Concrete powder storage tank for concrete production

By designing storage, distribution, and mixing structures, the problem of powder clumping due to moisture during storage was solved, achieving dry storage and uniform mixing of powder, thus improving the quality and safety of concrete.

CN223765191UActive Publication Date: 2026-01-06TIANJIN KUNHAO CONCRETE CO LTD
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Patent Information

Application Number
CN202520134057.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-01-06
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Existing concrete powder storage tanks are prone to moisture absorption and clumping during storage, resulting in uneven powder distribution, affecting concrete quality and posing safety hazards.

Method used

The design incorporates a storage, distribution, and mixing structure, including a support frame, storage bins, distribution bins, and mixing bins. Equipped with a motor and a stirring head, the structure achieves dry storage, classified storage, and uniform mixing of powder materials through threaded connections and welding.

Benefits of technology

Ensure that the powder remains dry during storage to prevent clumping, achieve classified management and uniform mixing of the powder, and improve the quality and performance of concrete.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a concrete powder material storage tank for concrete production, which is characterized by comprising a material storage structure, a material distribution structure and a material mixing structure, the material distribution structure is arranged in the material storage structure, the material storage structure is connected with the material distribution structure, the material mixing structure is arranged on one side of the material distribution structure, and the material mixing structure is arranged on the other side of the material distribution structure. The material distributing structure is improved, the material distributing structure is composed of the connecting block, the material distributing barrel, the material distributing cover, the motor A, the screening barrel, the screening cover and the material distributing end, various kinds of powder can be stored in a separated mode, and due to classified storage, powder management is more orderly; a worker can quickly find a target object when taking and placing powder, the working efficiency is improved, the finding time is shortened, the screening barrel is arranged inside, the powder which is affected with damp and caked can be screened out, and the quality and performance of concrete are improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of concrete powder storage tanks, and in particular to a concrete powder storage tank for concrete production. Background Technology

[0002] Concrete powder storage tanks are mainly used to store powder materials required for concrete production, such as cement powder, mineral powder, and fly ash. These powder materials need to be kept dry and clean during storage to avoid moisture, clumping, or contamination, which would affect the quality of the concrete. The design of this type of storage tank aims to ensure that the concrete powder materials maintain good quality during storage, while facilitating subsequent retrieval and transportation.

[0003] Existing patent CN118494984B discloses a concrete powder storage tank for concrete production, belonging to the technical field of concrete powder storage tanks. This concrete powder storage tank includes a tank body and a supporting plate, which are fixedly connected through the tank body. Support legs are fixedly connected to the bottom corners of the supporting plate, and an automatic leveling mechanism is fixedly connected to the bottom of each support leg. A stress adjustment mechanism is fixedly connected to the top of the tank body, and several switch components are symmetrically distributed in a circular pattern on the top of the stress adjustment mechanism. This invention, through the coordinated action of the automatic leveling mechanism and the stress adjustment mechanism, prevents uneven pressure exerted by the concrete powder on the internal sidewalls of the storage tank during storage, thus preventing damage and breakage of the tank body. This improves the overall strength and stability of the storage tank and extends its service life.

[0004] Problems identified by existing technology: If the powder material is accidentally exposed to moisture and clumps during storage, it will lead to uneven distribution, affecting the overall structure of the concrete. Concrete made with clumped powder material has potential safety hazards due to insufficient strength and structural defects. Utility Model Content

[0005] In view of the above technical problems, the present invention provides a concrete powder storage tank for concrete production, characterized in that it includes a storage structure, a distribution structure, and a mixing structure. The storage structure is provided with a distribution structure. The storage structure and the distribution structure are connected by grooves and protrusions. A mixing structure is provided on one side of the distribution structure. The distribution structure and the mixing structure are connected by threads and nuts.

[0006] The storage structure comprises a support frame, a storage bin, a connecting groove, a storage cover, a quick-release buckle, and a discharge end. The storage bin is located on one side of the support frame, and the support frame and storage bin are connected by welding. A connecting groove is provided inside the storage bin. A storage cover is located on one side of the storage bin, and the storage bin and cover are connected by a hinge. A quick-release buckle is located on one side of the storage cover, and the cover and quick-release buckle are connected by threads and nuts. A discharge end is located on one side of the storage bin, and the storage bin and discharge end are connected by welding. A sealing ring is provided on one side of the storage cover to ensure the airtightness of the connection between the storage bin and the cover. A groove is provided on one side of the connecting groove. A valve is provided at the discharge end.

[0007] The material distribution structure consists of a connecting block, a material distribution bucket, a material distribution cover, a motor A, a screening bucket, a screening cover, and a material distribution end. The material distribution bucket is located on one side of the connecting block, and the connecting block and the material distribution bucket are connected by welding. A material distribution cover is located on one side of the material distribution bucket, and the material distribution bucket and the material distribution cover are connected by threads. Motor A is located inside the material distribution bucket, and the output end of motor A is connected to the screening bucket. A screening cover is located on one side of the screening bucket, and the screening bucket and the screening cover are connected by hinges. A material distribution end is located on one side of the material distribution bucket, and the material distribution bucket and the material distribution end are connected by welding. A protrusion is located on one side of the connecting block; a one-way valve is located at the material distribution end.

