CN112902583B - Drying device for large paper tube - Google Patents

Drying device for large paper tube Download PDF

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Publication number
CN112902583B
CN112902583B CN202110247528.9A CN202110247528A CN112902583B CN 112902583 B CN112902583 B CN 112902583B CN 202110247528 A CN202110247528 A CN 202110247528A CN 112902583 B CN112902583 B CN 112902583B
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Prior art keywords
driving
paper tube
platform
push
screw rod
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CN202110247528.9A
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CN112902583A (en
Inventor
陈刚
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Shengzhou Gaohua Paper Products Co ltd
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Shengzhou Gaohua Paper Products Co ltd
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Publication of CN112902583A publication Critical patent/CN112902583A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B11/00Machines or apparatus for drying solid materials or objects with movement which is non-progressive
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/001Drying-air generating units, e.g. movable, independent of drying enclosure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/02Applications of driving mechanisms, not covered by another subclass

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

The invention discloses a large-scale paper tube drying device which comprises an installation platform, wherein a driving part, a drying part and a conveying part are arranged on the installation platform, the conveying part comprises a conveying rail, a conveying platform and a conveying driving mechanism, the drying part comprises a movable supporting platform, a hot air box body and an air supply assembly, the movable supporting platform is arranged on two sides of the conveying platform, the number of the hot air box bodies is multiple, the hot air box bodies are arranged at intervals and cover the upper part of a paper tube, the side wall of the hot air box body close to the paper tube is an air outlet surface, the air outlet surface is arc-shaped, the driving part is positioned on one side of the end part of the paper tube, the driving part comprises an equipment platform, a driving screw rod mechanism and a push-pull assembly, the driving screw rod mechanism comprises a fixed rail, a movable screw sleeve seat, a front screw rod, a rear screw rod and a servo motor, the push-pull assembly comprises a push-pull sliding table, a push-pull body and a push-pull body, The driving gear, drive gear and push-and-pull motor.

