Drying device for stainless steel strip processing line and method of use

The drying device, which combines extrusion scraping and suction, solves the problems of water stains on the surface of stainless steel strips and uneven drying in traditional methods, achieving a fast, uniform, and energy-saving drying effect.

CN119826522BActive Publication Date: 2026-03-27阳江宏旺实业有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing stainless steel strip processing, residual water stains on the surface after degreasing or pickling are difficult to remove effectively. Traditional drying methods are energy-intensive and result in uneven drying, which may scratch the surface.

Method used

The device employs a combination of an extrusion mechanism and a scraping component. Water stains are removed by extrusion through rubber rollers and scraping by sliding parts. Combined with a water absorption component and an air drying component, it achieves rapid and uniform drying.

Benefits of technology

It effectively removes water stains from the surface of steel strips, protects surface quality, reduces energy consumption, improves drying efficiency, and achieves uniform drying.

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Abstract

The present application relates to stainless steel strip processing equipment technical field, especially stainless steel strip processing line's drying device, including water pipe, extrusion mechanism, scraping assembly, water absorption assembly and air dry assembly etc., the bottom plate is provided with the water tank, the water pipe one end passes through the bottom plate and is communicated with the water tank, two side plates are provided with the extrusion mechanism for removing the water stain on the surface of the steel strip, two side plates are provided with the scraping assembly for drying the extrusion mechanism, the rear side of the extrusion mechanism is provided with the water absorption assembly for wiping the water stain on the surface of the steel strip, two side plates are provided with the air dry assembly for blowing dry steel strip. Through the cooperation of extrusion mechanism and scraping assembly, the rubber roller on the extrusion roller effectively extrudes the water stain on the surface of the steel strip, and the water flow above the steel strip is scraped and pushed to both sides through the sliding element, and the residual water stain on the surface of the rubber roller is scraped off by the arc scraper, so that the removal of the water stain on the surface of the steel strip is realized, and the purpose of protecting the surface quality of the steel strip is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of stainless steel strip processing equipment, in particular to a drying device of a stainless steel strip processing line and a use method thereof. BACKGROUND

[0002] Stainless steel strip is a high-quality metal material widely used in industrial fields. Due to its good corrosion resistance, high strength, heat resistance and aesthetic appearance, the main components of stainless steel strip include chromium, nickel and other elements, which endow stainless steel with excellent physical and chemical properties and are widely used in various fields.

[0003] During the production and processing of stainless steel strip, grease, cutting oil, adhering compounds and other lubricants may be attached to the surface. These impurities not only affect the appearance quality of the stainless steel strip, but also adversely affect the subsequent processing and use performance. Degreasing treatment is an important step to remove these impurities, which helps to improve the cleanliness and surface quality of the stainless steel strip. Pickling treatment is mainly used to remove the scale, rust and other impurities on the surface of stainless steel strip after high-temperature welding, heat treatment or hot processing, thereby improving the surface finish and subsequent processing performance of the material. After pickling, a layer of chromium-based oxide film is formed on the surface of the stainless steel strip, which can significantly improve the surface corrosion resistance of stainless steel products and prolong the service life of the equipment.

[0004] However, the existing treatment methods have some obvious shortcomings. After degreasing or pickling, water stains may remain on the surface of the stainless steel strip. If these water stains are not cleaned, they may rust or corrode the steel strip. Secondly, traditional drying methods such as hot air drying or using a scraper to remove water stains have some drawbacks. Hot air drying is fast but has high energy consumption, and for large-area stainless steel strip, drying uniformity is also a challenge. Using a scraper may scratch the surface of the stainless steel strip due to improper operation, affecting its appearance and performance. SUMMARY

[0005] In order to overcome the shortcomings of water stain drying, the present application provides a drying device of a stainless steel strip processing line and a use method thereof, which aims to solve the above-mentioned shortcomings.

