Nanocrystalline ribbon drying device

By improving the structural design of the nanocrystalline ribbon drying device and combining it with hydraulic cylinders, linkage rods and hot air flow supply, uniform drying and convenient placement of the nanocrystalline ribbon are achieved, solving the problem of inconvenient placement in the existing technology.

CN223361027UActive Publication Date: 2025-09-19ANHUI JINNUO TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422685830.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-19
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The existing nanocrystalline ribbon drying device is inconvenient in the process of taking and placing, especially because the discharge tray and the cover plate are fixed, which makes the nanocrystalline ribbon inconvenient to take and place.

Method used

The structure design includes a base frame, a top frame, a cylinder and a cover plate. The cover plate is driven to be combined with the cylinder by a hydraulic cylinder. The linkage rod cooperates with the vertical slot. Combined with the hot air supply component and the drive component, the uniform drying of the nanocrystalline ribbon is achieved. The stability and convenience of the device are ensured by the locking rod and the breathable retaining ring.

Benefits of technology

The uniform drying effect of the nanocrystalline ribbon is achieved, and the convenience of taking and placing and the stability of the device are improved, thereby solving the problem of inconvenient taking and placing of the nanocrystalline ribbon in the prior art.

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Abstract

The utility model discloses a nanocrystalline ribbon drying device which comprises a bottom frame, a top frame, a barrel and a cover plate, and a lifting assembly used for vertically lifting the cover plate is integrated on the top of the top frame. According to the device, the driving piece drives the driving wheel to rotate, the driving wheel is meshed with the driven gear to drive the rotating rod to rotate, the rotating rod drives the multiple sets of air outlets to conduct axial position switching, meanwhile, the rotating rod drives the linkage rod through cooperation of the vertical groove and the linkage rod, and the stirring rod at the bottom of the linkage rod stirs the nanocrystalline ribbon; according to the nanocrystalline ribbon drying device, the discharging disc is arranged, so that nanocrystalline ribbons in all areas of the discharging disc can make uniform contact with hot air flow, the drying effect of the nanocrystalline ribbons is guaranteed, after a hydraulic cylinder pulls a cover plate to be separated from a barrel subsequently, the discharging disc and a linkage rod are both separated from a rotating rod, and at the moment, the discharging disc can be disassembled and assembled by correspondingly separating a fixing rod; therefore, the convenience of taking and placing the nanocrystalline ribbon is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of nano material drying, in particular to a nano crystal ribbon drying device. Background Art

[0002] The nanocrystalline ribbon drying device is a device used to dry the nanocrystalline ribbon, mainly used to remove moisture or other liquids that may be contaminated by the nanocrystalline ribbon during the production process.

[0003] Chinese patent publication number CN218410558U, publication date 20230131, discloses a new drying device for nanomaterial production, including a fixed frame, the upper surface of the fixed frame is provided with a discharge lifting assembly, the side of the discharge lifting assembly is provided with a drying box, one side of the drying box is provided with a limiting assembly, the inner wall of the drying box is fixedly installed with a drying element, the top surface of the drying box is movably installed with a heat preservation cover, the top surface of the heat preservation cover is fixedly installed with a first motor, the output end of the first motor is fixedly installed with a rotating rod, the inner wall of the drying box is provided with a drying assembly, the drying assembly includes a limiting sleeve movably installed on the outer wall of the rotating rod and a discharge tray fixedly installed on the outer wall of the limiting sleeve, and the discharge tray is arranged in three groups.

[0004] Existing nanomaterial drying devices such as the above-mentioned one are achieved by vertically fixing multiple sets of discharge trays on the bottom of the cover plate, and setting multiple sets of stirring mechanisms to stir the nanomaterials on the discharge trays accordingly to ensure uniform heating. In the specific process, it is inconvenient to disassemble and assemble the discharge trays and the cover plate. Therefore, even if the cover plate is subsequently lifted to separate the discharge tray from the cylinder, the removal and placement of the nanocrystalline ribbon still depends on the fixed state of the discharge tray and the cover plate. The overall volume of the nanocrystalline ribbon is relatively small, which makes it inconvenient to remove and place the nanocrystalline ribbon. Therefore, it is urgent to propose a corresponding nanocrystalline ribbon drying device to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to solve the above problems and to propose a nanocrystalline ribbon drying device.

