Partitioned sodium hydroxide storage device
Through the partitioned design and convenient structure of sodium hydroxide storage device, the problem of lack of partitioning and convenience in the storage device is solved, and partitioned storage, convenient storage and access and movement are realized, which is convenient for storage and carrying different drugs.
Patent Information
- Application Number
- CN202422179297.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The existing sodium hydroxide storage devices lack partition storage, convenient storage and access and mobile functions, resulting in the reduction of the activity of different drugs in the same storage environment, liquid drugs are prone to collision and are too heavy, affecting convenience and carrying.
The partitioned storage device is designed, including refrigerated partitions, dry partitions, constant temperature partitions and liquid partitions. It can be partitioned storage through refrigeration plates, desiccants and temperature sensors. It is equipped with universal pulleys for easy portability, and the L-shaped drawer and T-shaped slide chute structure are convenient to access.
It realizes partition storage, facilitates drug storage and access and movement, improves convenience, prevents drug activity and collision, and reduces weight burden.
Smart Images

Figure CN223174610U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sodium hydroxide storage, in particular to a storage device for partitioned sodium hydroxide. Background Art
[0002] Sodium hydroxide has strong alkalinity and extremely strong corrosiveness. It can be used as an acid neutralizer, a complexing masking agent, a precipitating agent, a precipitation masking agent, a chromogenic agent, a saponifying agent, a skin peeling agent, a detergent, etc., and has a very wide range of uses. After being made into finished products, sodium hydroxide needs to be stored using a storage device.
[0003] Common sodium hydroxide storage devices only have a storage function and can store drugs made of sodium hydroxide, but lack the functions of partitioned storage, convenient access and movement. They cannot ensure that they can meet the storage needs of different drugs and the convenience of accessing drugs, and are not convenient for personnel to carry. It is easy to have the situation that drugs with different storage conditions are placed in the same storage environment, resulting in a decrease in the activity of some drugs, and it is easy to collide when accessing liquid drugs. In addition, after storing a large amount of drugs, the weight is too heavy, affecting the drug quality, access convenience and portability.
[0004] Therefore, in view of the lack of functions such as partitioned storage, convenient access and movement in the above-mentioned sodium hydroxide storage device, a storage device for partitioned sodium hydroxide can be designed. By setting a refrigeration partition, a drying partition I, a drying partition II, a constant temperature partition I, a constant temperature partition II and a liquid partition, the interior of the storage box is divided into a refrigeration area, a drying area, a constant temperature area and a liquid storage area to achieve partitioned storage. By setting a T-shaped slide bar to slide inside a T-shaped chute, it is convenient for personnel to pull out the L-shaped drawer from the interior of the storage box to access liquid drugs. By setting universal wheels, it is convenient for personnel to carry. Summary of the Utility Model
[0005] In order to overcome the problems of common sodium hydroxide storage devices, which lack functions such as partitioned storage, convenient access and movement, cannot ensure that they can meet the storage needs of different drugs and the convenience of accessing drugs, and are not convenient for personnel to carry. It is easy to have the situation that drugs with different storage conditions are placed in the same storage environment, resulting in a decrease in the activity of some drugs, and it is easy to collide when accessing liquid drugs. In addition, after storing a large amount of drugs, the weight is too heavy, affecting the drug quality, access convenience and portability.
[0006] The technical solution of the utility model is: a storage device for partitioned sodium hydroxide, including a storage box; it also includes a refrigeration partition, a first drying partition, a second drying partition, a first constant temperature partition, a second constant temperature partition, a liquid partition, a pull-out opening, a T-shaped chute, an L-shaped drawer, a control slot, a single-chip microcomputer and universal wheels. A refrigeration partition is arranged on the left side inside the storage box, a first drying partition is arranged beside the right side of the refrigeration partition, a second drying partition is arranged in the middle inside the storage box, a first constant temperature partition is arranged beside the right side of the second drying partition, a second constant temperature partition is arranged on the right side inside the storage box, a liquid partition is arranged beside the right side of the second constant temperature partition. A pull-out opening is opened on the right side of the front of the storage box corresponding to the position of the storage box, and two T-shaped chutes are symmetrically opened at the right side of the bottom inside the storage box corresponding to the position of the pull-out opening. An L-shaped drawer is placed on the right side of the bottom inside the storage box. Four universal wheels are arranged in a rectangle at the four corners of the bottom of the storage box. A control slot is opened below the middle of the front of the storage box, and a single-chip microcomputer is arranged on the left side inside the control slot.