[0006] The drying device for a stainless steel strip processing line includes a support base, a base plate, side plates, a top plate, and rollers. The base plate is connected to the top of the support base, and side plates are connected to the left and right sides of the base plate. The top of the two side plates is connected to the top plate. Rollers are rotatably connected between the front and rear ends of the two side plates. The device also includes a water pipe, a pressing mechanism, a scraping component, a water absorption component, and a drying component. The base plate is equipped with a water tank. One end of the water pipe passes through the base plate and connects to the water tank, while the other end passes through the support base and connects to an external container. A pressing mechanism for removing water stains from the surface of the steel strip is installed between the two side plates. The water stains removed by the pressing mechanism fall into the water tank and flow out through the water pipe. A scraping component for drying the pressing mechanism is installed between the two side plates. A water absorption component for wiping the water stains from the surface of the steel strip is installed behind the pressing mechanism. A drying component for blowing and drying the steel strip is installed between the two side plates.

[0007] Preferably, the extrusion mechanism includes a motor, a first pulley set, extrusion rollers, rubber rollers, a first gear set, and a stabilizing bushing. The motor is mounted on the outside of the side plate. The two ends of the two extrusion rollers are rotatably connected to the two side plates respectively. The part of the top extrusion roller that passes through the side plate is connected to the output shaft of the motor via the first pulley set. A rubber roller is fitted on the extrusion roller. One end of the two extrusion rollers is connected to the first gear set. The bottom of the top plate and the top of the bottom plate are connected to the stabilizing bushing. The two ends of the extrusion rollers are rotatably connected to the stabilizing bushing.

[0008] Preferably, the scraping assembly includes a reciprocating screw, a guide rod, a second pulley set, a sliding member, and a connecting member. The reciprocating screw is rotatably connected between two side plates, the guide rod is fixedly connected between two side plates, and a connecting member is connected to one end of the guide rod. The reciprocating screw passes through the side plate and is rotatably connected to the connecting member. The second pulley set is connected between this end of the reciprocating screw and the extrusion roller. The sliding member is slidably connected to the guide rod and is threadedly connected to the reciprocating screw. The sliding member is in contact with the upper surface of the steel strip.

[0009] Preferably, the water absorption assembly includes a third pulley set, a second gear set, and water absorption rollers. The two water absorption rollers are rotatably connected between the two side plates and are located behind the squeezing roller. The top water absorption roller is connected to the output shaft of the motor via the third pulley set, and the two water absorption rollers are connected via the second gear set.

[0010] Preferably, the air-drying assembly includes a wind box, a fan blade shaft, and a fourth pulley assembly. Both the top plate and the bottom plate are connected to the wind box. The top of the top wind box passes through the top plate, and the bottom of the bottom wind box passes through the bottom plate. Both ends of the fan blade shaft pass through the wind box and are rotatably connected between the two side plates. The top fan blade shaft is connected to the output shaft of the motor. The bottom fan blade shaft end is connected to the bottom water-absorbing roller via a fourth pulley assembly. Air inlets are provided on the left and right sides of the support base.

[0011] Preferably, it also includes an arc-shaped scraper, with the top of the bottom plate and the bottom of the top plate connected to the arc-shaped scraper, which contacts the surface of the rubber roller.

[0012] As preferred, a filter screen is further included, the filter screen being connected to the top of the top air bellow and the bottom of the bottom air bellow.

[0013] The method for using the drying device of the stainless steel strip processing line is specifically as follows:

[0014] S1, the steel strip passes between the two over rollers, the motor is turned on, the motor drives the extrusion roller, the water stains on the surface of the steel strip are extruded by the rubber roller, the water stains form water flow, and the water flow falls into the water tank and is collected after passing through the water pipe;

[0015] S2, the reciprocating wire rod rotates with the extrusion roller, drives the sliding member to move left and right, sweeps away the water flow above the steel plate, reduces the time of the water flow staying on the surface of the steel strip, and scrapes off the water stains on the surface of the rubber roller;

[0016] S3, the motor simultaneously drives the water absorption roller and the fan shaft, the water absorption roller absorbs the water on the surface of the steel strip, and the fan shaft accelerates the air circulation, so that the steel strip is dried and the evaporation of water on the water absorption roller is accelerated;

[0017] S4, after the steel strip passes through, the staff turns off the motor.

