Water-cooling storage device for inorganic chemical products
By designing a water-cooled storage device, the corrosion and temperature sensitivity issues of inorganic chemical products in water-cooled storage were solved by utilizing a cooling water system and a sealing structure, achieving stable and economical storage results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGSHA WEIXI TECHNOLOGY CO LTD
- Filing Date
- 2025-06-03
- Publication Date
- 2026-04-24
AI Technical Summary
Inorganic chemical products are susceptible to corrosion, solubility, and temperature sensitivity during water-cooled storage. Existing methods, such as using corrosion-resistant materials and temperature control, are costly or energy-intensive.
A water-cooled storage device was designed, including a box, a water-cooling cavity, a cooling water system, and a sealing structure. The device provides a uniform cooling environment through cooling water circulation and uses sealing foam to maintain the airtightness of the box, ensuring that inorganic chemical products are stored at a suitable temperature.
It effectively solves the problems of corrosiveness and temperature sensitivity of inorganic chemical products, reduces costs, and improves storage stability and safety.
Smart Images

Figure CN224162815U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of water-cooled storage technology for inorganic chemical products, and relates to a water-cooled storage device for inorganic chemical products. Background Technology
[0002] The main disadvantages of water-cooled storage for inorganic chemical products include corrosivity, solubility, temperature sensitivity, and chemical reactivity. Many inorganic chemical products are corrosive; they can react with or dissolve in water, leading to corrosion of container materials or alterations in product properties. Some inorganic compounds have high solubility in water, which can result in unstable product concentrations or dissolution losses during storage. Furthermore, temperature sensitivity is also a problem, as fluctuations in water temperature can affect the stability of inorganic products, especially in applications requiring strict temperature control.
[0003] These drawbacks are usually related to the chemical properties of inorganic compounds, such as their acidity, alkalinity, redox properties, and ionicity. Conventional methods to address these drawbacks include using containers made of corrosion-resistant materials, controlling the temperature and pH of the storage environment, and adding stabilizers or inhibitors to slow down chemical reactions. However, these methods also have limitations. For example, corrosion-resistant materials can be expensive and are not effective for all chemicals; temperature and pH control requires additional energy consumption and monitoring equipment. Therefore, there is an urgent need for a water-cooled storage device for inorganic chemical products to solve these problems. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a water-cooled storage device for inorganic chemical products, and to solve the problems mentioned in the background technology.
[0005] This utility model is achieved through the following technical solution: a water-cooled storage device for inorganic chemical products, comprising: a sealing top seat and a water outlet, wherein the lower end of the sealing top seat is provided with a set of boxes for water-cooled storage of inorganic chemical products, the inside of the box is provided with a set of water-cooled chambers for storing inorganic chemical products, and the upper left side of the box is provided with a set of cold water conduits for sealed connection with external cooling water inlet pipes.
[0006] The lower right side of the cold water conduit is provided with a set of sealing plates for sealing and fixing to the housing. The right side of the sealing plate is provided with a set of water distribution boxes for collecting and distributing cooling water. There are two sets of water distribution boxes, which are connected in parallel and are internally interconnected. The front side of the two sets of water distribution boxes is provided with several sets of water distribution pipes for uniformly guiding the cooling water. The several sets of water distribution pipes are arranged in a straight structure and are all interconnected with the interior of the two sets of water distribution boxes. The lower end of each set of water distribution pipes is provided with several sets of guide bends for bending and guiding the cooling water. Each set of water distribution pipes and several sets of guide bends are integrated into a single structure and form a set of cooling bends.
[0007] In a preferred embodiment, two sets of water collection boxes are provided on the left side of the lower end of the several sets of water distribution pipes for collecting the cooling water backflow. The two sets of water collection boxes are connected in parallel and sealed, and have the same structure as the two sets of water collection boxes. First, the operator seals the external cooling water conduit with the cold water conduit and seals the external cooling water circulation pipe with the outlet. Then, the operator introduces the external cooling water through the cold water conduit and collects it inside the water distribution box. Subsequently, it is evenly guided through the several sets of water distribution pipes, thereby providing a cooling environment inside water cooling tank one and water cooling tank two. When the temperature inside water cooling tank one and water cooling tank two decreases, the operator puts the inorganic chemical product into water cooling tank one and water cooling tank two for water-cooled storage.
[0008] In a preferred embodiment, the two sets of water collection boxes are interconnected with the interiors of several water pipes, and a set of water-cooling tanks for water-cooled storage of inorganic chemical products is provided inside the upper front end of the cooling bend.
[0009] In a preferred embodiment, a second water-cooled tank is provided at the lower end of the water-cooled tank for water-cooled storage of inorganic chemical products. The first water-cooled tank and the second water-cooled tank are of the same specifications, and each of the first water-cooled tank and the second water-cooled tank is provided with a frame for defining the position of the storage drawer.
[0010] As a preferred embodiment, the inner side of the frame is provided with a set of storage drawers for storing inorganic chemical products, and the two sets of storage drawers are respectively movably fitted and connected to the inner frame of water cooling tank one and water cooling tank two.
