Sodium acetate storage device

By designing the movable mechanism and closed mechanism of the sodium acetate storage device, the problem of inconvenience in storage and removal of bagged sodium acetate is solved, and rapid storage and convenient operation are achieved.

CN223291571UActive Publication Date: 2025-09-02ZHEJIANG CHENDING SHIJIA ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422641926.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-02
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

During storage, the bagged sodium acetate is inconvenient to store and remove at high places, which leads to laborious manual operation and difficult to meet the needs of use.

Method used

A sodium acetate storage device is designed, including a storage cabinet, a movable mechanism and a closed mechanism, and the rotation and replacement of the storage case is achieved through the driving structure, simplifying the operation process and reducing physical labor.

Benefits of technology

It realizes rapid storage and removal of sodium acetate, reduces the intensity of physical labor, and improves storage efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The sodium acetate storage device comprises a storage cabinet, a movable mechanism is arranged in the storage cabinet, a sealing mechanism is arranged on the surface of the storage cabinet, and an opening is formed in the front side of the storage cabinet; the movable mechanism comprises a mounting frame, four extension plates are fixed to the surface of the mounting frame, rotating shafts are rotationally connected to the surfaces of the extension plates, two chain wheels are fixed to the surfaces of the rotating shafts, chains are mounted on the surfaces of the chain wheels on the upper side and the lower side, a plurality of connecting rods are fixed to the surfaces of the chains, and storage shells are rotationally connected to the surfaces of the connecting rods. An indication label is fixed to the surface of the storage shell, a sealing door is hinged to the surface of the storage shell, a dehumidification box is fixed to the bottom of the storage shell, a combination plate is arranged on one side of the extension plate, and a guide shell is fixed to the surface of the combination plate. The storage efficiency of the bagged sodium acetate is better, and meanwhile the problem that the bagged sodium acetate is difficult to store and take out at a high position is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of sodium acetate production, in particular to a sodium acetate storage device. Background Art

[0002] Sodium acetate is a colorless crystal or white crystalline powder with a slight acetic odor. It is highly soluble in water and readily dissolves in water to form alkaline solutions. Sodium acetate is widely used in the food industry as a flavoring and buffer, in the manufacture of pharmaceuticals, dyes, and photographic chemicals, and as a reference material in laboratories.

[0003] When storing bagged sodium acetate, it is usually necessary to stack it layer by layer. However, during the storage process, manual work is required to continuously stack it from bottom to top, which makes it difficult to store the bagged sodium acetate at high places and inconvenient to take it out, making it difficult to meet usage needs. Utility Model Content

[0004] The purpose of the utility model is to provide a sodium acetate storage device, which enables different sodium acetate storage positions to be interchangeable. Manually, the sodium acetate bag is stored in a storage shell at a designated position, and then the position of the storage shell is changed, so as to achieve a rapid storage effect, thereby improving the storage efficiency of the sodium acetate bag and solving the problem that it is difficult to store and take out the sodium acetate at a high place.

[0005] To achieve the above object, the present invention provides the following technical solution: a sodium acetate storage device, comprising a storage cabinet, a movable mechanism is provided inside the storage cabinet, a closing mechanism is provided on the surface of the storage cabinet, and an opening is provided on the front side of the storage cabinet;

[0006] The movable mechanism includes a mounting frame, four extension plates are fixed on the surface of the mounting frame, the surface of the extension plate is rotatably connected to a rotating shaft, two sprockets are fixed on the surface of the rotating shaft, chains are installed on the upper and lower surfaces of the sprockets, a plurality of connecting rods are fixed on the surface of the chain, a storage shell is rotatably connected to the surface of the connecting rod, an indication label is fixed on the surface of the storage shell, a closed door is hinged on the surface of the storage shell, a dehumidification box is fixed on the bottom of the storage shell, a combination plate is provided on one side of the extension plate, a guide shell is fixed on the surface of the combination plate, the guide shell is fixedly connected to the surface of the mounting frame, rollers are rotatably connected on both sides of the surface of the storage shell, the inner wall of the storage shell is slidably connected to the surfaces of a plurality of rollers, and a driving structure is installed on the surface of the mounting frame.

[0007] As a preferred sodium acetate storage device of the present invention, the mounting frame surface drive structure includes a reduction motor, the reduction motor is fixedly connected to the mounting frame surface, the reduction motor output shaft is fixed with a drive shaft, the drive shaft surface and the lower rotating shaft surface are both fixed with transmission wheels, and the transmission wheels on the upper and lower sides are connected by belt drive.

