Hardened material vibration scattering machine with feeding mechanism

By designing a feeding mechanism on the vibratory shredder, and utilizing lifting cylinders and traction frame guide wheels to achieve automatic material conveying and height adjustment, the problem of inconvenient material feeding in the vibratory shredder is solved, improving ease of use and applicability.

CN223779260UActive Publication Date: 2026-01-09QINGDAO LUQI MINING EQUIP CO LTD
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Patent Information

Application Number
CN202520675096.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-01-09
Estimated Expiration
2035-04-11

AI Technical Summary

Technical Problem

Existing vibratory dispersers are inconvenient to use for conveying and feeding the dispersed materials, requiring a feeding device, which makes them inconvenient to use.

Method used

A material shredder with a feeding mechanism was designed, including components such as a walking base frame, a traction frame, a connecting shaft, a sponge sleeve, a flow channel, a plug, a clamping block, and a lifting cylinder. The lifting cylinder controls the tilting and lifting of the conveying frame, and the guide wheels of the traction frame enable automatic material conveying and height adjustment.

Benefits of technology

It enables large-angle material unloading without affecting the vibration and dispersion effect, is suitable for loading requirements of various vehicle models, improves service life and simplifies the material loading process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of vibration scattering machines, and particularly relates to a hardened material vibration scattering machine with a feeding mechanism, which comprises a walking underframe, directional wheels are rotatably connected in the walking underframe, a connecting seat is fixedly mounted at the right end of the walking underframe, and a traction frame is rotatably mounted at the bottom of the connecting seat. The top of the traction frame is fixedly connected with a connecting shaft, the connecting shaft and the connecting base are rotationally installed through a bearing, the outer side of the connecting shaft is rotationally sleeved with a sponge sleeve, and the sponge sleeve is fixedly connected with the connecting base. On the basis of the vibration scattering machine, the length of the bottom conveyor is increased, the lifting oil cylinder is additionally arranged on the walking bottom frame, lifting control is carried out through a hydraulic component, the vibration scattering part is reasonable in structure, large-angle dumping and conveying loading can be carried out under the condition that the vibration scattering effect is not affected, the loading height can be adjusted, and the loading efficiency is improved. And the loading requirements of various vehicle types with various heights can be met.
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Description

Technical Field

[0001] This utility model relates to the field of vibration dispersing machine technology, specifically to a vibration dispersing machine for caking materials with a feeding mechanism. Background Technology

[0002] A vibratory disperser is a device used for dispersing, vibrating, or agitating granular, powdery, or particulate materials. Its main function is to disperse, classify, separate, or arrange materials into a regular structure or layout through vibration or the force of vibration. In industrial production, vibratory dispersers are widely used in processes such as screening, dust removal, drying, and mixing of particulate materials.

[0003] Current vibratory dispersers are inconvenient for conveying and feeding the dispersed materials. When feeding is required, a feeding device is still needed, making them inconvenient to use. Therefore, improvements are necessary. Utility Model Content

[0004] The purpose of this invention is to provide a material shredder with a feeding mechanism, which solves the problem of inconvenience in conveying and feeding the shredded material.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a material shredder with a feeding mechanism, comprising a traveling base frame, a directional wheel rotatably connected inside the traveling base frame, a connecting seat fixedly installed at the right end of the traveling base frame, a traction frame rotatably installed at the bottom of the connecting seat, a connecting shaft fixedly connected to the top of the traction frame, the connecting shaft and the connecting seat being rotatably mounted via bearings, a sponge sleeve rotatably sleeved on the outer side of the connecting shaft, the sponge sleeve being fixedly connected to the connecting seat, a flow channel opened inside the connecting seat, a plug slidably sleeved inside the flow channel, a locking block fixedly connected to the outer side of the plug, the locking block engaging with the connecting seat, a conveyor frame hinged to the top of the traveling base frame, a conveyor belt mounted on the conveyor frame, a shredding mechanism mounted on the conveyor frame, a fixed frame hinged to the upper end of the traveling base frame, a lifting cylinder fixedly installed inside the fixed frame, a lifting bracket fixedly installed on the outer side of the output end of the lifting cylinder, the lifting bracket being hinged to the conveyor frame, and a lifting hydraulic station fixedly installed inside the traveling base frame.

[0006] Preferably, the tail end of the flow channel is inclined, and the flow channel is connected to the sponge sleeve. By designing the flow channel, lubricating oil can be transported.

