Indocalamus leaf goods shelf lifting device

By designing the bamboo leaf shelf lifting device, the synergistic effect of lifting, extrusion and vibration mechanisms is used to solve the problem that moisture adhesion after cleaning of bamboo leaf is affected by drying efficiency, and the dehydration efficiency and drying effect are significantly improved.

CN120205528AInactive Publication Date: 2025-06-27HUBEI CHANGZHEN ZONGZI IND CO LTD
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Patent Information

Application Number
CN202510412615.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, a large amount of moisture is attached to the surface of the bamboo leaves after cleaning, which affects the drying efficiency and leads to low efficiency of dehydration and drying.

Method used

A bamboo leaf shelf lifting device is designed, including a lifting mechanism, an extrusion mechanism and a vibration mechanism. The lifting mechanism drives the telescopic rod through a hydraulic motor to drive the pallet and filter box upwards, and removes moisture by drain holes and shaking. The extrusion mechanism drives the push plate to move through the bidirectional threaded rod and gear to squeeze moisture. The vibration mechanism generates vibration through the bent rod and the hammer, further promoting moisture volatility.

Benefits of technology

Through the synergy of multiple mechanisms, the dehydration efficiency of the bamboo leaves is significantly improved, the moisture content when entering the oven is reduced, and the efficiency and drying effect of the overall dehydration process are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of chequer-shaped indocalamus leaf processing, and discloses a chequer-shaped indocalamus leaf goods shelf lifting device which comprises a cleaning pool, a back plate is fixedly connected to the top of the cleaning pool, an oven is arranged on the left side of the cleaning pool, an oven door is arranged on the oven, and a lifting mechanism is arranged in the cleaning pool; the lifting mechanism comprises two first sliding grooves, a first sliding block, a supporting plate, a filter box, a hydraulic motor and a telescopic rod; the first sliding groove is formed in the inner wall of the back face of the cleaning pool and the front face of the back plate, the telescopic rod is driven by the hydraulic motor, the supporting plate drives the filter box to ascend in cooperation with the first sliding groove, and the chequer-shaped indocalamus leaves in the cleaning pool are fished up. In the ascending process, the second sliding groove drives the filter box to swing left and right, inertia force is used for shaking, screening and draining the chequer-shaped indocalamus leaves, water on the surfaces of the chequer-shaped indocalamus leaves is preliminarily removed, a foundation is laid for subsequent further dehydration, the water content of the chequer-shaped indocalamus leaves entering a drying oven is reduced, and the initial efficiency of the whole dehydration process is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of Indocalamus leaf processing, and particularly to a lifting device for Indocalamus leaf shelves. Background Art

[0002] In daily life, Indocalamus leaves are commonly used as food packaging materials, such as for wrapping zongzi. It can add a unique fragrance to zongzi and has an anti-corrosion effect, helping to preserve zongzi for a long time. It can also be used for packaging tea and making bamboo hats and boat awning liners.

[0003] In the prior art, after being washed, Indocalamus leaves need to be put into an oven for dehydration and drying treatment to facilitate the storage of Indocalamus leaves. However, after being washed, a large amount of water adheres to the surface of Indocalamus leaves, affecting the drying efficiency of the oven for Indocalamus leaves. Therefore, a lifting device for Indocalamus leaf shelves is proposed to solve the above-mentioned problems. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a lifting device for Indocalamus leaf shelves in view of the above deficiencies in the prior art.

[0005] To solve the above technical problem, the technical solution adopted by the present invention is: a lifting device for Indocalamus leaf shelves, including a cleaning pool, a back plate is fixedly connected to the top of the cleaning pool, an oven is arranged on the left side of the cleaning pool, a door is arranged on the oven, and a lifting mechanism is arranged inside the cleaning pool;

[0006] The lifting mechanism includes two first chutes, first sliders, a support plate, a filter box, a hydraulic motor, and a telescopic rod;

[0007] The first chutes are opened on the inner wall of the back surface of the cleaning pool and the front surface of the back plate, the first sliders are slidably connected inside the first chutes, the support plate is fixedly connected to the front surfaces of the two first sliders, the shape of the support plate is in a "return" shape, the filter box is arranged on the top of the support plate, the filter box is supported by the support plate, the filter box is provided with water drainage holes, the hydraulic motor is fixedly connected to the front outer wall of the cleaning pool, the back output end of the hydraulic motor penetrates into the cleaning pool, and is fixedly connected to the bottom end of the telescopic rod, the top end of the telescopic rod is hinged to the front outer wall of the support plate. The hydraulic motor drives the telescopic rod to rotate, and under the limiting action of the first chute, drives the support plate to rise. The rising of the support plate drives the filter box to rise and lifts the Indocalamus leaves in the cleaning pool.

