Efficient ramie dehydrator

By designing a ramie dewatering machine with components such as a central frame and a drive rotary seat, and combining centrifugal rotation and extrusion operations, the problems of incomplete dewatering and inefficient water discharge have been solved, achieving efficient dewatering and rapid drainage of ramie raw materials.

CN223623284UActive Publication Date: 2025-12-02SICHUAN XINGXIN TIANXIA AGRI TECH CO LTD
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Patent Information

Application Number
CN202520263498.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-12-02
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

Existing ramie dehydrators suffer from incomplete dehydration and inefficient water removal, failing to meet daily usage needs.

Method used

A high-efficiency ramie dewatering machine was designed, comprising components such as a central frame, drive rotating seat, closed cover, dewatering hood, shrink seat, drive gearbox, drainage pump box, water collection pipe frame, and air control pump. It achieves efficient dewatering through centrifugal rotation and extrusion operation, and quickly discharges water through the water collection pipe frame.

Benefits of technology

It achieves efficient and thorough dehydration of ramie raw materials and rapid water removal, improving the overall performance of the equipment and meeting daily usage needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ramie technicians, in particular to an efficient ramie dehydrator which comprises a center frame and a driving rotating seat, a sealing cover is movably connected to the top end of the center frame, dehydration covers are fixedly connected to the two ends of the center frame, one end of each dehydration cover is fixedly connected with a telescopic seat, and the other end of each dehydration cover is fixedly connected with a telescopic rod. And a driving gear box is arranged at the bottom end of the center frame. Through the arrangement of the center frame, the driving rotating seat, the sealing cover, the dewatering cover, the contraction seat, the driving gear box, the air control pump, the telescopic air bag, the extrusion seat, the arc-shaped cover, the drainage hole groove, the driving insection and the dewatering cylinder, the device can conduct more efficient and thorough dewatering treatment operation on ramie raw materials; a worker firstly puts ramie raw materials needing to be dewatered into the driving rotating seat from the opened sealing cover and the arc-shaped cover and puts the ramie raw materials into the dewatering barrels at the two ends of the driving rotating seat.
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Description

Technical Field

[0001] This application relates to the field of ramie processing technology, specifically to a high-efficiency ramie dewatering machine. Background Technology

[0002] Ramie fiber is composed of cellulose. The intensity of light and the number of hours of sunshine per day have a great impact on fiber yield. Insufficient sunshine weakens photosynthesis, resulting in weak stems, thin ramie bark, thin fiber cell walls, delayed processing maturity, and reduced yield. However, too much sunlight, high temperature, and drought can also inhibit ramie plant growth, causing cell lignification and reducing ramie quality and yield.

[0003] In response, existing technology discloses a high-efficiency ramie dewatering machine, comprising a cylinder with an open top, a sieve cylinder disposed within the cylinder and also open at its top, a first driving device for driving the sieve cylinder to rotate, a pressing device disposed within the cylinder, a cover for covering the cylinder, and a drain pipe disposed on the bottom wall of the cylinder; the sieve cylinder is used to hold ramie strips; the pressing device is used to press the ramie strips against the side wall of the sieve cylinder. This high-efficiency ramie dewatering machine can efficiently and thoroughly dewater ramie strips.

[0004] However, in actual use, this structure can only perform simple centrifugal dehydration of ramie, and cannot perform more efficient extrusion centrifugal dehydration of the extracted ramie raw material. This often results in incomplete dehydration of the ramie. At the same time, the equipment cannot efficiently collect and discharge the water extracted from the ramie, which cannot meet the needs of daily use. Therefore, it is urgent to design a high-efficiency ramie dehydrator to solve the above problems. Utility Model Content

[0005] Therefore, this application provides a high-efficiency ramie dewatering machine to solve the problems existing in the prior art.

[0006] To achieve the above objectives, this application provides the following technical solution:

[0007] A high-efficiency ramie dewatering machine, comprising:

[0008] A central frame, with a drive rotating seat fitted inside the central frame, a closing cover movably connected to the top of the central frame, dehydration covers fixedly connected to both ends of the central frame, and a shrink seat fixedly connected to one end of the dehydration cover;

[0009] A drive gearbox is provided at the bottom of the central frame, and a drainage pump box is provided at the bottom of the drive gearbox. A first water collection pipe frame is fixedly connected to both ends of the drive gearbox and the drainage pump box.

