Spherical graphite crushing and collecting device

Through the unique three-group roller design and the forward and reverse rotation of the rolling and scraping wheel, the problems of uneven particles and difficulty in discharge after graphite crushing are solved, achieving uniformity after graphite crushing and reducing waste.

CN223276325UActive Publication Date: 2025-08-29LUO BEI XIN LONG YUAN GRAPHITE PROD CO LTD
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Patent Information

Application Number
CN202421936143.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-08-29
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

Traditional graphite crushing equipment has the problem that the particle size is uneven after graphite crushing and it is difficult to effectively discharge, so it needs to be screened separately.

Method used

The unique three-group roller design is adopted, including an annular groove wheel, a horizontal gear wheel and a rolling scraper wheel. The uniform crushing and collection of spherical graphite is achieved through the crushing shaft member, and the forward and reverse rotation of the rolling scraper wheel achieves particle uniformity and reduce waste.

Benefits of technology

The particle uniformity after graphite crushing is improved, the waste of graphite powder is reduced, and the subsequent processing process is simplified.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a spherical graphite smashing and collecting device which comprises a smashing cylinder, a smashing shaft piece, a feeding port, a discharging port and a cylinder outer frame, the cylinder outer frame is fixed on the outer side face of the smashing cylinder, the feeding port is formed in the top side face of the smashing cylinder, the discharging port is formed in the bottom side face of the smashing cylinder, the smashing shaft piece is arranged in the smashing cylinder, and the smashing shaft piece is arranged in the smashing cylinder. And the side end of the crushing shaft piece penetrates through the side end of the crushing cylinder. According to the utility model, the arrangement of spherical graphite crushing and collecting is optimized, the structure of a traditional graphite crusher is changed, the particle uniformity of graphite crushing is greatly improved due to the unique design of three groups of rollers, and the waste of graphite powder is reduced due to the design of the roller and the characteristic of different effects of forward and reverse rotation of the collecting scraper, so that the spherical graphite crushing and collecting device is suitable for popularization and application.
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Description

Technical Field

[0001] The utility model relates to the field of graphite processing, in particular to a spherical graphite crushing and collecting device. Background Art

[0002] After graphite is processed into spherical shape, it needs to be crushed before use. Although the traditional graphite crushing equipment is technically mature, there are problems such as different amounts of graphite powder that cannot be discharged after graphite crushing, and the graphite particles are uneven in size after crushing. Separate screening is required for subsequent processing of graphite. For this purpose, a spherical graphite crushing and collecting device is designed. Utility Model Content

[0003] The purpose of this utility model is to provide a spherical graphite crushing and collecting device to solve the above technical problems. To achieve the above purpose, this utility model adopts the following technical solutions:

[0004] A spherical graphite crushing and collecting device includes a crushing cylinder, a crushing shaft, a feeding port, a discharging port, and a cylinder outer frame. The cylinder outer frame is fixed to the outer side surface of the crushing cylinder, the feeding port is arranged on the top side surface of the crushing cylinder, the discharging port is arranged on the bottom side surface of the crushing cylinder, the crushing shaft is arranged in the crushing cylinder, and the side end of the crushing shaft passes through the side end of the crushing cylinder.

[0005] Based on the above technical solution, the crushing shaft consists of a shaft end plate, a central shaft, a power connecting wheel, an annular groove wheel, a transverse tooth groove wheel, and a rolling and scraping wheel. The shaft end plates are provided in two groups, and the two groups of shaft end plates are oppositely arranged on the central shaft. The power connecting wheel is arranged at the side end of the central shaft. A wheel end connecting hole is opened on the shaft end plate. The annular groove wheel, transverse tooth groove wheel, rolling and scraping wheel, etc. are arranged at a circumferential angle between the two groups of shaft end plates, and the two ends of the annular groove wheel, transverse tooth groove wheel, and rolling and scraping wheel are respectively connected to the wheel end connecting holes.

[0006] The cam is provided with an axially extending groove of the long roller and an axially extending groove of the cross-toothed groove wheel, wherein the cam is provided with an axially extending groove of the long roller and an axially extending groove of the cross-toothed groove wheel.

