Multifunctional self-adaptive material conveying belt

The self-adjusting material handling belt addresses the limitations of fixed length and angle by incorporating a rotating plate and actuator system for dynamic angle and length adjustments, improving adaptability and efficiency.

CN223101732UActive Publication Date: 2025-07-15NANTONG LINGZHI ENVIRONMENTAL SCI & TECH CO LTD
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Patent Information

Application Number
CN202421732781.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-07-15
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The existing material conveyor belt can only adjust the length and cannot adjust the inclination angle, resulting in the inability to adapt to the level of different conveying environments.

Method used

A multifunctional adaptive material conveyor belt is designed. The tilt height adjustment of the conveyor belt is achieved through the combination of linkage plate, rotary plate, roller and electric telescopic rod, and the rotation of the rotary plate and the lifting of the roller are used to change the height and angle of the conveyor track.

Benefits of technology

Multi-angle adjustment of the conveyor belt is realized, which can adapt to the level of different conveying environments, and improves the flexibility and adaptability of material transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-functional self-adaptation material conveyer belt relates to conveyer belt technical field, the multi-functional self-adaptation material conveyer belt includes equipment casing and slide groove, the slide groove is opened in the one side surface of equipment casing, the inner wall of equipment casing is equipped with the adjusting motor, the adjusting motor is equipped with the sliding groove. A lead screw is installed on the surface of one side of the adjusting motor, a sliding block is installed on the surface of the outer side of the lead screw, a movable frame is installed on the surface of the outer side of the sliding block, a linkage plate is installed on the inner wall of the movable frame, and an adjusting wheel is installed on the inner wall of the linkage plate. The height of the conveying crawler belt is changed through the raised rolling shaft, so that the conveying crawler belt is adapted to conveyed objects by adjusting the inclination height of the conveying crawler belt, and the defect that a material conveying belt in the prior art cannot have the functions of stretching and angle adjustment at the same time is overcome. Therefore, a material conveying belt in the prior art cannot be adaptively adjusted according to the conveying standard and the height.
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Description

Technical Field

[0001] The utility model relates to the technical field of fireproof glass, in particular to a multi-functional adaptive material conveyor belt. Background Art

[0002] A material conveyor belt is a mechanical device used to transport items from one place to another. It generally consists of components such as a conveyor belt, a support structure, a transmission component, a tensioning device, etc. Material conveyor belts are widely used in various industries, such as mining, metallurgy, chemical industry, construction, food processing, etc., for transporting various types of materials, such as coal, ore sand, grains, wood, chemical products, etc.

[0003] The material conveyor belts of the prior art are generally driven by motors. By placing the objects to be transported on the surface of the conveyor track and then driving the conveyor track to rotate through the motor, the rotating conveyor track moves the objects, thus achieving the transportation effect. However, since the material conveyor belts of the prior art generally only have length adjustment and cannot achieve adjustment of the inclination angle and height, the conveyor belts of the prior art cannot be adjusted according to the level of the transportation destination, and thus cannot adapt to different transportation environments. Summary of the Utility Model

[0004] The utility model provides a multi-functional adaptive material conveyor belt, which has the advantage of multi-angle adjustability, to solve the problem that the material conveyor belts of the prior art generally only have length adjustment and cannot achieve adjustment of the inclination angle and height, resulting in the conveyor belts of the prior art being unable to be adjusted according to the level of the transportation destination and thus unable to adapt to different transportation environments.

[0005] To achieve the purpose of multi-angle adjustability, the utility model provides the following technical solution: A multi-functional adaptive material conveyor belt, including an equipment housing and a sliding groove. The sliding groove is opened on one side surface of the equipment housing. An adjustment motor is installed on the inner wall of the equipment housing. A lead screw is installed on one side surface of the adjustment motor. A slider is installed on the outer surface of the lead screw. A moving frame is installed on the outer surface of the slider. A linkage plate is installed on the inner wall of the moving frame. An adjustment wheel is installed on the inner wall of the linkage plate. A rotating plate is installed on one side surface of the linkage plate. A limiting column is installed on the outer surface of the rotating plate. A moving block is installed on one side surface of the rotating plate. A roller shaft is installed on one side of the rotating plate. A roller is installed on one side surface of the rotating plate. A moving groove plate is installed on the outer surface of the limiting column. An electric telescopic rod is installed on one side surface of the moving groove plate. A conveying component is installed on one side surface of the equipment housing.

