Storage tank for vacuum storage

By introducing a mixing rod, agitating leaf and cleaning mechanism into the storage tank, combined with the vacuum function, the problems of material adhesion and cleaning difficulties are solved, and the stability and production efficiency of the substance are improved.

CN223086735UActive Publication Date: 2025-07-11DAZHOU ZHENGHONG ENERGY STORAGE MATERIALS TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422122140.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-11
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

When storing iron phosphate or lithium phosphate, existing storage tanks are prone to materials sticking to the inner wall and lack effective cleaning functions, which leads to difficulty in cleaning and affects the stability and production efficiency of the substance.

Method used

A vacuum storage tank is designed, equipped with a mixing rod, agitating blade and a cleaning mechanism. The mixing rod and agitating blade are driven by the motor drive connection mechanism to prevent precipitation and crystallization, and the material is prevented from sticking through the scraper of the cleaning mechanism, and the cleaning is achieved by combining the vacuum function.

Benefits of technology

Effectively prevent the precipitation and crystallization of iron phosphate and lithium phosphate, maintain the stability of physical and chemical properties of the substance, improve production efficiency, and facilitate the cleaning of storage tanks, ensuring the quality and safety of substances.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223086735U_ABST
    Figure CN223086735U_ABST
Patent Text Reader

Abstract

The utility model discloses a vacuum storage tank which comprises a storage tank body, a connecting mechanism is fixedly arranged on one side in the storage tank body, and a connecting column is fixedly arranged in the connecting mechanism. A stirring rod is fixedly arranged on one side of the connecting column, a plurality of stirring blades are fixedly arranged in the middles of the upper end and the lower end of the stirring rod, and cleaning mechanisms are fixedly arranged on the two sides of the upper end and the lower end of the stirring rod. According to the storage tank disclosed by the utility model, when the storage tank is used, the motor rotates and drives the connecting mechanism to rotate, and the connecting mechanism rotates and drives the connecting column, the stirring rod and the stirring blades to rotate, so that iron phosphate or lithium phosphate is stirred, and precipitation and crystallization of the iron phosphate and the lithium phosphate are effectively prevented; the stability of physical and chemical properties is maintained, so that the production efficiency is effectively improved, and the stirring rod can drive the cleaning mechanism to rotate during rotation.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of storage tanks, and particularly relates to a storage tank for vacuum storage. Background Art

[0002] A storage tank is a device used to store various liquids or gases and is widely used in multiple fields such as industry, commerce, and households. They can store various types of substances, including chemicals, fuels, and foods. When storing iron phosphate or lithium phosphate, in order to ensure the quality and safety of iron phosphate or lithium phosphate during storage, a storage tank is required.

[0003] In existing storage tanks, most storage tanks are composed of a tank body, a lid, and an air outlet. When in use, the storage tank can only store items and mostly does not have a cleaning function. Since it is easy for raw materials to adhere to the inner wall of the storage tank during storage, if not cleaned in time, it will be more difficult to clean later. Therefore, those skilled in the art have provided a storage tank for vacuum storage to solve the problems raised in the above background art. Summary of the Utility Model

[0004] Aiming at the defects in the prior art, the utility model provides a storage tank for vacuum storage, which can stir iron phosphate or lithium phosphate, effectively prevent the precipitation and crystallization of iron phosphate and lithium phosphate, maintain the stability of their physical and chemical properties, thereby effectively improving the production efficiency, and the stirring rod, stirring blades, and cleaning mechanism can be disassembled for easy cleaning.

[0005] Preferably, a storage tank for vacuum storage includes a storage tank main body. A connecting mechanism is fixedly arranged on one side inside the storage tank main body, and a connecting column is fixedly arranged inside the connecting mechanism; a stirring rod is fixedly arranged on one side of the connecting column. A plurality of stirring blades are fixedly arranged at the middle positions of the upper and lower ends of the stirring rod, and cleaning mechanisms are fixedly arranged on both sides of the upper and lower ends of the stirring rod. Iron phosphate or lithium phosphate can be stored inside the storage tank main body. The connecting mechanism plays a role in connecting the motor and the connecting column, and the connecting column plays a role in connecting the stirring rod and the connecting mechanism. When the stirring rod rotates, it can drive the stirring blades to rotate. When the stirring blades rotate, they can stir iron phosphate and lithium phosphate, thereby effectively preventing the precipitation and crystallization of iron phosphate and lithium phosphate, maintaining the stability of their physical and chemical properties, and thus effectively improving the production efficiency. When the stirring rod rotates, it can also drive the cleaning mechanism to rotate, thereby avoiding the phenomenon that iron phosphate or lithium phosphate adheres to the inner wall of the tank.