[0008] The mixing structure consists of a mixing tank, a mixing cover, a motor B, a stirring head, and a mixing end. The mixing cover is located on one side of the mixing tank, and the mixing tank and the mixing cover are connected by threads. Motor B is installed inside the mixing tank, and the mixing tank and motor B are connected by welding. The output end of motor B is connected to the stirring head. The mixing end is located on one side of the mixing tank, and the mixing tank and the mixing end are connected by welding. A hole is formed on the side of the mixing tank for connecting to the feeding end of the dispensing end. The mixing end is equipped with a valve and is inserted into the discharge end to achieve material discharge.

[0009] The beneficial effects of this utility model are as follows:

[0010] This invention improves the material storage structure, which consists of a support frame, a storage bucket, a connecting groove, a storage cover, a quick-release buckle, and a discharge end. This improved structure ensures that the powder material remains dry and clean during storage to prevent moisture absorption, clumping, or contamination, which could affect the quality of the concrete.

[0011] This utility model improves the material distribution structure, which consists of a connecting block, a material distribution bucket, a material distribution cover, a motor A, a screening bucket, a screening cover, and a material distribution end. The material distribution structure can store various powders separately, and the classified storage makes the powder management more orderly. When employees retrieve or put away powders, they can quickly find the target items, improve work efficiency, and reduce search time. The internal screening bucket can screen out damp and clumped powders, thereby improving the quality and performance of concrete.

[0012] This invention improves the mixing structure, which consists of a mixing bucket, a mixing cover, a motor B, a mixing head, and a mixing end. This mixing structure can form a uniform powder by mixing different powders. Cement powder, mineral powder, fly ash, etc. in concrete are easier to mix evenly when they are dry. Mixing in this state allows the various powders to come into full contact and mix, ensuring a more uniform distribution of the powders when water is added and mixed later, thereby ensuring the quality of the concrete. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of a concrete powder storage tank for concrete production according to this utility model.

[0014] Figure 2 This is a top view of a concrete powder storage tank for concrete production according to the present invention.

[0015] Figure 3 This is a schematic diagram showing the material distribution structure and mixing structure of a concrete powder storage tank for concrete production according to this utility model.

[0016] Figure 4 This is a schematic diagram showing the closing of the storage cover of a concrete powder storage tank for concrete production according to this utility model.

[0017] Figure 5 This is a schematic diagram of the material distribution structure and mixing structure of a concrete powder storage tank for concrete production according to this utility model.

[0018] Figure 6 This is a schematic diagram of the material distribution bin of a concrete powder storage tank device for concrete production according to this utility model;

[0019] Figure 7 This is a schematic diagram of a screening bucket for a concrete powder storage tank used in concrete production according to this utility model.

[0020] Figure 8 This is a schematic diagram of the mixing structure of a concrete powder storage tank for concrete production according to the present invention.

[0021] Figure 9 This is a schematic diagram of the mixing head of a concrete powder storage tank for concrete production according to this utility model.

[0022] As shown in the figure: 1 is the support frame; 2 is the storage bucket; 3 is the connecting groove; 4 is the storage cover; 5 is the quick-release buckle; 6 is the discharge end; 7 is the connecting block; 8 is the distribution bucket; 9 is the distribution cover; 10 is the motor A; 11 is the screening bucket; 12 is the screening cover; 13 is the distribution end; 14 is the mixing bucket; 15 is the motor B; 16 is the stirring head; 17 is the mixing end; 18 is the mixing cover. Detailed Implementation

[0023] Example 1

[0024] This utility model provides a concrete powder storage tank for concrete production. The storage structure comprises a support frame 1, a storage bucket 2, a connecting groove 3, a storage cover 4, a quick-release buckle 5, and a discharge end 6. The distribution structure comprises a connecting block 7, a distribution bucket 8, a distribution cover 9, a motor A10, a screening bucket 11, a screening cover 12, and a distribution end 13. The mixing structure comprises a mixing bucket 14, a mixing cover 18, a motor B15, a stirring head 16, and a mixing end 17.

[0025] A storage bin 2 is provided on one side of the support frame 1. The support frame 1 and the storage bin 2 are connected by welding. A connecting groove 3 is provided inside the storage bin 2. A storage cover 4 is provided on one side of the storage bin 2. The storage bin 2 and the storage cover 4 are connected by a hinge. A quick-release buckle 5 is provided on one side of the storage cover 4. The storage cover 4 and the quick-release buckle 5 are connected by threads and nuts. A discharge end 6 is provided on one side of the storage bin 2. The storage bin 2 and the discharge end 6 are connected by welding. A distributing hopper 8 is provided on one side of the connecting block 7. The connecting block 7 and the distributing hopper 8 are connected by welding. A distributing cover 9 is provided on one side of the distributing hopper. The distributing hopper 8 and the distributing cover 9 are connected by threads. A motor A10 is provided inside the distributing hopper 8. The output end of the motor A10 is connected to the screening hopper 11. A screening cover 12 is provided on one side of the screening hopper 11. The screening hopper 11 and the screening cover 12 are connected by hinges. A distributing end 13 is provided on one side of the distributing hopper 8. The distributing hopper 8 and the distributing end 13 are connected by welding. A mixing cover 18 is provided on one side of the mixing hopper 14. The mixing hopper 14 and the mixing cover 18 are connected by threads. A motor B15 is provided inside the mixing hopper 14. The mixing hopper 14 and the motor B15 are connected by welding. The output end of the motor B15 is connected to the stirring head 16. A mixing end 17 is provided on one side of the mixing hopper 14. The mixing hopper 14 and the mixing end 17 are connected by welding.