[0006] As a preferred technical solution of the present utility model, there are four sliding grooves, and the four sliding grooves are respectively distributed on one side and the other side surfaces of the equipment housing. One end of the lead screw is connected to the output end of the adjustment motor. There are two sliders evenly distributed on the outer surface of the lead screw. The outer surface of the lead screw is rotatably connected to the inner wall of the slider, and the outer surface of the slider is fixedly connected to the inner wall of the moving frame.

[0007] As a preferred technical solution of the present utility model, there are two linkage plates respectively distributed on one side and the other side surfaces of the inner wall of the moving frame. The outer surface of the adjustment wheel is rotatably connected to the inner walls of the two linkage plates, and the outer surface of the adjustment wheel is in movable contact with the inner wall of the sliding groove.

[0008] As a preferred technical solution of the present utility model, there are two rotating plates. The two rotating plates are respectively distributed on one side surface of the two linkage plates. The rotating plate is rotatably connected to the linkage plate. One side surface of each rotating plate is correspondingly distributed with a limiting post. One end and the other end of the roller are respectively rotatably connected between the two rotating plates. The outer surface of the moving block is in movable contact with the inner wall of the sliding groove.

[0009] As a preferred technical solution of the present utility model, one end and the other end of the roller are respectively rotatably connected between the two rotating plates. There are two moving groove plates. The two moving groove plates are fixedly connected to the two moving frames. The inner walls of the two moving frames are respectively in movable contact with the outer surfaces of the two limiting posts. One side surface of each moving groove plate is correspondingly distributed with an electric telescopic rod. One end of the electric telescopic rod is rotatably connected to the moving groove plate, and the other end of the electric telescopic rod is rotatably connected to one side surface of the rotating plate.

[0010] As a preferred technical solution of the present utility model, the conveying assembly includes a driving wheel. A driving motor is installed on one side surface of the inner wall of the equipment housing. A conveying track is installed on the outer surface of the driving wheel. The driving wheel is installed on the inner wall of the equipment housing.

[0011] As a preferred technical solution of the present utility model, there are three driving wheels. The three driving wheels are linearly arrayed and distributed on the inner wall of the equipment housing. The driving wheel is rotatably connected to the inner wall of the equipment housing. The inner wall of the conveying track is respectively in movable contact with the outer surfaces of the driving wheel, the adjustment wheel, the roller and the roller shaft. The driving motor is fixedly connected to one end of one of the driving wheels.

[0012] Compared with the prior art, the present utility model provides a multifunctional adaptive material conveyor belt, which has the following beneficial effects:

[0013] When the rotating plate rotates around the linkage plate as the axis, the height of the roller installed on one side surface of the rotating plate will be raised, so that the height of the conveyor track changes through the raised roller, and then the inclination height of the conveyor track is adjusted to adapt to the conveyed object, thus making up for the fact that the material conveyor belt in the prior art cannot have the functions of telescoping and angle adjustment at the same time, resulting in the material conveyor belt in the prior art being unable to adaptively adjust according to the conveying standard and height. Brief Description of the Drawings

[0014] Figure 1 Schematic diagram of the external structure of the present invention;

[0015] Figure 2 Schematic diagram of the internal structure of the present invention;

[0016] Figure 3 Schematic diagram of the internal structure of the present invention from another angle;

[0017] Figure 4 Schematic diagram of the rotating plate structure of the present invention;

[0018] Figure 5 Schematic diagram of the conveying component structure of the present invention.