[0007] Preferably, the locking block and the plug are an integral structure, and both the locking block and the plug are made of rubber. The locking block allows it to deform under pressure.

[0008] Preferably, the connector has a slot inside, and a locking block engages inside the slot. By designing the slot and the locking block to engage, the plug can be fixed in place.

[0009] Preferably, a protective cover is provided on the outside of the vibration and dispersing mechanism, and the protective cover is fixedly installed on the outside of the conveyor frame. By designing the protective cover, the vibration and dispersing process can be protected.

[0010] Preferably, two guide wheels are rotatably mounted on the outer side of the traction frame, and the two guide wheels are symmetrically distributed at the front and rear ends of the traction frame. By designing guide wheels, the movement of the overall structure can be guided.

[0011] Preferably, a mounting frame is fixedly installed on the lower left side of the conveyor frame, and a conveyor motor is fixedly installed on the inner side of the mounting frame. By designing the conveyor motor, the conveyor belt can be driven.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model extends the length of the bottom conveyor on the basis of the vibration shredder, adds a lifting cylinder to the traveling frame, and uses hydraulic components to control the lifting. The vibration shredder has a reasonable structure and can be tilted at a large angle for conveying and loading without affecting the vibration effect. The loading height can be adjusted to meet the loading requirements of various heights and vehicle types.

[0014] 2. This utility model uses a traction frame to drive the guide wheel to rotate, enabling the overall structure to move. During the deflection of the traction frame, the connecting shaft rotates along the connecting seat and along the sponge sleeve. Since the sponge sleeve stores lubricating oil, it can lubricate the connecting shaft, reducing wear on the connecting shaft during the rotation of the traction frame and extending its service life. Furthermore, the removable plug facilitates the addition of lubricating oil to the inside of the sponge sleeve through the flow channel, making it convenient to use. Attached Figure Description

[0015] Figure 1 This is a perspective view of the overall structure of this utility model;

[0016] Figure 2 This utility model Figure 1 A front sectional view of the partial structure of the connector;

[0017] Figure 3 This utility model Figure 2 Enlarged view of point A.

[0018] In the diagram: 1. Walking frame; 2. Directional wheel; 3. Connecting seat; 4. Traction frame; 5. Connecting shaft; 6. Sponge sleeve; 7. Flow channel; 8. Plug; 9. Locking block; 10. Locking slot; 11. Conveyor frame; 12. Mounting frame; 13. Conveyor motor; 14. Conveyor belt; 15. Vibration mechanism; 16. Protective cover; 17. Fixing frame; 18. Lifting cylinder; 19. Lifting bracket; 20. Lifting hydraulic station; 21. Guide wheel. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1 A material shredder with a feeding mechanism includes a traveling base frame 1, an internally rotatably connected directional wheel 2, a connecting seat 3 fixedly installed at the right end of the traveling base frame 1, a traction frame 4 rotatably installed at the bottom of the connecting seat 3, and two guide wheels 21 rotatably installed on the outer side of the traction frame 4. The two guide wheels 21 are symmetrically distributed at the front and rear ends of the traction frame 4. By designing the guide wheels 21, the movement of the overall structure can be guided.

[0021] Please see Figure 1 , Figure 2 , Figure 3 A connecting shaft 5 is fixedly connected to the top of the traction frame 4. The connecting shaft 5 and the connecting seat 3 are rotatably installed through bearings. A sponge sleeve 6 is rotatably sleeved on the outside of the connecting shaft 5. The sponge sleeve 6 is fixedly connected to the connecting seat 3. A flow channel 7 is opened inside the connecting seat 3. The tail of the flow channel 7 is inclined. The flow channel 7 is connected to the sponge sleeve 6. The flow channel 7 is designed to transport lubricating oil. A plug 8 is slidably sleeved inside the flow channel 7. A locking block 9 is fixedly connected to the outside of the plug 8. The locking block 9 and the plug 8 are an integral structure. Both the locking block 9 and the plug 8 are made of rubber. The locking block 9 can be deformed by compression. The locking block 9 is engaged with the connecting seat 3. A slot 10 is opened inside the connecting seat 3. The locking block 9 is engaged inside the slot 10. The plug 8 can be fixed by the engagement between the slot 10 and the locking block 9.