[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0007] A nanocrystalline ribbon drying device comprises a base frame, a top frame, a cylinder and a cover plate, the top of the top frame is integrated with a lifting assembly for vertically lifting the cover plate, the bottom of the cover plate is fixedly connected to a plurality of vertically distributed discharge trays, the tops of the plurality of discharge trays are fixedly connected to air-permeable retaining rings, a rotating rod rotatably connected to the bottom of the cylinder is passed through the middle of the plurality of discharge trays, the outer wall of the rotating rod is fixedly connected to a plurality of air outlets, the outer wall of the rotating rod is transmission-connected with a linkage rod, and the cylinder is integrated with a driving assembly for axially driving the rotating rod and a hot air flow supply assembly.

[0008] Preferably, the outer wall of the open end of the linkage rod is engaged with the outer wall of the rotating rod through a vertical groove, the top of the linkage rod is screwed with a locking rod, and the locking rod is screwed with the top of the breathable retaining ring through a screw hole.

[0009] Preferably, vertical bars are fixedly connected to the bottom of the cover plate, and the vertical bars are fixedly connected to multiple groups of discharge trays through multiple groups of fixing rods.

[0010] Preferably, the hot air flow supply assembly includes an air pump and a heating box fixedly connected to the cylinder and the base frame respectively, the output end of the air pump is connected to the inner cavity of the rotating rod through a conduit, and the conduit is rotatably connected to the bottom of the rotating rod.

[0011] Preferably, the driving assembly includes a driving member fixedly connected to the bottom of the cylinder, the output end of the driving member is fixedly connected to a driving wheel, and the outer wall of the bottom of the rotating rod is fixedly connected to a driven gear meshing with the driving wheel.

[0012] Preferably, the lifting assembly includes a hydraulic cylinder fixedly connected to the top of the top frame, the output end of the hydraulic cylinder is fixedly connected to the top of the cover plate, and the top of the cover plate is fixedly connected to a sliding sleeve slidably connected to the top frame.

[0013] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0014] After the cover plate is separated from the cylinder by the hydraulic cylinder, the discharge tray and the linkage rod are separated from the rotating rod. At this time, the corresponding separation fixed rod can realize the disassembly and assembly of the discharge tray, thereby improving the convenience of taking and placing the nanocrystalline ribbon.

[0015] 2. In this application, the function of the breathable retaining ring is to prevent the nanocrystalline ribbon from falling without affecting the conduction of the hot air flow. Before taking out the discharge tray, rotate the locking rod to engage with the top of the breathable retaining ring so that the linkage rod is fixed in the designated area of ​​the discharge tray to ensure that during subsequent drying operations, the linkage rod can be stably combined with the vertical groove, thereby ensuring the stability of the use of the nanocrystalline ribbon drying device. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Shows a schematic diagram of the overall structure provided according to an embodiment of the utility model;

[0017] Figure 2 A schematic diagram of the driving wheel structure provided according to an embodiment of the present utility model is shown;

[0018] Figure 3 A schematic diagram of a vertical bar structure provided according to an embodiment of the present utility model is shown;

[0019] Figure 4 A schematic diagram of the linkage rod structure provided according to an embodiment of the utility model is shown.

[0020] Legend:

[0021] 1. Base frame; 2. Top frame; 3. Cylinder; 4. Cover plate; 5. Sliding sleeve; 6. Hydraulic cylinder; 7. Heating box; 8. Air pump; 9. Rotating rod; 10. Driven gear; 11. Driving member; 12. Driving wheel; 13. Vertical bar; 14. Fixed rod; 15. Discharge tray; 16. Linkage rod; 17. Breathable retaining ring; 18. Locking rod; 19. Vertical slot; 20. Air outlet. DETAILED DESCRIPTION

[0022] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] See also Figure 1-4 , the utility model provides a technical solution:

[0024] A nanocrystalline ribbon drying device includes a bottom frame 1, a top frame 2, a cylinder 3 and a cover plate 4. The top of the top frame 2 is integrated with a lifting assembly for vertically lifting the cover plate 4. The bottom of the cover plate 4 is fixedly connected to multiple groups of vertically distributed discharge trays 15. The tops of the multiple groups of discharge trays 15 are all fixedly connected to a breathable retaining ring 17. A rotating rod 9 rotatably connected to the bottom of the cylinder 3 is passed through the middle of the multiple groups of discharge trays 15. The outer wall of the rotating rod 9 is fixedly connected to multiple groups of air outlets 20. The outer wall of the rotating rod 9 is transmission-connected to a linkage rod 16. The cylinder 3 is integrated with a drive assembly for axially driving the rotating rod 9 and a hot air flow supply assembly;

