Aluminum strip surface moisture drying device
By designing a surface moisture drying device for aluminum strips, and using a combination of water absorption, extrusion and air drying, the problems of low air drying efficiency and water stain residue on the surface of aluminum strips were solved, and rapid drying of the aluminum strip surface was achieved.
Patent Information
- Application Number
- CN202423147366.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing technologies for drying aluminum strip surfaces are inefficient and easily leave water stains.
A device for drying the surface moisture of aluminum strip is designed, including an upper water absorption component, a lower water absorption component, an upper extrusion component, a lower extrusion component, and an air drying component. The device achieves synchronous operation through a drive component, and combines water absorption, extrusion, and air drying operations to quickly remove moisture from the surface of the aluminum strip.
It improves the efficiency of moisture removal from the aluminum strip surface, avoids water stains, and achieves rapid drying of the aluminum strip surface.
Smart Images

Figure CN223755724U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to aluminium strip processing technical field especially aluminium strip surface moisture drying device. BACKGROUND
[0002] In the aluminium strip processing, in order to ensure that the aluminium strip surface is clean, the aluminium strip surface needs to be cleaned first, and the impurities on the aluminium strip surface are effectively removed, so that the aluminium strip surface does not carry pollutants during the processing process, thereby providing a better surface quality and improving the processing quality of the aluminium strip.
[0003] After the aluminium strip is cleaned, water droplets are usually attached to the surface, and the existing technology usually uses a drying device to dry the surface of the aluminium strip. However, the drying method alone is inefficient and can easily leave water stains on the surface of the aluminium strip. Therefore, a drying device is needed to solve the above problems. SUMMARY
[0004] To solve the problem that the existing technology usually uses a drying device to dry the surface of the aluminium strip, but the drying method alone is inefficient and can easily leave water stains on the surface of the aluminium strip, a kind of aluminium strip surface moisture drying device is invented.
[0005] The technical scheme of the utility model is characterized by comprising two side plates arranged on both sides of the aluminium strip, wherein the bottom of the two side plates is connected with supporting legs, the top of the two side plates is connected with a top plate, the side plate above the aluminium strip is connected with an upper water absorption assembly, the side plate is connected with an upper extrusion assembly for extruding and draining water from the upper water absorption assembly, the side plate below the aluminium strip is connected with a lower water absorption assembly, the side plate is connected with a lower extrusion assembly for extruding and draining water from the lower water absorption assembly, the side plate is connected with a driving assembly connected with the upper water absorption assembly, the upper extrusion assembly, the lower water absorption assembly and the lower extrusion assembly, so that the driving assembly drives the upper water absorption assembly, the upper extrusion assembly, the lower water absorption assembly and the lower extrusion assembly to rotate simultaneously, and the top plate and the side plate are connected with a drying assembly extending to the upper and lower end faces of the aluminium strip for rapid drying of the aluminium strip.
[0006] Preferably, the upper water absorption assembly comprises a plurality of first bearings, a first rotating shaft, upper rotating rollers and an upper water absorption cotton belt, the plurality of first bearings are connected in a triangular shape on the side plate, one end of the first rotating shaft is connected in interference in the first bearing, the other end is connected with the upper rotating roller, the upper water absorption cotton belt is sleeved outside the plurality of upper rotating rollers, and the upper water absorption cotton belt is in contact with the upper surface of the aluminium strip.
[0007] Preferably, the upper extrusion assembly comprises a second bearing, a third bearing, a second rotating shaft, a third rotating shaft, a first extrusion roller, a second extrusion roller and an upper water receiving box, the second bearing and the third bearing are connected to the side plate, one end of the second rotating shaft and the third rotating shaft is connected to the second bearing and the third bearing respectively in interference fit, the other end of the second rotating shaft and the third rotating shaft is connected to the first extrusion roller and the second extrusion roller respectively, the upper water absorbing cotton band is located between the first extrusion roller and the second extrusion roller, and the distance between the first extrusion roller and the second extrusion roller is less than the thickness of the upper water absorbing cotton band, the upper water receiving box is connected to the side plate below the first extrusion roller and the second extrusion roller through an upper connecting rod, and the upper water receiving box is communicated with an upper drain pipe.
[0008] Preferably, the lower water absorbing assembly comprises a plurality of fourth bearings, a fourth rotating shaft, a lower rotating roller and a lower water absorbing cotton band, the plurality of fourth bearings are connected to the side plate in a triangular shape, one end of the fourth rotating shaft is connected to the fourth bearing in interference fit, and the other end of the fourth rotating shaft is connected to the lower rotating roller, the lower water absorbing cotton band is sleeved outside the plurality of lower rotating rollers, and the lower water absorbing cotton band is in contact with the lower surface of the aluminum band.