[0006] Preferably, the storage tank body includes a tank body. Support legs are fixedly arranged on both sides of the lower end of the tank body, and an air extraction port is fixedly arranged at the middle position of the upper end of the tank body. The tank body serves to store iron phosphate or lithium phosphate, and the support legs serve to support the storage tank, thereby effectively ensuring the stability of the storage tank during use. The extraction port is connected to a vacuum pumping device through a pipeline, thereby realizing vacuum pumping of the interior of the storage tank.

[0007] Preferably, the connecting mechanism includes a rotating column. First electric telescopic rods are fixedly arranged at both the upper and lower ends of the rotating column, and insertion blocks are fixedly arranged at the output ends of the two first electric telescopic rods. One side of the rotating column is fixedly connected to the output end of the motor, and when the first electric telescopic rod operates, it can drive the insertion block to move.

[0008] Preferably, slots are opened at both the upper and lower ends of the connecting column, and insertion blocks are fixedly connected and clamped inside the two slots. The slots serve to restrict and fix the insertion blocks. By inserting the insertion blocks into the slots, the connecting mechanism and the connecting column are connected and fixed.

[0009] Preferably, a motor is fixedly arranged on one side of the storage tank body, and the output end of the motor is fixedly connected to the connecting mechanism. When the motor rotates, it can drive the connecting mechanism to rotate.

[0010] Preferably, both of the cleaning mechanisms each include two second electric telescopic rods. Connecting rods are fixedly arranged at the output ends of the two second electric telescopic rods, and springs are fixedly arranged inside the two connecting rods. When the second electric telescopic rod moves, it can drive the connecting rod and the scraping plate to move, so that the scraping plate contacts the inner wall of the tank body. When the cleaning mechanism rotates, the adhesion of iron phosphate or lithium phosphate to the inner wall of the tank body can be avoided by the rotation of the scraping plate. The operation of the spring can reduce the pressure of the scraping plate on the interior of the tank body, thereby effectively increasing the service life of the cleaning mechanism.

[0011] Preferably, connecting blocks are fixedly arranged at the upper ends of the two springs, and scraping plates are fixedly arranged at the upper ends of the two connecting blocks. The connecting blocks serve to connect the scraping plates and the connecting rods.

[0012] The beneficial effects of the present utility model are embodied in:

[0013] 1. When in use, the storage tank rotates through a motor and drives a connecting mechanism to rotate. When the connecting mechanism rotates, it drives a connecting column, a stirring rod, and a stirring blade to rotate, thereby realizing the stirring of iron phosphate or lithium phosphate, effectively preventing the precipitation and crystallization of iron phosphate and lithium phosphate, maintaining the stability of their physical and chemical properties, and thus effectively improving the production efficiency. When the stirring rod rotates, it can also drive a cleaning mechanism to rotate. The cleaning mechanism first operates through a second electric telescopic rod and drives a connecting rod and a scraping plate to move, so that the scraping plate contacts the inner wall of the tank. By rotating the scraping plate, the residues on the inner wall of the tank are scraped off, avoiding the adhesion of iron phosphate or lithium phosphate to the inner wall of the tank.

[0014] 2. After the storage tank is used up, when it needs to be cleaned, the connecting mechanism operates through a first electric telescopic rod provided and drives an insertion block to move, so that the insertion block leaves from the inside of the slot. At this time, the connecting mechanism is separated from the connecting column, and then the stirring rod, the stirring blade, and the cleaning mechanism can be taken out from the inside of the tank for cleaning. Through a pipeline, a vacuum pumping device can be connected to the tank to realize vacuum pumping of the inside of the tank, thereby ensuring the quality and safety of iron phosphate or lithium phosphate. Description of the Drawings

[0015] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. In all the drawings, similar elements or parts are generally denoted by similar reference numerals. In the drawings, the elements or parts do not necessarily draw according to the actual scale.

[0016] Figure 1 An isometric schematic diagram of a storage tank for vacuum storage proposed by the present invention;

[0017] Figure 2 A front view schematic diagram of a storage tank for vacuum storage proposed by the present invention;

[0018] Figure 3 A front sectional schematic diagram of a storage tank for vacuum storage proposed by the present invention;

[0019] Figure 4 An enlarged view of part B of a storage tank for vacuum storage proposed by the present invention;

[0020] Figure 5 An enlarged view of part A of a storage tank for vacuum storage proposed by the present invention.