[0008] As a preferred sodium acetate storage device of the present invention, the closing mechanism includes a receiving groove, the receiving groove is opened on the surface of the storage cabinet, the inner wall of the receiving groove is slidably connected to a closed door, the surface of the storage cabinet is opened with a mounting groove, the inner wall of the mounting groove is fixed with multiple springs, the top of the spring is fixed with a magnet, and the bottom of the closed door is fixed with an iron plate used in conjunction with the magnet.

[0009] As a preferred sodium acetate storage device of the present invention, two male buckles are fixed on the surface of the storage cabinet, and two female buckles are fixed on the surface of the closed door.

[0010] As a preferred sodium acetate storage device of the present invention, two storage slots are provided on the surface of the storage cabinet, and sealing rings are fixed to the inner walls of the storage slots, and the sealing rings are slidably connected to the surface of the closed door.

[0011] As a preferred sodium acetate storage device of the present invention, two first positioning blocks are fixed on the surface of the closed door, two second positioning plates are fixed on the surface of the storage cabinet, a pin rod slides through the surface of the second positioning plate, and a socket for cooperating with the pin rod is opened on the surface of the first positioning block.

[0012] As a preferred sodium acetate storage device of the present invention, four guide plates are fixed on the surface of the storage cabinet, the closed door is slidably connected to the guide plate surface, and a controller is fixed on the surface of the storage cabinet.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0014] When storing bagged sodium acetate, the utility model can directly store it into the storage shell at the corresponding opening position through the opening on the surface of the storage cabinet. The storage shell can be closed after the closed door is closed. The surface of the indicator label is used to write information about the corresponding bagged sodium acetate. The interior of the dehumidification box is used to store desiccant. When it is necessary to change the position of the storage shell corresponding to the opening on the surface of the storage cabinet, the driving structure can be used to drive the lower rotating shaft to rotate, so that the two lower sprockets can drive the upper sprocket to rotate synchronously through the transmission of the chain. At this time, the sprocket will also drive multiple storage shells to move together through the connecting rod, so that the storage shell at the corresponding opening position can be replaced, so that the operator only needs to place the bagged sodium acetate into the storage shell at the opening position, eliminating the time of going up and down to place it, reducing physical labor intensity, and making it more convenient to store and take out the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0016] Figure 2 It is a schematic diagram of the cross-sectional three-dimensional structure of the utility model;

[0017] Figure 3 It is a cross-sectional structural diagram of the movable mechanism in the present utility model;

[0018] Figure 4 It is a partial structural diagram of the movable mechanism in the utility model;

[0019] Figure 5 It is a partial cross-sectional structural diagram of the movable mechanism in the utility model;

[0020] Figure 6 It is a partial cross-sectional structural diagram of the movable mechanism in the utility model;

[0021] Figure 7 It is a structural diagram of the closing mechanism in the present utility model;

[0022] Figure 8 For this utility model Figure 7 A schematic diagram of the enlarged structure at point A;

[0023] Figure 9 For this utility model Figure 7 Schematic diagram of the enlarged structure at point B.

[0024] In the figure: 1. storage cabinet; 2. movable mechanism; 201. mounting frame; 202. extension plate; 203. rotating shaft; 204. sprocket; 205. combination plate; 206. chain; 207. connecting rod; 208. guide shell; 209. storage shell; 210. indicator label; 211. closed door; 212. dehumidification box; 213. roller; 214. reduction motor; 215. drive shaft; 216. transmission wheel; 3. closing mechanism; 301. receiving groove; 302. closed door; 303. mounting groove; 304. spring; 305. magnet; 306. male buckle; 307. female buckle; 308. first positioning block; 309. second positioning plate; 310. pin; 311. guide plate; 312. storage groove; 313. sealing ring; 4. controller. DETAILED DESCRIPTION

[0025] See also Figures 1-9 A sodium acetate storage device includes a storage cabinet 1, a movable mechanism 2 is provided inside the storage cabinet 1, a closing mechanism 3 is provided on the surface of the storage cabinet 1, and an opening is provided on the front side of the storage cabinet 1;

[0026] The movable mechanism 2 includes a mounting frame 201, on the surface of which four extension plates 202 are fixed, and on the surface of which a rotating shaft 203 is rotatably connected. There are two rotating shafts 203, and on the surface of which two sprockets 204 are fixed, and on the surfaces of the upper and lower sprockets 204 there are chains 206, and on the surface of the chains 206 there are multiple connecting rods 207 fixed, and on the surface of the connecting rods 207 there are rotatably connected a storage shell 209, and on the surface of the storage shell 209 there is an indication label 210 fixed, and on the surface of the storage shell 209 there is a hinged sealing member. Close the door 211. A dehumidification box 212 is fixed to the bottom of the storage shell 209. The surface of the dehumidification box 212 is provided with multiple ventilation holes. A desiccant is provided inside the dehumidification box 212. A combination plate 205 is provided on one side of the extension plate 202. A guide shell 208 is fixed to the surface of the combination plate 205. The guide shell 208 is fixedly connected to the surface of the mounting frame 201. Rollers 213 are rotatably connected to both sides of the surface of the storage shell 209. The inner wall of the storage shell 209 is in sliding connection with the surfaces of the multiple rollers 213. A drive structure is installed on the surface of the mounting frame 201.