[0007] Preferably, by setting the refrigeration partition, the first drying partition, the second drying partition, the first constant temperature partition, the second constant temperature partition and the liquid partition, the inside of the storage box is divided into a refrigeration area, a drying area, a constant temperature area and a liquid storage area. The refrigeration area is refrigerated by the first refrigeration plate, the drying area is dehumidified by the desiccant placed in the drying box, the temperature in the constant temperature area is detected by the temperature sensor, and the detected temperature is transmitted to the single-chip microcomputer. The single-chip microcomputer controls the start and stop of the electric heating wire plate and the second refrigeration plate respectively according to the preset constant temperature, so as to ensure the temperature in the constant temperature area. Pull the L-shaped drawer to make the T-shaped slide bar slide inside the T-shaped chute, which is convenient for people to pull out the L-shaped drawer from the inside of the storage box to store and retrieve liquid medicines. Pull the storage device through the handle, and at this time the universal wheels are forced to roll, which is convenient for people to carry. In order to solve the problems of the common storage device for sodium hydroxide, which only has the storage function, can store the medicines made of sodium hydroxide, but lacks the functions of partitioned storage, convenient access and convenient movement, cannot ensure that it can meet the storage needs of different medicines and the convenience of accessing medicines, and is convenient for people to carry. It is easy to place medicines with different storage conditions in the same storage environment, resulting in the reduction of the activity of some medicines, and it is easy to collide when storing and retrieving liquid medicines, and it is easy to be overweight after storing a large number of medicines, affecting the quality of medicines, the convenience of access and the convenience of carrying.
[0008] As a preference, two T-shaped slide bars are symmetrically arranged at the positions of the left and right sides of the bottom of the L-shaped drawer corresponding to the T-shaped chute, and the T-shaped slide bars are inserted into the inside of the T-shaped chute. A liquid medicine placement plate is arranged at the top of the rear side of the L-shaped drawer. When storing and retrieving liquid medicines, pull the L-shaped drawer out of the storage box. At this time, the T-shaped slide bars slide outside the storage box inside the T-shaped chute. When the L-shaped drawer is pulled out of the storage box, the liquid medicines can be stored and retrieved.
[0009] Preferably, a refrigeration groove is formed in the left side of the front of the storage box corresponding to the position of the refrigeration partition board. A first refrigeration plate is arranged inside the refrigeration groove. A refrigeration sealing plate is arranged on the left side of the front of the storage box corresponding to the refrigeration groove. The refrigeration sealing plate is fixed inside the refrigeration groove by bolts. The first refrigeration plate is electrically connected to the single-chip microcomputer. The single-chip microcomputer controls the first refrigeration plate to start. The first refrigeration plate transfers the cold quantity to the inside of the refrigerated area through the storage box.
[0010] Preferably, a drying box is placed at the middle position corresponding to the drying partition board 1 and the drying partition board 2 at the bottom of the left side inside the storage box. A breathable plate is placed on the top of the drying box. The desiccant is placed inside the drying box, and then the breathable plate is placed on the top of the drying box. During use, the desiccant inside the drying box can adsorb the water vapor in the air in the drying area, thereby maintaining the dryness of the drying area.
[0011] Preferably, a top plate is fixed to the top of the storage box by bolts. A refrigeration sealing door is arranged on the left side of the top of the top plate corresponding to the position of the refrigeration partition board. A drying sealing door is arranged on the right side of the refrigeration sealing door corresponding to the middle position of the drying partition board 1 and the drying partition board 2. A constant temperature sealing door is arranged on the right side of the drying sealing door corresponding to the middle position of the constant temperature partition board 1 and the constant temperature partition board 2. The refrigeration sealing door, the drying sealing door and the constant temperature sealing door are all movably connected to the top plate through hinges. A handle is arranged on the right side of the top of the top plate. Open the refrigeration sealing door, the drying sealing door and the constant temperature sealing door to place the medicines under different storage conditions in the corresponding areas respectively.