[0009] Preferably, the lower extrusion assembly comprises a fifth bearing, a sixth bearing, a fifth rotating shaft, a sixth rotating shaft, a third extrusion roller, a fourth extrusion roller and a lower water receiving box, the fifth bearing and the sixth bearing are connected to the side plate, one end of the fifth rotating shaft and the sixth rotating shaft is connected to the fifth bearing and the sixth bearing respectively in interference fit, the other end of the fifth rotating shaft and the sixth rotating shaft is connected to the third extrusion roller and the fourth extrusion roller respectively, the lower water absorbing cotton band is located between the third extrusion roller and the fourth extrusion roller, and the distance between the third extrusion roller and the fourth extrusion roller is less than the thickness of the lower water absorbing cotton band, the lower water receiving box is connected to the side plate below the third extrusion roller and the fourth extrusion roller through a lower connecting rod, and the lower water receiving box is communicated with a lower drain pipe.
[0010] Preferably, the driving assembly comprises a driving motor, a first transmission wheel, a second transmission wheel, a first transmission belt, a third transmission wheel, a fourth transmission wheel, a second transmission belt, a fifth transmission wheel, a sixth transmission wheel, a third transmission belt, a seventh transmission wheel, an eighth transmission wheel, a fourth transmission belt, a ninth transmission wheel, a tenth transmission wheel and a fifth transmission belt, the driving motor is connected to the side plate, the output shaft of the driving motor is connected to one of the first rotating shafts, the first rotating shafts penetrate through the side plate and are connected to the first transmission wheel and the third transmission wheel, the fourth rotating shaft penetrates through the side plate and is connected to the second transmission wheel and the seventh transmission wheel, the first transmission belt is connected to the first transmission wheel and the second transmission wheel, the third rotating shaft penetrates through the side plate and is connected to the fourth transmission wheel and the fifth transmission wheel, the second transmission belt is connected to the third transmission wheel and the fourth transmission wheel, the second rotating shaft penetrates through the side plate and is connected to the sixth transmission wheel, the third transmission belt is connected to the fifth transmission wheel and the sixth transmission wheel, the fifth rotating shaft penetrates through the side plate and is connected to the eighth transmission wheel and the ninth transmission wheel, the fourth transmission belt is connected to the seventh transmission wheel and the eighth transmission wheel, the sixth rotating shaft penetrates through the side plate and is connected to the tenth transmission wheel, and the fifth transmission belt is connected to the ninth transmission wheel and the tenth transmission wheel.
[0011] Preferably, the drying assembly comprises a hot dry air generator, a wind conveying pipe, upper fixing rods, an upper shunt pipe, upper air jets, a communication pipe, lower fixing rods, a lower shunt pipe and lower air jets, the hot dry air generator is connected to the top plate, one end of each of the upper fixing rods is connected to the top plate, the other end of each of the upper fixing rods is connected to an upper buckle, the upper shunt pipe is clamped in the upper buckles, the wind conveying pipe is in communication with the upper shunt pipe, the upper air jets are inclined and connected to the upper shunt pipe in plurality, and the upper air jets are in communication with the upper shunt pipe, one end of each of the lower fixing rods is connected to the side plate, the other end of each of the lower fixing rods is connected to a lower buckle, the lower shunt pipe is clamped in the lower buckles, the upper shunt pipe and the lower shunt pipe are in communication through the communication pipe, and the lower air jets are inclined and connected to the lower shunt pipe in plurality, and the lower air jets are in communication with the lower shunt pipe.
[0012] The technical scheme of the aluminum strip surface moisture drying device has wide application prospect in the field of aluminum strip processing technology. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a front view of the aluminum strip surface moisture drying device.
[0014] Figure 2 It is a front view of the aluminum strip surface moisture drying device. Figure 1 It is a front view of the aluminum strip surface moisture drying device.
[0015] Figure 3 It is a front view of the aluminum strip surface moisture drying device. Figure 1 It is a front view of the aluminum strip surface moisture drying device.
[0016] Figure 4 It is a front view of the aluminum strip surface moisture drying device.
[0017] Wherein, 1, aluminum strip, 2, side plate, 3, top plate, 4, first bearing, 5, first rotating shaft, 6, upper rotating roller, 7, upper water absorbing cotton belt, 8, fourth bearing, 9, fourth rotating shaft, 10, lower rotating roller, 11, lower water absorbing cotton belt, 12, driving motor, 13, first transmission wheel, 14, second transmission wheel, 15, first transmission belt, 16, second bearing, 17, second rotating shaft, 18, first extruding roller, 19, third bearing, 20, third rotating shaft, 21, second extruding roller, 22, upper connecting rod, 23, upper water receiving box, 24, upper drain pipe, 25, fifth bearing, 26, fifth rotating shaft, 27, third extruding roller, 29, sixth bearing, 30, sixth rotating shaft, 31, fourth extruding roller, 32, lower connecting rod, 33, lower water receiving box, 34, lower drain pipe, 35, third transmission wheel, 36, fourth transmission wheel, 37, second transmission belt, 38, fifth transmission wheel, 39, sixth transmission wheel, 40, third transmission belt, 41, seventh transmission wheel, 42, eighth transmission wheel, 43, fourth transmission belt, 44, ninth transmission wheel, 45, tenth transmission wheel, 46, fifth transmission belt, 47, hot dry air generator, 48, air conveying pipe, 49, upper fixing rod, 50, upper buckle, 51, upper shunt pipe, 52, upper air jet head, 53, lower fixing rod, 54, lower buckle, 55, lower shunt pipe, 56, lower air jet head, 57, communication pipe. DETAILED DESCRIPTION
[0018] The technical solutions of the embodiments of the utility model will be described clearly and completely in combination with the drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope protected by the utility model. In the description of the utility model, it should be explained that the orientation or position relation indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is the orientation or position relation based on the drawings shown, and is only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.