[0007] Compared with the existing technology, the utility model has the following advantages: the utility model optimizes the setting of spherical graphite crushing and collecting, changes the structure of the traditional graphite crusher, and the unique design of three sets of rollers greatly improves the particle uniformity of graphite crushing. The structure adopts the design of the roller and the characteristics of the different effects of the forward and reverse rotation of the scraper, which reduces the waste of graphite powder and is suitable for popularization and use. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] Figure 1 This is a diagram of the overall appearance of the utility model.

[0009] Figure 2 This is a schematic diagram of the structure disassembly of the utility model.

[0010] Figure 3 This is a schematic diagram of the disassembly of the crushing shaft of the utility model.

[0011] Figure 4 It is a schematic diagram of the annular groove wheel and the transverse tooth groove wheel of the utility model.

[0012] Figure 5 This is a schematic diagram of the rolling and scraping wheel of the utility model.

[0013] In the figure: crushing cylinder 1, crushing shaft 2, feeding port 3, discharging port 4, cylinder outer frame 5, shaft end plate 6, central shaft 7, power connecting wheel 8, annular groove wheel 9, transverse tooth groove wheel 10, crushing and scraping wheel 11, wheel end connecting hole 12, long roller 13, roller shaft 14, annular groove 15, transverse tooth groove 16, scraping blade 17, blade connecting shaft 18, blade receiving groove 19. DETAILED DESCRIPTION

[0014] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementations.

[0015] A spherical graphite crushing and collecting device includes a crushing cylinder 1, a crushing shaft 2, a feeding port 3, a discharging port 4, and a cylinder outer frame 5. The cylinder outer frame 5 is fixed to the outer side of the crushing cylinder 1, the feeding port 3 is arranged on the top side of the crushing cylinder 1, and the discharging port 4 is arranged on the bottom side of the crushing cylinder 1. The crushing shaft 2 is arranged in the crushing cylinder 1, and the side end of the crushing shaft 2 passes through the side end of the crushing cylinder 1.

[0016] The crushing shaft 2 is composed of a shaft end plate 6, a central shaft 7, a power connecting wheel 8, an annular groove wheel 9, a transverse tooth groove wheel 10, and a rolling and scraping wheel 11. The shaft end plate 6 is provided with two groups, and the two groups of shaft end plates 6 are oppositely arranged on the central shaft. The power connecting wheel 8 is arranged at the side end of the central shaft 7. A wheel end connecting hole 12 is opened on the shaft end plate 6. The annular groove wheel 9, the transverse tooth groove wheel 10, and the rolling and scraping wheel 11 are arranged at equal circumferential angles between the two groups of shaft end plates 6, and the two ends of the annular groove wheel 9, the transverse tooth groove wheel 10, and the rolling and scraping wheel 11 are respectively connected to the wheel end connecting hole 12.

[0017] The annular groove wheel 9 and the transverse tooth groove wheel 10 are both composed of a long roller 13 and a roller shaft 14. The roller shaft 14 is arranged at the center of both ends of the long roller 13. The outer side of the long roller 13 in the annular groove wheel 9 is provided with an annular groove 15 arranged at equal intervals. The outer side of the long roller 13 in the transverse tooth groove wheel 10 is provided with transverse tooth grooves 16 with equal circumferential angles. The rolling scraping wheel 11 is composed of a long roller 13, a roller shaft 14, a scraping blade 17, and a blade connecting shaft 18. The roller shaft 14 is arranged at the side end of the long roller 13. Multiple sets of blade receiving grooves 19 are provided on the outside of the long roller 13 in the scraping wheel 11. The multiple sets of blade receiving grooves 19 are arranged at equal circumferential angles. The side edges of the scraping blade 17 are respectively connected to the blade receiving grooves 19 through the blade connecting shafts 18, and the blade connecting shafts 18 are arranged on one side of the blade receiving grooves 19. The scraping blade 17 can rotate around the blade connecting shaft 18 as the axis, and the scraping blade 17 can be folded in the blade receiving groove 19. The roller shaft 14 at the side end of the long roller 13 is correspondingly connected to the wheel end connecting hole 12.