[0008] On the front surface of the back plate and the inner back wall of the cleaning tank, a second sliding groove is provided. The upper half of the second sliding groove is bent. A second sliding block is slidably connected inside the second sliding groove. The second sliding block is arranged on the back of the filter box. The bent second sliding groove drives the second sliding block and the filter box to swing left and right during the upward movement, and the inertial force of the left and right reciprocating movement is used to shake and sieve the Indocalamus leaves in the filter box for draining water.

[0009] Preferably, on the front surface of the back plate and the inner back wall of the oven, a third sliding groove is provided. The first sliding block and the second sliding block are slidably connected to the third sliding groove. The third sliding groove is connected to the top end of the second sliding groove, and the third sliding groove is connected to the top end of the first sliding groove. A hydraulic cylinder is fixedly connected to the left inner wall of the oven. The right end of the hydraulic cylinder is fixedly connected with an electromagnetic chuck. When the support plate lifts the filter box into the third sliding groove, the filter box and the Indocalamus leaves are pulled into the oven for drying through the cooperation of the hydraulic cylinder and the electromagnetic chuck.

[0010] Preferably, an extrusion mechanism is arranged inside the filter box. The extrusion mechanism includes a bidirectional threaded rod. The rear end of the bidirectional threaded rod rotatably penetrates through the inner back wall of the back of the filter box through a bearing and extends backward. The second sliding block is fixedly connected to the rear end of the bidirectional threaded rod.

[0011] Preferably, a gear is fixedly connected to the middle of the bidirectional threaded rod. The gear is arranged on the front of the second sliding block. A rack is fixedly connected to the inner back wall of the cleaning tank and the front surface of the back plate. The rack meshes with the gear. During the upward movement of the gear, it meshes with the rack and rotates.

[0012] Preferably, two push plates are threadedly connected to the middle of the bidirectional threaded rod. The rotation of the bidirectional threaded rod drives the two push plates to move relatively, and pushes the Indocalamus leaves in the filter box to the middle, and squeezes the water on the surface of the Indocalamus leaves through the extrusion force. Transverse grooves are provided at the bottoms of the two push plates. The inner walls of the transverse grooves are rotatably connected to a transverse shaft through bearings. A roller is fixedly connected to the transverse shaft. The roller contacts the inner bottom wall of the filter box. A brush is fixedly connected to the transverse shaft. The brush sweeps up the Indocalamus leaves adsorbed on the inner bottom wall of the filter box, improving the dehydration effect of the extrusion and inertial force on the Indocalamus leaves.

[0013] Preferably, a vibration mechanism is arranged inside the support plate. The vibration mechanism includes vertical grooves. The vertical grooves are provided on the left and right sides of the support plate. A round rod is fixedly connected inside the vertical grooves.

[0014] Preferably, a bent rod is rotatably connected to the round rod through a bearing. The top end of the bent rod contacts the outer wall of the filter box, and the bottom end of the bent rod is fixedly connected to a hammer. The hammer contacts the bottom outer wall of the filter box. During the reciprocating movement of the filter box from left to right, the two bent rods will be repeatedly impacted. After being impacted, the two bent rods rotate and drive the two hammers to repeatedly strike the bottom of the filter box. The vibration force generated by the striking dehydrates the bamboo leaves in the filter box.

[0015] Preferably, a fence is hinged between the two hammers through a connecting rod. The fence is arranged at the bottom of the filter box, and a plurality of spherical balls are fixedly connected to the top of the fence. The spherical balls are arranged at the bottom of the water drainage holes. Small and high-frequency vibrations are generated by the friction of the multiple spherical balls at the bottom of the water drainage holes, so as to cooperate with the hammers to improve the dehydration efficiency through two different frequencies of vibration.

