Pneumatic conveying pipeline for new energy battery material
By introducing a combination design of a fixed ring, a rotating ring, a bevel gear ring, a synchronous drive mechanism and a scraper plate into the pneumatic conveying pipeline of new energy battery materials, the problems of pipeline noise and inner wall damage are solved, and effective scraping and anti-clogging of materials are achieved.
Patent Information
- Application Number
- CN202422785653.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Existing pneumatic conveying pipelines for new energy battery materials are prone to generating noise and damaging the inner wall of the pipeline during use, and materials are prone to accumulation and cause blockage.
The combined design of fixed ring, rotating ring, bevel gear ring, synchronous drive mechanism, guide ring and scraper plate is adopted. The synchronous drive mechanism drives the scraper plate and scraper bar to rotate in the pipeline to avoid material adhesion and accumulation. The flexibility of the scraper bar is used to avoid wear on the inner wall of the pipeline.
It can prevent material blockage and noise generation without knocking, while protecting the inner wall of the pipe from damage.
Smart Images

Figure CN223432979U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material conveying technical field, concretely relates to a pneumatic conveying pipeline for new energy battery material. BACKGROUND
[0002] Based on the requirements of environmental protection and energy saving, new energy vehicles are rapidly developed, and most of the current new energy vehicles use batteries to provide power sources, and in the production process of new energy batteries, pneumatic conveying pipelines are needed for material conveying.
[0003] The patent with the patent authorization publication number CN218809061U discloses a pneumatic conveying pipeline for reducing adhesion, which comprises a pipe body and a stirring assembly arranged in the pipe body. The stirring assembly comprises a support block, a fan blade, a steel wire rope and a stand. The fan blade is connected with the support block, one end of the steel wire rope is connected with the stand, and the other end of the steel wire rope is connected with the fan blade. Although the fan blade in the application will drive the steel wire rope to swing under the action of air force, dispersing the materials accumulated in the pipeline and reducing adhesion, the steel wire rope and the beating rod will collide with the inner wall of the pipeline during the swinging process, which not only produces a large noise during the conveying of materials, but also easily damages the inner wall of the pipeline. Therefore, a pneumatic conveying pipeline for new energy battery material is urgently needed. UTILITY MODEL CONTENT
[0004] The utility model aims at the defects and deficiencies of the prior art, and provides a pneumatic conveying pipeline for new energy battery material with reasonable design to solve the above problems.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme: it contains pipe body and support frame, a plurality of support frames are fixedly arranged on the lower part of the pipe body;
[0006] It also contains:
[0007] The fixed ring is a plurality of equidistantly distributed in the pipe body, a rotating ring is rotatably arranged in the fixed ring through a sealing bearing, a bevel gear is fixedly sleeved on the rotating ring, the bevel gear is movably arranged in the side wall of the fixed ring, and a synchronous driving mechanism connected with the bevel gear is arranged on the pipe body;
[0008] The flow guide ring is a plurality of rotatably arranged in the pipe body through a sealing shaft, and the flow guide ring is fixedly arranged on the left side of the rotating ring;
[0009] The material scraping plate is a plurality of equicorner distributed on the right side wall of the rotating ring, and the right side wall of the material scraping plate is connected with the flow guide ring.
[0010] Further, the synchronous driving mechanism comprises:
[0011] The installation frame is fixedly arranged on the upper portion of the pipe body, a motor is fixedly arranged on the left side wall of the installation frame, a synchronous rod is rotatably arranged in the installation frame through a bearing, and a plurality of worm gears are fixedly arranged on the synchronous rod.
[0012] The rotating rods are rotatably arranged in the pipe body through bearings, the upper ends of the rotating rods are rotatably connected with the inner top wall of the installation frame through bearings, and the lower ends of the rotating rods are rotatably inserted into the side wall of the fixing ring through bearings.
[0013] The bevel gears are fixedly arranged at the lower ends of the rotating rods, the bevel gears are meshed with the bevel gear rings, worm gears are fixedly arranged on the rotating rods, and the worm gears are meshed with the worm gears.
[0014] Further, a plurality of bearing seats are fixedly arranged on the inner top wall of the installation frame, and the bearing seats are rotatably arranged on the synchronous rod.
[0015] Further, a scraping strip is fixedly arranged on one side wall of the scraping plate, and the scraping strip is movably arranged in contact with the inner wall of the pipe body.
[0016] Further, the scraping plate is arranged in an inclined manner in the pipe body.
