Hemp fiber storage device

By designing a storage mechanism with a reeling method, the problems of height operation and moisture and heat accumulation in the storage of hemp fibers are solved, efficient and safe fiber storage and processing are achieved, and storage efficiency and quality are improved.

CN120607158APending Publication Date: 2025-09-09RUNAN COUNTY MINGQING HEMP PRODUCTS CO LTD
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Patent Information

Application Number
CN202510987608.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

Existing methods for storing hemp fibers pose safety risks by requiring frequent high-altitude operations, and the direct stacking method easily causes moisture and heat accumulation in the fibers, affecting product quality.

Method used

A storage mechanism with a winding method is designed, which uses a conveyor belt and a reel in conjunction with a motor to realize the winding and storage of hemp fibers. Combined with heating wire drying and electromagnetic iron bar impurity removal, the dividing parts are used for segmentation and extrusion to improve storage efficiency and quality.

Benefits of technology

It eliminates the need for height-based operations, has a large storage capacity, and high space utilization, making it possible to place more equipment in a limited space, and improve fiber processing effects through drying and impurity removal functions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fiber storage, in particular to a bast fiber storage device which comprises a storage platform, a first storage box and a second storage box. Storage mechanisms of the same structure are arranged in the first storage box and the second storage box. A station partition plate is arranged between the first storage box and the second storage box, and the space, located between the first storage box and the second storage box, of the storage platform is divided into a feeding station and a discharging station through the station partition plate. A movable notch is formed in the bottom of the station partition plate, and a conveying belt is movably connected into the movable notch. By designing the storage mechanism in a winding mode, winding storage of bast fiber is achieved, compared with a traditional stacked partition plate storage mode, climbing operation of a user is not needed, the storage amount is far larger than the stacking storage amount of the partition plates, and the storage efficiency is greatly improved. And the storage device is small in size and low in space occupancy rate, and more storage devices can be placed in a limited factory.
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Description

Technical Field

[0001] The present invention relates to the technical field of fiber storage, in particular to a hemp fiber storage device. Background Art

[0002] The conventional storage method for hemp fiber raw materials is usually a direct stacking method, where large quantities of bundled hemp fiber raw materials are directly piled up in a closed warehouse. The warehouse has multiple rows of partitions in the upper and lower directions, and the hemp fiber raw materials are placed on the partitions. Due to the distribution of the multiple layers of partitions, the fiber storage height is relatively high. When stacking one layer, users often need to use tools such as ladders to place the fibers. This has a significant impact on the user's work efficiency, and frequent high-altitude operations pose certain safety risks. At the same time, the direct stacking method easily causes moisture and heat to accumulate in the middle of the hemp fiber, which has a certain impact on the quality of subsequent hemp fiber product processing.

[0003] Therefore, a hemp fiber storage device is proposed. Summary of the Invention

[0004] The purpose of the present invention is to provide a hemp fiber storage device. The present application realizes the winding and storage of hemp fibers by designing a winding storage mechanism. Compared with the traditional stacked partition storage method, the present application does not require the user to climb up, and the storage capacity is much larger than the storage capacity of the stacked partitions. In addition, the present application is small in size and has a low space occupancy rate, and more storage equipment can be placed in a limited factory to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: a hemp fiber storage device, comprising a storage platform:

[0006] Storage box 1 and storage box 2 are symmetrically distributed on the storage platform;

[0007] The storage box 1 and the storage box 2 are both provided with a storage mechanism of the same structure;

[0008] A workstation partition is provided between the storage box 1 and the storage box 2, and the storage platform space between the storage box 1 and the storage box 2 is divided into a loading station and an unloading station by the workstation partition;

[0009] A movable notch is provided at the bottom of the workstation partition, and a conveyor belt is movably connected in the movable notch;

[0010] The storage mechanism includes a reel rotatably connected to storage box one, a take-up belt wound around the outside of the reel, one end of the take-up belt fixed to the reel, and the other end fixed to the conveyor belt, the take-up belt and the conveyor belt have the same structural dimensions, a motor one is fixed to the rear end face of storage box one, the output end of the motor one is fixed to the reel, a motor two is fixed to the rear end face of storage box two, the output end of the motor two is fixed to one end of the reel in storage box two.

[0011] Preferably, the bottoms of the adjacent surfaces of storage box one and storage box two are both provided with inlet and outlet ports, and the two ends of the conveyor belt are located in the inlet and outlet ports and extend into storage box one and storage box two respectively to be fixed to the winding belt.

[0012] Preferably, the front and rear sides of the interior of the inlet and outlet are rotatably connected with guide rollers, and the guide rollers are the edges of the upper end surface of the conveyor belt.

[0013] Preferably, the upper end surface of the conveyor belt is located between the two guide rollers and has dividers distributed at equal distances. The hemp fibers are divided by the dividers and laid flat on the conveyor belt for winding and storage with a take-up belt. Filter holes are provided on the surface of the take-up belt and the conveyor belt.

[0014] Preferably, electromagnet bars are distributed at equal distances inside the take-up belt and the conveyor belt, and the metal impurities contained in the hemp fibers are magnetically removed by the electromagnet bars.