[0016] The present invention adopts the above technical solutions and can bring the following beneficial effects:

[0017] 1. By setting a lifting mechanism, the telescopic rod is driven by a hydraulic motor, and the support plate drives the filter box to rise in cooperation with the first sliding groove, lifting the bamboo leaves in the cleaning pool. The bamboo leaves are drained through the water drainage holes. During the rising process, the filter box is driven to swing from left to right by the second sliding groove and the second slider, and the inertial force is used to shake and sieve the bamboo leaves for drainage, promoting the separation effect of water and bamboo leaves. Thereby, the water content of the bamboo leaves when entering the oven is reduced, and the starting efficiency of the overall dehydration process is improved.

[0018] 2. By setting an extrusion mechanism, when the filter box rises, the bidirectional threaded rod and the gear are driven to move. The gear meshes with the rack to rotate the bidirectional threaded rod, and the push plate is pushed to squeeze the bamboo leaves towards the middle, squeezing the water on the surface of the bamboo leaves dry. At the same time, the bristles at the bottom of the push plate sweep up the bamboo leaves adsorbed on the bottom of the filter box, improving the extrusion dehydration effect, further reducing the water content of the bamboo leaves, and cooperating with the shaking and sieving drainage of the lifting mechanism to strengthen dehydration in different ways and improve the comprehensiveness of dehydration.

[0019] 3. By setting a vibration mechanism, when the filter box reciprocates from left to right to impact the bent rod, the hammer strikes the bottom of the filter box, generating a vibration force to dehydrate the bamboo leaves. When the hammer swings, it drives the fence and the spherical balls to move. The spherical balls generate high-frequency vibrations by rubbing at the bottom of the water drainage holes, cooperating with the vibration of the hammer. The water of the bamboo leaves is further removed through two different frequencies of vibration. Cooperating with the lifting mechanism and the extrusion mechanism, the bamboo leaves are dehydrated from multiple dimensions, significantly improving the dehydration efficiency, ensuring the dryness of the bamboo leaves entering the oven, and improving the drying effect and the processing quality of the bamboo leaves. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0021] Figure 2 Schematic diagram of the internal structure of the cleaning pool area in the present invention;

[0022] Figure 3 Exploded view of the internal structure of the cleaning pool area in the present invention;

[0023] Figure 4 Schematic diagram of the structure of the backplane area in the present invention;

[0024] Figure 5 Exploded view of the filter box area in the present invention;

[0025] Figure 6 In the present invention Figure 5 Enlarged view of area A;

[0026] Figure 7 Exploded view of the pallet area in the present invention;

[0027] Figure 8 In the present invention Figure 7 Enlarged view of area B.

[0028] In the figure: 1. Cleaning pool; 2. Backplane; 3. Oven; 301. Door of the oven; 4. Lifting mechanism; 401. First chute; 402. First slider; 403. Pallet; 404. Filter box; 405. Drainage holes; 406. Hydraulic motor; 407. Telescopic rod; 408. Second chute; 409. Second slider; 4010. Third chute; 4011. Hydraulic cylinder; 4012. Electric suction cup; 5. Extrusion mechanism; 501. Bidirectional threaded rod; 502. Gear; 503. Rack; 504. Pushing plate; 505. Horizontal axis; 506. Roller; 507. Brush; 6. Vibration mechanism; 601. Vertical groove; 602. Round rod; 603. Bent rod; 604. Hammer; 605. Connecting rod; 606. Fence; 607. Sphere. Specific embodiments

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0030] Please refer to Figures 1-8 , an embodiment of the present invention is: a bamboo leaf shelf lifting device, including a cleaning pool 1, a backplane 2 is fixedly connected to the top of the cleaning pool 1, an oven 3 is arranged on the left side of the cleaning pool 1, a door 301 is arranged on the oven 3, and a lifting mechanism 4 is arranged inside the cleaning pool 1;

[0031] The lifting mechanism 4 includes two first sliding grooves 401, first sliders 402, a support plate 403, a filter box 404, a hydraulic motor 406, and a telescopic rod 407;