[0018] Compared with the prior art, the beneficial effects of the present application are:

[0019] 1. Through the cooperation of the extrusion mechanism and the scraping assembly, the rubber roller on the extrusion roller effectively extrudes the water stains on the surface of the steel strip, and the sliding member scrapes off the water flow above the steel strip and pushes it to both sides, and the arc scraping plate scrapes off the residual water stains on the surface of the rubber roller, so that the removal of the water stains on the surface of the steel strip is realized, and the purpose of protecting the surface quality of the steel strip is achieved.

[0020] 2. Through the synergistic effect of the water absorption assembly and the air drying assembly, the water absorption roller can absorb the residual water on the surface of the steel strip, and the fan shaft accelerates the air circulation to take away the water on the steel strip and the water absorption roller, effectively solving the problems of high energy consumption and uneven drying of hot air drying, realizing the rapid and uniform drying treatment of the steel strip, and finally achieving the purposes of energy saving and emission reduction and improving the drying efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0022] Figure 2 It is a sectional view of the side plate and the top plate of the present application.

[0023] Figure 3 It is an exploded view of part of the structure of the present application.

[0024] Figure 4 It is a schematic diagram of the connection relationship between the extrusion mechanism and the scraping assembly of the present application.

[0025] Figure 5 It is the connection relation diagram of first gear set, second pulley set and connecting piece of the application.

[0026] Figure 6 It is the connection relation diagram of air-drying assembly of the application.

[0027] Figure 7 It is the connection relation diagram of water-absorbing roller, air bellow and fan blade shaft of the application.

[0028] Figure 8 It is Figure 6 It is the enlarged view of A in the middle.

[0029] Mark explanation: 1 support seat, 11 bottom plate, 12 side plate, 13 top plate, 14 roller, 15 water tank, 16 water pipe, 2 extrusion mechanism, 21 motor, 22 first pulley set, 23 extrusion roller, 24 rubber roller, 25 first gear set, 26 stabilizing shaft sleeve, 3 scraping assembly, 31 reciprocating screw rod, 32 guide rod, 33 second pulley set, 34 sliding piece, 35 connecting piece, 36 arc scraping plate, 4 water-absorbing assembly, 41 third pulley set, 42 second gear set, 43 water-absorbing roller, 5 air-drying assembly, 51 air bellow, 52 fan blade shaft, 53 fourth pulley set, 54 air inlet, 55 filter screen. DETAILED DESCRIPTION

[0030] The following description is only the preferred embodiment of the application, and does not limit the protection scope of the application.