[0022] Please see Figure 1The top of the traveling frame 1 is hinged to a conveyor frame 11. A mounting frame 12 is fixedly installed on the lower left side of the conveyor frame 11. A conveyor motor 13 is fixedly installed on the inner side of the mounting frame 12. The conveyor motor 13 is designed to drive the conveyor belt 14. The conveyor frame 11 is equipped with a conveyor belt 14 and a vibration mechanism 15. A protective cover 16 is installed on the outer side of the vibration mechanism 15. The protective cover 16 is fixedly installed on the outer side of the conveyor frame 11. The protective cover 16 is designed to protect the vibration process. The upper end of the traveling frame 1 is hinged to a fixed frame 17. A lifting cylinder 18 is fixedly installed inside the fixed frame 17. A lifting bracket 19 is fixedly installed on the outer side of the output end of the lifting cylinder 18. The lifting bracket 19 is hinged to the conveyor frame 11. A lifting hydraulic station 20 is fixedly installed inside the traveling frame 1.

[0023] The specific implementation process of this utility model is as follows: In use, the conveyor motor 13 operates to rotate the conveyor belt 14, which conveys the material. When the material is conveyed to the vibration and dispersing mechanism 15, it is dispersed. Under the action of the protective cover 16, the dispersing process is protected to prevent material splashing, thus realizing automatic material conveying and loading. When it is necessary to adjust the loading height, the lifting cylinder 18 is activated. The lifting cylinder 18 drives the lifting bracket 19 to move, and the fixed frame 17 and the conveyor frame 11 will deflect accordingly. Without affecting the dispersing effect, the material can be tilted at a large angle for conveying and loading. The loading height can be adjusted to meet the loading requirements of various heights and vehicle types.

[0024] The guide wheel 21 can be rotated by the traction frame 4 to achieve the movement of the whole structure. During the deflection of the traction frame 4, the connecting shaft 5 can rotate along the connecting seat 3. The connecting shaft 5 can rotate along the sponge sleeve 6. Since the sponge sleeve 6 stores lubricating oil, it can lubricate the connecting shaft 5, which can reduce the rotational wear of the connecting shaft 5 when the traction frame 4 rotates and improve its service life. By pulling the plug 8, the locking block 9 is separated from the locking groove 10. Then, the lubricating oil can be injected into the sponge sleeve 6 through the flow channel 7 to replenish the lubricating oil. It is convenient to use.

[0025] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A material shredder for caking materials with a feeding mechanism, comprising a traveling frame (1), characterized in that: The walking frame (1) is rotatably connected to a directional wheel (2). A connecting seat (3) is fixedly installed at the right end of the walking frame (1). A traction frame (4) is rotatably installed at the bottom of the connecting seat (3). A connecting shaft (5) is fixedly connected to the top of the traction frame (4). The connecting shaft (5) and the connecting seat (3) are rotatably installed through a bearing. A sponge sleeve (6) is rotatably sleeved on the outside of the connecting shaft (5). The sponge sleeve (6) is fixedly connected to the connecting seat (3). A flow channel (7) is opened inside the connecting seat (3). A plug (8) is slidably sleeved inside the flow channel (7). A plug (8) is fixedly connected to the outside of the plug (8). The card block (9) is engaged with the connecting seat (3). The top of the walking frame (1) is hinged with a conveyor frame (11). A conveyor belt (14) is provided on the conveyor frame (11). A vibration dissipation mechanism (15) is provided on the conveyor frame (11). A fixed frame (17) is hinged to the upper end of the walking frame (1). A lifting cylinder (18) is fixedly installed inside the fixed frame (17). A lifting bracket (19) is fixedly installed on the outer side of the output end of the lifting cylinder (18). The lifting bracket (19) is hinged to the conveyor frame (11). A lifting hydraulic station (20) is fixedly installed inside the walking frame (1).

2. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: The tail of the flow channel (7) is inclined, and the flow channel (7) is connected to the sponge sleeve (6).

3. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: The card block (9) and the plug (8) are an integral structure, and both the card block (9) and the plug (8) are made of rubber.

4. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: The connector (3) has a slot (10) inside, and a card block (9) is engaged inside the slot (10).

5. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: A protective cover (16) is provided on the outside of the vibration dispersing mechanism (15), and the protective cover (16) is fixedly installed on the outside of the conveyor frame (11).

6. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: The traction frame (4) is rotatably mounted with guide wheels (21). There are two guide wheels (21), which are symmetrically distributed at the front and rear ends of the traction frame (4).

7. A material scattering machine with a feeding mechanism according to claim 1, characterized in that: A mounting frame (12) is fixedly installed on the lower left side of the conveyor frame (11), and a conveyor motor (13) is fixedly installed on the inner side of the mounting frame (12).