Magnesia carbon brick processing raw material conveying device

By designing a raw material conveyor device for processing magnesium carbon bricks, and using a motor to drive the conveyor belt to rotate and adjustable pallet structure, the problem that magnesium carbon brick raw materials cannot adapt to the feeding ports at different heights during the transportation process, achieving the effect of cleaning and stable transportation.

CN223073250UActive Publication Date: 2025-07-08JIANGSU SUJIA GROUP NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202422287711.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-08
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

During the transportation process, magnesium carbon brick raw materials cannot be easily transported to feeding ports of different heights, resulting in the inability to stable transportation of materials to the processing station.

Method used

A magnesium carbon brick processing raw material conveying device is designed, which drives the conveyor belt to rotate through a motor drive shaft. Combined with an adjustable pallet and cotton wipe structure, the cleaning of the conveyor belt and the stable conveying of raw materials is achieved. The pallet can be adjusted to adapt to the feeding ports of different heights.

Benefits of technology

The cleaning effect of the conveyor belt is achieved, ensuring the stable transportation of raw materials to the processing station, adapting to feeding ports of different heights, and improving the convenience and stability of transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of magnesia carbon brick processing, in particular to a magnesia carbon brick processing raw material conveying device which comprises a middle base, transmission shafts are installed at the left end and the right end of the middle base respectively, a motor is installed on the front side of the left end of the middle base, and a conveying belt is arranged on the end side, close to the transmission shafts, of the middle base. A left supporting leg and a right supporting leg are installed at the bottoms of the left end and the right end of the middle base respectively, a storage disc is installed on the inner side of the right supporting leg, wiping cotton is arranged on the top of the storage disc, and a disc cavity is formed in the storage disc. The orientation position of the supporting plate is changed by rotating the supporting plate, the plate cavity of the supporting plate is used for receiving magnesia carbon brick processing raw materials conveyed and falling from the left side of the conveying belt, the raw materials slide along the inner side of the plate cavity and are arranged downwards from the left side, the supporting plate has the effects of bearing the raw materials and guiding the raw materials downwards, and the orientation of the supporting plate is controllable and adjustable. The device is used for adapting to machining stations with different heights.
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Description

Technical Field

[0001] The utility model relates to the technical field of magnesia-carbon brick processing, in particular to a conveying device for raw materials in magnesia-carbon brick processing. Background Art

[0002] Magnesia-carbon bricks are unburned carbon composite refractory materials made of high-melting-point basic oxide magnesia (melting point 2800°C) and high-melting-point carbon materials that are difficult to be infiltrated by slag as raw materials, and various non-oxide additives are added. When the raw materials for magnesia-carbon brick processing are conveyed, a conveyor belt will be used to convey the raw materials for magnesia-carbon bricks. This conveying device is the conveyor belt for conveying the raw materials for magnesia-carbon bricks.

[0003] When the raw materials for magnesia-carbon bricks are conveyed, the raw materials will be conveyed to the processing station, such as conveying the raw materials into the mixing device for mixing. Since the heights of the processing stations are different, the positions of the receiving ports are naturally different in height. However, the conveying position of the conveyor is fixed, resulting in the inability to conveniently convey the materials to the receiving port. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a conveying device for raw materials in magnesia-carbon brick processing.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A conveying device for raw materials in magnesia-carbon brick processing includes a middle seat. Drive shafts are installed at both the left and right ends of the middle seat. A motor is installed on the front side of the left end of the middle seat. A conveyor belt is arranged on the side of the middle seat close to the drive shaft. Left and right support feet are respectively installed at the bottom of the left and right ends of the middle seat. A storage tray is installed inside the right support foot. A cotton swab is arranged on the top of the storage tray. A tray cavity is opened inside the storage tray. Screws are respectively inserted through the side end walls of the left and right support feet. A rotating shaft is installed on the middle side end of the left support foot. A support plate is installed at the end side of the rotating shaft. A plate cavity is opened inside the support plate. A sliding strip is arranged at the bottom of the support plate.

[0007] Preferably, the middle seat and the drive shafts are rotatably connected, and the motor drives the conveyor belt through the drive shaft.

[0008] Preferably, the middle seat is fixedly connected to both the left support foot and the right support foot.

[0009] Preferably, the storage tray and the cotton swab are adhesively connected.

[0010] Preferably, the left support foot and the support plate form a rotating structure through the rotating shaft.

[0011] Preferably, the support plate and the sliding strip are fixedly connected, and the sliding strip is movably connected to the left support foot.