Description

Drying device for large paper tube
Technical Field
The invention relates to the technical field of paper product drying devices, in particular to a drying device for a large-sized paper tube.
Background
The paper tube is widely applied in the fields of industry, agriculture, service industry and the like, and drying is an important link in the field of paper tube production and is a traditional process from the initial natural drying to the drying of firewood, coal and oil. Along with the improvement of the life quality of people, the environmental protection awareness is stronger and stronger, and various devices for drying the paper tube are produced.
At present, no device specially used for drying the surface of a large-sized paper tube exists in the prior art, and a traditional drying room is still adopted for drying generally. Because large-scale fiber container is bulky, adopt the stoving room to dry and cause a lot of space wastes in the stoving room, waste a large amount of energy. And the surface of the paper cylinder cannot be dried, so that the drying efficiency is low.
Disclosure of Invention
The invention aims to provide a drying device for a large paper tube, which can dry the surface of the paper tube and improve the drying efficiency of the surface of the paper tube. And in the drying process, all positions on the surface of the paper tube can be dried, so that the drying quality of the surface of the paper tube is improved.
The technical purpose of the invention is realized by the following technical scheme: a drying device for large paper tubes comprises an installation platform, wherein a driving part, a drying part and a transportation part are arranged on the installation platform, the transportation part comprises a transportation rail, a transportation platform and a transportation driving mechanism, the transportation rail is arranged at the upper end of the installation platform, the transportation platform is connected to the upper end of the transportation rail in a sliding manner, the transportation driving mechanism is arranged at two sides of the transportation platform and drives the transportation platform to move along the transportation rail, a roller bracket is arranged at the upper end of the transportation platform, the paper tubes are placed at the upper end of the roller bracket paper tubes, a tube body bracket is arranged in the paper tubes, the paper tubes can rotate at the upper end of the roller bracket by taking the central shafts of the paper tubes as rotating shafts, the drying part is arranged above the paper tubes, the drying part comprises a movable supporting platform, a hot air box body and an air supply assembly, the movable supporting platform is arranged at two sides of the transportation platform, the hot air box bodies are arranged at intervals and cover the upper part of the paper tube, the side wall of the hot air box body close to the paper tube is an air outlet surface which is arc-shaped, an arc-shaped air exhaust mesh enclosure is arranged between the adjacent hot air box bodies, two ends of the hot air box body are connected to the upper surface of the movable supporting platform in a sliding manner, the driving part is positioned on one side of the end part of the paper tube and comprises an equipment platform, a driving screw rod mechanism and a push-pull assembly, the driving screw rod mechanism comprises a fixed rail, a movable screw sleeve seat, a front screw rod, a rear screw rod and a servo motor, the movable screw sleeve seat is connected to the upper end of the fixed rail in a sliding manner, the front screw rod and the rear screw rod are positioned above the fixed rail and are in threaded connection with the front screw rod and the rear screw rod, a driving inserting column is arranged at one end of the front screw rod and the rear screw rod close to the paper tube, and a driving slot is arranged at the central position of one end of the tube support close to the driving part, the driving insertion column is inserted into the driving slot in a matched manner, the driving insertion column can drive the paper tube to rotate together when the front lead screw and the rear lead screw rotate, the push-pull assembly comprises a push-pull sliding table, a push-pull body, a driving gear, a transmission gear, a driving gear and a push-pull motor, the transmission gear is positioned between the driving gear and the driving gear, a first connecting rod and a second connecting rod are respectively and rotatably connected between a rotating shaft of the transmission gear and a rotating shaft of the driving gear and between a rotating shaft of the transmission gear and a rotating shaft of the driving gear, one end of the rotating shaft of the driving gear is rotatably connected with a movable screw sleeve seat, one end of the rotating shaft of the driving gear, which is far away from the movable screw sleeve seat, is connected with a third connecting rod, one end of the third connecting rod, which is far away from the driving gear, is rotatably connected with the driving column, a movable block body is arranged on the push-pull sliding table, and a vertical sliding chute is arranged on the push-pull body, the moving block body is connected in the vertical sliding groove in a sliding mode, a push-pull connecting block is arranged on one side, close to the drying portion, of the push-pull body, and the push-pull connecting block is fixedly connected with the hot air box body closest to the driving portion.
