Anti-blocking new energy lithium battery material conveyor
Through the anti-blocking pipe and anti-blocking ball structure, combined with motor drive and push rod control, the blockage problem of new energy lithium battery materials in the bends of the conveying pipeline is solved, and efficient material transportation is achieved.
Patent Information
- Application Number
- CN202422007328.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-19
AI Technical Summary
During the transportation process, new energy lithium battery materials are prone to accumulate at the bends of the conveying pipeline, resulting in blockage and affecting the conveying efficiency.
The anti-blocking pipe and anti-blocking ball structure is adopted, and the anti-blocking ball is driven by the motor to rotate. The accumulated material is moved into the anti-blocking pipe by slotting, and combined with vibration and push rod control, ensuring the smooth passage of the material through the bend; at the same time, the conveying components and electric push rods are used to control the closure of the conveying pipe to achieve smooth material transportation.
It effectively reduces material accumulation at the bends of the conveying pipeline, improves the conveying efficiency, and ensures the smooth delivery of new energy lithium battery materials.
Smart Images

Figure CN223225325U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of conveyors, and in particular to an anti-blocking new energy lithium battery material conveyor. Background Art
[0002] The pneumatic conveying device, conveying pipeline, spherical tee, supercharger, booster elbow, etc. constitute a sealed conveying system. Due to the reasons of conveying site or equipment, the conveying pipeline is not always straight and there are many bends in the conveying pipeline. However, during the conveying process, new energy lithium battery materials often accumulate at the bends of the conveying pipeline, thereby affecting the transportation of new energy lithium battery materials. Therefore, there is an urgent need for an anti-blocking new energy lithium battery material conveyor to solve the above problems.
[0003] efficiency. Utility Model Content
[0004] The purpose of this utility model is to address the defects and shortcomings of the existing technology and provide an anti-blocking new energy lithium battery material conveyor, whose technical features can solve the above problems.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions: it comprises a delivery pipe body; the delivery pipe body is a hollow cylindrical structure, and a hole is opened through the bottom end of the bend of the delivery pipe body;
[0006] It also contains:
[0007] The anti-blocking tube is a hollow cylindrical structure with openings at both ends, and the top of the anti-blocking tube is set through the hole;
[0008] The anti-blocking ball is screwed into the anti-blocking tube by a rotating rod, and the anti-blocking ball is located at the hole. Several slots are opened at equal angles on the anti-blocking ball. The motor is fixed on the outer wall of the anti-blocking tube, and the output end of the motor is connected to the anti-blocking ball, and the motor is connected to an external power supply.
[0009] There are two sealing rings, which are respectively arranged on the inner wall of the anti-blocking tube, and the anti-blocking ball is located between the two sealing rings, and the anti-blocking ball and the sealing ring are arranged in a conflicting manner;
[0010] The conveying component is arranged at the bottom end of the anti-blocking pipe.
[0011] By adopting the above design scheme, the anti-blocking ball is driven to rotate by the motor, and the groove is used to move the accumulated material at the bend of the conveying pipe body into the anti-blocking pipe, thereby reducing the accumulation of material at the bend of the conveying pipe body and improving the conveying efficiency of the conveying pipe body.
[0012] Furthermore, the conveying assembly comprises:
[0013] The transmission pipe is provided through the bottom end of the anti-blocking pipe, and the top end of the transmission pipe is connected to the transmission pipe body, and a plurality of openings are provided on the side wall of the transmission pipe;
[0014] An electric push rod 1, wherein the electric push rod 1 is fixedly arranged on the outer wall of the transmission pipe, and the two blocking rods are movably inserted into the openings, and the output end of the electric push rod 1 is connected to the blocking rod below, the electric push rod 1 is connected to an external power supply, and the lower blocking rod is screwed to the upper blocking rod by a rotating rod;
[0015] The moving rod is movably inserted into the vertical tube of the transmission tube, the electric push rod 2 is fixedly arranged in the transmission tube, and the output end of the electric push rod 2 is connected to the bottom end of the moving rod, and the electric push rod 2 is connected to the outer wall power supply.
[0016] By adopting the above design scheme, the electric push rod 1 is used to control the closing of the anti-blocking tube and the conveying tube, and the electric push rod 2 is used to squeeze the graphite and other powders into the conveying tube body, so that the accumulated powder is transported in the straight pipeline of the conveying tube body.
[0017] Furthermore, a vibration motor is provided on the outer wall of the conveying tube, and the vibration of the vibration motor is utilized to facilitate the movement of the powder to the top end of the moving rod.
[0018] Furthermore, the top end of the moving rod and the end of the upper blocking rod are respectively provided with a card slot, and the two card slots are arranged to cooperate with each other to prevent powder from remaining at the end of the moving rod.