[0019] In the figure: 1, equipment housing; 2, sliding groove; 3, adjustment motor; 4, lead screw; 5, slider; 6, moving frame; 7, linkage plate; 8, adjustment wheel; 9, rotating plate; 10, limit post; 11, roller; 12, roller; 13, moving groove plate; 14, electric telescopic rod; 15, transmission wheel; 16, drive motor; 17, conveyor track; 18, moving block. Detailed Description of the Invention

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention. Embodiment 1

[0021] Please refer to Figures 3 - 5, the present utility model discloses a multi-functional adaptive material conveyor belt, including an equipment housing 1 and a sliding groove 2. The sliding groove 2 is opened on one side surface of the equipment housing 1. An adjusting motor 3 is installed on the inner wall of the equipment housing 1. A lead screw 4 is installed on one side surface of the adjusting motor 3. A slider 5 is installed on the outer surface of the lead screw 4. A moving frame 6 is installed on the outer surface of the slider 5. A linkage plate 7 is installed on the inner wall of the moving frame 6. An adjusting wheel 8 is installed on the inner wall of the linkage plate 7. A rotating plate 9 is installed on one side surface of the linkage plate 7. A limiting post 10 is installed on the outer surface of the rotating plate 9. A moving block 18 is installed on one side surface of the rotating plate 9. A roller 11 is installed on one side of the rotating plate 9. A roller 12 is installed on one side surface of the rotating plate 9. A moving groove plate 13 is installed on the outer surface of the limiting post 10. An electric telescopic rod 14 is installed on one side surface of the moving groove plate 13. A conveying assembly is installed on one side surface of the equipment housing 1.

[0022] There are four sliding grooves 2, and the four sliding grooves 2 are respectively distributed on one side and the other side surfaces of the equipment housing 1. One end of the lead screw 4 is connected to the output end of the adjusting motor 3. There are two sliders 5 evenly distributed on the outer surface of the lead screw 4. The outer surface of the lead screw 4 is rotatably connected to the inner wall of the slider 5 in a movable manner. The outer surface of the slider 5 is fixedly connected to the inner wall of the moving frame 6.

[0023] There are two linkage plates 7, which are respectively distributed on one side and the other side surfaces of the inner wall of the moving frame 6. The outer surface of the adjusting wheel 8 is rotatably connected to the inner walls of the two linkage plates 7 in a movable manner. The outer surface of the adjusting wheel 8 is in movable contact with the inner wall of the sliding groove 2.

[0024] There are two rotating plates 9, and the two rotating plates 9 are respectively distributed on one side surface of the two linkage plates 7. The rotating plate 9 is rotatably connected to the linkage plate 7 in a movable manner. One side surface of each rotating plate 9 is correspondingly distributed with a limiting post 10. One end and the other end of the roller 11 are respectively rotatably connected to the two rotating plates 9 in a movable manner. The outer surface of the moving block 18 is in movable contact with the inner wall of the sliding groove 2.

[0025] One end and the other end of the roller 12 are respectively rotatably connected to the two rotating plates 9 in a movable manner. There are two moving groove plates 13, and the two moving groove plates 13 are fixedly connected to the two moving frames 6. The inner walls of the two moving frames 6 are respectively in movable contact with the outer surfaces of the two limiting posts 10. One side surface of each moving groove plate 13 is correspondingly distributed with an electric telescopic rod 14. One end of the electric telescopic rod 14 is rotatably connected to the moving groove plate 13 in a movable manner. The other end of the electric telescopic rod 14 is rotatably connected to one side surface of the rotating plate 9 in a movable manner.