[0012] Preferably, constant temperature heat grooves are formed in the middle of the tops of the constant temperature partition board 1 and the constant temperature partition board 2. Electric heating wire plates are arranged inside the constant temperature heat grooves. Two constant temperature cold grooves are symmetrically formed at the middle positions corresponding to the constant temperature partition board 1 and the constant temperature partition board 2 at the front and rear ends of the top of the storage box. Second refrigeration plates are arranged inside the two constant temperature cold grooves. A temperature sensor is arranged at the center point of the bottom of the constant temperature sealing door. The electric heating wire plate, the second refrigeration plate and the temperature sensor are electrically connected to the single-chip microcomputer. The temperature in the constant temperature area is detected by the temperature sensor of model DS18B20, and the detected temperature is transmitted to the single-chip microcomputer. The single-chip microcomputer controls the start and stop of the electric heating wire plate and the second refrigeration plate respectively according to the preset constant temperature to ensure the temperature of the constant temperature area.
[0013] Preferably, a storage battery is arranged on the right side inside the control groove. A USB charging port is arranged in the middle above the control groove. The storage battery is electrically connected to the USB charging port and the single-chip microcomputer. A control sealing plate is arranged at the position corresponding to the control groove below the middle of the front of the storage box. The control sealing plate is fixed inside the control groove by bolts. The storage battery is charged by connecting an external charging cable to the USB charging port, and the storage battery supplies power to each component.
[0014] Advantages of the present utility model:
[0015] 1. By providing a refrigerating partition, a first drying partition, a second drying partition, a first constant-temperature partition, a second constant-temperature partition and a liquid partition, the interior of the storage box is divided into a refrigerating area, a drying area, a constant-temperature area and a liquid storage area. The refrigerating area is refrigerated by the first refrigerating plate, the drying area is dehumidified by the desiccant placed in the drying box, the temperature in the constant-temperature area is detected by the temperature sensor, and the detected temperature is transmitted to the single-chip microcomputer. The single-chip microcomputer controls the start and stop of the electric heating wire plate and the second refrigerating plate respectively according to the preset constant temperature, so as to ensure the temperature in the constant-temperature area and realize the function of partitioned storage;
[0016] 2. Pull the L-shaped drawer to make the T-shaped slide bar slide inside the T-shaped chute, which facilitates the personnel to draw out the L-shaped drawer from the interior of the storage box to store and retrieve liquid medicines, realizing the function of convenient storage and retrieval;
[0017] 3. Pull the storage device through the handle. At this time, the universal wheels are stressed and roll, which is convenient for personnel to carry, realizing the function of convenient movement. Description of the drawings
[0018] Figure 1 Shown is a three-dimensional structural schematic diagram of a partitioned sodium hydroxide storage device of the present utility model;
[0019] Figure 2 Shown is a three-dimensional sectional structural schematic diagram of a partitioned sodium hydroxide storage device of the present utility model;
[0020] Figure 3 Shown is an exploded structural schematic diagram of the storage box of a partitioned sodium hydroxide storage device of the present utility model;
[0021] Figure 4 Shown is a three-dimensional structural schematic diagram of the top plate of a partitioned sodium hydroxide storage device of the present utility model.
