Powder material steering device of belt conveyor

By designing a powder material steering device for a belt conveyor, the problem of material scattering during reversal is solved by utilizing a rotatable steering tube and a positioning gear system. This achieves continuous material transmission and convenient angle adjustment, thereby improving conveying efficiency.

CN223792398UActive Publication Date: 2026-01-13RUYANG TONGRUI NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520353646.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-01-13
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

When belt conveyors change direction, materials tend to fall to the ground and the angle is difficult to adjust, resulting in low material transfer efficiency.

Method used

A powder material steering device for a belt conveyor was designed, including components such as a feed hopper, connecting pipe, steering pipe, positioning gear, and drive motor. The angular steering of the material is achieved through the rotatable steering pipe and positioning gear system, which reduces material spillage and improves the reversing efficiency of the conveyor.

Benefits of technology

It effectively reduces the phenomenon of materials scattering on the ground during the reversal process, improves the continuity and efficiency of material transmission, and simplifies the angle adjustment process of belt conveyors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of belt conveying, in particular to a belt conveyor powder material steering device which comprises a feeding hopper, a connecting pipe is fixedly mounted below the feeding hopper, a connecting ring is fixedly mounted at the position, away from the feeding hopper, of the connecting pipe, a mounting groove is formed in the inner side of the connecting ring, and a steering pipe is rotatably mounted below the connecting pipe; the steering tube is a Z-shaped tube, a rotating ring is fixedly mounted at one end of the steering tube, the steering tube is rotatably mounted in the mounting groove, a positioning gear is fixedly mounted on the connecting ring, a positioning bolt is slidably mounted on the side wall of the steering tube, and the positioning bolt is meshed with the positioning gear after sliding. By arranging the rotatable steering pipe, materials entering the feeding hopper can be steered by different angles through the steering pipe, the possibility that the materials are scattered on the ground when falling down is reduced through the pipeline, and the two belt conveyors can be conveniently matched to change the conveying direction of the materials.
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Description

Technical Field

[0001] This application relates to the technical field of belt conveyors, and in particular to a powder material turning device for a belt conveyor. Background Technology

[0002] Belt conveyors are a common type of material handling machinery that uses a rotating belt to transport materials to relevant equipment. Because the belt runs between two rollers at both ends, belt conveyors are generally used for straight-line transport. When a change of direction is required, at least two belt conveyors are needed. At the junction of two belt conveyors, some material may fall to the ground, and adjusting the angle can be quite troublesome. Summary of the Invention

[0003] In view of the shortcomings of the existing technology, the purpose of this application is to provide an easy-to-use belt conveyor powder material turning device.

[0004] The above-mentioned objective of this application is achieved through the following technical solution:

[0005] A powder material steering device for a belt conveyor, comprising:

[0006] A feed hopper is located below the output belt;

[0007] A connecting pipe is fixedly installed below the feed hopper;

[0008] A connecting ring is fixedly installed on the connecting pipe at a position away from the feed hopper, and an installation groove is provided on the inner side of the connecting ring;

[0009] A steering tube, wherein the steering tube is a Z-shaped tube, and the steering tube is rotatably mounted below the connecting tube;

[0010] A rotating ring is fixedly installed at one end of the steering tube, and the steering tube is rotatably installed in the mounting groove;

[0011] A positioning gear, which is fixedly installed on the connecting ring;

[0012] A positioning pin is slidably mounted on the side wall of the steering tube, and the positioning pin engages with the positioning gear after sliding.

[0013] The lower end of the steering tube is located above the input belt.

[0014] Optionally, the end of the connecting pipe is inserted into the steering pipe.

[0015] Optionally, the connecting ring includes an upper ring and a lower ring, which are bolted together, and a mounting groove is formed between the upper ring and the lower ring. Planar bearings are provided on both sides of the mounting groove.

[0016] Optionally, the steering tube is fixedly connected to a drive motor, and the output end of the drive motor is fixedly connected to a drive gear, which meshes with the positioning gear.

[0017] Optionally, a pin tube is fixedly connected to the side wall of the steering tube, the positioning pin is slidably installed in the pin tube, a C-shaped locking groove is opened on the side wall of the pin tube, and a pull bolt is fixedly connected to the positioning pin, the pull bolt being slidably located in the locking groove.

[0018] Optionally, it also includes a mounting frame, the bottom of which is equipped with casters, and the feed hopper is fixedly mounted on the mounting frame.

[0019] Optionally, the mounting bracket includes an upper bracket and a lower bracket, the upper bracket being slidably mounted on the lower bracket, and a locking element being provided between the upper bracket and the lower bracket.

[0020] Optionally, the locking element includes a screw, which is rotatably mounted on the lower frame, the upper frame is threadedly connected to the screw, and a rotating ring is fixedly connected to the screw.

