An integrated bio-enzyme induction system leech egg cocoon hatching box

CN122536518APending Publication Date: 2026-08-11TIANJIN VOCATIONAL INST
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-28
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0002]液料混合器,作为一种在化工、食品、医药、农林等多个行业中不可或缺的设备,其核心功能在于将不同种类的液体物质进行均匀混合,以满足后续生产或处理工艺的需求,然而,尽管现有的液料混合器在一定程度上已经能够满足基本的混合要求,但在实际应用中,仍然暴露出了一些显著的缺点,这些缺点直接影响了混合后的液料质量;

Benefits of technology

[0013]1、本发明通过驱动电机的动力使得圆盘旋转,从而使得固定杆进行旋转,同时由于齿轮与齿牙和齿环啮合,从而使得连接杆相对于固定杆旋转,从而使得连接杆表面的搅拌杆和固定杆表面的搅拌杆同时对混合箱内部的液料进行混合,此装置与传统装置相对比,此装置通过相对旋转的搅拌杆,从而能够产生更为复杂的流体运动模式,从而有助于液料更快速地分散和混合,同时使得在搅拌过程中会产生更大的剪切力,使液料在剪切作用下被更有效地拉碎、撕裂,从而形成更小的微团,加速混合过程,并且可以确保液料在混合箱内各个区域都得到充分的搅拌和混合,避免出现局部混合不均的情况,从而提升混合质量;

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Abstract

This invention discloses a leech egg cocoon incubation box with an integrated bio-enzyme induction system. The invention relates to the field of liquid mixer technology, and includes a mixing box. A disc is movably installed inside the mixing box, and a circular groove is formed at the bottom of the disc. A fixing rod is fixedly installed inside the groove, and a toothed ring is fixedly installed on the surface of the fixing rod. The advantages of this invention are: by using a relatively rotating stirring rod, a more complex fluid motion pattern can be generated, which helps the liquid to disperse and mix more quickly. At the same time, it generates greater shear force during the stirring process, causing the liquid to be more effectively broken and torn under shearing action, thus forming smaller micro-clusters, accelerating the mixing process. Furthermore, it ensures that the liquid is fully stirred and mixed in all areas of the mixing box, avoiding uneven mixing in certain areas, thereby improving the mixing quality.
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Description

Technical Field

[0001] This invention relates to the field of liquid mixer technology, specifically to a leech egg cocoon incubation box with an integrated biological enzyme induction system. Background Technology

[0002] Liquid mixers, as an indispensable piece of equipment in many industries such as chemical, food, pharmaceutical, and agricultural and forestry, have the core function of uniformly mixing different types of liquid substances to meet the needs of subsequent production or processing. However, although existing liquid mixers can meet the basic mixing requirements to a certain extent, they still reveal some significant shortcomings in practical applications, which directly affect the quality of the mixed liquid.

[0003] Specifically, many traditional liquid mixers use a direct-drive motor design for the stirring rod. In this design, the motor directly drives the stirring rod to rotate through a transmission device, and the blades or paddles on the stirring rod generate stirring force to mix the liquid. However, this mixing method has a significant drawback: the stirring force is mainly concentrated in the middle part of the stirring rod, while the mixing effect is often poor for liquids in the edge area of ​​the container.

[0004] Due to uneven distribution of stirring force, the liquid in the edge areas is often difficult to be effectively stirred and mixed, resulting in differences in the composition and concentration of the liquid in these areas compared to the central area. This difference not only affects the quality of the mixed liquid but may also have a negative impact on subsequent production or processing. To address this, we propose a liquid mixer for preparing leech pheromone attractants. Summary of the Invention

[0005] The purpose of this invention is to provide a leech egg cocoon incubation box with an integrated biological enzyme induction system.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a leech egg cocoon incubation box with an integrated biological enzyme induction system, comprising a mixing box, a disc movably installed inside the mixing box, and a circular groove formed at the bottom of the disc, a fixing rod fixedly installed inside the circular groove, a toothed ring fixedly installed on the surface of the fixing rod, teeth fixedly installed on the inner wall of the circular groove, a circular plate provided between the teeth and the toothed ring, a gear fixedly installed at the bottom of the circular plate, a connecting rod fixedly installed at the bottom of the gear, a stirring rod fixedly installed on the surface of both the connecting rod and the fixing rod, a drive motor fixedly installed at the top of the mixing box, the output shaft of the drive motor fixedly connected to the disc, the drive motor electrically connected to a frequency converter for adjusting its speed, a lubricating medium filled in the circular groove to prevent wear between the gear and the toothed ring and teeth, and a feed pipe fixedly installed at the top of the mixing box.