[0032] The first sliding grooves 401 are formed on the inner wall of the back surface of the cleaning tank 1 and the front surface of the back plate 2. The first sliders 402 are slidably connected inside the first sliding grooves 401. The support plate 403 is fixedly connected to the front surfaces of the two first sliders 402. The support plate 403 is shaped like a "hui" character. The filter box 404 is arranged on the top of the support plate 403. The filter box 404 is supported by the support plate 403. Drainage holes 405 are provided on the filter box 404. The hydraulic motor 406 is fixedly connected to the outer wall of the front surface of the cleaning tank 1. The output end of the hydraulic motor 406 at the back penetrates into the cleaning tank 1 and is fixedly connected to the bottom end of the telescopic rod 407. The top end of the telescopic rod 407 is hinged to the outer wall of the front surface of the support plate 403. The hydraulic motor 406 drives the telescopic rod 407 to rotate, and under the limiting action of the first sliding grooves 401, the support plate 403 is driven to rise. The rising of the support plate 403 drives the filter box 404 to rise, and the bamboo leaves in the cleaning tank 1 are fished out.

[0033] Second sliding grooves 408 are formed on the front surface of the back plate 2 and the inner wall of the back surface of the cleaning tank 1. The upper half of the second sliding grooves 408 is bent. A second slider 409 is slidably connected inside the second sliding grooves 408. The second slider 409 is arranged on the back surface of the filter box 404. The bent second sliding grooves 408 drive the second slider 409 and the filter box 404 to swing left and right during the upward movement, and the inertia force of the left and right reciprocating movement is used to shake and sieve the bamboo leaves in the filter box 404 for draining water.

[0034] Third sliding grooves 4010 are formed on the front surface of the back plate 2 and the inner wall of the back surface of the oven 3. The first sliders 402, the second sliders 409 are slidably connected to the third sliding grooves 4010. The third sliding grooves 4010 are connected to the top ends of the second sliding grooves 408. The third sliding grooves 4010 are connected to the top ends of the first sliding grooves 401. A hydraulic cylinder 4011 is fixedly connected to the left inner wall of the oven 3. The right end of the hydraulic cylinder 4011 is fixedly connected to an electric suction cup 4012. When the support plate 403 lifts the filter box 404 into the third sliding grooves 4010, the filter box 404 and the bamboo leaves are pulled into the oven 3 for drying through the cooperation of the hydraulic cylinder 4011 and the electric suction cup 4012.

[0035] Working principle: First, the bamboo leaves are put into the cleaning tank 1 for cleaning. After cleaning, the hydraulic motor 406 is started to drive the telescopic rod 407 to rotate. Under the limiting action of the first chute 401, the first slider 402 and the support plate 403 are driven to rise. The rising of the support plate 403 drives the filter box 404 to move upward from the bottom of the cleaning tank 1 and lift the bamboo leaves in the cleaning tank 1. The upward movement of the filter box 404 drives the second slider 409 to move upward. Through the second chute 408 arranged in a curved shape, the second slider 409 and the filter box 404 swing left and right during the upward movement, and the inertial force generated by the left and right reciprocating movement is used to shake and sieve the bamboo leaves in the filter box 404 to drain water. When the support plate 403 lifts the filter box 404 into the third chute 4010, the filter box 404 and the bamboo leaves are pulled into the oven 3 for drying through the cooperation of the hydraulic cylinder 4011 and the electric suction cup 4012. Thus, the water on the surface of the bamboo leaves can be removed before baking.

[0036] Please refer to Figures 1-8 , on the basis of the above embodiment, in another embodiment of the present invention, an extrusion mechanism 5 is provided inside the filter box 404. The extrusion mechanism 5 includes a bidirectional threaded rod 501. The rear end of the bidirectional threaded rod 501 rotates through the inner wall of the back surface of the filter box 404 through a bearing and extends backward. The second slider 409 is fixedly connected to the rear end of the bidirectional threaded rod 501.

[0037] A gear 502 is fixedly connected to the middle of the bidirectional threaded rod 501. The gear 502 is arranged on the front surface of the second slider 409. A rack 503 is fixedly connected to the inner wall of the back surface of the cleaning tank 1 and the front surface of the back plate 2. The rack 503 meshes with the gear 502. During the upward movement of the gear 502, it meshes with the rack 503 and rotates.