[0021] In the attached drawings, 1 is the main body of the storage tank; 2 is the connecting mechanism; 3 is the connecting column; 4 is the slot; 5 is the motor; 6 is the stirring blade; 7 is the stirring rod; 8 is the cleaning mechanism; 101 is the support leg; 102 is the tank body; 103 is the air extraction port; 201 is the first electric telescopic rod; 202 is the insertion block; 203 is the rotating column; 801 is the second electric telescopic rod; 802 is the connecting rod; 803 is the spring; 804 is the connecting block; 805 is the scraping plate. Detailed implementation mode

[0022] The embodiments of the technical solution of the present utility model will be described in detail below with reference to the attached drawings. The following embodiments are only used to illustrate the technical solution of the present utility model more clearly, so they are only examples and cannot be used to limit the protection scope of the present utility model.

[0023] It should be noted that unless otherwise specified, the technical terms or scientific terms used in this application should have the ordinary meaning understood by those skilled in the field to which the present utility model belongs.

[0024] Refer to Figures 1-5 As shown in the figure, an embodiment provided by the present utility model: A storage tank for vacuum storage includes a storage tank main body 1, a connecting mechanism 2 is fixedly arranged on one side inside the storage tank main body 1, and a connecting column 3 is fixedly arranged inside the connecting mechanism 2; A stirring rod 7 is fixedly arranged on one side of the connecting column 3, a plurality of stirring blades 6 are fixedly arranged at the middle positions of the upper and lower ends of the stirring rod 7, and cleaning mechanisms 8 are fixedly arranged on both sides of the upper and lower ends of the stirring rod 7.

[0025] The storage tank main body 1 can be used to store lithium phosphate or iron phosphate. The connecting mechanism 2 plays a role in connecting the motor 5 and the connecting column 3. The connecting column 3 plays a role in connecting the stirring rod 7 and the connecting mechanism 2. When the stirring rod 7 rotates, it can drive the stirring blades 6 to rotate. When the stirring blades 6 rotate, they can stir the iron phosphate and lithium phosphate, thereby effectively preventing the precipitation and crystallization of iron phosphate and lithium phosphate, maintaining the stability of their physical and chemical properties, and thus effectively improving the production efficiency. When the stirring rod 7 rotates, it can also drive the cleaning mechanism 8 to rotate, thereby avoiding the phenomenon that iron phosphate or lithium phosphate adheres to the inner wall of the tank body 102.

[0026] Refer to Figures 1-4, the storage tank main body 1 includes a tank body 102. Support legs 101 are fixedly arranged on both sides of the lower end of the tank body 102. An air extraction port 103 is fixedly arranged at the middle position of the upper end of the tank body 102. The connecting mechanism 2 includes a rotating column 203. First electric telescopic rods 201 are fixedly arranged at both the upper and lower ends of the rotating column 203. Plug blocks 202 are fixedly arranged at the output ends of the two first electric telescopic rods 201. Slots 4 are opened at both the upper and lower ends of the connecting column 3. The plug blocks 202 are fixedly clamped inside the two slots 4. A motor 5 is fixedly arranged on one side of the storage tank main body 1. The output end of the motor 5 is fixedly connected to the connecting mechanism 2.

[0027] The tank body 102 functions to store iron phosphate or lithium phosphate. The set support legs 101 effectively ensure the stability of the storage tank during use. The air extraction port 103 can be connected to a vacuum pumping device through a pipeline, so as to realize vacuum pumping of the inside of the storage tank. When the connecting mechanism 2 is in use, one side of the set rotating column 203 is fixedly connected to the output end of the motor 5. When the first electric telescopic rod 201 operates, it can drive the plug block 202 to move. By inserting the plug block 202 into the slot 4, the connecting mechanism 2 and the connecting column 3 are connected and fixed.

[0028] Refer to Figure 5 , both of the two cleaning mechanisms 8 include two second electric telescopic rods 801. Connecting rods 802 are fixedly arranged at the output ends of the two second electric telescopic rods 801. Springs 803 are fixedly arranged inside the two connecting rods 802. Connecting blocks 804 are fixedly arranged at the upper ends of the two springs 803. Scrapers 805 are fixedly arranged at the upper ends of the two connecting blocks 804.