[0022] Description of reference numerals: 1. Storage box; 2. Refrigerating partition; 3. First drying partition; 4. Second drying partition; 5. First constant-temperature partition; 6. Second constant-temperature partition; 7. Liquid partition; 8. Pull-out opening; 9. T-shaped chute; 10. L-shaped drawer; 11. T-shaped slide bar; 12. Liquid medicine placement plate; 13. Refrigerating groove; L4. First refrigerating plate; 15. Refrigerating sealing plate; 16. Drying box; 17. Venting plate; 18. Constant-temperature heating groove; 19. Electric heating wire plate; 20. Constant-temperature cooling groove; 21. Second refrigerating plate; 22. Top plate; 23. Refrigerating sealing door; 24. Drying sealing door; 25. Constant-temperature sealing door; 26. Temperature sensor; 27. Handle; 28. Control groove; 29. Single-chip microcomputer; 30. Storage battery; 31. USB charging port; 32. Control sealing plate; 33. Universal wheel. Detailed implementation manners
[0023] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0024] Please refer to Figures 1-4 , the present utility model provides an embodiment: a storage device for partitioned sodium hydroxide, including a storage box 1; further including a refrigeration partition 2, a first drying partition 3, a second drying partition 4, a first constant temperature partition 5, a second constant temperature partition 6, a liquid partition 7, a pull-out opening 8, a T-shaped chute 9, an L-shaped drawer 10, a control slot 28, a single-chip microcomputer 29, and universal wheels 33. A refrigeration partition 2 is arranged on the left side inside the storage box 1, a first drying partition 3 is arranged beside the right side of the refrigeration partition 2, a second drying partition 4 is arranged in the middle inside the storage box 1, a first constant temperature partition 5 is arranged beside the right side of the second drying partition 4, a second constant temperature partition 6 is arranged on the right side inside the storage box 1, a liquid partition 7 is arranged beside the right side of the second constant temperature partition 6, a pull-out opening 8 is opened on the right side of the front of the storage box 1 corresponding to the position of the storage box 1, two T-shaped chutes 9 are symmetrically opened at the right side of the bottom end inside the storage box 1 corresponding to the position of the pull-out opening 8, an L-shaped drawer 10 is placed at the right side of the bottom end inside the storage box 1, four universal wheels 33 are arranged in a rectangular shape at the four corners of the bottom of the storage box 1, a control slot 28 is opened below the middle of the front of the storage box 1, and a single-chip microcomputer 29 is arranged on the left side inside the control slot 28. By arranging the refrigeration partition 2, the first drying partition 3, the second drying partition 4, the first constant temperature partition 5, the second constant temperature partition 6, and the liquid partition 7, the interior of the storage box 1 is divided into a refrigeration area, a drying area, a constant temperature area, and a liquid storage area. The refrigeration area is refrigerated by the first refrigeration plate 14, the drying area is dehumidified by the desiccant placed in the drying box 16, the temperature in the constant temperature area is detected by the temperature sensor 26, and the detected temperature is transmitted to the single-chip microcomputer 29. The single-chip microcomputer 29 controls the start and stop of the electric heating wire plate 19 and the second refrigeration plate 21 respectively according to the preset constant temperature, so as to ensure the temperature in the constant temperature area. Pull the L-shaped drawer 10 to make the T-shaped slide 11 slide inside the T-shaped chute 9, which is convenient for personnel to pull out the L-shaped drawer 10 from the inside of the storage box 1 to store and retrieve liquid drugs. Pull the storage device by the handle 27, and at this time, the universal wheels 33 are stressed and roll, which is convenient for personnel to carry, so as to solve the problems of the common storage device for sodium hydroxide, which only includes a storage function and can store drugs made of sodium hydroxide, but lacks functions of partitioned storage, convenient access and movement, and cannot ensure that it can meet the storage requirements of different drugs and the convenience of accessing drugs, and is convenient for personnel to carry. It is easy to place drugs under different storage conditions in the same storage environment, resulting in a decrease in the activity of some drugs, and it is easy to collide when storing and retrieving liquid drugs, and the weight is too heavy after storing a large amount of drugs, affecting the drug quality, access convenience, and carrying convenience.
[0025] Please refer to Figures 2-4 , in this embodiment, a storage battery 30 is provided on the right side inside the control groove 28, a USB charging port 31 is provided in the middle above the control groove 28, the storage battery 30 is electrically connected to the USB charging port 31 and the single-chip microcomputer 29, and a control sealing plate 32 is provided at the position corresponding to the control groove 28 below the middle of the front surface of the storage box 1. The control sealing plate 32 is fixed inside the control groove 28 by bolts. The storage battery 30 is charged by connecting an external charging cable to the USB charging port 31, and the storage battery 30 supplies power to each component.