[0038] Two push plates 504 are threadedly connected to the middle of the bidirectional threaded rod 501. By rotating the bidirectional threaded rod 501, the two push plates 504 move relatively and push the bamboo leaves in the filter box 404 to the middle, and squeeze the water on the surface of the bamboo leaves dry through the extrusion force. Transverse grooves are formed at the bottoms of the two push plates 504. The inner wall of the transverse groove is rotatably connected to a transverse shaft 505 through a bearing. A roller 506 is fixedly connected to the transverse shaft 505. The roller 506 contacts the inner wall of the bottom of the filter box 404. A brush 507 is fixedly connected to the transverse shaft 505. The bamboo leaves adsorbed on the inner wall of the bottom of the filter box 404 are swept up by the brush 507 to improve the dehydration effect of the extrusion and inertial force on the bamboo leaves.

[0039] Working principle: The upward movement of the filter cartridge 404 drives the upward movement of the bidirectional threaded rod 501. The upward movement of the bidirectional threaded rod 501 drives the upward movement of the second slider 409 and the gear 502. During the upward movement of the gear 502, it first meshes with the bottom rack 503 and drives the bidirectional threaded rod 501 to rotate. The rotation of the bidirectional threaded rod 501 drives the two push plates 504 to move relatively, and pushes the bamboo leaves in the filter cartridge 404 to the middle, squeezing the water on the surface of the bamboo leaves dry through the extrusion force. As the gear 502 continues to move upward, the gear 502 will first disengage from the bottom rack 503, and then immediately mesh with the top rack 503, driving the bidirectional threaded rod 501 to move in the reverse direction, and driving the two push plates 504 to move in the reverse direction to both sides of the front and rear inner walls of the filter cartridge 404. As the gear 502, the bidirectional threaded rod 501 and the second slider 409 continue to rise, the gear 502 will disengage from the top rack 503, and the second slider 409 will slide to the upper half of the curved second chute 408, and drive the filter cartridge 404 to move left and right reciprocally. When moving left and right reciprocally, the bamboo leaves pushed to the middle of the filter cartridge 404 are redispersed through the inertial force of the left and right reciprocating movement.

[0040] Please refer to Figures 1-8 , on the basis of the above embodiment, in another embodiment of the present invention, a vibration mechanism 6 is arranged inside the support plate 403. The vibration mechanism 6 includes a vertical groove 601, and the vertical groove 601 is opened on the left and right sides of the support plate 403. A round rod 602 is fixedly connected inside the vertical groove 601.

[0041] A bent rod 603 is rotatably connected to the round rod 602 through a bearing. The top end of the bent rod 603 contacts the outer wall of the filter cartridge 404. The bottom end of the bent rod 603 is fixedly connected with a percussion hammer 604, and the percussion hammer 604 contacts the bottom outer wall of the filter cartridge 404. During the left and right reciprocating movement of the filter cartridge 404, it will repeatedly hit the two bent rods 603. After being hit, the two bent rods 603 rotate, and drive the two percussion hammers 604 to repeatedly hit the bottom of the filter cartridge 404. The vibration force generated by the percussion dehydrates the bamboo leaves in the filter cartridge 404.

[0042] A fence 606 is hinged between the two percussion hammers 604 through a connecting rod 605. The fence 606 is arranged at the bottom of the filter cartridge 404. A plurality of spherical balls 607 are fixedly connected to the top of the fence 606. The spherical balls 607 are arranged at the bottom of the water drainage holes 405. Small and high-frequency vibrations are generated by the friction of the multiple spherical balls 607 at the bottom of the water drainage holes 405, so as to cooperate with the percussion hammer 604 to improve the dehydration efficiency through two different frequencies of vibration.

[0043] Working principle: During the reciprocating movement of the filter cartridge 404 from left to right, it will repeatedly impact two bent rods 603. After being impacted, the two bent rods 603 rotate and drive two knocking hammers 604 to repeatedly knock on the bottom of the filter cartridge 404. The vibration force generated by the knocking dehydrates the bamboo leaves in the filter cartridge 404. When the two knocking hammers 604 swing, they will drag the fence 606 and the balls 607 to move through the connecting rod 605, and small and high-frequency vibrations are generated by the friction of a number of balls 607 at the bottom of the water drainage holes 405, thus cooperating with the knocking hammers 604 to improve the dehydration efficiency through two different frequencies of vibration.

[0044] The present invention provides a bamboo leaf shelf lifting device. There are many methods and ways to specifically implement this technical solution. The above description is only the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. Each component not clearly defined in this embodiment can be implemented by using the prior art.

