Concrete storage equipment

By employing a spiral blade conveying system, a mixing rod for dispersing, and an inclined plate for discharging, the design solves the problems of cement clumping and blockage in concrete storage tanks, achieving a highly efficient concrete conveying and discharging process.

CN224074659UActive Publication Date: 2026-04-03HUIZHOU SHENWAN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-04-03

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Abstract

The utility model relates to the technical field of concrete, in particular to concrete storage equipment which comprises a storage tank, one side of the storage tank is fixedly connected with a feeding pipe, one side of the feeding pipe is fixedly connected with a first motor, one side of the storage tank is fixedly connected with a second motor, one side of the storage tank is rotationally connected with a connecting shaft, and the connecting shaft is fixedly connected with a second motor. And one side of the connecting shaft is fixedly connected with a scraping plate, one side of the storage tank is fixedly connected with a third motor, and one side of the storage tank is fixedly connected with a discharging pipe. The concrete stirring device has the advantages that concrete enters the feeding pipe through the feeding port, the first motor is started to drive the spiral blade to move, so that materials can uniformly enter the storage tank, the second motor is started to drive the stirring rod to move to scatter the caked concrete, and the concrete stirring device is simple in structure and convenient to use. And a third motor is started to drive a convex block and the bottom end of an inclined plate to move cooperatively, so that discharging blockage caused by long-time standing of concrete is avoided, and the smoothness of the discharging process is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of concrete technology, and in particular to a concrete storage device. Background Technology

[0002] Concrete is a building material mainly composed of cement, water, aggregates, and other additives mixed in a certain proportion. Cement is a powdered hydraulic inorganic binder that hardens in air or water after being mixed with water. Therefore, cement needs to be stored in a dry environment, primarily using concrete storage tanks. When the cement is needed, the storage tank is opened to discharge it.

[0003] When the concrete storage tank is opened, outside air will be introduced into the tank. The moisture in the air will affect the cement, causing the stored cement to clump. It will also make it difficult to unload the cement smoothly during the loading and unloading process, which can easily lead to blockages and reduce efficiency.

[0004] To address this issue, this utility model proposes a concrete storage device. Utility Model Content

[0005] The purpose of this invention is to at least solve one of the aforementioned technical defects.

[0006] Therefore, one objective of this utility model is to provide a concrete storage device to solve the problems mentioned in the background art and overcome the shortcomings of the existing technology.

[0007] To achieve the above objectives, one embodiment of the present invention provides a concrete storage device, including a storage tank, a feed pipe fixedly connected to one side of the storage tank, a first motor fixedly connected to one side of the feed pipe, a second motor fixedly connected to one side of the storage tank, a connecting shaft rotatably connected to one side of the storage tank, a scraper fixedly connected to one side of the connecting shaft, a third motor fixedly connected to one side of the storage tank, and a discharge pipe fixedly connected to one side of the storage tank.

[0008] Preferably, one side of the feed pipe has a feed inlet and a discharge outlet, the discharge outlet is located on one side of the inner surface of the storage tank, and a circular groove is formed on one side of the inner surface of the feed pipe.

[0009] Preferably, in any of the above schemes, a first rotating shaft is fixedly connected to one side of the output end of the first motor, a spiral blade is fixedly connected to one side of the first rotating shaft, and a disc is fixedly connected to one side of the first rotating shaft.

[0010] The technical effect achieved by adopting the above scheme is that the spiral blades can stably transport concrete materials into the storage tank.

[0011] Preferably, in any of the above embodiments, the outer surface of the disk and the inner surface of the groove are adapted to each other, and the outer surface of the disk and the inner surface of the groove are rotatably connected.

[0012] Preferably, of any of the above solutions, a mounting box is fixedly connected to one side of the storage tank, and the second motor is fixedly connected to one side of the inner surface of the mounting box.