[0026] Please refer to Figures 1-4, in this embodiment, two T-shaped slide bars 11 are symmetrically arranged at the left and right sides of the bottom of the L-shaped drawer 10 corresponding to the positions of the T-shaped slide grooves 9. The T-shaped slide bars 11 are inserted into the interior of the T-shaped slide grooves 9. A liquid medicine placement plate 12 is arranged at the top of the rear side of the L-shaped drawer 10. A refrigeration groove 13 is opened at the left side of the front surface of the storage box 1 corresponding to the position of the refrigeration partition 2. A first refrigeration plate 14 is arranged inside the refrigeration groove 13. A refrigeration sealing plate 15 is arranged at the left side of the front surface of the storage box 1 corresponding to the position of the refrigeration groove 13. The refrigeration sealing plate 15 is fixed inside the refrigeration groove 13 by bolts. The first refrigeration plate 14 is electrically connected to the single-chip microcomputer 29. A drying box 16 is placed at the middle position between the drying partition 1 3 and the drying partition 2 4 at the bottom of the left side inside the storage box 1. A breathable plate 17 is placed on the top of the drying box 16. A top plate 22 is fixed to the top of the storage box 1 by bolts. A refrigeration sealing door 23 is arranged at the left side of the top of the top plate 22 corresponding to the position of the refrigeration partition 2. A drying sealing door 24 is arranged at the right side of the refrigeration sealing door 23 corresponding to the middle position between the drying partition 1 3 and the drying partition 2 4. A constant temperature sealing door 25 is arranged at the right side of the drying sealing door 24 corresponding to the middle position between the constant temperature partition 1 5 and the constant temperature partition 2 6. The refrigeration sealing door 23, the drying sealing door 24 and the constant temperature sealing door 25 are all movably connected to the top plate 22 through hinges. A handle 27 is arranged at the right side of the top of the top plate 22. Constant temperature heating grooves 18 are opened at the middle of the tops of the constant temperature partition 1 5 and the constant temperature partition 2 6. Electric heating wire plates 19 are arranged inside the constant temperature heating grooves 18. Two constant temperature cooling grooves 20 are symmetrically opened at the front and rear ends of the top of the storage box 1 corresponding to the middle position between the constant temperature partition 1 5 and the constant temperature partition 2 6. Second refrigeration plates 21 are arranged inside the two constant temperature cooling grooves 20. A temperature sensor 26 is arranged at the center point of the bottom of the constant temperature sealing door 25. The electric heating wire plates 19, the second refrigeration plates 21 and the temperature sensor 26 are electrically connected to the single-chip microcomputer 29. Open the refrigeration sealing door 23, the drying sealing door 24 and the constant temperature sealing door 25, place the desiccant inside the drying box 16, and then place the breathable plate 17 on the top of the drying box 16. By arranging the refrigeration partition 2, the drying partition 1 3, the drying partition 2 4, the constant temperature partition 1 5, the constant temperature partition 2 6 and the liquid partition 7, the interior of the storage box 1 is divided into a refrigeration area, a drying area, a constant temperature area and a liquid storage area. Then place the medicines with different storage conditions in the corresponding areas. When accessing the liquid medicine, pull the L-shaped drawer 10 outwards from the storage box 1. At this time, the T-shaped slide bars 11 slide outwards from the interior of the T-shaped slide grooves 9 towards the outside of the storage box 1. When the L-shaped drawer 10 is pulled out from the interior of the storage box 1, the liquid medicine can be accessed. After the medicine access is completed, the refrigeration area is refrigerated by the first refrigeration plate 14, the drying area is dehumidified by the desiccant placed inside the drying box 16, the temperature inside the constant temperature area is detected by the temperature sensor 26 of model DS18B20, and the detected temperature is transmitted to the single-chip microcomputer 29.The single-chip microcomputer 29 controls the start and stop of the electric heating wire plate 19 and the second refrigeration plate 21 respectively according to the preset constant temperature, so as to ensure the temperature of the constant temperature zone. When the storage device needs to be carried, the storage device is pulled by the handle 27. At this time, the universal wheels 33 are stressed and roll, so as to move the storage device, realizing the functions of partition storage, convenient access and convenient movement, preventing the problem that drugs with different storage conditions are placed in the same storage environment, resulting in the reduction of the activity of some drugs, the easy collision during the access of liquid drugs, and the overweight after storing a large number of drugs, which affects the drug quality, access convenience and carrying convenience.