Claims

1. A bamboo leaf shelf lifting device, comprising a cleaning tank (1), characterized in that: A back plate (2) is fixedly connected to the top of the cleaning tank (1), an oven (3) is arranged on the left side of the cleaning tank (1), a door (301) is arranged on the oven (3), and a lifting mechanism (4) is arranged inside the cleaning tank (1); The lifting mechanism (4) comprises two first slide grooves (401), a first sliding block (402), a supporting plate (403), a filter box (404), a hydraulic motor (406), and a telescopic rod (407); The first slide groove (401) is provided on the back inner wall of the cleaning pool (1) and the front of the back plate (2); the first slider (402) is slidably connected to the inside of the first slide groove (401); the support plate (403) is fixedly connected to the front of the two first sliders (402); the support plate (403) is shaped like a "U" character; the filter box (404) is arranged on the top of the support plate (403); a drainage hole (405) is arranged on the filter box (404); the hydraulic motor (406) is fixedly connected to the front outer wall of the cleaning pool (1); the back output end of the hydraulic motor (406) penetrates into the inside of the cleaning pool (1) and is fixedly connected to the bottom end of the telescopic rod (407); the top end of the telescopic rod (407) is hinged to the front outer wall of the support plate (403); A second slide groove (408) is provided on the front side of the back plate (2) and the back inner wall of the cleaning tank (1); the upper half of the second slide groove (408) is bent; the interior of the second slide groove (408) is slidably connected to a second slider (409); and the second slider (409) is provided on the back side of the filter box (404).

2. The indigo leaf shelf lifting device according to claim 1 is characterized in that: A third slide groove (4010) is provided between the front side of the back plate (2) and the back inner wall of the oven (3); the first slider (402) and the second slider (409) are slidably connected to the third slide groove (4010); the third slide groove (4010) is connected to the top end of the second slide groove (408); the third slide groove (4010) is connected to the top end of the first slide groove (401); a hydraulic cylinder (4011) is fixedly connected to the left inner wall of the oven (3); and an electric suction cup (4012) is fixedly connected to the right end of the hydraulic cylinder (4011).

3. The indigo leaf shelf lifting device according to claim 2 is characterized in that: The filter box (404) is provided with an extrusion mechanism (5) inside, and the extrusion mechanism (5) includes a bidirectional threaded rod (501), the rear end of the bidirectional threaded rod (501) rotates through the back inner wall of the filter box (404) through a bearing and extends backward, and the second sliding block (409) is fixedly connected to the rear end of the bidirectional threaded rod (501).

4. The indigo leaf shelf lifting device according to claim 3 is characterized in that: A gear (502) is fixedly connected to the middle of the bidirectional threaded rod (501), and the gear (502) is arranged on the front side of the second sliding block (409). A rack (503) is fixedly connected to the back inner wall of the cleaning tank (1) and the front side of the back plate (2), and the rack (503) is meshed with the gear (502).

5. The indigo leaf shelf lifting device according to claim 4 is characterized in that: The middle part of the bidirectional threaded rod (501) is threadedly connected to two push plates (504), and the bottoms of the two push plates (504) are provided with transverse grooves, and the inner walls of the transverse grooves are rotatably connected to a transverse shaft (505) via bearings, and a roller (506) is fixedly connected to the transverse shaft (505), and the roller (506) contacts the bottom inner wall of the filter box (404), and bristles (507) are fixedly connected to the transverse shaft (505).

6. The indigo leaf shelf lifting device according to claim 5, characterized in that: A vibration mechanism (6) is arranged inside the support plate (403), and the vibration mechanism (6) comprises a vertical groove (601). The vertical groove (601) is opened on the left and right sides of the support plate (403), and a round rod (602) is fixedly connected inside the vertical groove (601).

7. The indigo leaf shelf lifting device according to claim 6, characterized in that: The round rod (602) is rotatably connected to a bent rod (603) via a bearing, the top end of the bent rod (603) contacts the outer wall of the filter box (404), and the bottom end of the bent rod (603) is fixedly connected to a knocking hammer (604), which contacts the bottom outer wall of the filter box (404).

8. The indigo leaf shelf lifting device according to claim 7, characterized in that: A fence (606) is hinged between the two hammers (604) via a connecting rod (605), and the fence (606) is arranged at the bottom of the filter box (404). A plurality of balls (607) are fixedly connected to the top of the fence (606), and the balls (607) are arranged at the bottom of the drainage hole (405).