[0031] Embodiment: drying device of stainless steel belt processing line, such as Figures 1-8As shown, the system includes a support base 1, a base plate 11, side plates 12, a top plate 13, and rollers 14. The base plate 11 is connected to the top of the support base 1. Side plates 12 are connected to the left and right sides of the base plate 11. The top of the two side plates 12 is connected to the top plate 13. Four rollers 14 are rotatably connected between the front and rear ends of the two side plates 12, two at the front and two at the back, and the two rollers 14 are arranged vertically. The steel strip passes between the two rollers 14. The rotation speed of the rollers 14 matches the movement speed of the steel strip. The system also includes a water tank 15, a water pipe 16, a pressing mechanism 2, a scraping assembly 3, a water absorption assembly 4, and a drying assembly 5. The water tank 15 is located on the top of the base plate 11. One end of the water pipe 16 passes through the base plate 11 and connects to the water tank 15. The other end of the water pipe 16 passes through the support base 1 and connects to an external container. A pressing mechanism 2 for removing water stains from the surface of the steel strip is located between the two side plates 12. The pressing mechanism 2 is located above the water tank 15. The pressing mechanism 2 mainly... The device includes a motor 21 and a rubber roller 24. The motor 21 provides power, and the rubber roller 24 squeezes the steel strip and rotates in the direction the steel strip moves. The water stains removed by the squeezing mechanism 2 fall into the water tank 15 and flow out through the water pipe 16. A scraping component 3 for drying the squeezing mechanism 2 is provided between the two side plates 12. The scraping component 3 is located in front of the squeezing mechanism 2 and mainly includes a sliding member 34. The sliding member 34 can both sweep away accumulated water and scrape water stains on the surface of the rubber roller 24. A water-absorbing component 4 for wiping water stains on the surface of the steel strip is provided behind the squeezing mechanism 2. The water-absorbing component 4 mainly includes a water-absorbing roller 43. The water-absorbing roller 43 contacts the steel strip and absorbs the moisture on the surface of the steel strip. A drying component 5 for blowing and drying the steel strip is provided between the two side plates 12. The drying component 5 mainly includes a fan blade shaft 52. The fan blade shaft 52 is provided with multiple blades. When the fan blade shaft 52 rotates, it accelerates the air circulation and blows the moisture on the surface of the steel strip.

[0032] like Figure 4 and Figure 5 As shown, the extrusion mechanism 2 also includes a first pulley group 22, an extrusion roller 23, a first gear group 25, and a stabilizing bushing 26. A motor 21 is installed outside the side plate 12. The two ends of the two extrusion rollers 23 are rotatably connected to the two side plates 12 respectively. The part of the top extrusion roller 23 that passes through the side plate 12 is connected to the output shaft of the motor 21 by the first pulley group 22. A rubber roller 24 is sleeved on the extrusion roller 23. One end of the two extrusion rollers 23 is connected to the first gear group 25. The bottom of the top plate 13 and the top of the bottom plate 11 are connected to the stabilizing bushing 26. The two ends of the extrusion roller 23 are rotatably connected to the stabilizing bushing 26. It should be emphasized that the pulley group consists of two pulleys and a belt, and the gear group consists of two meshing identical gears. The same applies to the pulley group and gear group mentioned later. The two objects connected by the pulley group rotate in the same direction, and the two objects connected by the gear group rotate in opposite directions.

[0033] like Figure 4 and Figure 5As shown, the scraping assembly 3 further comprises a reciprocating wire rod 31, a guide rod 32, a second pulley set 33, a connecting piece 35 and an arc-shaped scraper 36, the reciprocating wire rod 31 is rotationally connected between the two side plates 12, the guide rod 32 is fixedly connected between the two side plates 12, the reciprocating wire rod 31 and the guide rod 32 are located at the front side of the extrusion roller 23, the guide rod 32 is connected with the connecting piece 35 at one end, the reciprocating wire rod 31 is rotationally connected in the connecting piece 35 through the side plate 12, and the reciprocating wire rod 31 is connected with the second pulley set 33 between this end and the extrusion roller 23, the sliding piece 34 is slidingly connected on the guide rod 32, the sliding piece 34 is threadedly connected with the reciprocating wire rod 31, the sliding piece 34 is in contact with the upper surface of the steel belt, the bottom surface of the sliding piece 34 is provided with a sponge or brush structure to reduce friction with the steel belt, the arc-shaped scraper 36 is connected at the top of the bottom plate 11 and the bottom of the top plate 13, and the two arc-shaped scrapers 36 are respectively in contact with the surfaces of the two rubber rollers 24.

[0034] As shown in Figures 6-8 , the water absorbing assembly 4 further comprises a third pulley set 41 and a second gear set 42, two water absorbing rollers 43 are rotationally connected between the two side plates 12 and located at the rear side of the extrusion roller 23, the third pulley set 41 is connected between the top water absorbing roller 43 and the output shaft of the motor 21, and the second gear set 42 is connected between the two water absorbing rollers 43.