The invention is further configured to: the lower surface of the transportation platform is provided with rolling wheels, the upper surface of the mounting platform is provided with wheel grooves parallel to the transportation rails, and the lower ends of the rolling wheels are embedded in the wheel grooves.
The invention is further configured to: the upper end of the transportation platform is provided with a movable baffle at one end far away from the driving part, and the lower end of the movable baffle is hinged to the upper surface of the transportation platform.
The invention is further configured to: one side that the movable baffle kept away from the drive division is equipped with the cylinder, the cylinder body slope of cylinder sets up and is fixed in the upper end of transportation platform, its cylinder body one end is kept away from to the piston rod of cylinder articulates in movable baffle.
The invention is further configured to: the top of drying portion is equipped with exhaust portion, exhaust portion includes exhaust hood, blast pipe and exhaust fan, the funnel-shaped of exhaust hood for invering just locates the top of hot-blast box body and arc screen panel of airing exhaust, the one end of blast pipe is connected in the upper end intermediate position department of exhaust hood, exhaust fan locates the blast pipe and keeps away from the one end of exhaust hood.
The invention is further configured to: the transportation driving mechanism is one of a screw rod mechanism, a gear rack mechanism and a synchronous belt mechanism.
The invention is further configured to: the outer wall of the driving inserting column close to one side of the drying part is provided with a spline, and the edge of a port of the driving inserting groove is provided with a guide angle.
Compared with the prior art, the invention has the beneficial effects that: the staff places the fiber container in the transportation portion and transports the fiber container to the stoving region through transportation portion, and the drying part dries the fiber container surface to enable the fiber container to rotate and drive the drying part simultaneously and carry out round trip movement along the length direction of fiber container at stoving in-process drive division, thereby make the drying part all can dry to each position homoenergetic on fiber container surface, improve drying efficiency and oven-dry mass. The drying part can dry the upper half area of the paper tube all the time, and the driving part can drive the paper tube to rotate, so that all areas of the paper tube can be dried. The driving part can drive the hot blast box body and the arc exhaust net cover to move along the length direction of the movable supporting table, so that the hot blast box body can dry the part which is not dried between the adjacent hot blast box bodies originally, and the drying quality of the paper tube is improved. The rolling wheels support the transportation platform, and meanwhile, when the transportation platform moves, the rolling wheels roll in the wheel grooves, so that the friction force is small, and a certain guiding effect is achieved. The movable baffle can prevent the paper tube from shifting in the axial direction in the drying process, so that the driving part can drive the paper tube to rotate better.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic diagram of a partial enlarged structure of the present invention;
FIG. 3 is a second partial enlarged view of the present invention;
FIG. 4 is a schematic view of the structure of portion A of FIG. 1 according to the present invention;
fig. 5 is a schematic diagram of a partially enlarged structure of the present invention.
The reference numbers in the figures mean: 1. mounting a platform; 2. a drive section; 3. a drying section; 4. a transport section; 5. a transportation track; 6. a transport platform; 7. a roller bracket; 8. a paper tube; 9. a cartridge holder; 10. moving the support table; 11. a hot blast box body; 12. an arc-shaped air exhaust net cover; 13. an air outlet surface; 14. an equipment table; 15. fixing a track; 16. moving the screw sleeve seat; 17. front and rear screw rods; 18. a servo motor; 19. driving the inserting column; 20. sliding the sliding table; 21. a push-pull body; 22. a driving gear; 23. a transmission gear; 24. a drive gear; 25. a push-pull motor; 26. a first connecting rod; 27. a second connecting rod; 28. a third connecting rod; 29. a drive column; 30. moving the block; 31. a vertical chute; 32. pushing and pulling the connecting block; 33. a rolling wheel; 34. a wheel groove; 35. a movable baffle; 36. a cylinder; 37. an exhaust hood; 38. an exhaust pipe; 39. an exhaust fan; 40. a guide angle; 41. a spline.
Detailed Description
The following detailed description of embodiments of the present invention is provided in connection with the accompanying drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
The present invention is explained below with reference to fig. 1 to 5.