[0021] In summary, this application includes at least the following beneficial technical effects:

[0022] By setting a rotatable deflector, the material entering the feed hopper can be turned at different angles through the deflector. This reduces the possibility of the material scattering on the ground when it falls through the pipe, and makes it easier for two belt conveyors to work together to change the direction of material transportation. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application;

[0024] Figure 2 This is a schematic diagram of the connecting ring portion in an embodiment of this application.

[0025] Attached reference numerals: 1. Feed hopper;

[0026] 21. Connecting pipe; 22. Connecting ring; 221. Upper ring; 222. Lower ring; 23. Mounting groove;

[0027] 31. Steering tube; 32. Rotating ring; 33. Drive motor;

[0028] 41. Positioning gear; 42. Positioning pin; 421. Pull bolt; 43. Drive gear; 44. Pin tube; 441. Locking groove;

[0029] 5. Mounting bracket; 51. Upper frame; 52. Lower frame; 53. Locking component; 531. Screw; 533. Rotating ring. Detailed Implementation

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] Please see Figure 1 and Figure 2 This application discloses a belt conveyor powder material steering device, comprising a feed hopper 1 located below the output belt. A connecting pipe 21 is fixedly installed below the feed hopper 1. A connecting ring 22 is fixedly installed on the connecting pipe 21 away from the feed hopper 1. An installation groove 23 is provided on the inner side of the connecting ring 22. A steering pipe 31 is rotatably installed below the connecting pipe 21. The steering pipe 31 is a Z-shaped pipe with its lower end located above the input belt. A rotating ring 32 is fixedly installed at one end of the steering pipe 31. The steering pipe 31 is rotatably installed in the installation groove 23. A positioning gear 41 is fixedly installed on the connecting ring 22. A positioning pin 42 is slidably installed on the side wall of the steering pipe 31. After sliding, the positioning pin 42 engages with the positioning gear 41.

[0032] Specifically, a rotatable steering tube 31 is installed below the feed hopper 1. The steering tube 31 rotates to place its lower end at different angles, and the position of the steering tube 31 after rotation is locked by the positioning gear 41 and the positioning pin 42.

[0033] In this way, by setting a rotatable deflector pipe 31, the material entering the feed hopper 1 can be deflected at different angles through the deflector pipe 31, reducing the possibility of the material scattering on the ground when falling through the pipe, and facilitating the two belt conveyors to cooperate to change the material transport direction.

[0034] In some feasible methods, the feed hopper 1 is a square hopper that receives the material from the output belt. The connecting pipe 21 and the turning pipe 31 are both cylindrical pipes. The part of the connecting ring 22 located above the mounting groove 23 is fixedly connected to the connecting pipe 21. The rotating ring 32 is located in the mounting groove 23 and connects the connecting pipe 21 and the turning pipe 31. The turning pipe 31 is set as a Z-shaped pipe to facilitate the turning pipe 31 to extend and transmit material to the input belt.

[0035] As a specific embodiment of the belt conveyor powder material turning device provided in the application, the end of the connecting pipe 21 is inserted into the turning pipe 31.

[0036] Overall, The connecting pipe 21 and the turning pipe 31 are movably connected, and there is a certain gap between them. Powder material may enter the gap and affect its movement. By setting the end of the connecting pipe 21 to be inserted into the turning pipe 31, the powder material can directly enter the deep interior of the turning pipe 31, reducing the possibility of powder material entering the connection gap, especially the position of the rotating ring 32.

[0037] As provided in the application A belt conveyor powder material turning device Another specific implementation method, The connecting ring 22 includes an upper ring 221 and a lower ring 222, which are bolted together. An installation groove 23 is formed between the upper ring 221 and the lower ring 222, and a plane bearing is provided on both sides of the installation groove 23.

[0038] Based on specific usage scenarios, by setting the connecting ring 22 as an upper ring 221 and a lower ring 222, the installation of the connecting ring 22 and the rotating ring 32 is facilitated. The use of a planar bearing reduces resistance during rotation and facilitates rotation.

[0039] In some feasible configurations, both the upper ring 221 and the lower ring 222 are circular rings with an L-shaped cross-section.

[0040] Furthermore, a drive motor 33 is fixedly connected to the steering tube 31, and a drive gear 43 is fixedly connected to the output end of the drive motor 33. The drive gear 43 meshes with the positioning gear 41.

[0041] It should be understood that by setting up the drive motor 33, it is convenient to rotate the steering tube 31 through the drive motor 33, and when different materials are transported from one output belt to multiple input belts, it is convenient to change the corresponding input belt during the transmission.

[0042] Furthermore, a pin tube 44 is fixedly connected to the side wall of the steering tube 31, and a positioning pin 42 is slidably installed in the pin tube 44. A C-shaped locking groove 441 is provided on the side wall of the pin tube 44, and a pull bolt 421 is fixedly connected to the positioning pin 42. The pull bolt 421 is slidably located in the locking groove 441.

