Drying cylinder stripping agent spraying equipment capable of flexibly adjusting mounting position
By designing a cylinder stripper spraying equipment with a flexible adjustable installation position, and adopting an angle adjustment and reciprocating spraying mechanism, the problem of uneven spraying of traditional equipment has been solved, thereby improving the uniformity of spraying and the anti-sticking effect, and reducing production costs and environmental pollution.
Patent Information
- Application Number
- CN202511354324.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2025-11-04
AI Technical Summary
Traditional spraying equipment is fixed in place, and the angle and position are inconvenient to adjust, resulting in uneven spraying of the release agent, which affects the flexibility of the drying cylinder and the release effect.
Design a cylinder stripper spraying device with flexible adjustable installation position. It adopts an angle adjustment and reciprocating spraying mechanism, combined with a belt conveyor and guide structure, to achieve precise control of spraying position and angle. The device also manages spraying start/stop and dosage through an intelligent sensing start/stop control system.
It achieves precise control of the spraying position and angle, ensuring that the release agent evenly covers the surface of the drying cylinder, improving the anti-sticking effect, reducing raw material waste, lowering production costs, and maintaining environmental cleanliness.
Smart Images

Figure CN120885366A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of papermaking machinery technology, specifically to a drying cylinder stripping agent spraying device with flexibly adjustable installation position. Background Technology
[0002] In the papermaking industry, drying cylinders are key equipment for drying paper sheets. Their surfaces are prone to sticking, often requiring the application of release agents to ensure smooth production. Traditional spraying equipment is mostly fixed in place, which has limitations such as inconvenient adjustment of spray angle and position, and poor coverage uniformity, affecting the release effect and operational flexibility. Summary of the Invention
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing a reasonably designed and easy-to-use drying cylinder stripper spraying device with a flexibly adjustable installation position. Through angle adjustment and reciprocating spraying mechanism, flexible and precise control of the spraying position and angle is achieved, significantly improving the uniformity and applicability of the stripper spraying. The device has a reasonable structure and is easy to adjust.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it comprises a fixed frame, a drive motor, and fixed plates. The fixed frame is U-shaped, the drying cylinder is disposed within the fixed frame, and fixed plates are screwed to both sides of the drying cylinder via bearings. The fixed plates are fixed to the top walls of both side walls of the fixed frame. A drive motor is fixed to a vertical plate on one side of the fixed frame, and the drive motor is connected to one end of the drying cylinder via a synchronous pulley transmission assembly; it further comprises: The mounting frame is U-shaped, with vertical plates on both sides of the mounting frame being movably inserted into fixed plates on both sides. The mounting frame is connected to the fixed plates through an angle adjustment mechanism. A connecting plate is provided in the mounting frame. A positioning plate is fixed on one side of the connecting plate adjacent to the side wall of the drying cylinder. An installation block is suspended on the upper side of the positioning plate. The nozzle is embedded and fixed on the mounting block, and the nozzle is connected to an external pumping pump through a pipe. A connecting spring is provided on the bottom wall of the mounting block, and the lower end of the connecting spring is fixed to the connecting block. The connecting block is slidably disposed in the groove on the upper side of the positioning plate. A reciprocating mechanism is mounted on a connecting plate and connected to a mounting block. With the above technical solution, when in use, the angle of the mounting bracket is adjusted by the angle adjustment mechanism according to the required installation position. The mounting bracket drives the connecting plate to rotate to the appropriate position of the drying cylinder. Then, the reciprocating mechanism is started. The reciprocating mechanism drives the mounting block to move back and forth. During the reciprocating movement, the mounting block drives the nozzle to move back and forth, thereby spraying the stripping agent during the reciprocating movement.
[0005] As a further improvement of the present invention, each of the connecting springs is provided with a guide rod inside. After the lower end of the guide rod passes through the connecting block, it is movably set in the strip groove on the positioning plate. The convex ring at the top of the guide rod is fixedly connected to the connecting spring, and the top end of the guide rod is connected to the bottom end of the mounting block. The above technical solution can support and guide the connecting spring, preventing it from deforming.
