Temperature-adjustable water storage container
By setting up partitions and baffles in the water storage container, a liquid storage chamber and a regulating liquid chamber are formed, and a liquid storage passage and a liquid regulation passage are formed through the baffles, automatic adjustment of liquid temperature is achieved, and the problems of low temperature adjustment efficiency and high cost of existing water storage containers are solved, and the efficiency and accuracy of liquid temperature adjustment are improved.
Patent Information
- Application Number
- CN202422089358.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing water storage containers have problems of low efficiency and high cost in liquid temperature regulation, especially in industrial production, when the temperature regulation of solvents takes a long time and is costly.
A water storage container with adjustable temperature is designed. By setting a partition and a baffle in the shell, a liquid storage chamber and a regulating liquid chamber are formed, and a liquid storage passage and a liquid adjustment passage are formed through the baffle to achieve automatic adjustment of the liquid temperature.
The water storage container can automatically cool down through a heat exchange mechanism when the liquid flows out, improving the efficiency and accuracy of the liquid temperature adjustment and reducing the time and cost of the temperature adjustment.
Smart Images

Figure CN222960389U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of water storage containers, and specifically discloses a water storage container with adjustable temperature. Background Art
[0002] Whether in the industrial production process or in daily life, containers for temporarily storing liquids (such as water, reagents, etc.) are always essential, such as water cups, reagent bottles, etc.
[0003] When using the liquid stored in the water storage container, it often involves adjusting the temperature of the liquid. For example, when making tea with a water cup or teacup, usually hot boiling water is needed to soak the tea leaves, and when drinking the tea, the tea needs to be cooled to a suitable temperature for normal drinking; in industrial production, in order to fully dissolve and mix the solvent and solute evenly, the solvent usually needs to be heated to a relatively high temperature, resulting in that in the early stage of reagent mixing, usually because the reagent temperature is too high, the mixed reagent cannot be used immediately and needs to be left to cool or cooled by a cooling device. When the mixed reagent is used up, it has to go through this stage again. The time period for leaving to cool is relatively long, and although using a cooling device has a fast cooling time and high temperature adjustment accuracy, the corresponding cost is also relatively high. Therefore, in view of this, the inventor provides a water storage container with adjustable temperature to solve the above problems. Utility Model Content
[0004] The purpose of the present utility model is to provide a water storage container that can conveniently adjust the temperature of the liquid flowing out of the container interior to solve the related technical problems raised in the above background art.
[0005] To achieve the above object, the basic solution of the present utility model provides a water storage container with adjustable temperature, including:
[0006] A housing;
[0007] A partition plate, arranged in the housing and dividing the housing into a liquid storage cavity and a regulating liquid cavity;
[0008] A number of baffle plates, arranged on one side in the housing, a liquid storage channel communicating with the liquid storage cavity is formed between adjacent baffle plates, and a regulating liquid channel communicating with the regulating liquid cavity is formed between the baffle plate close to the housing inner wall and the housing inner wall. An outlet communicating with the liquid storage channel is provided on the housing.
[0009] The principle and effect of this basic solution are as follows:
[0010] Compared with the prior art, by providing a partition and a baffle, the present utility model enables the stored liquid (such as tea water and reagents) to maintain a relatively high temperature during normal storage. When the liquid is poured outwards, the regulating liquid in the regulating liquid channel exchanges heat with the stored liquid in the stored liquid channel, thereby cooling the stored liquid and avoiding the situation where the temperature of the outflowing stored liquid is too high and affecting its normal use.
[0011] Furthermore, the partition is horizontally arranged in the shell and located between the inner wall of the shell and the baffle, and the regulating liquid cavity is located at the bottom of the shell. Through this arrangement, during the normal storage of the stored liquid, the regulating liquid is at the bottom of the shell. When the shell is tilted to pour out the stored liquid in the shell, the regulating liquid also flows to the regulating liquid cavity due to the tilt of the shell, thereby cooling the stored liquid.
[0012] Furthermore, there are at least two partitions, and a heat insulation layer is provided between adjacent partitions. The heat insulation layer prevents heat exchange between the stored liquid and the regulating liquid during the storage of the stored liquid, avoiding affecting the use effect of the stored liquid.
[0013] Furthermore, the horizontal height of the liquid outlet is higher than the top of the shell, and a fold angle is provided at the corner of the shell near the liquid outlet. This arrangement enables the liquid flowing out at the liquid outlet to avoid adhesion to the shell.
[0014] Furthermore, a regulating component for controlling the connection or disconnection of the regulating liquid channel is provided on the side wall of the shell. Thus, the heat exchange area between the stored liquid channel and the regulating liquid channel can be adjusted.
[0015] Furthermore, the regulating component includes:
[0016] Sealing plates symmetrically arranged in the regulating liquid channel, with a gap formed between adjacent sealing plates. Through holes that can communicate with each other are provided on the side of the sealing plate close to the baffle;
[0017] A rotating rod, bolted to the side wall of the shell. One end of the rotating rod extends into the space between the sealing plates and is provided with a piston that is slidably and sealingly connected to the inner wall of the sealing plate and can block the through holes. The other end of the rotating rod extends out of the shell and is provided with a knob.
[0018] By driving the rotating rod to rotate through the knob, the piston blocks or disconnects the through holes, thereby facilitating the adjustment of the connection or disconnection of the regulating liquid channel.
[0019] Furthermore, the baffle located between the stored liquid channel and the regulating liquid channel is a heat conducting plate, and the remaining baffles are heat insulation plates. Thus, the heat preservation ability of the stored liquid is improved, and the cooling effect of the regulating liquid on the stored liquid is maintained. Description of the Drawings
[0020] To more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the accompanying drawings required for the description of the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.
