Large cyclone recycling and separating mechanism

By introducing screening blocks and recovery boxes into the large cyclone recovery separator, secondary separation of materials is achieved, solving the problem of low utilization efficiency of materials after separation in the prior art and improving the recovery rate of materials.

CN223367207UActive Publication Date: 2025-09-23FOSHAN XINGTU ELECTROMECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202422615273.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-23
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

The existing large cyclone recovery separator lacks a secondary separation function, resulting in low recycling efficiency of the separated materials.

Method used

A separation mechanism including a cyclone separator, a screening block and a recovery box is designed. The guide seat is connected to the screening block to achieve secondary separation of the material after the first separation in the second screening block. The reflux pump and reflux pipe are used to transfer the secondary separated material to the conveying pipe, and the recovery box collects the residual material.

Benefits of technology

The secondary separation of materials is achieved, the utilization rate of materials is improved, and the recycling efficiency of separated materials is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a large cyclone recycling and separating mechanism which comprises a cyclone separator and a screening block, a combined rod is arranged at one end of the cyclone separator, the combined rod is arranged on one side in a positioning block in a penetrating mode, and a guide seat is arranged on the other side in the positioning block in a penetrating mode. A protruding drainage pipe is arranged at one end of the screening block and penetrates into the guide seat, a plurality of separating rods are arranged in the screening block, a key groove is formed in one side of the screening block and connected with one side of a transmission belt, the other side of the transmission belt is connected with a shaft rod arranged on driving equipment, and the other end of the screening block penetrates into the reflux pump. A protruding reflux valve is arranged on one side of the reflux pump, one end of the reflux valve is arranged in a reflux pipe in a penetrating manner, one end of the reflux pipe is arranged in a conveying pipe in a penetrating manner, and the conveying pipe is arranged on one side of the cyclone separator; the device is simple and reasonable in structural design and has a secondary separation structure.
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Description

Technical Field

[0001] The utility model belongs to the technical field of large cyclone recovery and separation, and particularly relates to a large cyclone recovery and separation mechanism. Background Art

[0002] At present, large cyclone recovery separators are equipment used for separation of gas-solid systems or liquid-solid systems; they use the rotational motion caused by the tangential introduction of airflow and the centrifugal force with greater inertia to separate solid particles or liquid droplets.

[0003] In the production plant, it is recycled through the separator, which helps the material to be reused for a second time, thereby reducing the consumption of production materials.

[0004] However, the existing separators use tanks or bags to recycle the separated gas-solid system or liquid-solid system, and the separators transfer the separated materials to the tanks or bags; common separators lack the ability to perform secondary separation. Utility Model Content

[0005] The utility model provides a large cyclone recovery and separation mechanism, which solves the problems raised in the background technology of the prior art.

[0006] The technical solution of the utility model is achieved as follows: the separation mechanism includes:

[0007] Cyclone separator, wherein the cyclone separator is an existing technology;

[0008] A combination rod is provided at one end of the cyclone separator, a fixing hole is provided on one side of the combination rod, and a groove is provided on the other side;

[0009] The combination rod is arranged on one side of the positioning block, and the combination rod is connected to the frame of the positioning block by using a fixing hole and a groove. The positioning block includes a first block and a second block, and the first block and the second block are both provided with a fixing hole and a key block;

[0010] A guide seat is provided on the other side of the positioning block;

[0011] The guide seat is provided with a fixing hole on one side and a groove on the other side, which helps the positioning block and the guide seat to form a snap-fit ​​connection structure, and one side of the guide seat and one side of the combination rod are in contact with each other;

[0012] A screening block, wherein one end of the screening block is provided with a protruding drainage tube, one end of the drainage tube is provided with a groove, and a sealing ring is passed through the groove;

[0013] The drainage tube is arranged inside the guide seat;

[0014] A plurality of separation rods are provided in the screening block, and the combination of the separation rods forms a cross-shaped combination;

[0015] A keyway is provided on one side of the screening block, the keyway is connected to one side of the transmission belt, and the other side of the transmission belt is connected to a shaft provided on the driving device, which helps the screening block to form a rotational motion;

[0016] The other end of the screening block is provided with a protruding first threaded rod, and the first threaded rod is passed through the interior of the reflux pump;

[0017] A protruding reflux valve is provided on one side of the reflux pump, one end of the reflux valve is passed through the interior of the reflux pipe, one end of the reflux pipe is passed through the interior of the delivery pipe, and the delivery pipe is provided on one side of the cyclone separator;

[0018] A recovery box is provided with a protruding second threaded rod at one end of the recovery box, and the second threaded rod is passed through the interior of the reflux pump.