[0019] In addition, the terms "first", "second", "third" are only for descriptive purpose, and cannot be understood as indicating or implying relative importance. In the description of the utility model, it is to be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection" should be understood in a broad sense. For example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium; it can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.
[0020] The embodiment of the application discloses an aluminum strip surface moisture drying device. Figure 1 , Figure 4 Two side plates 2 are arranged on the both sides of the aluminum strip 1, the bottom of the two side plates 2 is detachably fixedly connected with supporting legs through bolts, so that the supporting legs are connected together with the side plates 2, and then the two side plates 2 are stably stood on the ground through the supporting legs where the aluminum strip 1 passes. The top of the two side plates 2 is detachably fixedly connected with a top plate 3 through bolts, so that the top of the two side plates 2 is connected together through the top plate 3, forming a whole, and the stability of the two side plates 2 can be increased, so that the two side plates 2 and the top plate 3 can be stably arranged on the both sides and above the aluminum strip 1.
[0021] Referring to Figure 1 , Figure 4 The side plate 2 above the aluminum strip 1 is connected with an upper water absorption assembly for absorbing water droplets on the upper surface of the aluminum strip 1, so that the water droplets on the upper surface of the aluminum strip 1 can be absorbed through the upper water absorption assembly, the water residue on the upper surface of the aluminum strip 1 is reduced, the drying efficiency of the upper surface of the aluminum strip 1 can be improved, and water stains can be effectively avoided after moisture drying. The upper water absorption assembly comprises a plurality of first bearings 5, a first rotating shaft 5, an upper rotating roller 6 and an upper water absorption cotton belt 7, the plurality of first bearings 5 are detachably fixedly connected on the side plate 2 in a triangular shape, and the end faces of two first bearings 5 are parallel to the upper surface of the aluminum strip 1, so that the plurality of first rotating shafts 5 are connected together with the side plate 2. One end of the first rotating shaft 5 is connected in the first bearing 5 in interference, and the other end is welded or detachably fixedly connected with the upper rotating roller 6 through bolts, so that the upper rotating roller 6 is connected together with the side plate 2 through the first rotating shaft 5 and the first bearing 5, and the rotation of the upper rotating roller 6 relative to the side plate 2 is not affected through the first rotating shaft 5 and the first bearing 5. The upper water absorption cotton belt 7 is sleeved outside the plurality of upper rotating rollers 6, and the upper water absorption cotton belt 7 is in contact with the upper surface of the aluminum strip 1, so that the upper rotating roller 6 drives the upper water absorption cotton belt 7 to rotate, thereby continuously absorbing the water droplets on the upper surface of the aluminum strip 1, reducing the water residue on the upper surface of the aluminum strip 1, improving the drying efficiency of the upper surface of the aluminum strip 1, and avoiding that the water droplets on the aluminum strip 1 are too large, and water stains are left on the upper surface of the aluminum strip 1 after subsequent drying.