[0013] Preferably, in any of the above schemes, a second rotating shaft is fixedly connected to one side of the output end of the second motor, a first gear is fixedly connected to one side of the second rotating shaft, and a second gear is meshed with one side of the first gear.

[0014] The technical effect achieved by adopting the above solution is that, through the meshing of gears, a stable and precise rotational force can be provided, making the rotation of the connecting shaft more reliable.

[0015] Preferably, in any of the above embodiments, one side of the connecting shaft is fixedly connected to one side of the second gear, one side of the connecting shaft is fixedly connected to a stirring rod, and one side of the scraper is fixedly connected to one side of the stirring rod.

[0016] Preferably, in any of the above embodiments, the width of the scraper is adapted to the inner surface diameter of the storage tank, and the two sides of the scraper are in contact with the inner wall of the storage tank.

[0017] The technical effect achieved by adopting the above solution is that the sliding connection can prevent the device from shaking or sliding, thus ensuring the stability and accuracy of the device.

[0018] Preferably, in any of the above embodiments, an inclined plate is provided on one side of the storage tank, the third motor is located on the side below the inclined plate, a third rotating shaft is fixedly connected to one side of the output end of the third motor, a rotating disk is fixedly connected to one side of the third rotating shaft, a protrusion is fixedly connected to one side of the rotating disk, and one side of the protrusion overlaps with one side of the inclined plate.

[0019] Preferably, of any of the above solutions, a support leg is fixedly connected to one side of the storage tank, and a valve is provided on one side of the discharge pipe.

[0020] Compared with the prior art, the advantages and beneficial effects of this utility model are as follows:

[0021] The working principle of this utility model is as follows: First, concrete is fed into the feed pipe through the inlet. Then, the first motor is started to drive the spiral blades to move, ensuring continuous material conveying and avoiding blockage or accumulation of material in the feed pipe, thus improving feeding efficiency and allowing the material to enter the storage tank evenly. The second motor is started to drive the stirring rod to break up any lumps of concrete, preventing them from affecting subsequent processing and improving processing quality. During the subsequent discharge process, the valve is opened, and the third motor is started to drive the protrusion to move. The protrusion contacts the bottom of the inclined plate and shakes up and down, which can prevent the concrete from remaining still for a long time and forming a discharge blockage, ensuring the smoothness of the discharge process. The concrete is then discharged through the discharge pipe.

[0022] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0023] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0024] Figure 1 This is a three-dimensional structural diagram according to an embodiment of the present utility model;

[0025] Figure 2 This is a cross-sectional structural diagram according to an embodiment of the present utility model;

[0026] Figure 3 This is a cross-sectional structural diagram of the storage tank according to an embodiment of the present utility model;

[0027] Figure 4 This is a three-dimensional structural diagram of the first motor according to an embodiment of the present utility model;

[0028] Figure 5 This is a three-dimensional structural diagram of the second motor according to an embodiment of the present utility model;

[0029] Figure 6 This is a three-dimensional structural diagram of the third motor according to an embodiment of the present utility model.

[0030] In the diagram: 1-Storage tank, 2-Feed pipe, 3-First motor, 4-Second motor, 5-Connecting shaft, 6-Scraper, 7-Third motor, 8-Discharge pipe, 101-Mounting box, 102-Inclined plate, 103-Support leg, 201-Feed inlet, 202-Discharge outlet, 203-Circular groove, 301-First rotating shaft, 302-Spiral blade, 303-Disc, 401-Second rotating shaft, 402-First gear, 403-Second gear, 501-Stirring rod, 701-Third rotating shaft, 702-Rotating disk, 703-Protrusion, 801-Valve. Detailed Implementation

[0031] like Figures 1 to 6 As shown, a concrete storage device includes a storage tank 1, a feed pipe 2 fixedly connected to one side of the storage tank 1, a first motor 3 fixedly connected to one side of the feed pipe 2, a second motor 4 fixedly connected to one side of the storage tank 1, a connecting shaft 5 rotatably connected to one side of the storage tank 1, a scraper 6 fixedly connected to one side of the connecting shaft 5, a third motor 7 fixedly connected to one side of the storage tank 1, and a discharge pipe 8 fixedly connected to one side of the storage tank 1.