[0019] The other end of the recycling box is provided with a bottom plate, and the recycling box and the bottom plate are assembled by threads.

[0020] As a preferred embodiment, the recycling box is a box made of a transparent material.

[0021] As a preferred embodiment, the reflux pipe adopts a structure in which a nut and a reflux valve are integrated.

[0022] As a preferred embodiment, one end of the cyclone separator, the screening block and the reflux pump are all conical in shape.

[0023] After adopting the above technical solution, the beneficial effects of the utility model are: its structural design is simple and reasonable, and it has a secondary separation structure. Its secondary separation has a reflux utilization structure, thereby improving the utilization rate of materials; its separation mechanism includes a cyclone separator, a screening block and a recovery box. The cyclone separator is connected to the screening block through a guide seat. The cyclone separator performs the first separation, and the screening block performs a second separation on the material separated by the cyclone separator, thereby realizing the secondary separation structure.

[0024] A reflux pump is provided at the lower end of the screening block, which is connected to the reflux pipe through a reflux valve. One end of the reflux pipe is passed through the interior of the conveying pipe. The reflux pump transfers the usable materials from the secondary separation to the interior of the conveying pipe, thereby improving the utilization rate of the materials.

[0025] A recovery box is provided at the lower end of the reflux pump, and the recovery box has residual materials that can be collected. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only 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 labor.

[0027] Figure 1 It is an exploded view of the overall structure of the separation mechanism of the utility model.

[0028] Figure 2 It is a schematic diagram of the overall structure of the separation mechanism of the utility model.

[0029] Figure 3 This is a schematic diagram of the overall structure of the screening block of the utility model.

[0030] Figure 4 This is a cross-sectional view of the overall structure of the screening block of the present invention.

[0031] Figure 5 It is an enlarged view of the overall structure of the utility model A. DETAILED DESCRIPTION

[0032] The following will be combined with the 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.

[0033] like Figure 1-Figure 5 As shown:

[0034] First embodiment:

[0035] The separation mechanism includes a cyclone separator 2, a screening block 5 and a recovery box 9. The cyclone separator 2 is connected to the screening block 5 through a guide seat 4. The cyclone separator 2 performs the first separation, and the screening block 5 performs a second separation on the material separated by the cyclone separator 2, thereby realizing a secondary separation structure; a reflux pump 8 is provided at the lower end of the screening block 5, and the reflux pump 8 is connected to the reflux pipe 800 through a reflux valve 80. One end of the reflux pipe 800 is passed through the interior of the conveying pipe 21. The reflux pump 8 transfers the materials that can be used in the secondary separation to the interior of the conveying pipe 21, thereby improving the utilization rate of the materials; a recovery box 9 is provided at the lower end of the reflux pump 8, and the recovery box 9 has residual materials that can be collected.

[0036] A protruding drainage pipe 50 is provided at one end of the screening block 5. The drainage pipe 50 is passed through the interior of the guide seat 4. The guide seat 4 drains the material separated by the cyclone separator 2 into the interior of the screening block 5, thereby facilitating a secondary separation of the material separated by the cyclone separator 2.

[0037] The screening block 5 is provided with a plurality of separation rods 51, which are arranged in a cross shape. A key slot 52 is provided on one side of the screening block 5. The key slot 52 is connected to one side of a transmission belt 6, and the other side of the transmission belt 6 is connected to a shaft provided on a drive device 60, thereby helping the screening block 5 to rotate. Furthermore, the screening block 5 uses the separation rods 51 to disperse the material separated by the cyclone separator 2, thereby achieving a secondary separation structure.

[0038] Preferably, the screening block 5 is connected to the driving device 60 via a transmission belt 6 , so that the screening block 5 realizes a rotational movement, which helps to improve the separation rod 51 to break up the materials separated by the cyclone separator 2 .

[0039] The driving device 60 (motor, cylinder) can be existing technology.