The utility model provides a drying device of large-scale fiber container, includes mounting platform 1, is provided with drive division 2, drying portion 3 and transportation portion 4 on mounting platform 1. The staff places fiber container 8 on transportation portion 4 and transports fiber container 8 to the stoving region through transportation portion 4, and stoving portion 3 is dried on the fiber container 8 surface, and in the stoving in-process drive division 2 enables fiber container 8 and rotates and drive stoving portion 3 simultaneously and carry out round trip movement along the length direction of fiber container 8, thereby make stoving portion 3 can dry each position on fiber container 8 surface, improve drying efficiency and oven-dry mass. The transport section 4 includes a transport rail 5, a transport platform 6, and a transport drive mechanism. 1 upper end of mounting platform is located to transportation track 5, and the quantity of transportation track 5 is two in this embodiment, and 6 sliding connection of transportation platform are in transportation track 5's upper end, and two transportation tracks 5 are located the lower extreme both sides position of transportation platform 6 respectively to play better stability. The lower surface of the transportation platform 6 is provided with rolling wheels 33, the upper surface of the mounting platform 1 is provided with wheel grooves 34 parallel to the transportation rail 5, and the lower ends of the rolling wheels 33 are embedded in the wheel grooves 34. The rolling wheels 33 support the transportation platform 6, and when the transportation platform 6 moves, the rolling wheels 33 roll in the wheel grooves 34, so that the friction force is small and a certain guiding effect is achieved. The transportation driving mechanism is arranged on two sides of the transportation platform 6 and drives the transportation platform 6 to move along the transportation track 5, and the transportation driving mechanism is one of a screw rod mechanism, a gear rack mechanism and a synchronous belt mechanism. The transportation driving mechanism in the embodiment is a ball screw mechanism, and has the advantages of small friction loss and high transmission efficiency.
The upper end of transport platform 6 is equipped with roller bracket 7, and fiber container 8 has been placed to the upper end of roller bracket 7 fiber container 8, and the inside of fiber container 8 is equipped with barrel holder 9, and barrel holder 9 plays the supporting role to 8 inboards of fiber container, and fiber container 8 can use its center pin to rotate in roller bracket 7 upper end as the pivot. The one end that the drive division 2 was kept away from to the upper end of transport platform 6 is equipped with adjustable fender 35, and adjustable fender 35's lower extreme articulates in the upper surface of transport platform 6. The movable baffle 35 can prevent the paper tube 8 from shifting in the axial direction during the drying process, so that the driving part 2 can drive the paper tube 8 to rotate better. One side that the movable baffle 35 kept away from the drive part 2 is equipped with the cylinder 36, and the cylinder body slope of cylinder 36 sets up and is fixed in the upper end of transportation platform 6, and its cylinder body one end is kept away from to the piston rod of cylinder 36 articulates in movable baffle 35. When the piston rod of the air cylinder 36 is pushed out, the movable baffle 35 is in a vertical state and blocks the paper tube 8, and when the piston rod of the air cylinder 36 retracts into the cylinder body of the air cylinder 36, the movable baffle 35 does not block the paper tube 8, so that a worker can conveniently take the paper tube 8 down from the roller bracket 7.
The drying part 3 is arranged above the paper tube 8, the drying part 3 can dry the upper half area of the paper tube 8 all the time, and the driving part 2 can drive the paper tube 8 to rotate, so that all areas of the paper tube 8 can be dried. Drying portion 3 is including removing brace table 10, hot-blast box 11 and air feed subassembly, removes brace table 10 and locates the both sides of transport platform 6, and the lower extreme that removes brace table 10 passes through the bolt fastening in mounting platform 1's upper surface. The number of the hot air box bodies 11 is a plurality, and the hot air box bodies 11 are arranged at intervals and cover the upper part of the paper tube 8. The side wall of the hot air box body 11 close to the paper tube 8 is an air outlet surface 13, the air outlet surface 13 is arc-shaped, an air outlet hole is formed in the air outlet surface 13, and an electric heating net is arranged on the inner wall of the hot air box body 11. Be equipped with arc screen panel 12 of airing exhaust between the adjacent hot-blast box body 11, the moisture that produces when hot-blast box body 11 dries the surface of fiber container 8 can in time be in time absorb through arc screen panel 12 of airing exhaust to make and keep dry stoving environment between hot-blast box body 11 and the fiber container 8 surface, thereby improve drying efficiency. The both ends sliding connection of hot-blast cabinet body 11 is in the upper surface that removes a supporting bench 10, and drive division 2 can drive hot-blast cabinet body 11 and arc screen panel 12 of airing exhaust and remove along the length direction who removes a supporting bench 10 to make hot-blast cabinet body 11 can be dried the position that does not dried between the adjacent hot-blast cabinet body 11 originally, improve the oven-dry mass of fiber container 8.
An exhaust unit is provided above the drying unit 3, and includes an exhaust hood 37, an exhaust pipe 38, and an exhaust fan 39. The exhaust hood 37 is in an inverted funnel shape and is arranged above the hot blast cabinet 11 and the arc exhaust net cover 12, one end of the exhaust pipe 38 is connected to the middle position of the upper end of the exhaust hood 37, and the exhaust fan 39 is arranged at one end of the exhaust pipe 38 far away from the exhaust hood 37. Moisture can be absorbed by the exhaust part after passing through the arc-shaped exhaust mesh enclosure 12, and the exhaust cover 37 can absorb the moisture in a large range, so that the drying environment is not influenced by more moisture.