[0012] The utility model has at least the following beneficial effects:

[0013] 1. Through the operation of the motor, the transmission shaft is driven to rotate, driving the conveyor belt to rotate to convey the raw materials for magnesia-carbon brick processing. The left support leg and the right support leg are used to support the middle seat. The cotton wiper made of sponge on the top of the storage tray is used to contact the end wall of the conveyor belt. The rotating conveyor belt scrapes against the cotton wiper to remove dust and impurities at the end wall of the conveyor belt, achieving the cleaning effect. The scraped impurities and dust fall into the storage tray for collection. The screw at the end wall of the right support leg is tightened to lock and limit the storage tray, facilitating its stable use;

[0014] 2. Through the rotation of the rotating shaft, the supporting plate is rotated to change the orientation position of the supporting plate. The plate cavity of the supporting plate is used to receive the raw materials for magnesia-carbon brick processing conveyed and falling from the left side of the conveyor belt. The raw materials slide along the inner side of the plate cavity and are discharged from the lower left side. The supporting plate plays the role of carrying and guiding the raw materials downward. The orientation of the supporting plate is controllable and adjustable to adapt to processing stations at different heights, such as the feeding ports of mixing equipment at different heights. The screw at the end wall of the left support leg is tightened to lock and limit the supporting plate after adjusting the orientation. The sliding strip is movable with the left support leg and is used to assist the supporting plate when adjusting the orientation, making the supporting plate more stable and convenient when adjusting the orientation. Description of the Drawings

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0016] Figure 1 It is a schematic diagram of the present utility model;

[0017] Figure 2 It is Figure 1 the right-side view schematic diagram of the right support leg;

[0018] Figure 3 It is Figure 1 the three-dimensional schematic diagram of the supporting plate;

[0019] Figure 4 It is Figure 1 the enlarged schematic diagram at A of;

[0020] In the figure: 1. Middle seat; 2. Transmission shaft; 3. Motor; 4. Conveyor belt; 5. Right support leg; 6. Storage tray; 7. Cotton wiper; 8. Tray cavity; 9. Screw; 10. Left support leg; 11. Rotating shaft; 12. Supporting plate; 13. Plate cavity; 14. Sliding strip. Detailed Embodiments

[0021] In order to make the objectives, technical solutions and advantages of the present utility model more clear and understandable, the present utility model will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0022] Please refer to Figures 1-4 , the present utility model provides a technical solution for a conveying device for magnesium-carbon brick processing raw materials:

[0023] Embodiment 1:

[0024] As Figures 1-4 shown, a conveying device for magnesium-carbon brick processing raw materials includes a middle seat 1. Drive shafts 2 are installed at both the left and right ends of the middle seat 1. A motor 3 is installed on the front side of the left end of the middle seat 1. A conveyor belt 4 is arranged on the side of the middle seat 1 close to the drive shaft 2. Left support feet 10 and right support feet 5 are respectively installed at the bottom of the left and right ends of the middle seat 1. A storage tray 6 is installed inside the right support foot 5. A cotton swab 7 is arranged on the top of the storage tray 6. A tray cavity 8 is opened inside the storage tray 6. Screws 9 penetrate through the side end walls of the left support foot 10 and the right support foot 5. A rotating shaft 11 is installed on the middle side end of the left support foot 10. A support plate 12 is installed at the end side of the rotating shaft 11. A plate cavity 13 is opened inside the support plate 12. A sliding strip 14 is arranged at the bottom of the support plate 12.

[0025] Embodiment 2:

[0026] On the basis of Embodiment 1, as Figure 1 and Figure 2 shown, the middle seat 1 and the drive shaft 2 are rotatably connected, and the motor 3 drives the conveyor belt 4 through the drive shaft 2. The middle seat 1 is fixedly connected to the left support foot 10 and the right support foot 5. The storage tray 6 and the cotton swab 7 are adhesively connected. By running the motor 3, the drive shaft 2 is driven to rotate, driving the conveyor belt 4 to rotate to convey the magnesium-carbon brick processing raw materials. The left support foot 10 and the right support foot 5 are used to support the middle seat 1. The cotton swab 7 made of sponge material on the top of the storage tray 6 is used to contact the end wall of the conveyor belt 4. The rotating conveyor belt 4 scrapes against the cotton swab 7 to remove dust and impurities at the end wall of the conveyor belt 4, achieving the cleaning effect. The scraped impurities and dust fall into the storage tray 6 for collection. The screw 9 at the end wall of the right support foot 5 is tightened to lock and limit the storage tray 6, facilitating its stable use;