[0027] When working, open the refrigeration sealing door 23, the drying sealing door 24 and the constant temperature sealing door 25, place the desiccant inside the drying box 16, and then place the air-permeable plate 17 on the top of the drying box 16. The interior of the storage box 1 is divided into a refrigeration zone, a drying zone, a constant temperature zone and a liquid storage zone by setting the refrigeration partition 2, the first drying partition 3, the second drying partition 4, the first constant temperature partition 5, the second constant temperature partition 6 and the liquid partition 7. Then, place drugs with different storage conditions in the corresponding areas. When accessing liquid drugs, pull the L-shaped drawer 10 to the outside of the storage box 1. At this time, the T-shaped slide bar 11 slides to the outside of the storage box 1 inside the T-shaped slide groove 9. When the L-shaped drawer 10 is pulled out of the storage box 1, the liquid drugs can be accessed. After the drug access is completed, the refrigeration zone is refrigerated by the first refrigeration plate 14, the drying zone is dehumidified by the desiccant placed in the drying box 16, the temperature in the constant temperature zone is detected by the temperature sensor 26 of the model DS18B20, and the detected temperature is transmitted to the single-chip microcomputer 29. The single-chip microcomputer 29 controls the start and stop of the electric heating wire plate 19 and the second refrigeration plate 21 respectively according to the preset constant temperature, so as to ensure the temperature of the constant temperature zone. When the storage device needs to be carried, the storage device is pulled by the handle 27. At this time, the universal wheels 33 are stressed and roll, so as to move the storage device, realizing the functions of partition storage, convenient access and convenient movement.
[0028] Through the above steps, the interior of the storage box 1 is divided into a refrigerated area, a drying area, a constant temperature area, and a liquid storage area by setting the refrigerating partition 2, the first drying partition 3, the second drying partition 4, the first constant temperature partition 5, the second constant temperature partition 6, and the liquid partition 7. The refrigerated area is refrigerated by the first refrigeration plate 14, the drying area is dehumidified by the desiccant placed in the drying box 16, the temperature in the constant temperature area is detected by the temperature sensor 26, and the detected temperature is transmitted to the single-chip microcomputer 29. The single-chip microcomputer 29 controls the start and stop of the heating wire plate 19 and the second refrigeration plate 21 respectively according to the preset constant temperature, so as to ensure the temperature in the constant temperature area. Pull the L-shaped drawer 10 so that the T-shaped slider 11 slides inside the T-shaped chute 9, which is convenient for personnel to pull out the L-shaped drawer 10 from the interior of the storage box 1 to access the liquid medicine. Pull the storage device through the handle 27. At this time, the universal wheels 33 are stressed and roll, which is convenient for personnel to carry. This is to solve the problems of common storage devices for sodium hydroxide, which only have a storage function and can store medicines made of sodium hydroxide, but lack the functions of partition storage, convenient access, and convenient movement. It cannot ensure that the storage needs of different medicines can be met, the convenience of accessing medicines, and the convenience of personnel carrying. It is easy to have the situation that medicines with different storage conditions are placed in the same storage environment, resulting in the reduction of the activity of some medicines, easy collision when accessing liquid medicines, and excessive weight after storing a large number of medicines, affecting the quality of medicines, the convenience of access, and the convenience of carrying.
Claims
1. A storage device for partitioned sodium hydroxide, comprising a storage tank (1); characterized in that: It also includes a refrigerating partition (2), a first drying partition (3), a second drying partition (4), a first constant-temperature partition (5), a second constant-temperature partition (6), a liquid partition (7), a pull-out opening (8), a T-shaped chute (9), an L-shaped drawer (10), a control slot (28), a single-chip microcomputer (29), and universal wheels (33). A refrigerating partition (2) is arranged on the left side inside the storage box (1), a first drying partition (3) is arranged beside the right side of the refrigerating partition (2), a second drying partition (4) is arranged in the middle inside the storage box (1), a first constant-temperature partition (5) is arranged beside the right side of the second drying partition (4), a second constant-temperature partition (6) is arranged on the right side inside the storage box (1), a liquid partition (7) is arranged beside the right side of the second constant-temperature partition (6), a pull-out opening (8) is opened at the right side of the front of the storage box (1) corresponding to the position of the storage box (1), two T-shaped chutes (9) are symmetrically opened at the right side of the bottom inside the storage box (1) corresponding to the position of the pull-out opening (8), an L-shaped drawer (10) is placed at the right side of the bottom inside the storage box (1), four universal wheels (33) are arranged in a rectangular shape at the four corners of the bottom of the storage box (1), a control slot (28) is opened at the lower part in the middle of the front of the storage box (1), and a single-chip microcomputer (29) is arranged on the left side inside the control slot (28).
