including frame roller subassembly (601) and lie in frame roller subassembly (601) rear side adhesive and put in structure (602), material pump (603) have been bolted on the top of adhesive and put in structure (602), the pan feeding end of material pump (603) and the inside intercommunication of putting in structure (602), the front side bolt of material pump (603) has conveyer pipe (604), the front side and the frame roller subassembly (601) bolt of conveyer pipe (604) are connected, the right side of daubing mechanism (6) is provided with compound hot-pressing structure (7), one side that compound hot-pressing structure (7) kept away from daub mechanism (6) is provided with rolling structure (8).
2. The apparatus for producing high-strength composite tape according to claim 1, wherein: the discharging assembly (3) comprises a bottom bending frame (301), the bottom bending frame (301) is bolted on the inner side of the front section of the machine shell (101), a discharging pipe (302) is fixedly communicated with the bottom of the bottom bending frame (301), and a filter residue net (303) is placed at the top of the bottom bending frame (301).
3. The apparatus for producing high-strength composite tape according to claim 1, wherein: put roller subassembly (5) including a frame (501), rotate EMAA material roller (502) of connecting at a frame (501) top, rotate and connect steel band material roller (503) and PE material roller (504) of rotating and connecting at a frame (501) top, the top of a frame (501) is the echelonment, EMAA material roller (502) are located the top of steel band material roller (503), PE material roller (504) are located the below of steel band material roller (503).
4. The apparatus for producing high-strength composite tape according to claim 1, wherein: spacing subassembly (4) include H shape frame (401), H shape frame (401) are located and put between roller subassembly (5) and the relative one side of anterior segment processing mechanism (1), the inboard swing joint of H shape frame (401) has two fly leaves (402), and one side that two fly leaves (402) are opposite all rotates and is connected with adjusting screw (403), adjusting screw (403) keep away from one side of fly leaf (402) and pass H shape frame (401) and with H shape frame (401) threaded connection.
5. The apparatus for producing high-strength composite tape according to claim 4, wherein: the inner wall of the H-shaped frame (401) is bolted with a guide rail (11), the inner side of the guide rail (11) is connected with a sliding block (12) in a sliding mode, and the top of the sliding block (12) is bolted with the movable plate (402).
6. The apparatus for producing high-strength composite tape according to claim 4, wherein: the adjusting screw rod (403) is highly connected with a rotating handle (14) at one side far away from the movable plates (402), anti-skid lines are arranged on the surface of the rotating handle (14), and a contact pad (15) is bolted between the opposite sides of the two movable plates (402).
7. A high strength composite tape production apparatus as claimed in claim 3, wherein: the top of the support frame (501) is bolted with three groups of roller mounting frames (16), and the inner sides of the three groups of roller mounting frames (16) are respectively connected with the surface rotation of the EMAA material roller (502), the steel strip material roller (503) and the PE material roller (504).
8. The apparatus for producing high-strength composite tape according to claim 1, wherein: the frame roller assembly (601) comprises two side plates (6011), the side plates (6011) are located between one side, opposite to the front section treatment mechanism (1) and the composite hot pressing structure (7), spraying pipes (6012) are bolted between one side, opposite to the two side plates (6011), the number of the spraying pipes (6012) is two, a gluing spray head (6013) is bolted to the top of the top spraying pipe (6012) and the bottom of the bottom spraying pipe (6012), one side, close to the conveying pipe (604), of each spraying pipe (6012) is communicated with the conveying pipe (604), and a pressing roller (6014) is bolted between one side, opposite to the two side plates (6011).
9. The apparatus for producing high-strength composite tape according to claim 8, wherein: two limiting rods (13) are rotatably connected between the opposite sides of the two side plates (6011).
10. A production method of a high-strength composite tape production apparatus according to any one of claims 1 to 9, characterized in that: the method comprises the following specific steps:
s1, an EMAA material roller (502), a steel belt material roller (503) and a PE material roller (504) are installed on a support frame (501) to feed, and strip-shaped materials on the EMAA material roller (502), the steel belt material roller (503) and the PE material roller (504) pass through a limiting component (4), a front section processing mechanism (102) (1), a coating mechanism (6), a composite hot-pressing structure (7) and a rolling structure (8), and then equipment is started;
s2, rotating an adjusting screw rod (403) to adjust the position of a movable plate (402) relative to an H-shaped frame (401), enabling the movable plate (402) to be attached to the outer side of a strip-shaped material to limit the strip-shaped material, enabling the material to enter a front-section shell (101), pumping external cleaning water through a water pump (2), wetting an adhesive sheet of the plate through a water pipe (103) and an atomizing spray head (104), scraping attached water beads and surface impurities through a scraper (1024), and air-drying a wet surface when the plate passes through an air-drying fan (10);
s3, when the strip-shaped materials pass through the smearing mechanism (6), the strip-shaped materials are in a gathering state through a pressing roller (6014), a material pump (603) for pumping the adhesive from the adhesive feeding structure (602) is conveyed into the spraying pipe (6012) through a conveying pipe (604) and is sprayed onto an adhesion surface through a gluing sprayer (6013), the strip-shaped materials are preliminarily pressed when passing through the pressing roller (6014), are subjected to hot pressing and stabilizing when passing through the composite hot pressing structure (7), and are finally subjected to rolling forming through a rolling structure (8).
CN202211411174.8A 2022-11-10 2022-11-10 Production device and production method of high-strength composite belt Withdrawn CN115891186A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211411174.8A CN115891186A (en) 2022-11-10 2022-11-10 Production device and production method of high-strength composite belt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202211411174.8A CN115891186A (en) 2022-11-10 2022-11-10 Production device and production method of high-strength composite belt

Publications (1)

Publication Number Publication Date
CN115891186A true CN115891186A (en) 2023-04-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202211411174.8A Withdrawn CN115891186A (en) 2022-11-10 2022-11-10 Production device and production method of high-strength composite belt

Country Status (1)

Country Link
CN (1) CN115891186A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117816452A (en) * 2024-02-23 2024-04-05 常州碳禾新材料科技有限公司 Glass fiber cloth surface cleaning and spraying integrated device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117816452A (en) * 2024-02-23 2024-04-05 常州碳禾新材料科技有限公司 Glass fiber cloth surface cleaning and spraying integrated device
CN117816452B (en) * 2024-02-23 2024-04-26 常州碳禾新材料科技有限公司 Glass fiber cloth surface cleaning and spraying integrated device

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Application publication date: 20230404