[0015] Preferably, a filter screen is detachably connected to the bottom of the storage box 1, a collecting groove is provided on the upper end surface of the storage platform at a position corresponding to the filter screen, and a valve is provided at the rear side of the collecting groove.

[0016] Preferably, the partition comprises a metal spacer with an arc-shaped structure on both sides, and the metal spacer has a built-in heating wire.

[0017] Preferably, a rubber block is fixedly connected to the top of the metal spacer.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] 1. This application utilizes a reel-type storage mechanism to achieve the reeling and storage of hemp fibers. Compared to the traditional stacked partition storage method, this device does not require users to climb high, and the storage capacity is much greater than that of stacked partitions. In addition, this device is small in size and has a low space occupancy rate, allowing more storage equipment to be placed in a limited factory space.

[0020] 2. The storage device designed in this application, through the design of storage box 1 and storage box 2 on both sides, can store hemp fiber in one storage box while the other storage box is discharging the material, thereby improving the functionality and use effect of the device;

[0021] 3. During the process of winding and storing the hemp fibers, the present application can also heat and dry the hemp fibers through the heating wire, and even squeeze and drain them, as well as perform magnetic separation and impurity removal, thereby improving the hemp fiber processing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0023] Figure 1 It is an overall structural view of the present invention;

[0024] Figure 2 It is a top view of the overall structure of the present invention;

[0025] Figure 3 It is a front view of the overall structure of the present invention;

[0026] Figure 4 It is a partial cross-sectional view of the overall structure of the present invention;

[0027] Figure 5 is a cross-sectional view of a storage box 1 of the present invention;

[0028] Figure 6 For the present invention Figure 1 Enlarged view at point A in the middle;

[0029] Figure 7 is a cross-sectional view of a storage box 1 and a storage platform of the present invention;

[0030] Figure 8 It is a cross-sectional view of the conveyor belt of the present invention.

[0031] Description of reference numerals:

[0032] 1. Storage box 1; 2. Storage box 2; 3. Motor 2; 4. Motor 1; 5. Storage platform; 6. Workstation partition; 7. Movable slot; 8. Inlet and outlet; 9. Winding belt; 10. Reel; 11. Conveyor belt; 12. Dividing piece; 13. Metal spacer; 14. Rubber block; 15. Heating wire; 16. Filter; 17. Collecting tank; 18. Electromagnet bar; 19. Guide roller. DETAILED DESCRIPTION

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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.

[0034] See also Figures 1 to 8 , the present invention provides a technical solution:

[0035] A hemp fiber storage device includes a storage platform 5:

[0036] Storage box 1 1 and storage box 2 2 are symmetrically distributed on the storage platform 5;

[0037] The storage box 1 and the storage box 2 are both provided with a storage mechanism of the same structure;

[0038] A workstation partition 6 is provided between the storage box 1 and the storage box 2 2, and the storage platform 5 between the storage box 1 and the storage box 2 2 is divided into a loading station and an unloading station by the workstation partition 6;

[0039] A movable notch 7 is provided at the bottom of the workstation partition 6, and a conveyor belt 11 is movably connected in the movable notch 7;

[0040] The storage mechanism includes a reel 10 rotatably connected to the storage box 1, and a take-up belt 9 is wound around the outside of the reel 10. One end of the take-up belt 9 is fixed to the reel 10, and the other end is fixed to the conveyor belt 11. The take-up belt 9 and the conveyor belt 11 have the same structural dimensions. The rear end face of the storage box 1 is fixed with a motor 4, and the output end of the motor 4 is fixed to the reel 10. The rear end face of the storage box 2 is fixed with a motor 3, and the output end of the motor 3 is fixed to one end of the reel 10 in the storage box 2 2.

[0041] Specifically, the bottom of the adjacent surfaces of storage box 1 and storage box 2 2 are both provided with an inlet and outlet 8, and the two ends of the conveyor belt 11 are located in the inlet and outlet 8 and extend into storage box 1 and storage box 2 2 respectively and are fixed to the winding belt 9. The front and rear sides of the interior of the inlet and outlet 8 are rotatably connected with guide rollers 19, and the guide rollers 19 are the upper end edge of the conveyor belt 11.

[0042] Specifically, the upper end surface of the conveyor belt 11 is located between the two guide rollers 19 and has dividing pieces 12 distributed at equal distances. The hemp fibers are divided and laid flat on the conveyor belt 11 by the dividing piece 12 and are wound up and stored with the winding belt 9. Filter holes are provided on the surface of the winding belt 9 and the conveyor belt 11. Electromagnetic bars 18 are distributed at equal distances inside the winding belt 9 and the conveyor belt 11. Metal impurities contained in the hemp fibers are magnetically attracted and removed by the electromagnet bars 18. The bottom of the storage box 1 is detachably connected to a filter screen 16, and a collecting tank 17 is provided at a position corresponding to the upper end surface of the storage platform 5 and the filter screen 16, and a valve is provided on the rear side of the collecting tank 17. The dividing piece 12 includes a metal partition bar 13 with an arc-shaped structure on both sides, and the metal partition bar 13 has a built-in heating wire 15. The top of the metal partition bar 13 is fixedly connected to a rubber block 14.