The driving part 2 is positioned at one side of the end part of the paper tube 8, and the driving part 2 comprises an equipment table 14, a driving screw rod mechanism and a push-pull assembly. The driving screw rod mechanism comprises a fixed rail 15, a movable screw sleeve seat 16, a front screw rod 17, a rear screw rod 17 and a servo motor 18. The movable screw sleeve seat 16 is connected to the upper end of the fixed rail 15 in a sliding mode, the front screw rod 17 and the rear screw rod 17 are located above the fixed rail 15, and the movable screw sleeve seat 16 is in threaded connection with the front screw rod 17 and the rear screw rod 17. The servo motor 18 is arranged at one end of the front and rear screw rods 17 far away from the drying part 3, and the output shaft of the servo motor 18 is fixedly connected with the end parts of the front and rear screw rods 17. The servo motor 18 rotates the front and rear screw rods 17 and moves the movable screw socket 16 on the fixed rail 15. The front and rear screw rods 17 are provided with driving insertion posts 19 at one ends close to the paper tube 8, driving slots are formed in the center positions of the tube body supports 9 at one ends close to the driving part 2, and the length of each driving slot is far greater than that of each driving insertion post 19. The driving insertion column 19 is inserted into the driving slot in a matching way, and when the front screw rod 17 and the rear screw rod 17 rotate, the driving insertion column 19 can drive the paper tube 8 to rotate together. When the transportation platform 6 transports the paper tube 8 to one end close to the driving part 2, the driving insertion column 19 is inserted into the driving slot and is driven by the driving screw rod mechanism to move in the driving slot, so that the driving insertion column 19 can always drive the paper tube 8 to rotate in the moving process. The outer wall of the driving plug 19 near the drying part 3 is provided with splines 41, and the edge of the port of the driving socket is provided with a guide angle 40. The guiding angle 40 can play a role of guiding when the driving plug 19 is inserted into the driving slot, so as to prevent the situation of difficult insertion.
The push-pull assembly comprises a push-pull sliding table 20, a push-pull body 21, a driving gear 22, a transmission gear 23, a driving gear 24 and a push-pull motor 25. The transmission gear 23 is positioned between the driving gear 22 and the driving gear 24, two sides of the transmission gear 23 are respectively meshed with the driving gear 22 and the driving gear 24, and an output shaft of the push-pull motor 25 is fixedly connected with a rotating shaft of the driving gear 22. A first connecting rod 26 and a second connecting rod 27 are respectively and rotatably connected between the rotating shaft of the transmission gear 23 and the rotating shaft of the driving gear 22 and between the rotating shaft of the transmission gear 23 and the rotating shaft of the driving gear 24. One end of a rotating shaft of the driving gear 24 is rotatably connected to the movable screw sleeve seat 16, one end of the rotating shaft of the driving gear 24, which is far away from the movable screw sleeve seat 16, is connected with a third connecting rod 28, one end of the third connecting rod 28, which is far away from the driving gear 24, is rotatably connected with a driving column 29, and a movable block 30 is arranged on the driving column 29. The push-pull sliding table 20 is fixed at the upper end of the equipment table 14, the push-pull body 21 is connected to the push-pull sliding table 20 in a sliding mode, a vertical sliding groove 31 is formed in the push-pull body 21, and the movable block body 30 is connected to the vertical sliding groove 31 in a sliding mode. The side of the push-pull body 21 close to the drying part 3 is provided with a push-pull connecting block 32, and the push-pull connecting block 32 is fixedly connected with the hot blast box body 11 closest to the driving part 2. The push-pull motor 25 rotates the driving gear 22, and rotates the transmission gear 23 together with the driving gear 24 through transmission. The driving gear 24 rotates to drive the third connecting rod 28 to rotate, so that the moving block 30 moves in the vertical sliding groove 31, and the push-pull body 21 is driven to move horizontally in the push-pull sliding table 20 during the movement of the moving block 30. When the push-pull body 21 moves, the push-pull connecting block 32 drives the hot air box body 11 and the arc-shaped exhaust mesh enclosure 12 to move together, so that the hot air box body 11 can dry the paper tube 8 within a certain range. In addition, the worker can control the movable screw sleeve seat 16 to move, and on one hand, the position of the driving gear 24 can be changed, so that the drying area of the hot blast cabinet body 11 is changed; on the other hand, the paper tube 8 can be rotated, so that the area of the paper tube 8 which is originally located below can be dried. Through repeated adjustment, the surfaces of the paper tubes 8 can be efficiently dried.
The above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, several modifications and variations can be made without departing from the technical principle of the present invention, and those modifications and variations assumed in the above are also considered to be within the protective scope of the present invention.