[0022] Referring to Figure 1 , Figure 4 , the upper extrusion assembly is connected to the side plate 2 to extrude water from the upper water absorption assembly, so that water in the upper water absorption cotton belt 7 after water absorption can be extruded and discharged through the upper extrusion assembly, ensuring the water content of the subsequent upper water absorption cotton belt 7, so that the water droplets on the aluminum strip 1 can be more fully absorbed. The upper extrusion assembly includes a second bearing 16, a third bearing 19, a second rotating shaft 17, a third rotating shaft 20, a first extrusion roller 18, a second extrusion roller 21 and an upper water receiving box 23. The second bearing 16 and the third bearing 19 are detachably fixedly connected to the side plate 2 by bolts, so that the second bearing 16 and the third bearing 19 are connected together with the side plate 2 to form an integral whole. One end of the second rotating shaft 17 and the third rotating shaft 20 is respectively connected in the second bearing 16 and the third bearing 19, and the other end is respectively welded or detachably fixedly connected with the first extrusion roller 18 and the second extrusion roller 21 by bolts, so that the first extrusion roller 18 is connected together with the side plate 2 through the second bearing 16 and the second rotating shaft 17, and the second extrusion roller 21 is connected together with the side plate 2 through the third bearing 19 and the third rotating shaft 20, and the second bearing 16 and the second rotating shaft 17 do not affect the rotation of the first extrusion roller 18 relative to the side plate 2, and the third bearing 19 and the third rotating shaft 20 do not affect the rotation of the second extrusion roller 21 relative to the side plate 2. The upper water absorption cotton belt 7 is located between the first extrusion roller 18 and the second extrusion roller 21, and the distance between the first extrusion roller 18 and the second extrusion roller 21 is less than the thickness of the upper water absorption cotton belt 7, so that when the upper water absorption cotton belt 7 passes through the first extrusion roller 18 and the second extrusion roller 21, the water absorbed by the upper water absorption cotton belt 7 can be extruded and discharged, realizing the reduction of the water content of the upper water absorption cotton belt 7 after passing through the first extrusion roller 18 and the second extrusion roller 21, thereby facilitating the continuous large amount of absorption of the water droplets on the upper surface of the aluminum strip 1 by the upper water absorption cotton belt 7. The upper water receiving box 23 is connected to the side plate 2 below the first extrusion roller 18 and the second extrusion roller 21 through the upper connecting rod 22, so that the upper water receiving box 23 is connected together with the side plate 2 through the upper connecting rod 22, and then the water extruded and discharged by the first extrusion roller 18 and the second extrusion roller 21 from the upper water absorption cotton belt 7 is received by the upper water receiving box 23, avoiding the falling of the discharged water onto the aluminum strip 1, affecting the removal of water from the upper surface of the aluminum strip 1. The upper water receiving box 23 is communicated with an upper drain pipe 24, so that the water in the upper water receiving box 23 can be discharged through the upper drain pipe 24, avoiding the overflow of the water in the upper water receiving box 23 falling onto the aluminum strip 1.
[0023] Referring to Figure 1 , Figure 4The lower water absorption assembly is connected to the side plate 2 below the aluminum strip 1, and can absorb water droplets on the lower surface of the aluminum strip 1, reduce the water residue on the lower surface of the aluminum strip 1, improve the drying efficiency of the lower surface of the aluminum strip 1, and effectively avoid water stains after drying. The lower water absorption assembly comprises a plurality of fourth bearings 8, a fourth rotating shaft 9, a lower rotating roller 10 and a lower water absorption cotton belt 11. The plurality of fourth bearings 8 are triangularly and detachably fixed to the side plate 2 by bolts, and the end faces of two fourth bearings 8 are parallel to the lower surface of the aluminum strip 1, so that the plurality of fourth rotating shafts 9 are connected together with the side plate 2. One end of the fourth rotating shaft 9 is connected in the fourth bearing 8, and the other end is welded or detachably fixed to the lower rotating roller 10 by bolts, so that the lower rotating roller 10 is connected to the side plate 2 through the fourth rotating shaft 9 and the fourth bearing 8, and the fourth rotating shaft 9 and the fourth bearing 8 do not affect the rotation of the lower rotating roller 10 relative to the side plate 2. The lower water absorption cotton belt 11 is sleeved outside the plurality of lower rotating rollers 10, and the lower water absorption cotton belt 11 is in contact with the lower surface of the aluminum strip 1, so that the lower rotating roller 10 drives the lower water absorption cotton belt 11 to rotate, thereby continuously absorbing water droplets on the lower surface of the aluminum strip 1, reducing the water residue on the lower surface of the aluminum strip 1, improving the drying efficiency of the lower surface of the aluminum strip 1, and avoiding too large water droplets on the aluminum strip 1, which will cause water stains on the lower surface of the aluminum strip 1 after subsequent drying.