[0027] On the basis of Embodiment 1, as Figure 3 and Figure 4As shown in the figure, the left support leg 10 and the support plate 12 form a rotating structure through the rotating shaft 11. The support plate 12 and the slide bar 14 are fixedly connected to each other, and the slide bar 14 is movably connected to the left support leg 10. By rotating the rotating shaft 11, the support plate 12 is rotated to change the orientation position of the support plate 12. The plate cavity 13 of the support plate 12 is used to receive the magnesia-carbon brick processing raw materials conveyed and dropped from the left side of the conveyor belt 4. The raw materials slide along the inner side of the plate cavity 13 and are discharged from the left side. The support plate 12 plays the role of carrying the raw materials and guiding the raw materials downward. The orientation of the support plate 12 is controllable and adjustable, and is used to adapt to processing stations at different heights, such as the material receiving ports of mixing equipment at different heights. Tighten the screw 9 on the end wall of the left support leg 10 to lock and limit the support plate 12 after adjusting the orientation. The slide bar 14 is movable relative to the left support leg 10 and is used to assist the support plate 12 when adjusting the orientation, so that the support plate 12 is more stable and convenient when adjusting the orientation.

[0028] Working principle: By running the motor 3, the drive shaft 2 is driven to rotate, driving the conveyor belt 4 to rotate to convey the magnesia-carbon brick processing raw materials. The left support leg 10 and the right support leg 5 are used to support the middle seat 1. The wiping cotton 7 made of sponge material on the top of the storage tray 6 is used to contact the end wall of the conveyor belt 4. The rotating conveyor belt 4 scrapes against the wiping cotton 7 to remove the dust and impurities on the end wall of the conveyor belt 4, achieving the cleaning effect. The scraped impurities and dust fall into the storage tray 6 for collection. Tighten the screw 9 on the end wall of the right support leg 5 to lock and limit the storage tray 6 to facilitate its stable use. By rotating the rotating shaft 11, the support plate 12 is rotated to change the orientation position of the support plate 12. The plate cavity 13 of the support plate 12 is used to receive the magnesia-carbon brick processing raw materials conveyed and dropped from the left side of the conveyor belt 4. The raw materials slide along the inner side of the plate cavity 13 and are discharged from the left side. The support plate 12 plays the role of carrying the raw materials and guiding the raw materials downward. The orientation of the support plate 12 is controllable and adjustable, and is used to adapt to processing stations at different heights, such as the material receiving ports of mixing equipment at different heights. Tighten the screw 9 on the end wall of the left support leg 10 to lock and limit the support plate 12 after adjusting the orientation. The slide bar 14 is movable relative to the left support leg 10 and is used to assist the support plate 12 when adjusting the orientation, so that the support plate 12 is more stable and convenient when adjusting the orientation.

[0029] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A conveying device for processing raw materials of magnesite-carbon bricks, comprising a middle seat (1), characterized in that, The left and right ends of the middle seat (1) are both equipped with transmission shafts (2). The front side of the left end of the middle seat (1) is equipped with a motor (3). A conveyor belt (4) is arranged on the side of the middle seat (1) close to the transmission shaft (2). The left and right bottom ends of the middle seat (1) are respectively equipped with a left support leg (10) and a right support leg (5). A storage tray (6) is installed inside the right support leg (5). A cotton swab (7) is arranged on the top of the storage tray (6). A tray cavity (8) is opened inside the storage tray (6). Screws (9) are respectively inserted through the side end walls of the left support leg (10) and the right support leg (5). A rotating shaft (11) is installed on the middle side end of the left support leg (10). A support plate (12) is installed on the end side of the rotating shaft (11). A plate cavity (13) is opened inside the support plate (12). A sliding strip (14) is arranged at the bottom of the support plate (12).

2. The conveying device for processing raw materials of magnesia-carbon bricks according to claim 1, wherein, The middle seat (1) and the transmission shaft (2) are rotatably connected, and the motor (3) is in transmission connection with the conveyor belt (4) through the transmission shaft (2).

3. The conveying device for raw materials in the processing of magnesia-carbon bricks according to claim 1, characterized in that, The middle seat (1) is fixedly connected to both the left support leg (10) and the right support leg (5).

4. A conveying device for processing raw materials of magnesia-carbon bricks according to claim 1, characterized in that, The storage tray (6) and the cotton swab (7) are adhesively connected.

5. A conveying device for processing raw materials of magnesia-carbon bricks according to claim 1, characterized in that, The left support leg (10) and the support plate (12) form a rotating structure through the rotating shaft (11).

6. The conveying device for raw materials in the processing of magnesia-carbon bricks according to claim 1, characterized in that The support plate (12) and the sliding strip (14) are fixedly connected, and the sliding strip (14) is movably connected to the left support leg (10).