[0010] Optionally, a controllable air pump is fixedly connected to one end of the first water collection pipe frame, and a water guide pipe frame is provided on the surface of the first water collection pipe frame.

[0011] Optionally, a support base is fixedly connected to the bottom of the drainage pump box, and a second water collection pipe frame is fixedly connected to both sides of the drainage pump box.

[0012] Optionally, the shrinkage seat is provided with a telescopic airbag inside, and one end of the telescopic airbag is fixedly connected to a compression seat.

[0013] Optionally, an arc-shaped cover is movably connected to the top of the drive rotor, and drainage holes and grooves are provided on the sides of the drive rotor and the arc-shaped cover.

[0014] Optionally, the two ends of the side of the drive rotor are provided with drive teeth, and the two ends of the drive rotor are fixedly connected to a dewatering cylinder.

[0015] Compared with the prior art, this application has at least the following beneficial effects:

[0016] 1. This high-efficiency ramie dewatering machine, through its central frame, drive rotor, closed cover, dewatering hood, shrinkage seat, drive gearbox, air pump, telescopic airbag, extrusion seat, arc-shaped cover, drainage slot, drive teeth, and dewatering cylinder, enables the equipment to perform more efficient and thorough dewatering of ramie raw materials.

[0017] 2. By setting up a central frame, drive rotating seat, sealing cover, dehydration hood, shrink seat, drainage pump box, first water collection pipe frame, water guide pipe frame, support base and second water collection pipe frame, the overall use effect of the equipment is further improved, and water is quickly sucked out and discharged to meet daily use needs, reflecting the comprehensiveness of the equipment design. Attached Figure Description

[0018] To more intuitively illustrate the prior art and this application, exemplary drawings are provided below. It should be understood that the specific shapes and structures shown in the drawings should not generally be regarded as limiting conditions for implementing this application; for example, based on the technical concept disclosed in this application and the exemplary drawings, those skilled in the art are able to easily make conventional adjustments or further optimizations to the addition / reduction / classification, specific shapes, positional relationships, connection methods, size ratios, etc. of certain units (components).

[0019] Figure 1 This is a three-dimensional schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the overall structure of the retractable seat of this utility model;

[0021] Figure 3 This is an overall schematic diagram of the drive rotary seat structure of this utility model;

[0022] Figure 4 This utility model Figure 1An enlarged schematic diagram of the structure at point A in the middle.

[0023] In the diagram: 1. Center frame; 2. Drive rotating seat; 3. Sealing cover; 4. Dehydration hood; 5. Shrink seat; 6. Drive gearbox; 7. Drain pump box; 8. First water collection pipe frame; 9. Air control pump; 10. Water guide pipe frame; 11. Support base; 12. Second water collection pipe frame; 13. Telescopic airbag; 14. Squeezing seat; 15. Arc-shaped cover; 16. Drainage hole groove; 17. Drive tooth pattern; 18. Dehydration cylinder. Detailed Implementation

[0024] The present application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0025] Please see Figures 1 to 4 This utility model provides a high-efficiency ramie dewatering machine, including a central frame 1, a drive rotating seat 2 housed inside the central frame 1, a closed cover 3 movably connected to the top of the central frame 1, dewatering covers 4 fixedly connected to both ends of the central frame 1, a shrinking seat 5 fixedly connected to one end of the dewatering cover 4, a telescopic airbag 13 disposed inside the shrinking seat 5, a squeezing seat 14 fixedly connected to one end of the telescopic airbag 13, an arc-shaped cover 15 movably connected to the top of the drive rotating seat 2, drainage holes 16 disposed on the sides of the drive rotating seat 2 and the arc-shaped cover 15, drive teeth 17 disposed at both ends of the sides of the drive rotating seat 2, and dewatering cylinders 18 fixedly connected to both ends of the drive rotating seat 2. When the air pumps 9 at both ends are started, they extend and retract the telescopic airbag 13 inside the shrinking seat 5, and squeeze the squeezing seat 14 towards the center inside the dewatering cylinders 18 at both ends, thereby enabling the ramie inside the dewatering cylinders 18 to be efficiently squeezed and dewatered from the drainage holes 16 on the sides of the drive rotating seat 2 and the arc-shaped cover 15.