[0011] As a preferred embodiment, the left end of the water collection box on the left is provided with a set of return pipes for circulating and guiding the cooling water inside several component water pipes, and the upper end of the return pipes is provided with a set of outlets for sealing connection with the external cooling water circulation pipes.
[0012] In a preferred embodiment, a set of doors for sealing the interior of the water-cooling chamber is provided on the front side of the water-cooling chamber. The doors are movably connected to the chamber body by two sets of hinges, and sealing foam is provided at the contact position between the inner side of the doors and the chamber body. Since the inorganic chemical products are placed inside the chamber body, the sealing foam at the contact position between the inner side of the doors and the chamber body can maintain a sealed environment inside the chamber body, thereby maintaining the temperature inside water-cooling tank one and water-cooling tank two, and storing the inorganic chemical products at the temperature inside water-cooling tank one and water-cooling tank two.
[0013] After adopting the above technical solution, the beneficial effects of this utility model are as follows: the external cooling water conduit is sealed to the cold water conduit, and the external cooling water circulation pipe is sealed to the outlet. Then, the staff introduces the external cooling water through the cold water conduit and collects it inside the water distribution box. Then, it is evenly guided through several water distribution pipes, thereby providing a cooling environment inside the water cooling tank 1 and the water cooling tank 2. When the temperature inside the water cooling tank 1 and the water cooling tank 2 drops, the staff puts the inorganic chemical products into the water cooling tank 1 and the water cooling tank 2 for water-cooled storage.
[0014] The inorganic chemical products are placed inside the box, and the inside of the door is equipped with sealing foam at the contact point with the box, which can keep the inside of the box in a sealed environment, thereby maintaining the temperature inside water-cooled tank one and water-cooled tank two, and storing the inorganic chemical products at the temperature inside water-cooled tank one and water-cooled tank two. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a top view of the left oblique front side of the structure of a water-cooled storage device for inorganic chemical products according to this utility model;
[0017] Figure 2 This is a top-view diagram of the left oblique front side structure position of several sets of cooling bends in a water-cooled storage device for inorganic chemical products according to this utility model.
[0018] Figure 3 This is a top view of the left oblique front side of the structure when several sets of cooling bends are connected to the water distribution box and the water collection box in a water-cooled storage device for inorganic chemical products according to this utility model.
[0019] In the diagram: 100-Sealed top seat, 110-Cold water conduit, 120-Sealing plate, 130-Return pipe, 140-Door, 150-Box body, 160-Water distribution box, 170-Water distribution pipe, 180-Limiting frame, 190-Guide bend, 200-Water cooling tank one, 210-Water cooling tank two, 220-Water collection box, 233-Outlet. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1-3 A water-cooled storage device for inorganic chemical products includes: a sealing top seat 100, a guide bend 190, and a water outlet 230. The lower end of the sealing top seat 100 is provided with a set of boxes 150 for water-cooled storage of inorganic chemical products. Inside the box 150 is a set of water-cooled chambers for storing inorganic chemical products. The upper left side of the box 150 is provided with a set of cold water conduits 110 for sealed connection with an external cooling water inlet pipe.
[0022] A set of sealing plates 120 for sealing and fixing to the housing 150 is provided on the right side of the lower end of the cold water conduit 110. A set of water distribution boxes 160 for collecting and distributing cooling water is provided on the right side of the sealing plates 120. There are two sets of water distribution boxes 160, and the two sets of water distribution boxes 160 are connected in parallel. The interiors of the two sets of water distribution boxes 160 are interconnected. Several sets of water distribution pipes 170 for uniformly guiding the cooling water are provided on the front side of the two sets of water distribution boxes 160. The several sets of water distribution pipes 170 are arranged in a straight structure and are all interconnected with the interiors of the two sets of water distribution boxes 160. Several sets of guide bends 190 for bending and guiding the cooling water are provided at the lower end of each set of water distribution pipes 170. Each set of water distribution pipes 170 and several sets of guide bends 190 are integrated into a single structure and form a set of cooling bends.
[0023] Two sets of water collection boxes 220 are provided on the lower left side of the water pipes 170 for collecting the cooling water backflow. The two sets of water collection boxes 220 are connected in parallel and sealed, and have the same structure as the two sets of water collection boxes 160.
[0024] Please see Figures 1-3As the first embodiment of this utility model: First, the staff seals and connects the external cooling water conduit to the cold water conduit 110, and seals and connects the external cooling water circulation pipe to the outlet 230. Then, the staff introduces the external cooling water through the cold water conduit 110 and collects it inside the water distribution box 160. Then, it is evenly guided through several water distribution pipes 170, thereby providing a cooling environment inside the water cooling tank 200 and the water cooling tank 210. When the temperature inside the water cooling tank 200 and the water cooling tank 210 drops, the staff puts the inorganic chemical product into the water cooling tank 200 and the water cooling tank 210 for water-cooled storage.