[0019] Furthermore, sealing pads are provided on both blocking rods to improve the sealing performance of the blocking rods.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] The motor drives the anti-blocking ball to rotate, and the graphite and other powders at the bend of the conveying pipe body are moved into the anti-blocking pipe in conjunction with the slots, reducing the amount of graphite powder accumulated at the bend of the conveying pipe body, thereby improving the conveying efficiency of the conveying pipe body;
[0022] A conveying assembly is set up, and the electric push rod 1 drives the two blockers to move, thereby controlling the closing of the conveying pipe, so that after the graphite powder moves to the top of the moving rod, the electric push rod 2 sends the graphite powder back into the conveying pipe body. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a structural diagram of the present utility model.
[0024] Figure 2 It is a structural schematic diagram of the anti-blocking pipe and the anti-blocking ball in the utility model.
[0025] Figure 3It is a structural diagram of the conveying component in the utility model.
[0026] Figure 4 It is an internal schematic diagram of the transmission pipe in the utility model.
[0027] Description of reference numerals:
[0028] Conveying pipe body 1, hole 2, anti-blocking pipe 3, anti-blocking ball 4, slot 5, motor 6, sealing ring 7, conveying assembly 8, conveying pipe 9, opening 10, electric push rod 11, blocking rod 12, rotating rod 13, moving rod 14, electric push rod 2 15, vibration motor 16, slot 17, sealing gasket 18. DETAILED DESCRIPTION
[0029] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. The preferred embodiments in the description are only used as examples. All other embodiments obtained by those skilled in the art without making any creative work are within the scope of protection of the present invention.
[0030] like Figure 1-Figure 4 As shown, this embodiment adopts the following technical solution: it comprises a delivery pipe body 1; the delivery pipe body 1 is a hollow cylindrical structure, and a hole 2 is opened through the bottom end of the bend of the delivery pipe body 1;
[0031] It also contains:
[0032] The anti-blocking tube 3 is a hollow cylindrical structure with openings at both ends. The top of the anti-blocking tube 3 is set through the hole 2. The graphite powder accumulated at the bend of the conveying pipe body 1 is drained out of the conveying pipe body 1 through the anti-blocking tube 3.
[0033] The anti-blocking ball 4 is screwed into the anti-blocking tube 3 by a rotating rod, and the anti-blocking ball 4 is located at the hole 2. Several slots 5 are opened at equal angles on the anti-blocking ball 4. The motor 6 is fixedly arranged on the outer wall of the anti-blocking tube 3, and the output end of the motor 6 is connected to the anti-blocking ball 4. The motor 6 is connected to an external power supply. The motor 6 drives the anti-blocking ball 4 to rotate, and cooperates with the slots 5 to move the graphite powder at the bend into the anti-blocking tube 3.
[0034] There are two sealing rings 7, which are respectively arranged on the inner wall of the anti-blocking tube 3, and the anti-blocking ball 4 is located between the two sealing rings 7. The anti-blocking ball 4 and the sealing ring 7 are arranged in a conflicting manner, and the sealing ring 7 is used to improve the sealing performance of the anti-blocking ball 4;
[0035] The conveying assembly 8 is arranged at the bottom end of the anti-blocking pipe 3, and the conveying assembly 8 includes:
[0036] The conveying pipe 9 is provided through the bottom end of the anti-blocking pipe 3, and the top end of the conveying pipe 9 is connected to the conveying pipe body 1. A plurality of openings 10 are provided on the side wall of the conveying pipe 9. The graphite powder is moved to a suitable position by utilizing the tilting effect of the transverse pipe of the conveying pipe 9. A vibration motor 16 is provided on the outer wall of the conveying pipe 9. The vibration effect of the vibration motor 16 facilitates the movement of the graphite powder to the top end of the moving rod 14.
[0037] An electric push rod 11 is fixedly arranged on the outer wall of the transmission pipe 9, and two blocking rods 12 are movably inserted into the opening 10 respectively, and the output end of the electric push rod 11 is connected to the lower blocking rod 12, the electric push rod 11 is connected to the external power supply, and the lower blocking rod 12 is screwed to the upper blocking rod 12 by the rotating rod 13, and the electric push rod is used to drive the two blocking rods 12 to move synchronously, thereby controlling the closure of the transmission pipe 9. When the horizontal pipe of the transmission pipe 9 is in a closed state, the vertical pipe of the transmission pipe 9 is in a through state;
[0038] The moving rod 14 is movably inserted in the vertical tube of the conveying tube 9, the electric push rod 2 15 is fixedly arranged in the conveying tube 9, and the output end of the electric push rod 2 15 is connected to the bottom end of the moving rod 14, the electric push rod 2 15 is connected to the outer wall power supply, and the moving rod 14 is driven by the electric push rod 2 15 to move in the vertical tube of the conveying tube 9, so as to facilitate moving the graphite powder into the conveying tube body 1, and the top of the moving rod 14 and the end of the upper blocking rod 12 are respectively provided with a card groove 17, and the two card grooves 17 are arranged to cooperate with each other to avoid powder remaining at the end of the moving rod 14, and the two blocking rods 12 are provided with a sealing gasket 18 to improve the sealing performance of the blocking rod 12.