[0024] Referring to Figure 1 , Figure 4The lower extrusion assembly connected to the side plate 2 extrudes water from the lower water absorption assembly, so that the water in the lower water absorption cotton belt 11 after water absorption can be extruded and discharged through the lower extrusion assembly, ensuring the water content of the subsequent lower water absorption cotton belt 11, so that the water droplets on the aluminum strip 1 can be more fully absorbed. The lower extrusion assembly includes a fifth bearing 25, a sixth bearing 29, a fifth rotating shaft 26, a sixth rotating shaft 30, a third extrusion roller 27, a fourth extrusion roller 31 and a lower water receiving box 33. The fifth bearing 25 and the sixth bearing 29 are detachably fixedly connected to the side plate 2 by bolts, so that the fifth bearing 25 and the sixth bearing 29 are connected together with the side plate 2 to form a whole. One end of the fifth rotating shaft 26 is connected in the fifth bearing 25, one end of the sixth rotating shaft 30 is connected in the sixth bearing 29, and the other end of the fifth rotating shaft 26 and the sixth rotating shaft 30 are respectively welded or detachably fixedly connected with the third extrusion roller 27 and the fourth extrusion roller 31, so that the third extrusion roller 27 is connected together with the side plate 2 through the fifth bearing 25 and the fifth rotating shaft 26, the fourth extrusion roller 31 is connected together with the side plate 2 through the sixth bearing 29 and the sixth rotating shaft 30, and the fifth bearing 25 and the fifth rotating shaft 26 do not affect the rotation of the third extrusion roller 27 relative to the side plate 2, and the sixth bearing 29 and the sixth rotating shaft 30 do not affect the rotation of the fourth extrusion roller 31 relative to the side plate 2. The lower water absorption cotton belt 11 is located between the third extrusion roller 27 and the fourth extrusion roller 31, and the distance between the third extrusion roller 27 and the fourth extrusion roller 31 is less than the thickness of the lower water absorption cotton belt 11, so that when the lower water absorption cotton belt 11 passes through the third extrusion roller 27 and the fourth extrusion roller 31, the water absorbed by the lower water absorption cotton belt 11 can be extruded and discharged, realizing the reduction of the water content of the lower water absorption cotton belt 11 after passing through the third extrusion roller 27 and the fourth extrusion roller 31, thereby facilitating the lower water absorption cotton belt 11 to continue to absorb a large amount of water droplets on the lower surface of the aluminum strip 1. The lower water receiving box 33 is connected to the side plate 2 below the third extrusion roller 27 and the fourth extrusion roller 31 through a lower connecting rod 32, so that the lower water receiving box 33 is connected together with the side plate 2 through the lower connecting rod 32, and then receives the water extruded and discharged by the third extrusion roller 27 and the fourth extrusion roller 31 from the lower water absorption cotton belt 11 through the lower water receiving box 33, avoiding the discharged water from falling to the ground below the aluminum strip 1, affecting the working environment. The lower water receiving box 33 is communicated with a lower drain pipe 34, so that the water in the lower water receiving box 33 can be discharged through the lower drain pipe 34, avoiding the water in the lower water receiving box 33 from overflowing and falling to the ground, damaging the working environment.
[0025] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4The side plate 2 is connected with a driving assembly connected with the upper water absorbing assembly, the upper extrusion assembly, the lower water absorbing assembly and the lower extrusion assembly, so that the upper water absorbing assembly, the upper extrusion assembly, the lower water absorbing assembly and the lower extrusion assembly are driven to rotate at the same time by the driving assembly, thereby realizing continuous absorption of water on the upper and lower end faces of the aluminum strip 1 and realizing continuous water absorption operation of the aluminum strip 1. The driving assembly comprises a driving motor 12, a first transmission wheel 13, a second transmission wheel 14, a first transmission belt 15, a third transmission wheel 35, a fourth transmission wheel 36, a second transmission belt 37, a fifth transmission wheel 38, a sixth transmission wheel 39, a third transmission belt 40, a seventh transmission wheel 41, an eighth transmission wheel 42, a fourth transmission belt 43, a ninth transmission wheel 44, a tenth transmission wheel 45 and a fifth transmission belt 46. The driving motor 12 is detachably fixedly connected to the side plate 2 by bolts, so that the driving motor 12 is connected together with the side plate 2, and the side plate 2 supports and limits the driving motor 12. The output shaft of the driving motor 12 is detachably fixedly connected to one of the first rotating shafts 5 through a shaft coupling, so that the driving motor 12 is electrified and works, and the output shaft drives the first rotating shaft 5 connected thereto to rotate, and further drives the upper water absorbing cotton belt 7 and the other upper rotating rollers 6 to rotate. The first rotating shaft 5 penetrates through the side plate 2 and is detachably fixedly connected to the first transmission wheel 13 and the third transmission wheel 35 by bolts, so that the first rotating shaft 5, the first transmission wheel 13 and the third transmission wheel 35 are connected together and rotate at the same time. The fourth rotating shaft 9 penetrates through the side plate 2 and is detachably fixedly connected to the second transmission wheel 14 and the seventh transmission wheel 41 by bolts, so that the fourth rotating shaft 9, the second transmission wheel 14 and the seventh transmission wheel 41 are connected together and rotate at the same time. The first transmission belt 15 is connected to the first transmission wheel 13 and the second transmission wheel 14, so that the driving motor 12 drives the first rotating shaft 5 to rotate, the first rotating shaft 5 drives the first transmission wheel 13 and the third transmission wheel 35 to rotate, and further drives the second transmission wheel 14 and the fourth rotating shaft 9, the seventh transmission wheel 41 to rotate through the first transmission belt 15, thereby realizing simultaneous rotation of the upper water absorbing assembly and the lower water