[0040] A protruding first threaded rod 7 is provided at the other end of the screening block 5, and the first threaded rod 7 is passed through the interior of the reflux pump 8. A protruding reflux valve 80 is provided on one side of the reflux pump 8. One end of the reflux valve 80 is passed through the interior of the reflux pipe 800, so that the secondary separated material can be reused. One end of the reflux pipe 800 is passed through the interior of the delivery pipe 21, and the delivery pipe 21 is provided on one side of the cyclone separator 2, so as to improve the utilization rate of the material.

[0041] One end of the recovery box 9 is provided with a protruding second threaded rod 70 , and the second threaded rod 70 is passed through the interior of the reflux pump 8 , while the recovery box 9 has residual material that can be collected.

[0042] The cyclone separator 2 is an existing technology, which uses the principles of wind pressure and centrifugal force to help achieve the structure of separating gas-solid system or liquid-solid system.

[0043] A combination rod 20 is provided at one end of the cyclone separator 2. A fixing hole 200 is provided on one side of the combination rod 20 and a groove is provided on the other side. The combination rod 20 is inserted into one side of the positioning block and is connected to the frame of the positioning block using the fixing hole 200 and the groove. The positioning block includes a first block 3 and a second block 30. Both the first block 3 and the second block 30 are provided with a fixing hole 200 and a key block 300. A guide seat 4 is inserted into the other side of the positioning block. The guide seat 4 has a fixing hole 200 on one side and a groove on the other side, which helps the positioning block and the guide seat 4 form a snap-fit ​​connection structure, thereby improving the stability of the connection between the cyclone separator 2 and the guide seat 4.

[0044] One side of the guide seat 4 and one side of the combination rod 20 are in contact with each other, which facilitates the material separated by the cyclone separator 2 to be guided into the interior of the screening block 5 .

[0045] Second embodiment:

[0046] A groove is provided in one end of the drainage tube 50 , and a sealing ring 500 is passed through the groove to help improve the sealing performance of the assembly position between the drainage tube 50 and the guide seat 4 .

[0047] The third embodiment:

[0048] The recycling box 9 is a box body made of a transparent material, which makes it easy to observe the carrying capacity of the recycling box 9.

[0049] The fourth embodiment:

[0050] The reflux pipe 800 adopts a structure in which the nut 801 and the reflux valve 80 are integrated, thereby improving the stability of the assembly of the reflux pipe 800 and the reflux valve 80 .

[0051] The fifth embodiment:

[0052] One end of the cyclone separator 2, the screening block 5 and the reflux pump 8 are all conical in shape, so that the separated materials can be discharged downward.

[0053] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A large cyclone recovery and separation mechanism, characterized by: include; A cyclone separator, wherein one end of the cyclone separator is provided with a combination rod, the combination rod is passed through one side of the positioning block, and the other side of the positioning block is passed through a guide seat; A screening block, wherein one end of the screening block is provided with a protruding drainage tube, and the drainage tube is passed through the interior of the guide seat; A plurality of separation rods are provided in the screening block; A keyway is provided on one side of the screening block, the keyway is connected to one side of the transmission belt, and the other side of the transmission belt is connected to a shaft provided on the driving device; The other end of the screening block is inserted into the interior of the reflux pump, and a protruding reflux valve is provided on one side of the reflux pump; One end of the reflux valve is arranged inside the reflux pipe, one end of the reflux pipe is arranged inside the delivery pipe, and the delivery pipe is arranged on one side of the cyclone separator.

2. A large cyclone recovery and separation mechanism according to claim 1, characterized in that: The separation mechanism further comprises a recovery box, one end of which is arranged inside the reflux pump, and the other end of which is provided with a bottom plate.

3. A large cyclone recovery and separation mechanism according to claim 2, characterized in that: The combination rod is provided with a fixing hole on one side and a groove on the other side. The combination rod is connected to the frame of the positioning block through the fixing hole and the groove. The positioning block includes a first block and a second block. The first block and the second block are both provided with a fixing hole and a key block.

4. A large cyclone recovery and separation mechanism according to claim 3, characterized in that: One side of the guide seat and one side of the combination rod are in contact with each other.

5. A large cyclone recovery and separation mechanism according to claim 4, characterized in that: One end of the cyclone separator, the screening block and the reflux pump are all conical in shape.