[0032] A feed inlet 201 is provided on one side of the feed pipe 2, and a discharge outlet 202 is provided on one side of the feed pipe 2. The discharge outlet 202 is located on one side of the inner surface of the storage tank 1, and a circular groove 203 is provided on one side of the inner surface of the feed pipe 2.

[0033] A first rotating shaft 301 is fixedly connected to one side of the output end of the first motor 3. A spiral blade 302 is fixedly connected to one side of the first rotating shaft 301. A disc 303 is fixedly connected to one side of the first rotating shaft 301. When the first motor 3 is started, the first rotating shaft 301 is driven to rotate. The first rotating shaft 301 drives the spiral blade 302 to move. The first rotating shaft 301 drives the disc 303 to rotate in the circular groove 203.

[0034] The outer surface of the disc 303 and the inner surface of the groove 203 are adapted to each other, and the outer surface of the disc 303 and the inner surface of the groove 203 are rotatably connected.

[0035] A mounting box 101 is fixedly connected to one side of the storage tank 1. Two bearings are installed inside the mounting box 101. The two bearings are fixedly connected to one side of the first gear 402 and the second gear 403 respectively. One side of the second motor 4 is fixedly connected to one side of the inner surface of the mounting box 101.

[0036] A second rotating shaft 401 is fixedly connected to one side of the output end of the second motor 4. A first gear 402 is fixedly connected to one side of the second rotating shaft 401. A second gear 403 is meshed with one side of the first gear 402. When the second motor 4 is started, the second rotating shaft 401 is driven to rotate. The second rotating shaft 401 drives the first gear 402 to rotate. The first gear 402 drives the second gear 403 to mesh. The second gear 403 drives the connecting shaft 5 to rotate.

[0037] One side of the connecting shaft 5 is fixedly connected to one side of the second gear 403, and one side of the connecting shaft 5 is fixedly connected to the stirring rod 501. One side of the scraper 6 is fixedly connected to one side of the stirring rod 501. When the connecting shaft 5 moves, it drives the stirring rod 501 to rotate. The stirring rod 501 drives the scraper 6 to clean the inner wall of the storage tank 1, preventing damage to the tank due to long-term corrosion, thereby extending the service life of the storage tank 1.

[0038] The width of the scraper 6 is matched with the inner surface diameter of the storage tank 1, and the two sides of the scraper 6 are in contact with the inner wall of the storage tank 1.

[0039] An inclined plate 102 is provided on one side of the storage tank 1, and a limiting shaft is provided on one side of the inclined plate 102. One side of the limiting shaft is rotatably connected to one side of the storage tank 1. A sealing gasket is provided between the limiting shaft and the storage tank 1 to prevent concrete from falling through the gap between them. The concrete can slide down the inclined plate 102, which improves the discharge efficiency. The third motor 7 is located on one side below the inclined plate 102. A third rotating shaft 701 is fixedly connected to one side of the output end of the third motor 7. A rotating disk 702 is fixedly connected to one side of the third rotating shaft 701. A protrusion 703 is fixedly connected to one side of the rotating disk 702. One side of the protrusion 703 overlaps one side of the inclined plate 102. When the third motor 7 is started, it drives the third rotating shaft 701 to rotate. The third rotating shaft 701 drives the rotating disk 702 to rotate. The rotating disk 702 drives the protrusion 703 to move. The protrusion 703 contacts the inclined plate 102 and makes it sway up and down, which can effectively prevent concrete from accumulating on the inclined plate 102 and further promote the flow of concrete.

[0040] A support leg 103 is fixedly connected to one side of the storage tank 1, and a valve 801 is installed on the discharge pipe 8. The valve 801 can adjust the discharge flow rate.