[0006] As a further improvement of the present invention, a push rod is fixed on the top of the guide rod, the push rod is movably inserted into the mounting block, a control switch is fixed on the inner top wall of the mounting block, the control switch is connected to the control valve on the nozzle, a contact spring is sleeved and fixed on the outer side of the push rod, the lower end of the contact spring is fixedly connected to the convex ring of the guide rod, the contact spring is set in the cylindrical groove inside the mounting block, and the upper end of the contact spring is fixedly connected to the inner top wall of the cylindrical groove. With the above technical solution, when the mounting block moves downward, it abuts against the contact spring. At this time, under the elastic force of the connecting spring, the push rod remains in its original position until it abuts against the control switch, thereby closing the control valve on the nozzle and keeping the nozzle in a closed state. When the mounting block continues to move downward, it abuts against the connecting spring through the guide rod, so that the guide rod passes through the connecting block and is located on the lower side of the positioning plate, thus not affecting the extension and contraction of the connecting spring. When the mounting block moves upward from the other side, the connecting spring pushes the guide rod, so that the guide rod remains in contact with the mounting block. When the guide rod separates from the mounting block, the contact spring is stretched, thereby driving the push rod to move downward and separate from the control switch, thus allowing the nozzle to pass through.
[0007] As a further improvement of the present invention, the angle adjustment mechanism includes: Two rotating shafts are provided, each inserted through and fixed inside the mounting bracket on one side of the fixed plate. The rotating shafts are screwed into the fixed plate via bearings. A linkage shaft is provided on the lower side of each rotating shaft, and the linkage shaft is screwed into the fixed plate via bearings. The adjusting gears are two in number, and each is sleeved and fixed on the linkage shaft. The adjusting gears are engaged with the tooth grooves at the bottom of the mounting bracket. The adjusting rod is screwed into the horizontal plate of the fixed frame via bearings. Both ends of the adjusting rod are connected to the linkage shafts on both sides via synchronous wheel transmission components. The middle end of the adjusting rod is connected to the adjusting motor via a bevel gear pair. The adjusting motor is embedded and fixed in the horizontal plate of the fixed frame. The above technical solution involves starting the adjusting motor, which drives the adjusting rod to rotate via a bevel gear pair. The adjusting rod then drives the linkage shaft to rotate via a synchronous gear transmission assembly. The linkage shaft drives the adjusting gear to rotate, and the adjusting gear drives the mounting bracket to rotate.
[0008] As a further improvement of the present invention, sliding blocks are fixed on both sides of the connecting plate. The sliding blocks are slidably disposed in the sliding grooves on both sides of the mounting frame. Adjusting screws are threaded into each sliding block. The adjusting screws are threaded into both sides of the mounting frame through bearings. A rotating rod is threaded into one side of the mounting frame through a bearing. The two ends of the rotating rod are respectively connected to one end of the adjusting screws on both sides through worm gear pairs. The middle end of the rotating rod is connected to a rotating motor through a worm gear pair. The rotating motor is embedded and fixed in the mounting frame. With the above technical solution, the rotating motor is started, and the rotating motor drives the rotating rod to rotate through the bevel gear pair. The two ends of the rotating rod drive the adjusting screws on both sides to rotate through the worm gear pair. The adjusting screws drive the sliding block to move, and the sliding block drives the connecting plate to move until the connecting plate moves to the appropriate position.