[0017] Compared with the prior art, the pneumatic conveying pipeline for new energy battery materials can avoid the blockage caused by the adhesion and accumulation of materials on the inner wall of the pipeline without knocking the pipeline, can avoid the collision noise in the pipeline, and can also avoid the damage to the inner wall of the pipeline. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a structural schematic view of the utility model.
[0019] Figure 2 is a sectional view of the pipe body, the fixing ring, the rotating ring and the flow guide ring in the utility model.
[0020] Figure 3 is Figure 2 is an enlarged view of A in
[0021] Figure 4 is an exploded view of the fixing ring, the rotating ring, the bevel gear ring, the rotating rod, the bevel gear, the flow guide ring, the scraping plate and the scraping strip in the utility model.
[0022] MARKS OF THE DRAWINGS:
[0023] Pipe body 1, support frame 2, fixing ring 3, rotating ring 4, bevel gear ring 5, synchronous driving mechanism 6, installation frame 6-1, motor 6-2, synchronous rod 6-3, worm gear 6-4, rotating rod 6-5, bevel gear 6-6, worm gear 6-7, flow guide ring 7, scraping plate 8, bearing seat 9, scraping strip 10. DETAILED DESCRIPTION
[0024] 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.
[0025] like Figures 1-4 As shown, this specific embodiment adopts the following technical solution: it comprises a tube body 1 and a support frame 2, and a plurality of support frames 2 are fixedly provided at the lower part of the tube body 1 by bolts;
[0026] It also contains:
[0027] The fixing ring 3 is a plurality of fixing rings 3, which are evenly distributed in the tube body 1. A rotating ring 4 is rotatably provided in the fixing ring 3 through a sealed bearing. A bevel gear ring 5 is fixedly sleeved on the rotating ring 4. The bevel gear ring 5 is movably provided in the side wall of the fixing ring 3. A synchronous drive mechanism 6 connected to the bevel gear ring 5 is provided on the tube body 1;
[0028] There are several guide rings 7, all of which are rotatably arranged in the tube body 1 through the sealing shaft, and the guide ring 7 is fixedly arranged on the left side of the rotating ring 4;
[0029] Scraper plates 8, there are several scraper plates 8, each with equal fillet angles distributed on the right side walls of several rotating rings 4, the right side wall of the scraper plate 8 is connected to the guide ring 7, and a scraper strip 10 is bonded and fixed on one side wall of the scraper plate 8, and the scraper strip 10 is movably arranged in contact with the inner wall of the tube body 1. When the scraper plate 8 rotates with the rotating ring 4, the scraper strip 10 can replace the scraper plate 8 to scrape off the material attached to the inner wall of the tube body 1, and the flexibility of the scraper strip 10 can avoid wear on the inner wall of the tube body 1. The scraper plate 8 is arranged in an inclined manner in the tube body 1 to improve the scraping effect of the scraper plate 8 and the scraper strip 10 on the material on the inner wall of the tube body 1;
[0030] The synchronous drive mechanism 6 comprises:
[0031] A mounting frame 6-1 is fixedly provided on the upper part of the tube body 1 by bolts, a motor 6-2 is fixedly provided on the left side wall of the mounting frame 6-1 by bolts, a synchronization rod 6-3 is rotatably provided in the mounting frame 6-1, a plurality of worm gears 6-4 are fixedly sleeved on the synchronization rod 6-3, a plurality of bearing seats 9 are fixedly provided on the inner top wall of the mounting frame 6-1, and the bearing seats 9 are rotatably sleeved on the synchronization rod 6-3, and the bearing seats 9 can provide auxiliary support for the synchronization rod 6-3, so that the synchronization rod 6-3 is more stable during the rotation process;
[0032] Rotary rods 6-5 are arranged on the pipe body 1 through bearings, the upper end of the rotary rod 6-5 is rotatably connected with the inner top wall of the mounting frame 6-1 through a bearing, and the lower end of the rotary rod 6-5 is rotatably arranged in the side wall of the fixed ring 3 through a bearing;
[0033] Bevel gears 6-6 are arranged at the lower end of the rotary rod 6-5, the bevel gear 6-6 is arranged in meshing with the bevel gear 5, the worm gear 6-7 is fixedly arranged on the rotary rod 6-5, and the worm gear 6-7 is arranged in meshing with the worm 6-4.