absorbing assembly. The third rotating shaft 20 penetrates through the side plate 2 and is detachably fixedly connected to the fourth transmission wheel 36 and the fifth transmission wheel 38 by bolts, so that the third rotating shaft 20, the fourth transmission wheel 36 and the fifth transmission wheel 38 are connected together and rotate at the same time. The second transmission belt 37 is connected to the third transmission wheel 35 and the fourth transmission wheel 36, so that the driving motor 12 drives the first rotating shaft 5 to rotate, the first rotating shaft 5 drives the third transmission wheel 35 to rotate, the third transmission wheel 35 drives the fourth transmission wheel 36 to rotate through the second transmission belt 37, thereby realizing rotation of the third rotating shaft 20, and the third rotating shaft 20 drives the second extrusion roller 21 to rotate. The second rotating shaft 17 penetrates through the side plate 2 and is detachably fixedly connected to the sixth transmission wheel 39 by bolts, so that the second rotating shaft 17 and the sixth transmission wheel 39 are connected together and rotate at the same time.The third transmission belt 40 is connected with the fifth transmission wheel 38 and the sixth transmission wheel 39, so that the fifth transmission wheel 38 rotates through the third transmission belt 40 to drive the sixth transmission wheel 39 to rotate, the sixth transmission wheel 39 drives the second rotating shaft 17 to rotate, and the second rotating shaft 17 drives the first extrusion roller 18 to rotate, so as to realize the rotation of the first extrusion roller 18 and the second extrusion roller 21 at the same time, and realize the extrusion and drainage of the upper water-absorbing cotton belt 7. The fifth rotating shaft 26 penetrates through the side plate 2 and is detachably fixedly connected with the eighth transmission wheel 42 and the ninth transmission wheel 44 through bolts, so that the fifth rotating shaft 26 is connected with the eighth transmission wheel 42 and the ninth transmission wheel 44 together to realize the rotation at the same time. The fourth transmission belt 43 is connected with the seventh transmission wheel 41 and the eighth transmission wheel 42, so that the seventh transmission wheel 41 rotates through the fourth transmission belt 43 to drive the eighth transmission wheel 42 to rotate, and then the fourth rotating shaft 9 and the fifth rotating shaft 26 rotate at the same time, and then the third extrusion roller 27 rotates through the rotation of the fifth rotating shaft 26. The sixth rotating shaft 30 penetrates through the side plate 2 and is detachably fixedly connected with the tenth transmission wheel 45 through bolts, so that the sixth rotating shaft 30 is connected with the tenth transmission wheel 45 together to realize the rotation at the same time. The fifth transmission belt 46 is connected with the ninth transmission wheel 44 and the tenth transmission wheel 45, so that the ninth transmission wheel 44 rotates through the fifth transmission belt 46 to drive the tenth transmission wheel 45 to rotate, so as to realize the rotation of the fifth rotating shaft 26 and the sixth rotating shaft 30 at the same time, and then realize the rotation of the third extrusion roller 27 and the fourth extrusion roller 31 at the same time, and realize the extrusion and drainage of the lower water-absorbing cotton belt 11.
[0026] Referring to Figure 1 , Figure 4The wind-drying assembly for extending to the upper and lower end faces of the aluminum strip 1 is connected on the top plate 3 and the side plate 2 to quickly dry the aluminum strip 1, so that the hot dry wind is discharged to the upper and lower end faces of the aluminum strip 1 through the wind-drying assembly, and the drying efficiency of the upper and lower end faces of the aluminum strip 1 is improved. The drying assembly comprises a hot dry wind generator 47, a wind conveying pipe 48, upper fixing rods 49, an upper shunt pipe 51, an upper jet head 52, a communication pipe 57, lower fixing rods 53, a lower shunt pipe 55 and a lower jet head 56. The hot dry wind generator 47 is detachably fixed on the top plate 3 by bolts, so that the hot dry wind generator 47 is connected with the top plate 3. One end of the upper fixing rod 49 is detachably fixed on the top plate 3 by bolts, and the other end is welded or detachably fixed with an upper buckle 50 by bolts, so that the upper buckle 50 is connected with the top plate 3 through the upper fixing rod 49. The upper shunt pipe 51 is clamped in the upper buckle 50, so that the upper shunt pipe 51 is connected with the upper fixing rod 49 through the upper buckle 50, and then connected with the top plate 3. The wind conveying pipe 48 is in communication with the upper shunt pipe 51, so that the hot dry wind generated by the hot dry wind generator 47 is conveyed into the upper shunt pipe 51 through the wind conveying pipe 48. The upper jet head 52 is inclined and connected to the upper shunt pipe 51, and the upper jet head 52 is in communication with the upper shunt pipe 51, so that the hot dry wind conveyed into the upper shunt pipe 51 is sprayed onto the upper surface of the aluminum strip 1 through the upper jet head 52, thereby improving the drying efficiency of the aluminum strip 1, and the inclined upper jet head 52 can quickly convey the evaporated water vapor on the upper surface of the aluminum strip 1. One end of the lower fixing rod 53 is detachably fixed on the side plate 2 by bolts, and the other end is welded or detachably fixed with a lower buckle 54 by bolts, so that the lower buckle 54 is connected with the top plate 3 through the lower fixing rod 53. The lower shunt pipe 55 is clamped in the lower buckle 54, so that the lower shunt pipe 55 is connected with the lower fixing rod 53 through the lower buckle 54, thereby being connected with the top plate 3. The upper shunt pipe 51 and the lower shunt pipe 55 are in communication through the communication pipe 57, so that the hot dry wind in the upper shunt pipe 51 is conveyed into the lower shunt pipe 55 through the communication pipe 57. The lower jet head 56 is inclined and connected to the lower shunt pipe 55, and the lower jet head 56 is in communication with the lower shunt pipe 55, so that the hot dry wind conveyed into the lower shunt pipe 55 is sprayed onto the lower surface of the aluminum strip 1 through the lower jet head 56, thereby improving the drying efficiency of the aluminum strip 1, and the inclined lower jet head 56 can quickly convey the evaporated water vapor on the lower surface of the aluminum strip 1.