[0009] As a further improvement of the present invention, the reciprocating mechanism includes: A belt conveyor, wherein the belt conveyor is embedded in a groove in a connecting plate, and a moving block is fixed on the conveyor belt of the belt conveyor, and the moving block is fixedly connected to the mounting block. The drive bar abuts against one side wall of the connecting plate, and the actuating block is movably disposed in the strip-shaped hole on the drive bar. Insert rods are fixed on both sides of the bottom wall of the drive bar. Two guide sleeves are provided, which are fixed on both sides of the top wall of the positioning plate. The lower end of the insertion rod moves through the guide sleeve and is inserted into the positioning plate. With the above technical solution, the belt conveyor is started, the belt conveyor drives the actuating block to move, the actuating block drives the mounting block to move, and the actuating block moves in the strip hole on the drive bar. When the actuating block moves to one side of the belt conveyor, it drives the actuating block to move up and down, the actuating block drives the drive bar to move up and down, and the insertion rod on the lower side of the drive bar moves up and down in the guide sleeve.
[0010] As a further improvement of the present invention, a protractor is fixed on the side wall of the fixing plate away from the drying cylinder, and a pointer is provided on one side of the protractor, which is fixed on the outer wall of the mounting frame. The above technical solution makes it easy to determine the appropriate angle for rotating the mounting bracket.
[0011] As a further improvement of the present invention, a collection box is provided on the upper side of the horizontal plate of the fixing frame, and the collection box is located on the lower side of the drying cylinder. The above technical solution facilitates the collection of excess stripping agent during the spraying process.
[0012] As a further improvement of the present invention, guide plates are provided on both sides above the collection box, and the left and right sides of the guide plates are respectively fixed to the vertical plates on both sides of the fixing frame, with the upper side of the guide plates inclined outward. The above technical solution facilitates the guidance of the stripping agent, preventing it from splashing onto the outside of the collection box.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Through precise electric adjustment of angle and position, it can flexibly adapt to the diverse spraying process requirements of different specifications of drying cylinders, making it extremely versatile; 2. The unique belt reciprocating spraying mechanism ensures that the release agent evenly covers the surface of the drying cylinder without any dead corners, significantly improving the anti-sticking effect. 3. The intelligent sensing start-stop control system precisely manages the start and stop of spraying and the dosage, effectively avoiding raw material waste and significantly reducing production costs; 4. The stable guiding structure and efficient collection device work together to ensure smooth operation and maintain a clean environment, achieving environmentally friendly and efficient production. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of the present invention.
[0015] Figure 2 This is an exploded view of the structure of the present invention.
[0016] Figure 3 This is a schematic diagram of the angle adjustment mechanism in this invention.
[0017] Figure 4 This is a schematic diagram of the connecting plate, sliding block, and adjusting screw in this invention.
[0018] Figure 5 This is an exploded view of the reciprocating mechanism in this invention.
[0019] Figure 6 for Figure 5 Enlarged view of section A.
[0020] Figure 7 This is a schematic diagram of the mounting frame, connecting spring, and connection structure in this invention.
[0021] Figure 8 for Figure 7 Enlarged view of section B in the middle.
[0022] Explanation of reference numerals in the attached figures: 1. Fixed frame; 2. Drive motor; 3. Fixed plate; 4. Mounting bracket; 5. Angle adjustment mechanism; 5. Rotating shaft; 5-1. Linkage shaft; 5-2. Adjusting gear; 5-3. Adjusting rod; 5-4. Adjusting motor; 5-5. Connecting plate; 6. Positioning plate; 7. Mounting block; 8. Nozzle; 9. Connecting spring; 10. Connecting block; 11. Reciprocating mechanism; 12. Belt conveyor; 12-1. Actuating block; 12-2. Drive bar; 12-3. Insert rod; 12-4. Guide sleeve; 12-5. Guide rod; 13. Push rod; 14. Control switch; 15. Contact spring; 16. Sliding block; 17. Adjusting screw; 18. Rotating rod; 19. Rotating motor; 20. Protractor; 21. Pointer; 22. Collection box; 23. Guide plate; 24. Drying cylinder; 25. Detailed Implementation