[0007] As a further aspect of the present invention: a conveying pipe is fixedly installed on the surface of the mixing box, a movable rod is movably installed inside the conveying pipe, a spiral blade is fixedly installed on the surface of the movable rod, a discharge pipe is fixedly installed at the bottom of the conveying pipe, a servo motor is fixedly installed on the side of the conveying pipe, and the output shaft of the servo motor is fixedly connected to the movable rod.

[0008] As a further aspect of the present invention: a motor protective cover is provided on the top of the mixing box, the drive motor is located inside the motor protective cover, and heat dissipation grooves are provided on the surface of the motor protective cover.

[0009] As a further aspect of the present invention: three sets of support legs are fixedly installed at the bottom of the mixing box, and foot pads are fixedly installed at the bottom of each of the three sets of support legs.

[0010] As a further aspect of the present invention: an observation window is fixedly installed on the surface of the mixing box, and the observation window is made entirely of glass.

[0011] As a further aspect of the present invention: the inner diameter of the conveying pipe is equal to the outer diameter of the spiral blade.

[0012] Compared with the prior art, the beneficial effects of the present invention by adopting the above technical solution are as follows:

[0013] 1. This invention uses the power of a drive motor to rotate a disc, which in turn rotates a fixed rod. Simultaneously, due to the meshing of gears, teeth, and ring gears, a connecting rod rotates relative to the fixed rod. This allows the stirring rods on the surface of the connecting rod and the surface of the fixed rod to simultaneously mix the liquid inside the mixing tank. Compared with traditional devices, this device, through the relatively rotating stirring rods, can generate a more complex fluid motion pattern, which helps the liquid disperse and mix more quickly. At the same time, it generates greater shear force during the stirring process, causing the liquid to be more effectively broken and torn under shearing action, forming smaller micro-clusters, accelerating the mixing process, and ensuring that the liquid is fully stirred and mixed in all areas of the mixing tank, avoiding uneven mixing in certain areas, thereby improving the mixing quality.

[0014] 2. This invention uses a servo motor to rotate the spiral blades on the surface of the movable rod, thereby drawing the liquid material inside the mixing tank into the gap between the spiral blades and conveying it to the top of the discharge pipe for collection. Compared with traditional devices, this device can effectively convey the mixed liquid material from the discharge pipe, thus providing continuity and stability. It ensures that the liquid material is discharged at a constant rate, thereby improving discharge efficiency. At the same time, the rotation of the spiral blades can also generate a certain centrifugal force, which helps to throw out residues or adhering substances in the liquid material, further reducing blockages and stagnation during the discharge process.

[0015] Other advantages, objectives and features of the invention will be set forth in part in the description which follows, and in part will be apparent to those skilled in the art from the following examination or study, or may be learned from the practice of the invention. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the present invention;

[0017] Figure 2 This is a schematic diagram of the exploded structure of the present invention;

[0018] Figure 3 for Figure 2 A magnified view of the structure at point A in the middle;

[0019] Figure 4 This is a schematic diagram of the cross-sectional structure of the material conveying pipe of the present invention.

[0020] In the diagram: 1. Mixing box; 2. Disc; 3. Circular groove; 4. Tooth; 5. Fixed rod; 6. Gear ring; 7. Circular plate; 8. Gear; 9. Connecting rod; 10. Stirring rod; 11. Drive motor; 12. Feed pipe; 13. Movable rod; 14. Spiral blade; 15. Servo motor; 16. Discharge pipe; 17. Motor protective cover; 18. Heat dissipation groove; 19. Feed pipe; 20. Observation window; 21. Support leg; 22. Foot pad. Detailed Implementation

[0021] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings. It should be noted that the description of these embodiments is for the purpose of helping to understand the present invention, but does not constitute a limitation of the present invention.