[0035] As shown in Figures 6-8 , the air drying assembly 5 further comprises a bellows 51, a fourth pulley set 53 and a filter screen 55, the top plate 13 and the bottom plate 11 are both connected with the bellows 51, the top bellows 51 passes through the top plate 13 at the top, the bottom bellows 51 passes through the bottom plate 11 at the bottom, the fan shaft 52 passes through the bellows 51 at both ends and is rotationally connected between the two side plates 12, the top fan shaft 52 is connected with the output shaft of the motor 21, the fourth pulley set 53 is connected between the bottom fan shaft 52 and the bottom water absorbing roller 43, the support seat 1 is provided with an air inlet 54 at both sides, the top bellows 51 is connected with the filter screen 55 at the top, and the bottom bellows 51 is connected with the filter screen 55 at the bottom.

[0036] The worker connects the degreased and pickled steel strip with the drying device, the steel strip passes through the side-connected over rollers 14 in sequence, and the installation height between the side plates 12 is the same, which is used to maintain the flatness of the steel strip in the drying device. After the worker starts the motor 21, the rubber roller 24 of the extrusion mechanism 2 contacts the passing steel strip and extrudes the water stains on the forward side of the extrusion surface. With the extrusion of the rubber roller 24, the water stains stay in front of the rubber roller 24 and fall into the water tank 15 below, then flow into the collecting container through the water pipe 16. At this time, the reciprocating wire rod 31 rotates, the sliding piece 34 of the scraping assembly 3 moves left and right, and the water extruded by the rubber roller 24 is pushed to both sides, reducing the time of water staying on the steel strip. The steel strip moves backward, the motor 21 not only drives the fan blade shaft 52 of the air-drying assembly 5 to rotate, but also drives the water-absorbing roller 43 of the water-absorbing assembly 4 to rotate, further drying the steel strip. Finally, the dried steel strip leaves the drying device between the over rollers 14, and after all the steel strips are processed, the worker turns off the motor 21.

[0037] The motor 21 drives the top extrusion roller 23 to rotate through the first pulley set 22, and at the same time, the bottom extrusion roller 23 rotates in the same direction or opposite direction with the top extrusion roller 23 through the first gear set 25. The rubber roller 24 rotates with the extrusion roller 23, and the direction of the cutting rubber roller 24 is the same as the direction of the steel strip movement, and the linear speed of the rubber roller 24 is the same as the speed of the steel strip movement, so there is no sliding friction between the rubber roller 24 and the steel strip. The soft rubber roller 24 extrudes the steel strip, thereby preventing the water stains on the surface of the steel strip from passing through the rubber roller 24. The stable shaft sleeve 26 is used to stabilize the extrusion roller 23 during rotation, which is used to maintain the good extrusion effect of the rubber roller 24, thereby ensuring the cleaning effect of the water stains.

[0038] The reciprocating wire rod 31 driven by the second pulley set 33 makes the sliding piece 34 reciprocate left and right, and the sliding posture is limited by the guide rod 32. The bottom of the sliding piece 34 contacts the steel strip, thereby sweeping the water stains gathered when the rubber roller 24 extrudes the steel strip to the left and right sides, reducing the gathering of water stains, accelerating the flow of water stains into the water tank 15, and reducing the time of water stains staying on the surface of the steel strip. At the same time, the rubber roller 24 contacts the arc-shaped scraper 36, the top of the upper rubber roller 24 contacts the arc-shaped scraper 36, and the bottom of the lower rubber roller 24 contacts the arc-shaped scraper 36. The water remaining on the rubber roller 24 is scraped off to maintain the adhesion when extruding the steel strip, and the water stains are completely extruded out.

[0039] The motor 21 drives the upper water absorption roller 43 to rotate through the third pulley set 41. The water absorption roller 43 is made of soft and water-absorbing material such as sponge pad, which will not scratch the steel belt, and the rotating direction is the same as the moving direction of the steel belt, further reducing the damage to the steel belt. The two water absorption rollers 43 are driven by the second gear set 42, so that the rotating direction of the lower water absorption roller 43 is opposite to that of the upper water absorption roller 43. The steel belt passes between the two water absorption rollers 43, and the further drying of the steel belt is completed.