[0025] The two sets of water collection boxes 220 are interconnected with the interiors of several sets of water pipes 170. A set of water cooling tanks 200 for water-cooled storage of inorganic chemical products is provided inside the upper front end of the cooling bend.
[0026] The lower end of the water-cooled tank 200 is equipped with a set of water-cooled tanks 210 for water-cooled storage of inorganic chemical products. The water-cooled tank 200 and the water-cooled tanks 210 have the same specifications. The water-cooled tank 200 and the water-cooled tanks 210 are respectively equipped with a set of frames for defining the position of the storage drawer.
[0027] The inner side of the frame is provided with a set of storage drawers for storing inorganic chemical products. The two sets of storage drawers are respectively movably connected to the internal frame of water cooling tank 1 200 and water cooling tank 210.
[0028] The left end of the water collection box 220 is provided with a set of return pipes 130 for circulating and guiding the cooling water inside several water pipes 170. The upper end of the return pipes 130 is provided with a set of outlets 230 for sealing connection with the external cooling water circulation pipe.
[0029] A set of doors 140 for sealing the interior of the water-cooling chamber is provided on the front side. The doors 140 are connected to the housing 150 by two sets of hinges, and sealing foam is provided at the contact position between the inner side of the doors 140 and the housing 150.
[0030] Please see Figures 1-3 As a second embodiment of this utility model: based on the description in the above embodiments, further, since the inorganic chemical products are placed inside the box 150, the inner side of the door 140 in contact with the box 150 is provided with sealing foam, which can keep the inside of the box 150 sealed, thereby maintaining the temperature inside the water cooling tank 200 and the water cooling tank 210, and storing the inorganic chemical products at the temperature inside the water cooling tank 200 and the water cooling tank 210.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A water-cooled storage device for inorganic chemical products, comprising: The sealing top seat (100), the guide bend (190), and the water outlet (230) are characterized in that: the lower end of the sealing top seat (100) is provided with a set of boxes (150) for water-cooled storage of inorganic chemical products, the inside of the box (150) is provided with a set of water-cooled chambers for storing inorganic chemical products, and the upper left side of the box (150) is provided with a set of cold water conduits (110) for sealed connection with the external cooling water inlet pipe; The lower right side of the cold water conduit (110) is provided with a set of sealing plates (120) for sealing and fixing with the housing (150). The right side of the sealing plate (120) is provided with a set of water distribution boxes (160) for collecting and distributing cooling water. There are two sets of water distribution boxes (160), and the two sets of water distribution boxes (160) are connected in parallel. The interiors of the two sets of water distribution boxes (160) are interconnected. The front side of the two sets of water distribution boxes (160) is provided with several sets of water distribution pipes (170) for uniformly guiding the cooling water. The several sets of water distribution pipes (170) are arranged in a straight structure and are all interconnected with the interiors of the two sets of water distribution boxes (160). The lower end of each set of water distribution pipes (170) is provided with several sets of guide bends (190) for bending and guiding the cooling water. Each set of water distribution pipes (170) and several sets of guide bends (190) are integrated into one structure and form a set of cooling bends.
2. The water-cooled storage device for inorganic chemical products according to claim 1, characterized in that: Two sets of water collection boxes (220) are provided on the left side of the lower end of several sets of water distribution pipes (170) for collecting cooling water backflow. The two sets of water collection boxes (220) are connected in parallel and sealed, and have the same structure as the two sets of water collection boxes (160).
3. The water-cooled storage device for inorganic chemical products according to claim 2, characterized in that: The two sets of water collection boxes (220) are interconnected with the interiors of several water pipes (170). The upper front end of the cooling bend is provided with a set of water cooling tanks (200) for water-cooled storage of inorganic chemical products.
4. A water-cooled storage device for inorganic chemical products according to claim 3, characterized in that: The lower end of the water-cooled tank 1 (200) is provided with a set of water-cooled tank 2 (210) for water-cooled storage of inorganic chemical products. The water-cooled tank 1 (200) and water-cooled tank 2 (210) have the same specifications. The water-cooled tank 1 (200) and water-cooled tank 2 (210) are respectively provided with a set of frames for defining the position of the storage drawer.
5. A water-cooled storage device for inorganic chemical products according to claim 4, characterized in that: The inner side of the frame is provided with a set of storage drawers for storing inorganic chemical products. The two sets of storage drawers are respectively movably connected to the internal frame of water cooling tank one (200) and water cooling tank two (210).
6. A water-cooled storage device for inorganic chemical products according to claim 2, characterized in that: The left end of the water collection box (220) on the left side is provided with a set of return pipes (130) for circulating and guiding the cooling water inside several water pipes (170). The upper end of the return pipes (130) is provided with a set of outlets (230) for sealing connection with the external cooling water circulation pipe.
7. A water-cooled storage device for inorganic chemical products according to claim 1, characterized in that: The front side of the water-cooling cavity is provided with a set of doors (140) for sealing the inside of the water-cooling cavity. The doors (140) are movably connected to the box body (150) by two sets of hinges, and the inner side of the doors (140) is provided with sealing foam at the contact position with the box body (150).