Claims (7)

1. The drying device for the large paper tube comprises a mounting platform (1) and is characterized in that a driving part (2), a drying part (3) and a transporting part (4) are arranged on the mounting platform (1), the transporting part (4) comprises a transporting track (5), a transporting platform (6) and a transporting driving mechanism, the transporting track (5) is arranged at the upper end of the mounting platform (1), the transporting platform (6) is connected to the upper end of the transporting track (5) in a sliding manner, the transporting driving mechanism is arranged at two sides of the transporting platform (6) and drives the transporting platform (6) to move along the transporting track (5), a roller bracket (7) is arranged at the upper end of the transporting platform (6), the paper tube (8) is placed at the upper end of the roller bracket (7), a tube bracket (9) is arranged inside the paper tube (8), and the paper tube (8) can rotate at the upper end of the roller bracket (7) by taking the central shaft as a rotating shaft, the drying part (3) is arranged above the paper tube (8), the drying part (3) comprises a movable supporting platform (10), hot air box bodies (11) and air supply assemblies, the movable supporting platform (10) is arranged on two sides of the transportation platform (6), the number of the hot air box bodies (11) is a plurality, the hot air box bodies (11) are arranged at intervals and cover the upper part of the paper tube (8), the side wall of each hot air box body (11) close to the paper tube (8) is an air outlet surface (13), the air outlet surfaces (13) are arc-shaped, arc-shaped air exhaust mesh enclosures (12) are arranged between every two adjacent hot air box bodies (11), two ends of each hot air box body (11) are connected to the upper surface of the movable supporting platform (10) in a sliding mode, the driving part (2) is located on one side of the end part of the paper tube (8), and the driving part (2) comprises an equipment platform (14), a driving screw rod mechanism and a push-pull assembly, the driving screw rod mechanism comprises a fixed rail (15), a movable screw sleeve seat (16), a front screw rod, a rear screw rod (17) and a servo motor (18), the movable screw sleeve seat (16) is connected to the upper end of the fixed rail (15) in a sliding mode, the front screw rod and the rear screw rod (17) are located above the fixed rail (15), the movable screw sleeve seat (16) is in threaded connection with the front screw rod and the rear screw rod (17), a driving insertion column (19) is arranged at one end, close to a paper tube (8), of the front screw rod and the rear screw rod (17), a driving insertion slot is formed in the center position of one end, close to the driving portion (2), of the barrel support (9), the driving insertion column (19) is inserted in a matched mode and located in the driving insertion slot, the driving insertion column (19) can drive the paper tube (8) to rotate together when the front screw rod and the rear screw rod (17) rotate, the push-pull assembly comprises a push-pull sliding table (20), a push-pull body (21), a driving gear (22) and a servo motor, The transmission gear (23) is positioned between the driving gear (22) and the driving gear (24), a first connecting rod (26) and a second connecting rod (27) are respectively and rotatably connected between a rotating shaft of the transmission gear (23) and a rotating shaft of the driving gear (22) and between a rotating shaft of the transmission gear (23) and a rotating shaft of the driving gear (24), one end of the rotating shaft of the driving gear (24) is rotatably connected to the movable screw sleeve seat (16), one end, far away from the movable screw sleeve seat (16), of the rotating shaft of the driving gear (24) is connected with a third connecting rod (28), one end, far away from the driving gear (24), of the third connecting rod (28) is rotatably connected with a driving column (29), a movable block body (30) is arranged on the driving column (29), and the push-pull body (21) is slidably connected to the push-pull sliding table (20), the hot air box is characterized in that a vertical sliding groove (31) is formed in the push-pull body (21), the movable block body (30) is connected into the vertical sliding groove (31) in a sliding mode, a push-pull connecting block (32) is arranged on one side, close to the drying part (3), of the push-pull body (21), and the push-pull connecting block (32) is fixedly connected with the hot air box body (11) closest to the driving part (2).