[0029] When the cleaning mechanism 8 is in use, when it moves through the set second electric telescopic rod 801, it can drive the connecting rod 802 and the scraper 805 to move, so that the scraper 805 contacts the inner wall of the tank body 102. When the cleaning mechanism 8 rotates, the adhesion of iron phosphate or lithium phosphate to the inner wall of the tank body 102 can be avoided by the rotation of the scraper 805. The operation of the spring 803 can slow down the pressure of the scraper 805 on the inside of the tank body 102, thus effectively increasing the service life of the cleaning mechanism 8. The connecting block 804 functions to connect the scraper 805 and the connecting rod 802, ensuring the stability of the scraper 805 during use.

[0030] Working principle: When in use, ferric phosphate or lithium phosphate can be put into the interior of the storage tank body 102. Then, the vacuum pumping device and the air extraction port 103 are connected through a pipeline to evacuate the interior of the storage tank body 102. After that, the motor 5 rotates to drive the connecting mechanism 2 to rotate. When the connecting mechanism 2 rotates, it drives the connecting column 3 to rotate. When the connecting column 3 rotates, it drives the stirring rod 7 and the stirring blade 6 to rotate, so as to stir ferric phosphate or lithium phosphate, effectively preventing the precipitation and crystallization of ferric phosphate and lithium phosphate, maintaining the stability of their physical and chemical properties, and thus effectively improving the production efficiency. When the stirring rod 7 rotates, it can also drive the cleaning mechanism 8 to rotate. The cleaning mechanism 8 first operates through the second electric telescopic rod 801 to drive the connecting rod 802 and the scraping plate 805 to move, so that the scraping plate 805 contacts the inner wall of the storage tank body 102. By rotating the scraping plate 805, the residues on the inner wall of the storage tank body 102 are scraped off, avoiding the adhesion of ferric phosphate or lithium phosphate to the inner wall of the storage tank body 102. When the storage tank needs to be cleaned, the connecting mechanism 2 operates through the first electric telescopic rod 201 provided to drive the insertion block 202 to move, so that the insertion block 202 leaves the inside of the slot 4. At this time, the connecting mechanism 2 is separated from the connecting column 3. At this time, the stirring rod 7, the stirring blade 6 and the cleaning mechanism 8 can be taken out for cleaning.

[0031] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered by the scope of the claims and the description of the present invention.

Claims

1. A storage tank for vacuum storage, comprising a storage tank main body (1), characterized in that: On one side inside the storage tank main body (1), a connection mechanism (2) is fixedly arranged, and a connection column (3) is fixedly arranged inside the connection mechanism (2); On one side of the connection column (3), a stirring rod (7) is fixedly arranged. At the middle positions of the upper and lower ends of the stirring rod (7), a plurality of stirring blades (6) are fixedly arranged, and cleaning mechanisms (8) are fixedly arranged on both sides of the upper and lower ends of the stirring rod (7).

2. A storage tank for vacuum storage according to claim 1, characterized in that: The storage tank main body (1) includes a tank body (102). On both sides of the lower end of the tank body (102), support legs (101) are fixedly arranged, and an air extraction port (103) is fixedly arranged at the middle position of the upper end of the tank body (102).

3. A storage tank for vacuum storage according to claim 1, characterized in that: The connection mechanism (2) includes a rotating column (203). At the upper and lower ends of the rotating column (203), first electric telescopic rods (201) are fixedly arranged. At the output ends of the two first electric telescopic rods (201), insertion blocks (202) are fixedly arranged.

4. A storage tank for vacuum storage according to claim 1, wherein: Slots (4) are formed at the upper and lower ends of the connection column (3), and the insertion blocks (202) are fixedly connected and clamped inside the two slots (4).

5. A storage tank for vacuum storage according to claim 1, wherein: A motor (5) is fixedly arranged on one side of the storage tank main body (1), and the output end of the motor (5) is fixedly connected to the connection mechanism (2).

6. The storage tank for vacuum storage according to claim 1, characterized in that: Each of the two cleaning mechanisms (8) includes two second electric telescopic rods (801). At the output ends of the two second electric telescopic rods (801), connecting rods (802) are fixedly arranged, and springs (803) are fixedly arranged inside the two connecting rods (802).

7. A storage tank for vacuum storage according to claim 6, characterized in that: At the upper ends of the two springs (803), connection blocks (804) are fixedly arranged, and at the upper ends of the two connection blocks (804), scraping plates (805) are fixedly arranged.