[0026] Example 2

[0027] When using this utility model, first determine whether the powder needs to be packaged separately or mixed. When mixed packaging is required, open the quick-release buckle 5 on one side of the storage tank 2, open the storage cover 4, close the valve on one side of the discharge end 6, add the powder directly into the storage tank 2, close the storage cover 4, and store the mixed powder. Open the valve on one side of the discharge end 6 to discharge the powder. When separate packaging is required, the distributing structure and mixing structure need to be installed in the storage tank 2. Open the quick-release buckle 5 on one side of the storage tank 2, open the storage cover 4, insert the protrusion on one side of the connecting block 7 into the groove on one side of the connecting groove 3, unscrew the distributing cover 9 on the top of the distributing tank 8 through the thread, close the one-way valve on one side of the distributing end 13, add different powders to each distributing tank 8, screw on the distributing cover 9 for separate storage, close the one-way valve on one side of the distributing end 13, open the valve on the discharge end 6, and discharge the powder in the distributing tank 8 in sequence.

[0028] Example 2

[0029] When using this utility model, if the powder accidentally becomes damp and clumps during storage, unscrew the distribution cover 9 on top of the distribution bucket 8, close the one-way valve on the distribution end 13 side, open the screening cover 12, add the powder to the screening bucket 11, close the screening cover 12, screw on the distribution cover 9, start the motor A10, the motor A10 rotates and drives the screening bucket 11 to rotate, the unclumped powder is thrown out from the screening bucket 11, the clumped powder is trapped in the screening bucket 11, open the one-way valve on the distribution end 13 side, and the unclumped powder is discharged from the distribution bucket 8, so as to improve the quality and performance of concrete.

[0030] Example 3

[0031] When using this utility model, if you want to mix the powders stored separately in the material distribution structure, such as cement powder, mineral powder, fly ash, etc., into a mixture, you can open the one-way valve on one side of the material distribution end 13, and the material will enter the mixing bucket 14 through the material distribution end 13. Open the motor B15 on one side of the mixing cover 18, and the motor B15 will rotate to drive the stirring head 16 to stir the powder in the mixing bucket 14, so that the powder is evenly mixed. The mixed powder is discharged through the mixing end 17.

[0032] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. The various components mentioned in this invention are common technologies in the existing field. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. The utility model provides a concrete powder storage tank for concrete production, characterized by Including storage structure, distribution structure, mixing structure, the storage structure is internally provided with distribution structure, one side of the distribution structure is provided with mixing structure.

2. The concrete powder storage tank for producing concrete according to claim 1, wherein The storage structure is composed of a support frame, a storage barrel, a connecting groove, a storage cover, a quick-release buckle, and a discharge end. One side of the support frame is provided with the storage barrel. The support frame and the storage barrel are connected by welding. The storage barrel is provided with a connecting groove. One side of the storage barrel is provided with a storage cover. The storage barrel and the storage cover are connected by a hinge. One side of the storage cover is provided with a quick-release buckle. The storage cover and the quick-release buckle are connected by threads and nuts. One side of the storage barrel is provided with a discharge end. The storage barrel and the discharge end are connected by welding.

3. The concrete powder storage tank for producing concrete according to claim 1, characterized in that, The distribution structure is composed of a connecting block, a distribution barrel, a distribution cover, a motor A, a screening barrel, a screening cover, and a distribution end. One side of the connecting block is provided with the distribution barrel. The connecting block and the distribution barrel are connected by welding. One side of the distribution barrel is provided with a distribution cover. The distribution barrel and the distribution cover are connected by threads. The distribution barrel is provided with the motor A. The output end of the motor A is connected to the screening barrel. One side of the screening barrel is provided with a screening cover. The screening barrel and the screening cover are connected by a hinge. One side of the distribution barrel is provided with a distribution end. The distribution barrel and the distribution end are connected by welding.

4. The concrete powder storage tank for producing concrete according to claim 1, wherein The mixing structure is composed of a mixing barrel, a mixing cover, a motor B, an agitation head, and a mixing end. One side of the mixing barrel is provided with a mixing cover. The mixing barrel and the mixing cover are connected by threads. The mixing barrel is provided with the motor B. The mixing barrel and the motor B are connected by welding. The output end of the motor B is connected to the agitation head. One side of the mixing barrel is provided with a mixing end. The mixing barrel and the mixing end are connected by welding.

5. The concrete powder storage tank for producing concrete according to claim 1, wherein The storage structure and the distribution structure are connected by grooves and protrusions. The distribution structure and the mixing structure are connected by threads and nuts.