[0041] Compared with the prior art, the present invention has the following advantages:

[0042] The working principle of this utility model is as follows: First, concrete enters the feed pipe 2 through the feed inlet 201. Then, the first motor 3 is started to drive the spiral blade 302 to move, ensuring continuous material conveying and avoiding blockage or accumulation of material in the feed pipe 2, thus improving feeding efficiency and allowing the material to enter the storage tank 1 evenly. The second motor 4 is started to drive the stirring rod 501 to break up any lumps of concrete, preventing them from affecting subsequent processing and improving processing quality. During subsequent discharge, the valve 801 is opened, and the third motor 7 is started to drive the protrusion 703 to move. The protrusion 703 contacts the bottom end of the inclined plate 102, causing it to shake up and down, which can prevent the concrete from remaining still for a long time and forming a discharge blockage, ensuring the smoothness of the discharge process. Finally, the concrete is discharged through the discharge pipe 8.

Claims

1. A concrete storage device, characterized in that: The system includes a storage tank (1), a feed pipe (2) fixedly connected to one side of the storage tank (1), a first motor (3) fixedly connected to one side of the feed pipe (2), a second motor (4) fixedly connected to one side of the storage tank (1), a connecting shaft (5) rotatably connected to one side of the storage tank (1), a scraper (6) fixedly connected to one side of the connecting shaft (5), a third motor (7) fixedly connected to one side of the storage tank (1), and a discharge pipe (8) fixedly connected to one side of the storage tank (1).

2. The concrete storage device according to claim 1, characterized in that: The feed pipe (2) has a feed inlet (201) on one side and a discharge outlet (202) on the other side. The discharge outlet (202) is located on one side of the inner surface of the storage tank (1). A circular groove (203) is provided on one side of the inner surface of the feed pipe (2).

3. A concrete storage device according to claim 2, characterized in that: A first rotating shaft (301) is fixedly connected to one side of the output end of the first motor (3), a spiral blade (302) is fixedly connected to one side of the first rotating shaft (301), and a disc (303) is fixedly connected to one side of the first rotating shaft (301).

4. A concrete storage device according to claim 3, characterized in that: The outer surface of the disk (303) and the inner surface of the groove (203) are adapted to each other, and the outer surface of the disk (303) and the inner surface of the groove (203) are rotatably connected.

5. A concrete storage device according to claim 4, characterized in that: The storage tank (1) is fixedly connected to a mounting box (101) on one side, and the second motor (4) is fixedly connected to the inner surface of the mounting box (101) on one side.

6. A concrete storage device according to claim 5, characterized in that: A second rotating shaft (401) is fixedly connected to one side of the output end of the second motor (4), a first gear (402) is fixedly connected to one side of the second rotating shaft (401), and a second gear (403) meshes with one side of the first gear (402).

7. A concrete storage device according to claim 6, characterized in that: One side of the connecting shaft (5) is fixedly connected to one side of the second gear (403), and one side of the connecting shaft (5) is fixedly connected to the stirring rod (501). One side of the scraper (6) is fixedly connected to one side of the stirring rod (501).

8. A concrete storage device according to claim 7, characterized in that: The width of the scraper (6) is adapted to the inner surface diameter of the storage tank (1), and the two sides of the scraper (6) are in contact with the inner wall of the storage tank (1).

9. A concrete storage device according to claim 8, characterized in that: An inclined plate (102) is provided on one side of the storage tank (1). The third motor (7) is located on one side below the inclined plate (102). A third rotating shaft (701) is fixedly connected to one side of the output end of the third motor (7). A rotating disk (702) is fixedly connected to one side of the third rotating shaft (701). A protrusion (703) is fixedly connected to one side of the rotating disk (702). One side of the protrusion (703) overlaps one side of the inclined plate (102).

10. A concrete storage device according to claim 9, characterized in that: The storage tank (1) is fixedly connected to a support leg (103) on one side, and the discharge pipe (8) is equipped with a valve (801).