[0022] Furthermore, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0023] Please see the appendix Figure 1 -Appendix Figure 4The present invention discloses an integrated biological enzyme induction system for leech egg cocoon incubation boxes, comprising a mixing box 1, a disc 2 movably mounted inside the mixing box 1, and a circular groove 3 formed at the bottom of the disc 2. A fixing rod 5 is fixedly mounted inside the circular groove 3, a toothed ring 6 is fixedly mounted on the surface of the fixing rod 5, teeth 4 are fixedly mounted on the inner wall of the circular groove 3, a circular plate 7 is provided between the teeth 4 and the toothed ring 6, a gear 8 is fixedly mounted at the bottom of the circular plate 7, a connecting rod 9 is fixedly mounted at the bottom of the gear 8, and stirring rods 10 are fixedly mounted on the surfaces of both the connecting rod 9 and the fixing rod 5. A drive motor 11 is fixedly mounted on the top of the mixing box 1, the output shaft of the drive motor 11 is fixedly connected to the disc 2, and the drive motor 11 is electrically connected to a frequency converter for adjusting its speed. The circular groove 3 is filled with a lubricating medium to prevent wear between the gear 8 and the toothed ring 6 and the teeth 4. A feed pipe 19 is fixedly mounted on the top of the mixing box 1.

[0024] The above scheme utilizes a relatively rotating stirring rod 10 to generate a more complex fluid motion pattern, which helps the liquid to disperse and mix more quickly. At the same time, it generates greater shear force during the stirring process, causing the liquid to be more effectively broken and torn under shearing action, thus forming smaller micro-clusters, accelerating the mixing process, and ensuring that the liquid is fully stirred and mixed in all areas of the mixing chamber 1, avoiding localized uneven mixing, thereby improving the mixing quality.

[0025] like Figure 4 As shown, a conveying pipe 12 is fixedly installed on the surface of the mixing box 1, a movable rod 13 is movably installed inside the conveying pipe 12, a spiral blade 14 is fixedly installed on the surface of the movable rod 13, a discharge pipe 16 is fixedly installed at the bottom of the conveying pipe 12, a servo motor 15 is fixedly installed on the side of the conveying pipe 12, and the output shaft of the servo motor 15 is fixedly connected to the movable rod 13.

[0026] The above solution allows the mixed liquid to be effectively conveyed from the conveying pipe 12, thus ensuring continuity and stability. It ensures that the liquid is fed at a constant rate, thereby improving the feeding efficiency. At the same time, the rotation of the spiral blades 14 can also generate a certain centrifugal force, which helps to throw out the residues or adhering substances in the liquid, further reducing blockages and stagnation during the feeding process.

[0027] like Figure 1 As shown, a motor protective cover 17 is provided on the top of the mixing box 1, and the drive motor 11 is located inside the motor protective cover 17. A heat dissipation groove 18 is provided on the surface of the motor protective cover 17.

[0028] The above solution is adopted: by providing a motor protection cover 17 on the top of the mixing box 1, and the drive motor 11 is located inside the motor protection cover 17, the drive motor 11 can be protected. Heat dissipation grooves 18 are provided on the surface of the motor protection cover 17, thereby improving the heat dissipation of the drive motor 11.

[0029] like Figure 1 As shown, three sets of support legs 21 are fixedly installed at the bottom of the mixing box 1, and foot pads 22 are fixedly installed at the bottom of each of the three sets of support legs 21.

[0030] The above solution is adopted: by fixing three sets of support legs 21 at the bottom of the mixing tank 1, and fixing foot pads 22 at the bottom of each of the three sets of support legs 21, the weight of the mixing tank 1 can be distributed, thereby improving the stability of the device during operation.

[0031] like Figure 1 As shown, an observation window 20 is fixedly installed on the surface of the mixing box 1, and the entire observation window 20 is made of glass;

[0032] The above solution is adopted: by fixing an observation window 20 on the surface of the mixing box 1, the internal condition of the mixing box 1 can be observed. The observation window 20 is made entirely of glass, and the glass is transparent.

[0033] like Figure 4 As shown, the inner diameter of the conveying pipe 12 is equal to the outer diameter of the spiral blade 14;

[0034] The above solution is adopted: by setting the inner diameter of the conveying pipe 12 and the outer diameter of the spiral blade 14 to be equal, the spiral blade 14 can fit more closely when rotating inside the conveying pipe 12.