[0034] When the utility model is used, the motor 6-2 can be started, the motor 6-2 drives the synchronous rod 6-3 to rotate, the synchronous rod 6-3 drives the worm 6-4 to rotate, the worm 6-4 drives the worm gear 6-7 in meshing therewith to rotate, the worm gear 6-7 drives the rotary rod 6-5 to rotate, the rotary rod 6-5 drives the bevel gear 6-6 to rotate, the bevel gear 6-6 drives the bevel gear 5 to rotate, the bevel gear 5 drives the rotary ring 4 to rotate, and the rotary ring 4 drives the flow guide ring 7 and the scraping plate 8 to rotate in the pipe body 1, so that the scraping plate 8 and the scraping strip 10 scrape off the material on the inner wall of the pipe body 1, and the pipe body 1 is prevented from being blocked due to the large adhesion and accumulation of the material on the inner wall of the pipe body 1.
[0035] Compared with the prior art, the utility model has the advantages that:
[0036] Through the cooperation of the fixed ring 3, the rotary ring 4, the bevel gear 5, the synchronous driving mechanism 6, the flow guide ring 7 and the scraping plate 8, the pipe can be prevented from being blocked due to the adhesion and accumulation of the material on the inner wall of the pipe without knocking the pipe, the collision noise in the pipe is avoided, and the damage to the inner wall of the pipe is also avoided.
[0037] The bearing seat 9 can provide auxiliary support for the synchronous rod 6-3, so that the synchronous rod 6-3 is more stable during rotation.
[0038] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features can be made, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model should be included in the protection scope of the utility model.
Claims
1. A pneumatic conveying pipeline for new energy battery materials, comprising a pipe body (1) and a support frame (2), wherein a plurality of support frames (2) are fixedly arranged at the lower part of the pipe body (1); Its characteristics are: It also contains: A fixed ring (3), wherein the fixed ring (3) is in the form of a plurality of fixed rings (3) and is equidistantly distributed in the tube body (1); a rotating ring (4) is rotatably provided in the fixed ring (3) via a sealed bearing; a bevel gear ring (5) is fixedly sleeved on the rotating ring (4); the bevel gear ring (5) is movably provided in the side wall of the fixed ring (3); and a synchronous driving mechanism (6) connected to the bevel gear ring (5) is provided on the tube body (1); A guide ring (7), wherein the guide ring (7) is a plurality of guide rings, all of which are rotatably arranged in the tube body (1) via a sealing shaft, and the guide ring (7) is fixedly arranged on the left side of the rotating ring (4); Scraper plates (8), there are several scraper plates (8), which are distributed on the right side walls of several rotating rings (4) with equal fillet angles, and the right side walls of the scraper plates (8) are connected to the guide ring (7).
2. The pneumatic conveying pipeline for new energy battery materials according to claim 1, characterized in that: The synchronous drive mechanism (6) comprises: A mounting frame (6-1) is fixedly mounted on the upper portion of the tube body (1); a motor (6-2) is fixedly mounted on the left side wall of the mounting frame (6-1); a synchronous rod (6-3) is rotatably mounted in the mounting frame (6-1) via a bearing; and a plurality of worm gears (6-4) are fixedly sleeved on the synchronous rod (6-3); Rotating rods (6-5), the rotating rods (6-5) are multiple and are all rotatably mounted on the tube body (1) via bearings, the upper ends of the rotating rods (6-5) are rotatably connected to the inner top wall of the mounting frame (6-1) via bearings, and the lower ends of the rotating rods (6-5) are rotatably inserted into the side wall of the fixing ring (3) via bearings; Bevel gears (6-6), wherein the bevel gears (6-6) are multiple and fixedly arranged at the lower ends of the multiple rotating rods (6-5), the bevel gears (6-6) are meshed with the bevel gear ring (5), a worm gear (6-7) is fixedly sleeved on the rotating rod (6-5), and the worm gear (6-7) is meshed with the worm (6-4).
3. The pneumatic conveying pipeline for new energy battery materials according to claim 2, characterized in that: A plurality of bearing seats (9) are fixedly arranged on the inner top wall of the mounting frame (6-1), and the bearing seats (9) are rotatably sleeved on the synchronization rod (6-3).
4. The pneumatic conveying pipeline for new energy battery materials according to claim 1, characterized in that: A scraper strip (10) is fixedly provided on one side wall of the scraper plate (8), and the scraper strip (10) is movably arranged in contact with the inner wall of the tube body (1).
5. The pneumatic conveying pipeline for new energy battery materials according to claim 1, characterized in that: The scraper plate (8) is arranged in an inclined manner inside the tube body (1).
Citation Information
Patent Citations
A pneumatic conveying pipeline with reduced adhesion
CN218809061U
Cited By
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