[0027] When storing bagged sodium acetate, the storage can be directly stored in the storage shell 209 at the corresponding opening position through the opening on the surface of the storage cabinet 1. After the closed door 211 is closed, the storage shell 209 can be closed. The surface of the indicator label 210 is used to write the information of the corresponding bagged sodium acetate. The dehumidification box 212 is used to store desiccant. When the position of the storage shell 209 corresponding to the opening on the surface of the storage cabinet 1 needs to be changed, the lower shaft 203 can be driven to rotate by the driving structure, so that the two sprockets 204 on the lower side can be driven by the chain 206 to drive the upper sprocket 204 to rotate synchronously. At this time, the sprocket 204 also rotates. The connecting rod 207 will drive multiple storage shells 209 to move together, so that the storage shell 209 at the corresponding opening position can be replaced, so that the operator only needs to place the bagged sodium acetate inside the storage shell 209 at the opening position, eliminating the time of placing it up and down, reducing physical labor intensity, and making it more convenient to store and take out the device. When the storage shell 209 moves up and down, the roller 213 will slide on the inner wall of the guide shell 208, so that the storage shell 209 can obtain a guiding effect when it moves up and down, avoiding the storage shell 209 at the corresponding opening position from shaking back and forth when sodium acetate is stored.

[0028] Furthermore, the surface drive structure of the mounting frame 201 includes a reduction motor 214, which is fixedly connected to the surface of the mounting frame 201. The output shaft of the reduction motor 214 is fixed with a drive shaft 215. The surface of the drive shaft 215 and the surface of the lower rotating shaft 203 are both fixed with transmission wheels 216. The upper and lower transmission wheels 216 are connected by a belt drive.

[0029] When the reduction motor 214 is started, it can drive the driving shaft 215 to rotate, and through the transmission of the two transmission wheels 216 and the belt, the lower rotating shaft 203 can also rotate at the same time, thereby ensuring that the multiple sprockets 204 can rotate.

[0030] Furthermore, the closing mechanism 3 includes a receiving groove 301, which is provided on the surface of the storage cabinet 1. A sealed door 302 is slidably connected to the inner wall of the receiving groove 301. A mounting groove 303 is provided on the surface of the storage cabinet 1. A plurality of springs 304 are fixed to the inner wall of the mounting groove 303. A magnet 305 is fixed to the top of the spring 304. An iron plate that cooperates with the magnet 305 is fixed to the bottom of the sealed door 302.

[0031] The sealed door 302 can slide on the inner wall of the accommodating groove 301, so that the opening on the surface of the storage cabinet 1 can be opened and closed. When the bottom of the sealed door 302 fits the surface of the magnet 305, the spring 304 can apply pressure to make the surface of the magnet 305 fit tightly to the bottom of the sealed door 302. At the same time, the magnet 305 will also be adsorbed to the iron plate surface at the bottom of the sealed door 302, making it difficult for air to pass through the bottom of the sealed door 302 and the magnet 305 to enter the interior of the storage cabinet 1, so that the sealed door 302 and the surface of the storage cabinet 1 can achieve a good sealing effect.

[0032] Furthermore, two male buckles 306 are fixed to the surface of the storage cabinet 1, and two female buckles 307 are fixed to the surface of the closed door 302;

[0033] The cooperation of the male buckle 306 and the female buckle 307 can form a box buckle, so that the sealed door 302 can close the surface opening of the storage cabinet 1 and obtain a fixing effect.

[0034] Furthermore, two storage slots 312 are provided on the surface of the storage cabinet 1. A sealing ring 313 is fixed to the inner wall of the storage slot 312. The sealing ring 313 is slidably connected to the surface of the sealed door 302.

[0035] When the sealed door 302 is moving, the sealing ring 313 can fit with the surface of the sealed door 302, thereby providing a sealing effect for the top of the sealed door 302, making the sealing performance of the device better.