[0025] After the nanocrystalline ribbon is laid on the discharge tray 15, the cover plate 4 is driven to be combined with the cylinder 3 by the hydraulic cylinder 6, and the open end of the linkage rod 16 is connected to the vertical groove 19. Subsequently, the hot air flow generated by the heating box 7 is introduced into the interior of the rotating rod 9 by the air pump 8. The hot air flow is correspondingly introduced into the multiple groups of discharge trays 15 through multiple groups of air outlets 20. At the same time, the driving member 11 drives the driving wheel 12 to rotate, and the driving wheel 12 drives the rotating rod 9 to rotate by engaging with the driven gear 10, and the rotating rod 9 drives the multiple groups of air outlets 20 to switch the axial position. At the same time, the rotating rod 9 drives the linkage rod 16 through the cooperation of the vertical slot 19 and the linkage rod 16, and the stirring rod at the bottom of the linkage rod 16 stirs the nanocrystalline ribbon so that the nanocrystalline ribbons in each area of ​​the discharge tray 15 can be evenly exposed to the hot air flow, ensuring the drying effect of the nanocrystalline ribbon. Subsequently, after the hydraulic cylinder 6 pulls the cover plate 4 to separate from the cylinder 3, the discharge tray 15 and the linkage rod 16 are separated from the rotating rod 9. At this time, the corresponding separation fixing rod 14 can realize the disassembly and assembly of the discharge tray 15, thereby improving the convenience of taking and placing the nanocrystalline ribbons.

[0026] Specifically, such as Figure 2 and Figure 4 As shown, the outer wall of the open end of the linkage rod 16 is engaged with the outer wall of the rotating rod 9 through the vertical groove 19, and the top of the linkage rod 16 is screwed with a locking rod 18, and the locking rod 18 is screwed with the top of the breathable retaining ring 17 through a screw hole. The function of the breathable retaining ring 17 is to prevent the nanocrystalline ribbon from falling without affecting the conduction of the hot air flow. Before taking out the discharge tray 15, the locking rod 18 is rotated to engage with the top of the breathable retaining ring 17, so that the linkage rod 16 is fixed in the designated area of ​​the discharge tray 15 to ensure that the linkage rod 16 can be stably combined with the vertical groove 19 during subsequent drying operations, thereby ensuring the stability of the nanocrystalline ribbon drying device.

[0027] Specifically, such as Figure 2 and Figure 3As shown, the bottom of the cover plate 4 is fixedly connected with a vertical bar 13, and the vertical bar 13 is fixedly connected to the multiple groups of discharge trays 15 through multiple groups of fixing rods 14, ensuring the convenience of disassembly and assembly of the discharge tray 15. The hot air flow supply component includes an air pump 8 and a heating box 7 fixedly connected to the cylinder 3 and the base frame 1 respectively. The output end of the air pump 8 is communicated with the inner cavity of the rotating rod 9 through a conduit, and the conduit is rotatably connected to the bottom of the rotating rod 9. The heating box 7 here cooperates with the air pump 8 to supply heat using the existing technology. The main body is a constant temperature heating pipe inside the heating box 7. The driving component includes a driving member 11 fixedly connected to the bottom of the cylinder 3. The driving member 11 drives the heating member 11. The output end of the moving part 11 is fixedly connected to the driving wheel 12, and the outer wall of the bottom of the rotating rod 9 is fixedly connected to the driven gear 10 meshing with the driving wheel 12. The driving part 11 drives the driving wheel 12 to rotate, and the driving wheel 12 drives the rotating rod 9 to rotate by meshing with the driven gear 10. The rotating rod 9 and the conduit and the bottom of the cylinder 3 are all rotated together through sealed deep groove bearings. The lifting assembly includes a hydraulic cylinder 6 fixedly connected to the top of the top frame 2, and the output end of the hydraulic cylinder 6 is fixedly connected to the top of the cover plate 4. The top of the cover plate 4 is fixedly connected to a sliding sleeve 5 slidably connected to the top frame 2, so as to realize vertical lifting of the cover plate 4.