[0039] When using the present invention, when the conveying pipe body 1 starts to convey graphite powder, the motor 6 is turned on, the motor 6 drives the anti-blocking ball 4 to rotate, and the anti-blocking ball 4 drives the several slots 5 to rotate, and the graphite powder accumulated at the bend is moved to the horizontal tube of the conveying pipe 9 through the anti-blocking pipe 3, and the vibration motor 16 is started, and the graphite powder in the horizontal tube of the conveying pipe 9 is moved to the top of the moving rod 14 in the vertical tube by the effect of vibration. When the graphite powder in the vertical tube of the conveying pipe 9 reaches the moving amount, the electric push rod 11 is started, and the electric push rod 11 drives the two blocking rods 1 2 moves synchronously, so that the end of the lower blocking rod 12 contacts the inner wall of the horizontal tube of the conveying pipe 9, closing the horizontal tube of the conveying pipe 9. The lower blocking rod 12 drives the upper blocking rod 12 to move synchronously through the rotating rod 13, thereby opening the vertical tube of the conveying pipe 9. At the same time, the electric push rod 2 15 is started, and the electric push rod 2 15 pushes the graphite powder to move into the conveying pipe body 1. Then, through the cooperation of the electric push rod 11 and the electric push rod 2 15, the moving rod 14 is lowered and conflicts with the upper blocking rod 12 to prevent graphite powder from remaining on the moving rod 14.
[0040] Compared with the prior art, the beneficial effects of the present invention are:
[0041] 1. The anti-blocking ball 4 is driven by the motor 6 to rotate, and the graphite and other powders at the bend of the conveying pipe body 1 are moved into the anti-blocking pipe 3 in cooperation with the slot 5, thereby reducing the amount of graphite powder accumulated at the bend of the conveying pipe body 1, thereby improving the conveying efficiency of the conveying pipe body 1;
[0042] 2. Set up the conveying assembly 8, and use the electric push rod 11 to drive the two blockers to move, thereby controlling the closing of the conveying tube 9, so that after the graphite powder moves to the top of the moving rod 14, the electric push rod 2 15 will send the graphite powder back into the conveying tube body 1.
[0043] For those skilled in the art, they can modify the technical solutions described in the aforementioned embodiments and make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A new energy lithium battery material conveyor with an anti-clogging function, comprising a conveying pipe body (1); the conveying pipe body (1) is a hollow cylindrical structure, and a hole (2) is provided through the bottom end of the curved portion of the conveying pipe body (1); It is characterized in that It also contains: The anti-blocking tube (3) is a cylindrical structure with openings at both ends and a hollow center. The top end of the anti-blocking tube (3) is provided through the hole (2). The anti-blocking ball (4) is connected to the anti-blocking tube (3) by a rotating rod, and the anti-blocking ball (4) is located at the hole (2). The anti-blocking ball (4) is provided with a plurality of slots (5) at equal angles. The motor (6) is fixedly arranged on the outer wall of the anti-blocking tube (3), and the output end of the motor (6) is connected to the anti-blocking ball (4). The motor (6) is connected to an external power supply. Sealing rings (7), there are two sealing rings (7), the two sealing rings (7) are respectively arranged on the inner wall of the anti-blocking tube (3), and the anti-blocking ball (4) is located between the two sealing rings (7), and the anti-blocking ball (4) and the sealing ring (7) are arranged in a cooperative and abutting manner; A conveying assembly (8), wherein the conveying assembly (8) is arranged at the bottom end of the anti-blocking pipe (3).
2. The anti-clogging new energy lithium battery material conveyor according to claim 1 is characterized in that: The conveying assembly (8) comprises: A conveying pipe (9), wherein the conveying pipe (9) is provided through the bottom end of the anti-blocking pipe (3), and the top end of the conveying pipe (9) is connected to the conveying pipe body (1), and a plurality of openings (10) are provided on the side wall of the conveying pipe (9); An electric push rod (11), wherein the electric push rod (11) is fixedly arranged on the outer wall of the transmission tube (9), and the two blocking rods (12) are movably inserted into the opening (10), and the output end of the electric push rod (11) is connected to the lower blocking rod (12), the electric push rod (11) is connected to an external power supply, and the lower blocking rod (12) is screwed to the upper blocking rod (12) by using a rotating rod (13); The moving rod (14) is movably inserted into the vertical tube of the transmission tube (9), the electric push rod 2 (15) is fixedly arranged in the transmission tube (9), and the output end of the electric push rod 2 (15) is connected to the bottom end of the moving rod (14), and the electric push rod 2 (15) is connected to the outer wall power supply.
3. The anti-clogging new energy lithium battery material conveyor according to claim 2 is characterized in that: A vibration motor (16) is provided on the outer wall of the transmission pipe (9).
4. The anti-clogging new energy lithium battery material conveyor according to claim 2 is characterized in that: The top end of the moving rod (14) and the end of the upper blocking rod (12) are respectively provided with a clamping groove (17), and the two clamping grooves (17) are arranged in a cooperative and abutting manner.
5. The anti-clogging new energy lithium battery material conveyor according to claim 1 is characterized in that: Both sealing rods (12) are provided with sealing pads (18).