[0036] Furthermore, two first positioning blocks 308 are fixed on the surface of the sealed door 302, and two second positioning plates 309 are fixed on the surface of the storage cabinet 1. A pin 310 is slidably passed through the surface of the second positioning plate 309, and a socket for cooperating with the pin 310 is opened on the surface of the first positioning block 308;

[0037] After the sealed door 302 moves upward, when the sealed door 302 needs to be fixed, the pin 310 can be passed through the second positioning plate 309 and the first positioning block 308 to fix the sealed door 302, so that the sealed door 302 will not block the opening of the storage cabinet 1 when sodium acetate is taken or placed.

[0038] Furthermore, four guide plates 311 are fixed on the surface of the storage cabinet 1, and the sealed door 302 is slidably connected to the surface of the guide plates 311. A controller 4 is fixed on the surface of the storage cabinet 1, and the controller 4 is electrically connected to the reduction motor 214.

[0039] By setting the guide plates 311, the sealed door 302 can slide between the four guide plates 311, so that the sealed door 302 can obtain a linear guiding effect, preventing the sealed door 302 from detaching from the opening on the surface of the storage cabinet 1, and the setting of the controller 4 allows the operator to directly operate the reduction motor 214 through the controller 4.

[0040] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A sodium acetate storage device, comprising a storage cabinet (1), characterized in that: A movable mechanism (2) is provided inside the storage cabinet (1), a closing mechanism (3) is provided on the surface of the storage cabinet (1), and an opening is provided on the front side of the storage cabinet (1); The movable mechanism (2) comprises a mounting frame (201), four extension plates (202) are fixed on the surface of the mounting frame (201), the surface of the extension plates (202) is rotatably connected to a rotating shaft (203), the surface of the rotating shaft (203) is fixed with two sprockets (204), the surfaces of the sprockets (204) on the upper and lower sides are mounted with chains (206), the surface of the chain (206) is fixed with a plurality of connecting rods (207), the surface of the connecting rods (207) is rotatably connected to a storage shell (209), the surface of the storage shell (209) is fixed with an indication label (210), and the The surface of the storage shell (209) is hinged with a closed door (211), the bottom of the storage shell (209) is fixed with a dehumidification box (212), one side of the extension plate (202) is provided with a combination plate (205), the surface of the combination plate (205) is fixed with a guide shell (208), the guide shell (208) is fixedly connected to the surface of the mounting frame (201), both sides of the surface of the storage shell (209) are rotatably connected with rollers (213), the inner wall of the storage shell (209) is slidably connected to the surfaces of multiple rollers (213), and the surface of the mounting frame (201) is installed with a driving structure.

2. A sodium acetate storage device according to claim 1, characterized in that: The surface drive structure of the mounting frame (201) includes a reduction motor (214), the reduction motor (214) is fixedly connected to the surface of the mounting frame (201), a driving shaft (215) is fixed to the output shaft of the reduction motor (214), and transmission wheels (216) are fixed to the surface of the driving shaft (215) and the surface of the lower rotating shaft (203), and the transmission wheels (216) on the upper and lower sides are connected by belt transmission.

3. A sodium acetate storage device according to claim 1, characterized in that: The closing mechanism (3) comprises a receiving groove (301), the receiving groove (301) is provided on the surface of the storage cabinet (1), a sealed door (302) is slidably connected to the inner wall of the receiving groove (301), a mounting groove (303) is provided on the surface of the storage cabinet (1), a plurality of springs (304) are fixed to the inner wall of the mounting groove (303), a magnet (305) is fixed to the top of the spring (304), and an iron plate used in conjunction with the magnet (305) is fixed to the bottom of the sealed door (302).

4. A sodium acetate storage device according to claim 3, characterized in that: Two male buckles (306) are fixed on the surface of the storage cabinet (1), and two female buckles (307) are fixed on the surface of the sealed door (302).

5. A sodium acetate storage device according to claim 3, characterized in that: Two storage slots (312) are provided on the surface of the storage cabinet (1), and a sealing ring (313) is fixed to the inner wall of the storage slot (312), and the sealing ring (313) is slidably connected to the surface of the sealed door (302).

6. A sodium acetate storage device according to claim 3, characterized in that: Two first positioning blocks (308) are fixed on the surface of the sealed door (302), and two second positioning plates (309) are fixed on the surface of the storage cabinet (1). A pin rod (310) is slidably passed through the surface of the second positioning plate (309), and a socket for matching the pin rod (310) is opened on the surface of the first positioning block (308).

7. A sodium acetate storage device according to claim 3, characterized in that: Four guide plates (311) are fixed on the surface of the storage cabinet (1), the sealed door (302) is slidably connected to the surface of the guide plates (311), and a controller (4) is fixed on the surface of the storage cabinet (1).