[0035] Working principle:

[0036] Before use, the liquid material is placed into the mixing tank 1 through the feed pipe 19. Then, the operator starts the drive motor 11 through the external switch. The power generated by the drive motor 11 causes the disc 2 to rotate. The rotation of the disc 2 causes the fixed rod 5 to rotate synchronously. At the same time, since the gear 8 meshes with the teeth 4 and the gear ring 6, the connecting rod 9 rotates relative to the fixed rod 5. Thus, the stirring rod 10 on the surface of the fixed rod 5 and the stirring rod 10 on the surface of the connecting rod 9 simultaneously mix the liquid material inside the mixing tank 1 thoroughly.

[0037] When the mixed liquid accumulates inside the mixing tank 1, the operator starts the servo motor 15 through an external switch. The power of the servo motor 15 causes the movable rod 13 to rotate. The rotation of the movable rod 13 drives the spiral blades 14 on its surface to rotate, thereby drawing the liquid inside the mixing tank 1 into the gap between the spiral blades 14 and conveying it to the top of the discharge pipe 16 for collection.

[0038] The terms "front," "back," "left," "right," "top," and "bottom" all refer to the figures in the accompanying drawings. Figure 1 Based on.

[0039] In the description of this invention, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this invention.

[0040] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments.

[0041] For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and these variations still fall within the protection scope of the present invention.

Claims

1. An integrated bio-enzyme induction system's leech egg cocoon hatching box comprising a mixing tank (1), characterized in that: The mixing box (1) is equipped with a disc (2) inside, and a groove (3) is provided at the bottom of the disc (2). A fixing rod (5) is fixedly installed inside the groove (3). A toothed ring (6) is fixedly installed on the surface of the fixing rod (5). Teeth (4) are fixedly installed on the inner wall of the groove (3). A circular plate (7) is provided between the teeth (4) and the toothed ring (6). A gear (8) is fixedly installed at the bottom of the circular plate (7). A connecting rod (9) is fixedly installed at the bottom of the gear (8). Stirring rods (10) are fixedly installed on the surfaces of the connecting rod (9) and the fixing rod (5). A drive motor (11) is fixedly installed on the top of the mixing box (1). The output shaft of the drive motor (11) is fixedly connected to the disc (2). The drive motor (11) is electrically connected to a frequency converter for adjusting its speed. The circular groove (3) is filled with a lubricating medium to prevent wear between the gear (8) and the gear ring (6) and the teeth (4). A feed pipe (19) is fixedly installed on the top of the mixing box (1).

2. The integrated bio-enzyme induction system's leech egg cocoon hatching cabinet according to claim 1, characterized in that: A conveying pipe (12) is fixedly installed on the surface of the mixing box (1). A movable rod (13) is movably installed inside the conveying pipe (12). A spiral blade (14) is fixedly installed on the surface of the movable rod (13). A discharge pipe (16) is fixedly installed at the bottom of the conveying pipe (12). A servo motor (15) is fixedly installed on the side of the conveying pipe (12), and the output shaft of the servo motor (15) is fixedly connected to the movable rod (13).

3. The integrated bio-enzyme induction system's leech egg cocoon hatching cabinet according to claim 1, characterized in that: The top of the mixing box (1) is provided with a motor protective cover (17), the drive motor (11) is located inside the motor protective cover (17), and the surface of the motor protective cover (17) is provided with heat dissipation grooves (18).

4. The integrated bio-enzyme induction system's leech egg cocoon hatching cabinet according to claim 1, characterized in that: The bottom of the mixing box (1) is fixedly equipped with three sets of support legs (21), and the bottom of each of the three sets of support legs (21) is fixedly equipped with foot pads (22).

5. The leech egg cocoon incubation box with an integrated biological enzyme induction system according to claim 1, characterized in that: An observation window (20) is fixedly installed on the surface of the mixing box (1), and the observation window (20) is made entirely of glass.

6. The leech egg cocoon incubation box with an integrated biological enzyme induction system according to claim 1, characterized in that: The inner diameter of the feed pipe (12) is equal to the outer diameter of the spiral blade (14).