[0043] It should be understood that by setting a C-shaped locking groove 441 on the pin tube 44, the positioning pin 42 can be locked at both ends of the locking groove 441 by the pull bolt 421. When the positioning gear 41 needs to be locked at the upper end, and the positioning gear 41 needs to be rotated by the drive motor 33 during use, the pull bolt 421 is locked at the lower end of the locking groove 441 to avoid affecting the rotation of the positioning gear 41.

[0044] As provided in the application A belt conveyor powder material turning device One specific implementation method, It also includes a mounting frame 5, with casters installed at the bottom of the mounting frame 5, and the feed hopper 1 is fixedly installed on the mounting frame 5.

[0045] It should be understood that the movable mounting bracket 5 facilitates relocation.

[0046] Furthermore, the mounting bracket 5 includes an upper bracket 51 and a lower bracket 52, the upper bracket 51 is slidably mounted on the lower bracket 52, and a locking element 53 is provided between the upper bracket 51 and the lower bracket 52.

[0047] It should be understood that by setting up a sliding ground frame 51 and a locking element 53, the mounting frame 5 can be raised and lowered, making it convenient for the feed hopper 1 to be used with belts of different heights.

[0048] Furthermore, the locking member 53 includes a screw 531, which is rotatably mounted on the lower frame 52, and the upper frame 51 is threadedly connected to the screw 531. The screw 531 is fixedly connected to a rotating handle 533.

[0049] It should be understood that by setting the screw 531, it is convenient to raise and lower the upper frame 51.

[0050] In some feasible embodiments, the mounting frame 5 is a rectangular frame. The upper frame 51 includes four cylindrical rods, which are fixedly connected to the feed hopper 1. The lower frame 52 includes four cylindrical tubes, and the cylindrical rods are inserted into the cylindrical tubes accordingly. To ensure the feed hopper 1 is supported and balanced, a screw 531 and a rotating handle 533 are provided on both sides of the mounting frame 5. To facilitate synchronous lifting, the two screws 531 are connected to the sprocket mechanism via a chain. When one of the rotating handles 533 is rotated, the screw 531 on the other side also rotates.

[0051] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A belt conveyor powder material diverting device, characterized by, The utility model relates to a kind of material feeding device, including: Feed hopper (1), the feed hopper (1) is arranged below output belt; Connecting pipe (21), the connecting pipe (21) is fixedly installed below the feed hopper (1); Connecting ring (22), the connecting ring (22) is fixedly installed at the position away from the feed hopper (1) of the connecting pipe (21), and installation slot (23) is opened in the inside of the connecting ring (22); Turning pipe (31), the turning pipe (31) is Z-shaped pipe, and the turning pipe (31) is rotatably installed below the connecting pipe (21); Rotary ring (32), the rotary ring (32) is fixedly installed at one end of the turning pipe (31), and the turning pipe (31) is rotatably installed in the installation slot (23); Positioning gear (41), the positioning gear (41) is fixedly installed on the connecting ring (22); Positioning bolt (42), the positioning bolt (42) is slidably installed on the side wall of the turning pipe (31), and the positioning bolt (42) is engaged in the positioning gear (41) after sliding; Wherein, the lower end of the turning pipe (31) is located above the input belt.

2. A belt conveyor powder material diverter according to claim 1, characterised in that: The end of the connecting pipe (21) is inserted into the turning pipe (31).

3. A belt conveyor powder material diverter according to claim 1, wherein: The connecting ring (22) includes upper ring (221) and lower ring (222), the upper ring (221) and lower ring (222) are bolted, the installation slot (23) is formed between the upper ring (221) and lower ring (222), and flat bearings are arranged on both sides of the installation slot (23).

4. A belt conveyor powder material diverter according to claim 3, wherein: The turning pipe (31) is fixedly connected with a drive motor (33), the output end of the drive motor (33) is fixedly connected with a drive gear (43), and the drive gear (43) is engaged with the positioning gear (41).

5. A belt conveyor powder material diverter according to claim 4, wherein: The side wall of the turning pipe (31) is fixedly connected with a bolt pipe (44), the positioning bolt (42) is slidably installed on the bolt pipe (44), C-shaped clamping grooves (441) are formed on the side wall of the bolt pipe (44), the positioning bolt (42) is fixedly connected with a pull bolt (421), and the pull bolt (421) is slidably located in the clamping groove (441).

6. A belt conveyor powder material diverter according to any one of claims 1 to 5, wherein: Further including mounting frame (5), the mounting frame (5) is installed universal wheel at bottom, and the feed hopper (1) is fixedly installed on the mounting frame (5).

7. A belt conveyor powder material diverter according to claim 6, wherein: The mounting frame (5) includes upper frame (51) and lower frame (52), the upper frame (51) is slidably installed on the lower frame (52), and locking member (53) is arranged between the upper frame (51) and lower frame (52).

8. A belt conveyor powder material diverter according to claim 7, characterised in that: The locking member (53) includes screw rod (531), the screw rod (531) is rotatably installed on the lower frame (52), the upper frame (51) is threadedly connected with the screw rod (531), and the screw rod (531) is fixedly connected with rotating handle (533).