[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1:
[0024] like Figures 1-8 As shown, this embodiment includes a fixed frame 1, a drive motor 2, and a fixed plate 3. The fixed frame 1 is U-shaped, and the drying cylinder 25 is disposed inside the fixed frame 1. Fixed plates 3 are screwed onto both sides of the drying cylinder 25 via bearings. The fixed plates 3 are welded and fixed to the top walls of both sides of the fixed frame 1. The drive motor 2 is bolted to the vertical plate on the left side of the fixed frame 1. The drive motor 2 is connected to one end of the drying cylinder 25 via a synchronous pulley transmission assembly. A collection box 23 is disposed on the upper side of the horizontal plate of the fixed frame 1, located below the drying cylinder 25, facilitating the collection of excess stripping agent during spraying. Guide plates 24 are disposed on both sides above the collection box 23. The left and right sides of the guide plates 24 are welded and fixed to the vertical plates on both sides of the fixed frame 1. The upper side of the guide plates 24 is inclined outwards to facilitate the guidance of the stripping agent and prevent splashing onto the outside of the collection box 23. It also includes: Mounting frame 4 is U-shaped. The vertical plates on both sides of the mounting frame 4 are movably inserted into the fixed plates 3 on both sides. The mounting frame 4 is connected to the fixed plates 3 through an angle adjustment mechanism 5. A protractor 21 is fixed to the side wall of the fixed plate 3 away from the drying cylinder 25 by bolts. A pointer 22 is provided on one side of the protractor 21. The pointer 22 is welded and fixed to the outer wall of the mounting frame 4, which can facilitate determining the appropriate angle to which the mounting frame 4 is rotated. The connecting plate 6 is disposed in the mounting frame 4. A positioning plate 7 is welded and fixed to one side of the connecting plate 6 adjacent to the side wall of the drying cylinder 25. An mounting block 8 is suspended on the upper side of the positioning plate 7. Nozzle 9, which is embedded and fixed on mounting block 8, and is connected to an external pumping pump through a pipe; A connecting spring 10 is provided on the bottom wall of the mounting block 8. A connecting block 11 is welded and fixed to the lower end of the connecting spring 10. The connecting block 11 is slidably disposed in the groove on the upper side of the positioning plate 7. The reciprocating mechanism 12 is mounted on the connecting plate 6 and is connected to the mounting block 8. Example 2:
[0025] See Figure 7-8 As shown, based on Embodiment 1, each connecting spring 10 is provided with a guide rod 13 inside. The lower end of the guide rod 13 passes through the connecting block 11 and is movably set in the strip groove on the positioning plate 7. The convex ring at the top of the guide rod 13 is welded and fixed to the connecting spring 10. The top end of the guide rod 13 is connected to the bottom end of the mounting block 8, which can support and guide the connecting spring 10 to prevent deformation of the connecting spring 10. A push rod 14 is welded and fixed to the top of the guide rod 13. The push rod 14 is movably inserted into the mounting block 8. A control switch 15 is fixed on the inner top wall of the mounting block 8. The control switch 15 is connected to the control valve on the nozzle 9. An abutment spring 16 is sleeved and fixed on the outer side of the push rod 14. The lower end of the abutment spring 16 is fixedly connected to the convex ring of the guide rod 13. The abutment spring 16 is set in the cylindrical groove inside the mounting block 8. The upper end of the abutment spring 16 is welded and fixed to the inner top wall of the cylindrical groove. Example 3:
[0026] See Figure 2 , Figure 3 As shown, based on Embodiment 1, the angle adjustment mechanism 5 includes: Rotating shaft 5-1, there are two rotating shafts 5-1, and they are respectively inserted and welded to the side of the mounting bracket 4 located inside the fixing plate 3. The rotating shaft 5-1 is screwed into the fixing plate 3 through bearings. A linkage shaft 5-2 is provided on the lower side of each rotating shaft 5-1. The linkage shaft 5-2 is screwed into the fixing plate 3 through bearings. Adjusting gear 5-3, there are two adjusting gears 5-3, and they are respectively sleeved and welded to the linkage shaft 5-2. The adjusting gear 5-3 is engaged with the tooth groove at the bottom of the mounting bracket 4. The adjusting rod 5-4 is screwed into the horizontal plate of the fixed frame 1 via bearings. Both ends of the adjusting rod 5-4 are connected to the linkage shafts 5-2 on both sides via synchronous wheel transmission assemblies. The middle end of the adjusting rod 5-4 is connected to the adjusting motor 5-5 via a bevel gear pair. The adjusting motor 5-5 is embedded and fixed in the horizontal plate of the fixed frame 1. Example 4:
[0027] See Figure 4As shown, based on Embodiment 1, sliding blocks 17 are welded and fixed on both sides of the connecting plate 6. The sliding blocks 17 are slidably disposed in the sliding grooves on both sides of the mounting frame 4. Adjusting screws 18 are threaded into each sliding block 17. The adjusting screws 18 are screwed into both sides of the mounting frame 4 through bearings. A rotating rod 19 is screwed into one side of the mounting frame 4 through a bearing. The two ends of the rotating rod 19 are respectively connected to one end of the adjusting screws 18 on both sides through worm gear pairs. The middle end of the rotating rod 19 is connected to a rotating motor 20 through a worm gear pair. The rotating motor 20 is embedded and fixed in the mounting frame 4. Example 5:
[0028] See Figure 4-6 As shown, based on Embodiment 1, the reciprocating mechanism 12 includes: The belt conveyor 12-1 is embedded in the groove on the connecting plate 6. The conveyor belt of the belt conveyor 12-1 is fixed with a toggle block 12-2, and the toggle block 12-2 is fixedly connected to the mounting block 8. The drive bar 12-3 abuts against one side wall of the connecting plate 6. The actuating block 12-2 is movably disposed in the strip hole on the drive bar 12-3. Insert rods 12-4 are fixed on both sides of the bottom wall of the drive bar 12-3. There are two guide sleeves 12-5, which are welded and fixed to both sides of the top wall of the positioning plate 7 respectively. The lower end of the insertion rod 12-4 moves through the guide sleeve 12-5 and is inserted into the positioning plate 7.
[0029] When using this invention, according to the required installation position, start the rotating motor 20. The rotating motor 20 drives the rotating rod 19 to rotate via the bevel gear pair. The two ends of the rotating rod 19 drive the adjusting screws 18 on both sides to rotate via the worm gear pair. The adjusting screws 18 drive the sliding block 17 to move, and the sliding block 17 drives the connecting plate 6 to move until the connecting plate 6 moves to the appropriate position. Then start the adjusting motor 5-5. The adjusting motor 5-5 drives the adjusting rod 5-4 to rotate via the bevel gear pair. The adjusting rod 5-4 drives the linkage shaft 5 via the synchronous gear transmission assembly. -2 rotates, the linkage shaft 5-2 drives the adjusting gear 5-3 to rotate, the adjusting gear 5-3 drives the mounting bracket 4 to rotate, the mounting bracket 4 drives the connecting plate 6 to rotate to the appropriate position of the drying cylinder 25, then the belt conveyor 12-1 is started, the belt conveyor 12-1 drives the actuating block 12-2 to move, the actuating block 12-2 drives the mounting block 8 to move, and the actuating block 12-2 moves in the strip hole on the drive bar 12-3. When the actuating block 12-2 moves to one side of the belt conveyor 12-1, it drives the actuating block 12-2 to move up and down. 2. The drive bar 12-3 moves up and down, and the insert rod 12-4 on the lower side of the drive bar 12-3 moves up and down inside the guide sleeve 12-5. During the reciprocating movement, the mounting block 8 drives the nozzle 9 to reciprocate, thereby spraying the stripping agent during the reciprocating movement. When the mounting block 8 moves down, it abuts against the contact spring 16. At this time, under the elastic force of the connecting spring 10, the push rod 14 is kept in the original position until the push rod 14 abuts against the control switch 15, thereby closing the control valve on the spray head and making the spray head in a closed state. When the mounting block As the 8 continues to move downward, the guide rod 13 abuts against the connecting spring 10, so that the guide rod 13 passes through the connecting block 11 and is located on the lower side of the positioning plate (7), thus not affecting the extension and retraction of the connecting spring 10. When the mounting block 8 moves upward from the other side, the connecting spring 10 pushes the guide rod 13, so that the guide rod 13 remains in contact with the mounting block 8. When the guide rod 13 separates from the mounting block 8, the abutting spring 16 is stretched, thereby driving the push rod 14 to move downward and separate from the control switch 15, so that the nozzle 9 is through.