[0040] The motor 21 drives the fan shaft 52 to rotate, the rotating fan shaft 52 fans the air, accelerates the air circulation, the air at the top blows to the middle, and the upper end of the air bellow 51 is connected with the filter screen 55, which blocks impurities and foreign matters from entering the air bellow 51 and falling on the steel belt along the air bellow 51, ensuring the surface quality of the dried steel belt. Through the transmission of the third pulley set 41 and the second gear set 42 and the connection of the fourth pulley set 53, the lower end of the fan shaft 52 is driven to rotate. The air at the bottom enters the air bellow 51 from the air inlet 54 on the support seat 1, and also blows to the middle. While the air circulation carries away the water on the surface of the steel belt, it also carries away the water absorbed by the water absorption roller 43, thereby accelerating the evaporation of the water in the water absorption roller 43, ensuring the water absorption of the water absorption roller 43 and the drying effect of the steel belt.

[0041] The use method of the drying device of the stainless steel belt processing line is as follows:

[0042] S1, the steel belt passes between the two passing rollers 14, the motor 21 is turned on, the motor 21 drives the extrusion roller 23, the rubber roller 24 extrudes the water stains on the surface of the steel belt, the water stains form water flow, fall into the water tank 15, and are collected after passing through the water pipe 16;

[0043] S2, the reciprocating wire rod 31 rotates with the extrusion roller 23, drives the sliding part 34 to move left and right, sweeps away the water flow above the steel plate, reduces the time of the water flow staying on the surface of the steel belt, and the arc-shaped scraper 36 scrapes the water stains on the surface of the rubber roller 24;

[0044] S3, the motor 21 drives the water absorption roller 43 and the fan shaft 52 at the same time, the drying roller absorbs the water on the surface of the steel belt, and the fan shaft 52 accelerates the air circulation, which can accelerate the evaporation of the water on the water absorption roller 43 while drying the steel belt;

[0045] S4, after the steel belt completely passes, the staff turns off the motor 21.

[0046] The above is only the preferred embodiment of the present application. It should be pointed out that those skilled in the art can make several improvements and refinements without departing from the principles of the present application, and these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A drying device for a stainless steel strip processing line, characterized in that, The utility model provides a steel strip surface water spot removing device, including support seat (1), bottom plate (11), side plate (12), top plate (13) and pass roller (14), support seat (1) top is connected with bottom plate (11), and bottom plate (11) left and right sides are connected with side plate (12), and the top of two side plates (12) is jointly connected with top plate (13), and the front and rear ends of two side plates (12) are rotatably connected with pass roller (14), still include water pipe (16), extrusion mechanism (2), scraping assembly (3), water absorption subassembly (4) and air dry subassembly (5), and bottom plate (11) is provided with water tank (15), and water pipe (16) one end passes through bottom plate (11) and communicates with water tank (15), and water pipe (16) other end passes through support seat (1) and communicates with external container, and the extrusion mechanism (2) for removing steel strip surface water spot is arranged between two side plates (12), and the water spot removed by extrusion mechanism (2) falls into water tank (15) and flows out through water pipe (16), and the scraping assembly (3) for drying extrusion mechanism (2) is arranged between two side plates (12), and the water absorption subassembly (4) for wiping steel strip surface water spot is arranged at the rear side of extrusion mechanism (2), and the air dry subassembly (5) for blowing dry steel strip is arranged between two side plates (12), and extrusion mechanism (2) includes motor (21), first belt pulley group (22), extrusion roller (23), rubber roller (24), first gear set (25) and stabilizing shaft sleeve (26), and motor (21) is installed outside side plate (12), and two extrusion rollers (23) two ends are rotatably connected with two side plates (12) respectively, and the top extrusion roller (23) passes through the part between the output shaft of motor (21) and side plate (12) and is connected with first belt pulley group (22), and rubber roller (24) is sleeved on extrusion roller (23), and one end of two extrusion rollers (23) is connected with first gear set (25), and the bottom of top plate (13) and the top of bottom plate (11) are connected with stabilizing shaft sleeve (26), and the two ends of extrusion roller (23) are rotatably connected in stabilizing shaft sleeve (26), and scraping assembly (3) includes reciprocating screw rod (31), guide rod (32), second belt pulley group (33), sliding part (34) and connecting piece (35), and reciprocating screw rod (31) is rotatably connected between two side plates (12), and guide rod (32) is fixedly connected between two side plates (12), and one end of guide rod (32) is connected with connecting piece (35), and reciprocating screw rod (31) is rotatably connected in connecting piece (35) through side plate (12), and one end of reciprocating screw rod (31) and extrusion roller (23) are connected with second belt pulley group (33), and sliding part (34) is slidably connected on guide rod (32), and sliding part (34) is threadedly connected with reciprocating screw rod (31), and sliding part (34) is in contact with the upper surface of steel strip, still include cambered surface scraper (36), and the top of bottom plate (11) and the bottom of top plate (13) are connected with cambered surface scraper (36), and cambered surface scraper (36) is in contact with the surface of rubber roller (24).