[0026] The drive gearbox 6 is located at the bottom of the center frame 1. The drive gearbox 6 is located at the bottom of the drive gearbox 6. The two ends of the drive gearbox 6 and the drain pump box 7 are fixedly connected to the first water collection pipe frame 8. One end of the first water collection pipe frame 8 is fixedly connected to the air control pump 9. The surface of the first water collection pipe frame 8 is provided with a water guide pipe frame 10. The bottom of the drain pump box 7 is fixedly connected to the support base 11. The two sides of the drain pump box 7 are fixedly connected to the second water collection pipe frame 12. The drain pump box 7 at the bottom of the drive gearbox 6 can be started to quickly suck out and discharge the water that has come out of the second water collection pipe frame 12 and the first water collection pipe frame 8.

[0027] Working principle: During use, the operator first places the ramie raw material to be dehydrated into the drive rotor 2 through the open sealed cover 3 and arc-shaped cover 15, spreading it evenly into the dehydration cylinders 18 at both ends of the drive rotor 2. This greatly increases the dehydration capacity of the ramie each time. Afterwards, the arc-shaped cover 15 and drive rotor 2 are closed. At this time, the drive gearbox 6 at the bottom of the central frame 1 can be activated, driving the drive teeth 17 at both ends of the drive rotor 2. This drives the drive rotor 2 to rotate the entire dehydration cylinder 18 at high speed inside the central frame 1 and dehydration hood 4, causing the ramie inside to dehydrate. Simultaneously, the air pumps 9 at both ends can be activated, causing the telescopic airbags 13 inside the shrink seat 5 to extend and retract, and the compression seat 14... The ramie inside the dewatering cylinders 18 at both ends is squeezed towards the center, allowing the ramie inside the dewatering cylinders 18 to be efficiently squeezed and dewatered through the drainage holes 16 on the sides of the drive rotor 2 and the arc-shaped cover 15. This greatly improves the equipment's dewatering efficiency for ramie. During daily use, when the central frame 1 and the dewatering hood 4 are dewatering, the water extracted from the central frame 1 can be quickly guided downwards through the second water collection pipe frames 12 at both ends of the bottom. The water extracted from the dewatering hood 4 can also enter the interior of the first water collection pipe frame 8 through the water guide pipe frame 10. At the same time, the drainage pump box 7 at the bottom of the drive gearbox 6 can be started to quickly suck out and discharge the water extracted from the second water collection pipe frame 12 and the first water collection pipe frame 8, meeting daily usage needs.

[0028] The technical features of the above embodiments can be combined in any way (as long as there is no contradiction in the combination of these technical features). For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described; these embodiments not explicitly written should also be considered to be within the scope of this specification.

Claims

1. A high-efficiency ramie dewatering machine, characterized in that, include: A central frame (1) is provided with a drive rotating seat (2) inside the central frame (1). A closing cover (3) is movably connected to the top of the central frame (1). A dehydration cover (4) is fixedly connected to both ends of the central frame (1). A shrink seat (5) is fixedly connected to one end of the dehydration cover (4). A drive gearbox (6) is provided at the bottom of the center frame (1), and a drainage pump box (7) is provided at the bottom of the drive gearbox (6). A first water collection pipe frame (8) is fixedly connected to both ends of the drive gearbox (6) and the drainage pump box (7).

2. The high-efficiency ramie dewatering machine according to claim 1, characterized in that, One end of the first water collection pipe frame (8) is fixedly connected to a control air pump (9), and a water guide pipe frame (10) is provided on the surface of the first water collection pipe frame (8).

3. The high-efficiency ramie dewatering machine according to claim 1, characterized in that, The bottom of the drainage pump box (7) is fixedly connected to a support base (11), and the two sides of the drainage pump box (7) are fixedly connected to a second water collection pipe frame (12).

4. The high-efficiency ramie dewatering machine according to claim 1, characterized in that, The retractable seat (5) is provided with a telescopic airbag (13) inside, and one end of the telescopic airbag (13) is fixedly connected to a compression seat (14).

5. A high-efficiency ramie dewatering machine according to claim 1, characterized in that, The top of the drive rotary seat (2) is movably connected to an arc-shaped cover (15), and the sides of the drive rotary seat (2) and the arc-shaped cover (15) are provided with drainage holes (16).

6. A high-efficiency ramie dewatering machine according to claim 5, characterized in that, The drive rotary seat (2) has drive teeth (17) at both ends of its side, and a dehydration cylinder (18) is fixedly connected to both ends of the drive rotary seat (2).