[0018] Working principle of the utility model: The working process of the equipment is to put the raw materials into the equipment through the feeding port 3, and then the raw materials are crushed through the crushing cylinder 1 and the crushing shaft 2 to crush the spherical graphite, and finally discharged through the discharge port 4.

[0019] In the above process, the crushing process is achieved by the three rollers of the annular groove wheel 9, the transverse tooth groove wheel 10, and the crushing and scraping wheel 11, so that the spherical graphite is crushed into powder. During the crushing process, the annular groove wheel 9 and the transverse tooth groove wheel 10 can evenly distribute the spherical graphite between the crushing cylinder 1 and the crushing shaft 2. In addition, the crushing and scraping wheel 11 can fully crush and crush.

[0020] The crushing and scraping wheel 11 can achieve different effects by rotating forward and backward. When it rotates along the foldable direction of the scraping blade 17 and the blade connecting shaft 18, the long roller 13 can be pressed. When it rotates against the foldable direction of the scraping blade 17 and the blade connecting shaft 18, the outer edge of the scraping blade 17 can slide tightly against the inner wall of the crushing cylinder 1, thereby scraping the graphite powder in the cylinder and discharging the scraped graphite powder through the discharge port 4.

[0021] The above is a preferred embodiment of the present invention. For ordinary technicians in this field, based on the teachings of the present invention, without departing from the principles and spirit of the present invention, changes, modifications, replacements and variations made to the implementation methods are still within the scope of protection of the present invention.

Claims

1. A spherical graphite crushing and collecting device, characterized in that: The invention comprises a crushing barrel (1), a crushing shaft (2), a feeding port (3), a discharging port (4), and a barrel outer frame (5), wherein the barrel outer frame (5) is fixed to the outer side surface of the crushing barrel (1), the feeding port (3) is arranged on the top side surface of the crushing barrel (1), the discharging port (4) is arranged on the bottom side surface of the crushing barrel (1), the crushing shaft (2) is arranged in the crushing barrel (1), and the side end of the crushing shaft (2) passes through the side end of the crushing barrel (1).

2. A spherical graphite crushing and collecting device according to claim 1, characterized in that: The crushing shaft (2) is composed of a shaft end plate (6), a central shaft (7), a power connecting wheel (8), an annular groove wheel (9), a transverse tooth groove wheel (10), and a rolling and scraping wheel (11). The shaft end plate (6) is provided with two groups, and the two groups of shaft end plates (6) are oppositely arranged on the central shaft. The power connecting wheel (8) is arranged at the side end of the central shaft (7). A wheel end connecting hole (12) is opened on the shaft end plate (6). The annular groove wheel (9), the transverse tooth groove wheel (10), and the rolling and scraping wheel (11) are arranged at equal circumferential angles between the two groups of shaft end plates (6), and the two ends of the annular groove wheel (9), the transverse tooth groove wheel (10), and the rolling and scraping wheel (11) are respectively connected to the wheel end connecting hole (12).

3. A spherical graphite crushing and collecting device according to claim 2, characterized in that: The annular groove wheel (9) and the transverse tooth groove wheel (10) are both composed of a long roller (13) and a roller shaft (14). The roller shaft (14) is arranged at the center of both ends of the long roller (13). The outer side of the long roller (13) in the annular groove wheel (9) is provided with annular grooves (15) arranged at equal intervals. The outer side of the long roller (13) in the transverse tooth groove wheel (10) is provided with transverse tooth grooves (16) with equal circumferential angles. The rolling scraping wheel (11) is composed of a long roller (13), a roller shaft (14), a scraping blade (17), and a blade connecting shaft (18). The roller shaft (14) is arranged at the side end of the long roller (13). The outer side of the long roller (13) in the rolling scraping wheel (11) is provided with a plurality of blade receiving grooves (19), and the plurality of blade receiving grooves (19) are arranged at equal circumferential angles. The side edges of the scraping blade (17) are respectively connected to the blade receiving grooves (19) through the blade connecting shaft (18), and the blade connecting shaft (18) is arranged on one side of the blade receiving groove (19). The scraping blade (17) can rotate with the blade connecting shaft (18) as the axis, and the scraping blade (17) can be folded in the blade receiving groove (19). The roller shaft (14) at the side end of the long roller (13) is correspondingly connected to the wheel end connecting hole (12).