2. The drying device of a stainless steel strip processing line according to claim 1, characterized in that, The water absorption assembly (4) comprises a third belt wheel set (41), a second gear set (42) and two water absorption rollers (43), the two water absorption rollers (43) are rotationally connected between the two side plates (12) and located at the rear side of the pressing roller (23), the top water absorption roller (43) is connected with the output shaft of the motor (21) through the third belt wheel set (41), and the second gear set (42) is connected between the two water absorption rollers (43).

3. The drying device of a stainless steel strip processing line according to claim 2, characterized in that, The air drying assembly (5) comprises a wind box (51), a fan shaft (52) and a fourth belt wheel set (53), the top plate (13) and the bottom plate (11) are both connected with the wind box (51), the top wind box (51) penetrates through the top plate (13) at the top, the bottom wind box (51) penetrates through the bottom plate (11) at the bottom, the fan shaft (52) penetrates through the wind box (51) at both ends and is rotationally connected between the two side plates (12), the top fan shaft (52) is connected with the output shaft of the motor (21), and the fourth belt wheel set (53) is connected between the bottom fan shaft (52) and the bottom water absorption roller (43), and the air inlet (54) is arranged on the left and right sides of the support seat (1).

4. The drying device of a stainless steel strip processing line according to claim 3, characterized in that, The filter screen (55) is arranged on the top of the top wind box (51) and the bottom of the bottom wind box (51).

5. The use method of the drying device of the stainless steel belt processing line according to claim 4, and the specific operation steps are as follows: S1, the steel belt passes between the two pressing rollers (14), the motor (21) is turned on, the motor (21) drives the pressing roller (23), the rubber roller (24) squeezes the water stains on the surface of the steel belt, the water stains form water flow, fall into the water tank (15), and are collected after passing through the water pipe (16); S2, the reciprocating wire rod (31) rotates with the pressing roller (23), drives the sliding piece (34) to move left and right, sweeps away the water flow above the steel belt, reduces the time of the water flow staying on the surface of the steel belt, and scrapes off the water stains on the surface of the rubber roller (24); S3, the motor (21) drives the water absorption roller (43) and the fan shaft (52) at the same time, the water absorption roller (43) absorbs the moisture on the surface of the steel belt, the fan shaft (52) accelerates the air circulation, and the steel belt is dried at the same time, and the evaporation of the moisture on the water absorption roller (43) is also accelerated; S4, after the steel belt passes through, the staff turns off the motor (21).

Citation Information

Patent Citations

  • Steel band drying device

    CN207945906U

  • Cleaning and drying machine for steel belt machining

    CN222257475U