[0026] When the electric telescopic rod 14 retracts, it will pull the rotating plate 9 to deflect. When the rotating plate 9 deflects, the limit post 10 installed on one side surface thereof will move and rotate along the inner wall of the moving groove plate 13. The rotating plate 9 is rotatably connected to the linkage plate 7 in an active manner. Therefore, when the rotating plate 9 rotates, it will rotate around the linkage plate 7 as the center point. When the rotating plate 9 rotates with the linkage plate 7 as the axis, the height of the roller 11 installed on one side surface of the rotating plate 9 will rise. Thus, the height of the conveying track 17 will change due to the raised roller 11, and the inclination height of the conveying track 17 is adjusted to adapt to the conveyed object. Embodiment 2

[0027] Based on the above Embodiment 1, please refer to Figures 1 - 2 , the conveying assembly includes a driving wheel 15. A driving motor 16 is installed on one side surface of the inner wall of the equipment housing 1. The conveying track 17 is installed on the outer surface of the driving wheel 15. The driving wheel 15 is installed on the inner wall of the equipment housing 1.

[0028] There are three driving wheels 15, and the three driving wheels 15 are linearly arrayed on the inner wall of the equipment housing 1. The driving wheel 15 is rotatably connected to the inner wall of the equipment housing 1. The inner walls of the conveying track 17 are in active contact with the outer surfaces of the adjusting wheel 8, the roller 12, and the roller 11 of the driving wheel 15 respectively. The driving motor 16 is fixedly connected to one end of one of the driving wheels 15.

[0029] When the material conveyor belt needs to be used, start the driving motor 16 at this time. The started driving motor 16 will drive the driving wheel 15 connected to its output end to rotate. The conveying track 17 is installed on the outer surface of the driving wheel 15. The driving wheel 15 driven by the driving motor 16 will drive the conveying track 17 to move. Place the object to be conveyed on the surface of the conveying track 17 at this time, so that the rotating and moving conveying track 17 drives the object to move, thus realizing the transportation of materials.

[0030] Working principle and usage process of the utility model: When the material conveyor belt is needed, start the driving motor 16 at this time. The started driving motor 16 will drive the transmission wheel 15 connected to its output end to rotate. A conveying track 17 is installed on the outer surface of the transmission wheel 15. Then, the transmission wheel 15 driven by the driving motor 16 will drive the conveying track 17. At this time, place the object to be conveyed on the surface of the conveying track 17, so that the rotating and moving conveying track 17 drives the object to move, thus realizing the transportation of materials. When it is necessary to adjust the extending length of the conveying track 17, start the adjusting motor 3 at this time. When the adjusting motor 3 starts, it will drive the lead screw 4 connected to its output end to rotate. A slider 5 is sleeved on the outer surface of the lead screw 4. Therefore, when the lead screw 4 rotates, the slider 5 on its outer surface will move along the outer surface of the lead screw 4. A moving frame 6 is installed on the outer surface of the slider 5. At this time, the moving slider 5 will drive the moving frame 6 to move. Then, the moving moving frame 6 will indirectly drive the rotating plate 9 to move through the linkage plate 7. A roller 11 and a roller 12 are installed on one side surface of the rotating plate 9. At this time, the moving rotating plate 9 will drive the roller 11 and the roller 12 to move together and drive the conveying track 17 on its outer surface to move, thus realizing the extension of the track.

[0031] When it is necessary to change the angle of the material conveyor belt, control the electric telescopic rod 14 to retract at this time. One end of the electric telescopic rod 14 is rotatably connected to one side surface of the moving groove plate 13, and the other end is rotatably connected to one side surface of the rotating plate 9. Therefore, when the electric telescopic rod 14 retracts, it will pull the rotating plate 9 to deflect. When the rotating plate 9 deflects, the limiting column 10 installed on one side surface of it will move and rotate along the inner wall of the moving groove plate 13. The rotating plate 9 is rotatably connected to the linkage plate 7. Therefore, when the rotating plate 9 rotates, it will rotate with the linkage plate 7 as the center point. When the rotating plate 9 rotates with the linkage plate 7 as the axis, the height of the roller 11 installed on one side surface of the rotating plate 9 will rise. Thus, the height of the conveying track 17 is changed through the raised roller 11, so as to adapt to the conveyed object by adjusting the inclination height of the conveying track 17.