[0030] Compared with the prior art, the beneficial effects of this specific embodiment are as follows: 1. By combining the angle adjustment mechanism 5 with the lead screw and slider, the spatial position of the mounting bracket 4 and the connecting plate 6 can be precisely controlled, so that the nozzle 9 can flexibly adapt to the process requirements of different specifications of drying cylinder 25 and different spraying positions, and the versatility is significantly improved. 2. The unique reciprocating mechanism 12, which combines the belt conveyor 12-1 and the drive bar 12-3, can drive the nozzle 9 to reciprocate stably, ensuring that the stripping agent forms a uniform and dead-angle-free covering film on the surface of the drying cylinder 25, effectively improving the anti-sticking effect. 3. Through the linkage design of spring, guide rod 13 and control switch 15, nozzle 9 can automatically close when it moves to the non-working area, spraying only within the effective stroke, accurately controlling the amount used, avoiding waste of stripping agent, and saving production costs; 4. The design of the guide rod 13 and the connecting spring 10 enhances the stability of the moving parts. The arrangement of the collection box 23 and the guide plate 24 can effectively recover the splashed excess stripping agent, keep the working environment clean, and meet the requirements of environmentally friendly production.
[0031] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this invention should be included within the protection scope of this invention.
Claims
1. A flexible adjustable drying cylinder stripper spraying device, comprising a fixed frame (1), a drive motor (2), and a fixed plate (3), wherein the fixed frame (1) is U-shaped, the drying cylinder (25) is disposed inside the fixed frame (1), and the two sides of the drying cylinder (25) are respectively screwed to the fixed plate (3) by bearings, the fixed plate (3) is fixed on the top wall of the two side walls of the fixed frame (1), and the drive motor (2) is fixed on the vertical plate on one side of the fixed frame (1), the drive motor (2) is connected to one end of the drying cylinder (25) through a synchronous wheel transmission assembly; characterized in that, It also includes: Mounting frame (4), which is U-shaped, with vertical plates on both sides of the mounting frame (4) being movably inserted into the fixed plates (3) on both sides. The mounting frame (4) is connected to the fixed plates (3) through an angle adjustment mechanism (5). The connecting plate (6) is set in the mounting frame (4). A positioning plate (7) is fixed on one side of the connecting plate (6) adjacent to the side wall of the drying cylinder (25). An installation block (8) is suspended on the upper side of the positioning plate (7). Nozzle (9), the nozzle (9) is embedded and fixed on the mounting block (8), and the nozzle (9) is connected to an external pumping pump through a pipe; A connecting spring (10) is provided on the bottom wall of the mounting block (8). A connecting block (11) is fixed at the lower end of the connecting spring (10). The connecting block (11) is slidably provided in the groove on the upper side of the positioning plate (7). The reciprocating mechanism (12) is mounted on the connecting plate (6) and connected to the mounting block (8).
2. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: The connecting spring (10) is provided with a guide rod (13) inside. The lower end of the guide rod (13) passes through the connecting block (11) and is movably set in the strip groove on the positioning plate (7). The convex ring at the top of the guide rod (13) is fixedly connected to the connecting spring (10), and the top end of the guide rod (13) is connected to the bottom end of the mounting block (8).
3. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 2, characterized in that: A push rod (14) is fixed on the top of the guide rod (13). The push rod (14) is movably inserted into the mounting block (8). A control switch (15) is fixed on the inner top wall of the mounting block (8). The control switch (15) is connected to the control valve on the nozzle (9). A contact spring (16) is sleeved and fixed on the outside of the push rod (14). The lower end of the contact spring (16) is fixedly connected to the convex ring of the guide rod (13). The contact spring (16) is set in the cylindrical groove inside the mounting block (8). The upper end of the contact spring (16) is fixedly connected to the inner top wall of the cylindrical groove.
4. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: The angle adjustment mechanism (5) includes: Rotating shaft (5-1), there are two rotating shafts (5-1), and they are respectively inserted and fixed inside the mounting bracket (4) on one side inside the fixing plate (3). The rotating shaft (5-1) is screwed into the fixing plate (3) through bearings. A linkage shaft (5-2) is provided on the lower side of the rotating shaft (5-1). The linkage shaft (5-2) is screwed into the fixing plate (3) through bearings. Adjusting gear (5-3), there are two adjusting gears (5-3), and they are respectively sleeved and fixed on the linkage shaft (5-2). The adjusting gear (5-3) is engaged with the tooth groove at the bottom of the mounting bracket (4); The adjusting rod (5-4) is screwed into the horizontal plate of the fixed frame (1) by bearings. The two ends of the adjusting rod (5-4) are respectively connected to the linkage shafts (5-2) on both sides by synchronous wheel transmission assembly. The middle end of the adjusting rod (5-4) is connected to the adjusting motor (5-5) by bevel gear pair. The adjusting motor (5-5) is embedded and fixed in the horizontal plate of the fixed frame (1).
5. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: Sliding blocks (17) are fixed on both sides of the connecting plate (6). The sliding blocks (17) are slidably disposed in the grooves on both sides of the mounting frame (4). Adjusting screws (18) are screwed into the sliding blocks (17) by threads. The adjusting screws (18) are screwed into the two sides of the mounting frame (4) by bearings. A rotating rod (19) is screwed into one side of the mounting frame (4) by bearings. The two ends of the rotating rod (19) are respectively connected to one end of the adjusting screws (18) on both sides by worm gear pairs. The middle end of the rotating rod (19) is connected to a rotating motor (20) by worm gear pairs. The rotating motor (20) is embedded and fixed in the mounting frame (4).
6. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: The reciprocating mechanism (12) includes: The belt conveyor (12-1) is embedded in the groove on the connecting plate (6). A toggle block (12-2) is fixed on the conveyor belt of the belt conveyor (12-1). The toggle block (12-2) is fixedly connected to the mounting block (8). The drive bar (12-3) abuts against one side wall of the connecting plate (6), and the actuating block (12-2) is movably disposed in the strip hole on the drive bar (12-3). The two side walls of the bottom wall of the drive bar (12-3) are fixed with insert rods (12-4). There are two guide sleeves (12-5), which are fixed on both sides of the top wall of the positioning plate (7). The lower end of the insertion rod (12-4) moves through the guide sleeve (12-5) and is inserted into the positioning plate (7).
7. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: A protractor (21) is fixed on the side wall of the fixed plate (3) away from the drying cylinder (25). A pointer (22) is provided on one side of the protractor (21), and the pointer (22) is fixed on the outer wall of the mounting bracket (4).
8. The drying cylinder stripping agent spraying equipment with flexibly adjustable installation position according to claim 1, characterized in that: A collection box (23) is provided on the upper side of the horizontal plate of the fixed frame (1), and the collection box (23) is located on the lower side of the drying cylinder (25).
9. A drying cylinder stripping agent spraying device with flexibly adjustable installation position according to claim 8, characterized in that: The collection box (23) is provided with guide plates (24) on both sides above. The left and right sides of the guide plates (24) are respectively fixed to the vertical plates on both sides of the fixing frame (1). The upper side of the guide plates (24) is inclined to the outside.