2. The storage device for partitioned sodium hydroxide according to claim 1, wherein: Two T-shaped sliding strips (11) are symmetrically arranged at the left and right sides of the bottom of the L-shaped drawer (10) corresponding to the position of the T-shaped chute (9), the T-shaped sliding strips (11) are inserted into the inside of the T-shaped chute (9), and a liquid medicine placement plate (12) is arranged at the top of the rear side of the L-shaped drawer (10).
3. The storage device for partitioned sodium hydroxide according to claim 1, characterized in that: A refrigerating slot (13) is opened at the left side of the front of the storage box (1) corresponding to the position of the refrigerating partition (2), a first refrigerating plate (14) is arranged inside the refrigerating slot (13), a refrigerating sealing plate (15) is arranged at the left side of the front of the storage box (1) corresponding to the position of the refrigerating slot (13), the refrigerating sealing plate (15) is fixed inside the refrigerating slot (13) by bolts, and the first refrigerating plate (14) is electrically connected to the single-chip microcomputer (29).
4. A storage device for partitioned sodium hydroxide according to claim 1, wherein: A drying box (16) is placed at the middle position of the bottom on the left side inside the storage box (1) corresponding to the first drying partition (3) and the second drying partition (4), and a breathable plate (17) is placed on the top of the drying box (16).
5. The storage device for partitioned sodium hydroxide according to claim 1, wherein: A top plate (22) is fixed to the top of the storage box (1) by bolts. A refrigerating sealing door (23) is arranged at the left side of the top of the top plate (22) corresponding to the position of the refrigerating partition (2), a drying sealing door (24) is arranged at the middle position on the right side of the refrigerating sealing door (23) corresponding to the first drying partition (3) and the second drying partition (4), a constant-temperature sealing door (25) is arranged at the middle position on the right side of the drying sealing door (24) corresponding to the first constant-temperature partition (5) and the second constant-temperature partition (6). The refrigerating sealing door (23), the drying sealing door (24), and the constant-temperature sealing door (25) are all movably connected to the top plate (22) through hinges, and a handle (27) is arranged at the right side of the top of the top plate (22).
6. The storage device for partitioned sodium hydroxide according to claim 5, characterized in that: There are constant temperature heat grooves (18) opened in the middle of the tops of the first constant temperature partition plate (5) and the second constant temperature partition plate (6). An electric heating wire plate (19) is arranged inside the constant temperature heat groove (18). Two constant temperature cold grooves (20) are symmetrically opened at the front and rear ends of the top of the storage box (1) corresponding to the middle positions of the first constant temperature partition plate (5) and the second constant temperature partition plate (6). A second refrigeration plate (21) is arranged inside each of the two constant temperature cold grooves (20). A temperature sensor (26) is arranged at the center point of the bottom of the constant temperature sealing door (25). The electric heating wire plate (19), the second refrigeration plate (21) and the temperature sensor (26) are electrically connected to the single-chip microcomputer (29).
7. A storage device for partitioned sodium hydroxide according to claim 1, characterized in that: A storage battery (30) is arranged on the right side inside the control groove (28). A USB charging port (31) is arranged in the middle above the control groove (28). The storage battery (30) is electrically connected to the USB charging port (31) and the single-chip microcomputer (29). A control sealing plate (32) is arranged at the position corresponding to the control groove (28) below the middle of the front side of the storage box (1). The control sealing plate (32) is fixed inside the control groove (28) by bolts.