[0027] In use, firstly, the aluminum strip 1 is passed between the upper water absorbing cotton belt 7 and the lower water absorbing cotton belt 11, and between the upper air jet head and the lower air jet head, then the driving motor 12 and the hot dry air generator 47 are powered on, the driving motor 12 drives the first rotating shaft 5 to rotate, the first rotating shaft 5 drives all the first rotating shafts 5 and the upper rotating roller 6 to rotate through the upper water absorbing cotton belt 7, and drives the driving assembly to work, the driving assembly drives the upper pressing assembly, the lower water absorbing assembly and the lower pressing assembly to work and rotate, so that the water on the upper and lower surfaces of the aluminum strip 1 is absorbed, at the same time, the water in the upper water absorbing cotton belt 7 and the lower water absorbing cotton belt 11 is pressed out into the upper water receiving box 23 and the lower water receiving box 33 by the upper pressing assembly and the lower pressing assembly, and is then discharged through the upper drain pipe 24 and the lower drain pipe 34 respectively, the hot dry air generator 47 is powered on to generate hot dry air, which is delivered into the upper shunt pipe 51 through the air delivery pipe 48, and then delivered into the lower shunt pipe 55 through the communication pipe 57, so that the upper air jet head 52 and the lower air jet head 56 respectively spray hot dry air to the upper and lower surfaces of the aluminum strip 1, further improve the drying efficiency of the aluminum strip 1, and effectively avoid water stains on the aluminum strip 1.
[0028] In the above embodiments, the device elements are conventional device elements unless otherwise specified, and the structure setting mode, working mode or control mode are conventional setting mode, working mode or control mode unless otherwise specified.
[0029] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as limiting the scope of the application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. An apparatus for drying moisture on the surface of an aluminum strip, comprising two side plates (2) arranged on both sides of the aluminum strip (1), characterized in that, The bottom of the two side plates (2) is connected with support legs, the top of the two side plates (2) is connected with a top plate (3), the side plate (2) above the aluminum strip (1) is connected with an upper water absorption assembly for absorbing water droplets on the upper surface of the aluminum strip (1), the side plate (2) is connected with an upper extrusion assembly for extruding and draining water of the upper water absorption assembly, the side plate (2) below the aluminum strip (1) is connected with a lower water absorption assembly for absorbing water droplets on the lower surface of the aluminum strip (1), the side plate (2) is connected with a lower extrusion assembly for extruding and draining water of the lower water absorption assembly, the side plate (2) is connected with a driving assembly connected with the upper water absorption assembly, the upper extrusion assembly, the lower water absorption assembly and the lower extrusion assembly, so that the upper water absorption assembly, the upper extrusion assembly, the lower water absorption assembly and the lower extrusion assembly are driven to rotate simultaneously by the driving assembly, and the top plate (3) and the side plate (2) are connected with a quick air-drying assembly extending to the upper and lower end surfaces of the aluminum strip (1) for quickly air-drying the aluminum strip (1).
2. The apparatus according to claim 1, wherein The upper water absorption assembly comprises a plurality of first bearings (4), a first rotating shaft (5), upper rotating rollers (6) and an upper water absorption cotton belt (7), the plurality of first bearings (4) are connected in a triangular shape on the side plate (2), one end of the first rotating shaft (5) is connected in an interference fit in the first bearing (4), and the other end is connected with the upper rotating roller (6), and the upper water absorption cotton belt (7) is sleeved outside the plurality of upper rotating rollers (6), and the upper water absorption cotton belt (7) is in contact with the upper surface of the aluminum strip (1).
3. The apparatus according to claim 2, wherein The upper extrusion assembly comprises a second bearing (16), a third bearing (19), a second rotating shaft (17), a third rotating shaft (20), a first extrusion roller (18), a second extrusion roller (21) and an upper water collecting box (23), the second bearing (16) and the third bearing (19) are connected on the side plate (2), one end of the second rotating shaft (17) and the third rotating shaft (20) is connected in an interference fit in the second bearing (16) and the third bearing (19) respectively, and the other end is connected with the first extrusion roller (18) and the second extrusion roller (21) respectively, the upper water absorption cotton belt (7) is located between the first extrusion roller (18) and the second extrusion roller (21), and the distance between the first extrusion roller (18) and the second extrusion roller (21) is less than the thickness of the upper water absorption cotton belt (7), the upper water collecting box (23) is connected on the side plate (2) below the first extrusion roller (18) and the second extrusion roller (21) through an upper connecting rod (22), and the upper water collecting box (23) is communicated with an upper drain pipe (24).