[0043] Working principle: During operation, two workers stand opposite each other on the front and back sides of the storage platform 5, respectively in the areas on both sides of the workstation partition 6. Then one person takes the freshly processed hemp fibers and lays them flat in the dividing piece 12. Then the external controller controls the motor 1 4 and the motor 2 3 to rotate in the same direction, for example, controls the motor 1 4 and the motor 2 3 to rotate clockwise. At this time, the storage box 1 reels and stores the hemp fibers, while the reel 10 in the storage box 2 2 is released. The reeling belt 9 on the reel 10 extends out through the feed port 8. The user removes the hemp fibers on the surface of the extended reeling belt 9 for subsequent processing. The motor 1 4 drives the reel 10 to rotate, reels the reeling belt 9, and pulls the conveyor belt 11. The conveyor belt 11 moves through the movable slot 7 at the bottom of the workstation partition 6, and then reels the hemp fibers placed on the dividing piece 12. During the reeling process, The rubber block 14 on the metal spacer 13 in the dividing piece 12 is squeezed, and the rubber block 14 is squeezed to extend to both sides, sealing the top opening of the metal spacer 13, thereby cooperating with the two metal spacers 13 to squeeze the hemp fibers located in the two metal spacers 13. The moisture contained in the hemp fibers is squeezed and falls through the filter holes to the filter screen 16. After filtration, the final waste liquid is stored in the collection tank 17 and then discharged by opening the valve connected to the collection tank 17. In the process of winding the hemp fibers, the metal spacer 13 can be further heated by the heating wire 15, and the hemp fibers in the middle are dried by heat conduction of the metal spacer 13. At the same time, the electromagnet bars 18 in the conveyor belt 11 and the winding belt 9 are conductive and can magnetically separate and remove impurities from the metal doped in the hemp fiber processing process. During subsequent discharge, the electromagnet bars 18 are powered off and the metal particles remaining on the conveyor belt 11 or the winding belt 9 are manually processed.

[0044] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A hemp fiber storage device, characterized in that: Including storage platform (5): Storage box 1 (1) and storage box 2 (2) are symmetrically distributed on the storage platform (5); The storage box 1 (1) and the storage box 2 (2) are both provided with storage mechanisms of the same structure; A workstation partition (6) is provided between the storage box 1 (1) and the storage box 2 (2), and the storage platform (5) space between the storage box 1 (1) and the storage box 2 (2) is divided into a loading station and an unloading station by the workstation partition (6); A movable notch (7) is provided at the bottom of the workstation partition (6), and a conveyor belt (11) is movably connected in the movable notch (7); The storage mechanism includes a reel (10) rotatably connected to a storage box (1), a reel (9) is wound around the outside of the reel (10), one end of the reel (9) is fixed to the reel (10), and the other end is fixed to a conveyor belt (11), the reel (9) and the conveyor belt (11) have the same structural dimensions, a motor (4) is fixed to the rear end face of the storage box (1), the output end of the motor (4) is fixed to the reel (10), and a motor (3) is fixed to the rear end face of the storage box (2), the output end of the motor (3) is fixed to one end of the reel (10) in the storage box (2).

2. The hemp fiber storage device according to claim 1, characterized in that: The bottoms of the adjacent surfaces of the storage box 1 (1) and the storage box 2 (2) are both provided with an inlet and outlet port (8), and both ends of the conveyor belt (11) are located in the inlet and outlet port (8) and extend into the storage box 1 (1) and the storage box 2 (2) respectively and are fixed to the winding belt (9).

3. The hemp fiber storage device according to claim 2, characterized in that: The front and rear sides of the inlet and outlet (8) are both rotatably connected to guide rollers (19), and the guide rollers (19) are the upper end edges of the conveyor belt (11).

4. The hemp fiber storage device according to claim 3, characterized in that: The upper end surface of the conveyor belt (11) is located between the two guide rollers (19) and is provided with dividing pieces (12) at equal distances. The hemp fibers are divided and laid flat on the conveyor belt (11) by the dividing pieces (12) and then wound up and stored by the winding belt (9). Filter holes are provided on the surfaces of the winding belt (9) and the conveyor belt (11).

5. The hemp fiber storage device according to claim 4, characterized in that: Electromagnetic bars (18) are distributed at equal distances inside the rewinding belt (9) and the conveyor belt (11), and the metallic impurities contained in the hemp fibers are magnetically removed by the electromagnetic bars (18).

6. The hemp fiber storage device according to claim 5, characterized in that: The bottom of the storage box (1) is detachably connected to a filter screen (16), and a collection tank (17) is provided at a position corresponding to the filter screen (16) on the upper end surface of the storage platform (5), and a valve is provided at the rear side of the collection tank (17).

7. The hemp fiber storage device according to claim 6, characterized in that: The partition (12) comprises a metal spacer (13) with an arc-shaped structure on both sides, and the metal spacer (13) has a built-in heating wire (15).

8. The hemp fiber storage device according to claim 7, characterized in that: A rubber block (14) is fixedly connected to the top of the metal spacer (13).