Claims

1. A multi-functional adaptive material conveyor belt, comprising an equipment housing (1) and a sliding groove (2), wherein the sliding groove (2) is formed on one side surface of the equipment housing (1), and is characterized in that: An adjustment motor (3) is installed on the inner wall of the device housing (1). A lead screw (4) is installed on one side surface of the adjustment motor (3). A slider (5) is installed on the outer surface of the lead screw (4). A moving frame (6) is installed on the outer surface of the slider (5). A linkage plate (7) is installed on the inner wall of the moving frame (6). An adjustment wheel (8) is installed on the inner wall of the linkage plate (7). A rotating plate (9) is installed on one side surface of the linkage plate (7). A limiting post (10) is installed on the outer surface of the rotating plate (9). A moving block (18) is installed on one side surface of the rotating plate (9). A roller shaft (11) is installed on one side of the rotating plate (9). A roller (12) is installed on one side surface of the rotating plate (9). A moving groove plate (13) is installed on the outer surface of the limiting post (10). An electric telescopic rod (14) is installed on one side surface of the moving groove plate (13). A conveying assembly is installed on one side surface of the device housing (1).

2. The multifunctional adaptive material conveyor belt according to claim 1, characterized in that: There are four sliding grooves (2), and the four sliding grooves (2) are respectively distributed on one side and the other side surface of the device housing (1). One end of the lead screw (4) is connected to the output end of the adjustment motor (3). There are two sliders (5) evenly distributed on the outer surface of the lead screw (4). The outer surface of the lead screw (4) is rotatably connected to the inner wall of the slider (5). The outer surface of the slider (5) is fixedly connected to the inner wall of the moving frame (6).

3. A multi-functional adaptive material conveyor belt according to claim 1, characterized in that: There are two linkage plates (7) respectively distributed on one side and the other side surface of the inner wall of the moving frame (6). The outer surface of the adjustment wheel (8) is rotatably connected to the inner walls of the two linkage plates (7). The outer surface of the adjustment wheel (8) is in movable contact with the inner wall of the sliding groove (2).

4. A multifunctional adaptive material conveyor belt according to claim 1, characterized in that: There are two rotating plates (9), and the two rotating plates (9) are respectively distributed on one side surface of the two linkage plates (7). The rotating plate (9) is rotatably connected to the linkage plate (7). A limiting post (10) is correspondingly distributed on one side surface of each rotating plate (9). One end and the other end of the roller shaft (11) are respectively rotatably connected to the two rotating plates (9). The outer surface of the moving block (18) is in movable contact with the inner wall of the sliding groove (2).

5. A multi-functional adaptive material conveyor belt according to claim 1, characterized in that: One end and the other end of the roller (12) are respectively rotatably connected to the two rotating plates (9). There are two moving groove plates (13), and the two moving groove plates (13) are fixedly connected to the two moving frames (6). The inner walls of the two moving frames (6) are respectively in movable contact with the outer surfaces of the two limiting posts (10). An electric telescopic rod (14) is correspondingly distributed on one side surface of each moving groove plate (13). One end of the electric telescopic rod (14) is rotatably connected to the moving groove plate (13). The other end of the electric telescopic rod (14) is rotatably connected to one side surface of the rotating plate (9).

6. A multifunctional adaptive material conveyor belt according to claim 1, characterized in that: The conveying component includes a driving wheel (15). On one side surface of the inner wall of the equipment housing (1), a driving motor (16) is installed. On the outer surface of the driving wheel (15), a conveying track (17) is installed, and the driving wheel (15) is installed on the inner wall of the equipment housing (1).

7. The multifunctional adaptive material conveyor belt according to claim 6, wherein: There are three driving wheels (15). The three driving wheels (15) are linearly arrayed on the inner wall of the equipment housing (1). The driving wheel (15) is rotatably and movably connected to the inner wall of the equipment housing (1). The inner wall of the conveying track (17) is movably in contact with the outer surfaces of the driving wheel (15), the adjusting wheel (8), the roller (12), and the roller shaft (11). The driving motor (16) is fixedly connected to one end of a driving wheel (15).