4. The apparatus according to claim 3, wherein The lower water absorption assembly comprises a plurality of fourth bearings (8), a fourth rotating shaft (9), lower rotating rollers (10) and a lower water absorption cotton belt (11), the plurality of fourth bearings (8) are connected in a triangular shape on the side plate (2), one end of the fourth rotating shaft (9) is connected in an interference fit in the fourth bearing (8), and the other end is connected with the lower rotating roller (10), and the lower water absorption cotton belt (11) is sleeved outside the plurality of lower rotating rollers (10), and the lower water absorption cotton belt (11) is in contact with the lower surface of the aluminum strip (1).
5. The apparatus according to claim 4, wherein The lower extrusion assembly comprises a fifth bearing (25), a sixth bearing (29), a fifth rotating shaft (26), a sixth rotating shaft (30), a third extrusion roller (27), a fourth extrusion roller (31) and a lower water receiving box (33), the fifth bearing (25) and the sixth bearing (29) are connected to the side plate (2), one end of the fifth rotating shaft (26) and the sixth rotating shaft (30) is connected to the fifth bearing (25) and the sixth bearing (29) respectively, the other end is connected to the third extrusion roller (27) and the fourth extrusion roller (31) respectively, the lower water absorbing cotton belt (11) is located between the third extrusion roller (27) and the fourth extrusion roller (31), and the distance between the third extrusion roller (27) and the fourth extrusion roller (31) is less than the thickness of the lower water absorbing cotton belt (11), the lower water receiving box (33) is connected to the side plate (2) below the third extrusion roller (27) and the fourth extrusion roller (31) through a lower connecting rod (32), and the lower water receiving box (33) is communicated with a lower drain pipe (34).
6. The apparatus according to claim 5, wherein The driving assembly comprises a driving motor (12), a first transmission wheel (13), a second transmission wheel (14), a first transmission belt (15), a third transmission wheel (35), a fourth transmission wheel (36), a second transmission belt (37), a fifth transmission wheel (38), a sixth transmission wheel (39), a third transmission belt (40), a seventh transmission wheel (41), an eighth transmission wheel (42), a fourth transmission belt (43), a ninth transmission wheel (44), a tenth transmission wheel (45) and a fifth transmission belt (46), the driving motor (12) is connected to the side plate (2), the output shaft of the driving motor (12) is connected to one of the first rotating shafts (5), the first rotating shaft (5) penetrates the side plate (2) and is connected to the first transmission wheel (13) and the third transmission wheel (35), the fourth rotating shaft (9) penetrates the side plate (2) and is connected to the second transmission wheel (14) and the seventh transmission wheel (41), the first transmission belt (15) is connected to the first transmission wheel (13) and the second transmission wheel (14), the third rotating shaft (20) penetrates the side plate (2) and is connected to the fourth transmission wheel (36) and the fifth transmission wheel (38), the second transmission belt (37) is connected to the third transmission wheel (35) and the fourth transmission wheel (36), the second rotating shaft (17) penetrates the side plate (2) and is connected to the sixth transmission wheel (39), the third transmission belt (40) is connected to the fifth transmission wheel (38) and the sixth transmission wheel (39), the fifth rotating shaft (26) penetrates the side plate (2) and is connected to the eighth transmission wheel (42) and the ninth transmission wheel (44), the fourth transmission belt (43) is connected to the seventh transmission wheel (41) and the eighth transmission wheel (42), the sixth rotating shaft (30) penetrates the side plate (2) and is connected to the tenth transmission wheel (45), and the fifth transmission belt (46) is connected to the ninth transmission wheel (44) and the tenth transmission wheel (45).
7. The apparatus according to claim 1, wherein The air-drying assembly comprises a hot dry air generator (47), a wind delivery pipe (48), upper fixing rods (49), upper shunt pipes (51), upper air jets (52), communication pipes (57), lower fixing rods (53), lower shunt pipes (55) and lower air jets (56), the hot dry air generator (47) is connected to the top plate (3), one end of each of the upper fixing rods (49) is connected to the top plate (3), the other end of each of the upper fixing rods (49) is connected to an upper buckle (50), the upper shunt pipes (51) are clamped in the upper buckles (50), the wind delivery pipe (48) is in communication with the upper shunt pipes (51), the upper air jets (52) are inclined and connected to the upper shunt pipes (51), the upper air jets (52) are in communication with the upper shunt pipes (51), one end of each of the lower fixing rods (53) is connected to the side plate (2), the other end of each of the lower fixing rods (53) is connected to a lower buckle (54), the lower shunt pipes (55) are clamped in the lower buckles (54), the upper shunt pipes (51) and the lower shunt pipes (55) are in communication through the communication pipes (57), and the lower air jets (56) are inclined and connected to the lower shunt pipes (55), the lower air jets (56) are in communication with the lower shunt pipes (55).