[0028] Working principle: After the nanocrystalline ribbon is laid on the discharge tray 15, the hydraulic cylinder 6 drives the cover plate 4 to be combined with the cylinder 3, and the open end of the linkage rod 16 is combined with the vertical slot 19. Subsequently, the hot air flow generated by the heating box 7 is introduced into the rotating rod 9 through the air pump 8. The hot air flow is correspondingly introduced into the multiple groups of discharge trays 15 through multiple groups of air outlets 20. At the same time, the driving member 11 drives the driving wheel 12 to rotate, and the driving wheel 12 drives the rotating rod 9 to rotate by engaging with the driven gear 10. While the rotating rod 9 drives the multiple groups of air outlets 20 to switch their axial positions, the rotating rod 9 drives the linkage rod 16 through the vertical slot 19 and the linkage rod 16. The stirring rod at the bottom of the linkage rod 16 stirs the nanocrystalline ribbon, so that the nanocrystalline ribbon in each area of ​​the discharge tray 15 is stirred. The nanocrystalline ribbon can be evenly exposed to the hot air flow, ensuring the drying effect of the nanocrystalline ribbon. Subsequently, after the cover plate 4 is pulled apart from the cylinder 3 by the hydraulic cylinder 6, the discharge tray 15 and the linkage rod 16 are separated from the rotating rod 9. At this time, the corresponding separation fixing rod 14 can realize the disassembly and assembly of the discharge tray 15, thereby improving the convenience of taking and placing the nanocrystalline ribbon. The function of the breathable retaining ring 17 is to prevent the nanocrystalline ribbon from falling without affecting the conduction of the hot air flow. Before taking out the discharge tray 15, rotate the locking rod 18 to make it engage with the top of the breathable retaining ring 17, so that the linkage rod 16 is fixed in the designated area of ​​the discharge tray 15 to ensure that during subsequent drying operations, the linkage rod 16 can be stably combined with the vertical groove 19, thereby ensuring the stability of the use of the nanocrystalline ribbon drying device.

[0029] The above description of the embodiments is intended to enable those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A nanocrystalline ribbon drying device, comprising a bottom frame (1), a top frame (2), a cylinder (3) and a cover plate (4), wherein a pulling component for vertically pulling the cover plate (4) is integrated on the top of the top frame (2), characterized in that: The bottom of the cover plate (4) is fixedly connected to a plurality of vertically distributed discharge trays (15), and the tops of the plurality of discharge trays (15) are fixedly connected to a breathable retaining ring (17). A rotating rod (9) rotatably connected to the bottom of the cylinder (3) is passed through the middle of the plurality of discharge trays (15). The outer wall of the rotating rod (9) is fixedly connected to a plurality of air outlets (20), and the outer wall of the rotating rod (9) is transmission-connected to a linkage rod (16). The cylinder (3) is integrated with a driving component for axially driving the rotating rod (9) and a hot air flow supply component.

2. The nanocrystal ribbon drying device according to claim 1, characterized in that: The outer wall of the open end of the linkage rod (16) is engaged with the outer wall of the rotating rod (9) through a vertical groove (19), and the top of the linkage rod (16) is screwed with a locking rod (18), and the locking rod (18) is screwed with the top of the breathable retaining ring (17) through a screw hole.

3. The nanocrystal ribbon drying device according to claim 2, characterized in that: The bottom of the cover plate (4) is fixedly connected with a vertical bar (13), and the vertical bar (13) is fixedly connected to the plurality of discharge trays (15) through a plurality of fixed rods (14).

4. The nanocrystal ribbon drying device according to claim 3, characterized in that: The hot air flow supply assembly comprises an air guide pump (8) and a heating box (7) fixedly connected to the cylinder (3) and the base frame (1) respectively. The output end of the air guide pump (8) is connected to the inner cavity of the rotating rod (9) through a conduit, and the conduit is rotatably connected to the bottom of the rotating rod (9).

5. The nanocrystal ribbon drying device according to claim 4, characterized in that: The driving assembly comprises a driving member (11) fixedly connected to the bottom of the cylinder (3); an output end of the driving member (11) is fixedly connected to a driving wheel (12); and a driven gear (10) meshingly connected to the driving wheel (12) is fixedly connected to the outer wall of the bottom of the rotating rod (9).

6. The nanocrystal ribbon drying device according to claim 5, characterized in that: The lifting assembly comprises a hydraulic cylinder (6) fixedly connected to the top of the top frame (2), an output end of the hydraulic cylinder (6) fixedly connected to the top of the cover plate (4), and a sliding sleeve (5) fixedly connected to the top of the cover plate (4) in a sliding connection with the top frame (2).