2. The drying device for the large-sized paper tube as claimed in claim 1, wherein: the lower surface of transportation platform (6) is equipped with roll wheel (33), the upper surface of mounting platform (1) has been seted up and has been on a parallel with race (34) of transportation track (5), the lower extreme of roll wheel (33) is inlayed and is located in race (34).
3. The drying device for the large-sized paper tube as claimed in claim 1, wherein: the upper end of the transportation platform (6) is far away from one end of the driving part (2) and is provided with a movable baffle (35), and the lower end of the movable baffle (35) is hinged to the upper surface of the transportation platform (6).
4. The drying device for the large-sized paper tube as claimed in claim 3, wherein: one side of the movable baffle plate (35) far away from the driving part (2) is provided with an air cylinder (36), the cylinder body of the air cylinder (36) is obliquely arranged and fixed at the upper end of the transportation platform (6), and one end of the piston rod of the air cylinder (36) far away from the cylinder body is hinged to the movable baffle plate (35).
5. The drying device for the large-sized paper tube as claimed in claim 1, wherein: the top of drying portion (3) is equipped with exhaust portion, exhaust portion includes exhaust hood (37), blast pipe (38) and exhaust fan (39), funnel-shaped and the top of locating hot-blast cabinet body (11) and arc exhaust screen panel (12) of inversion of exhaust hood (37), the one end of blast pipe (38) is connected in the upper end intermediate position department of exhaust hood (37), the one end that exhaust hood (37) were kept away from in blast pipe (38) is located in exhaust fan (39).
6. The drying device for the large-sized paper tube as claimed in claim 1, wherein: the transportation driving mechanism is one of a screw rod mechanism, a gear rack mechanism and a synchronous belt mechanism.
7. The drying device for the large-sized paper tube as claimed in claim 1, wherein: the outer wall of one side, close to the drying part (3), of the driving inserting column (19) is provided with a spline (41), and the edge of a port of the driving inserting groove is provided with a guide angle (40).
CN202110247528.9A 2021-03-06 2021-03-06 Drying device for large paper tube Active CN112902583B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110247528.9A CN112902583B (en) 2021-03-06 2021-03-06 Drying device for large paper tube

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110247528.9A CN112902583B (en) 2021-03-06 2021-03-06 Drying device for large paper tube

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CN112902583A CN112902583A (en) 2021-06-04
CN112902583B true CN112902583B (en) 2022-05-10

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CN210635458U (en) * 2019-09-24 2020-05-29 杭州临安牌联纸业有限公司 Paper drying device
CN111336782A (en) * 2020-03-24 2020-06-26 杭州恺晨纸业有限公司 Paper tube drying system
CN111501394A (en) * 2020-04-21 2020-08-07 东莞市金田纸业有限公司 Papermaking dryer mechanism
CN212205474U (en) * 2020-05-11 2020-12-22 吴江市聚友纸管有限公司 Paper tube drying box for paper tube production

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Denomination of invention: A drying device for large paper tubes

Effective date of registration: 20230809

Granted publication date: 20220510

Pledgee: Shengzhou Sub-branch of Postal Savings Bank of China Co.,Ltd.

Pledgor: Shengzhou Gaohua paper products Co.,Ltd.

Registration number: Y2023330001702