[0021] Figure 1 Shows a schematic diagram of a water storage container with adjustable temperature proposed in the embodiments of the present application;
[0022] Figure 2 Shows Figure 1 The enlarged view of part A in
[0023] Figure 3 Shows a schematic diagram of one state of a water storage container with adjustable temperature proposed in the embodiments of the present application;
[0024] Figure 4 Shows another state schematic diagram of a water storage container with adjustable temperature proposed in the embodiments of the present application. Detailed implementation manners
[0025] To further elaborate on the technical means and effects adopted by the present utility model to achieve the predetermined utility model purpose, the following, in combination with the accompanying drawings and preferred embodiments, details the specific implementation manners, structures, features and their effects of the present utility model as follows.
[0026] The reference numerals in the accompanying drawings of the specification include: housing 1, end cover 2, heat insulation layer 3, port 4, regulating liquid chamber 5, storage liquid chamber 6, baffle 7, liquid outlet 8, storage liquid channel 9, partition 10, regulating liquid channel 11, regulating assembly 12, sealing plate 13, through hole 14, rotating rod 15, piston 16, knob 17.
[0027] A water storage container with adjustable temperature, as shown in the embodiments Figure 1 includes structures such as a housing 1, a plurality of partitions 10 arranged in the housing 1, a baffle 7, and a regulating assembly 12 arranged on the side wall of the housing 1, as follows:
[0028] Housing 1: The bottom of the housing 1 is provided with feet to facilitate the placement of the housing 1, and the top of the housing 1 is provided with a liquid inlet, and an end cover 2 is arranged at the liquid inlet.
[0029] Partition 10: There are two partitions 10. The two partitions 10 are horizontally arranged in the housing 1. An insulating layer 3 is arranged between the partitions 10. The insulating layer 3 can be made of foam plastic, superfine glass wool or high-silica cotton, etc. The partitions 10 divide the housing 1 into a storage liquid chamber 6 and an adjustment liquid chamber 5. The storage liquid chamber 6 is located above the partition 10 and is communicated with the liquid inlet. The adjustment liquid chamber 5 is located below the partition 10 and on the ground inside the housing 1. Correspondingly, a port 4 communicated with the adjustment liquid chamber 5 is arranged on the side wall of the housing 1, and a detachable rubber plug is arranged at the port 4 for sealing. The side surfaces of the housing 1 are all filled with heat-insulating materials, while the bottom of the housing 1 is not filled with heat-insulating materials.
[0030] Baffle 7: The baffle 7 is arranged on the left side surface of the housing 1. There are several baffles 7, and one of the baffles 7 has an L-shaped corner at the bottom, so that a storage liquid channel 9 is formed by enclosing between adjacent baffles 7. An outlet 8 communicated with the storage liquid channel 9 is arranged on the housing 1. The horizontal height of the outlet 8 is higher than the top of the housing 1, and a fold angle is arranged at the corner of the housing 1 close to the outlet 8, so as to facilitate the user to drink the tea stored in the housing 1 or pour the reagent stored in the housing 1. The baffle 7 located between the storage liquid channel 9 and the adjustment liquid channel 11 is a heat-conducting plate, and the rest of the baffles 7 are heat-insulating plates.
[0031] Adjustment assembly 12: As Figure 2 shown, the adjustment assembly 12 includes a sealing plate 13 and a rotating rod 15. The sealing plates 13 are symmetrically arranged in the adjustment liquid channel 11. A gap is formed between adjacent sealing plates 13. Through holes 14 that can communicate with each other are arranged on one side of the sealing plate 13 close to the baffle 7. In this embodiment, the cross-section of the gap is circular, that is, the mutually approaching surfaces of the sealing plates 13 are set as arc surfaces, so that the cross-section of the gap forms a circular structure. The rotating rod 15 is bolted to the side wall of the housing 1. One end of the rotating rod 15 extends into the gap between the sealing plates 13 and is provided with a piston 16 that is slidably sealed with the inner wall of the sealing plate 13 and can block the through hole 14. The other end of the rotating rod 15 extends out of the housing 1 and is provided with a knob 17. As Figure 3 and Figure 4 shown, turning the adjustment knob 17 to block or open the through hole 14 can make the adjustment liquid located at different positions in the adjustment liquid channel 11, that is, the heat exchange area between the storage liquid channel 9 and the adjustment liquid channel 11 can be adjusted.
[0032] During the implementation of this embodiment, taking tea as an example, when using the storage cavity to store tea, during the tea leaf soaking process and storage process, the tea is at a relatively high temperature to facilitate the normal soaking of the tea. When drinking the tea, the housing 1 is tilted to facilitate the normal outflow of the tea. At the same time, the regulating liquid also flows into the regulating liquid cavity 5 due to the tilt of the housing 1. The tea passes through the storage liquid channel 9 and exchanges heat with the regulating liquid, thereby reducing the temperature of the tea and facilitating the normal drinking of the tea. Taking industrial reagents as an example, when using the storage cavity to store reagents, during the reagent mixing process and storage process, the reagents are at a relatively high temperature to avoid crystallization due to too low a temperature of the reagents. When the reagents are needed, the housing 1 is tilted to facilitate the normal outflow of the reagents. At the same time, the regulating liquid also flows into the regulating liquid cavity 5 due to the tilt of the housing 1. The reagents pass through the storage liquid channel 9 and exchange heat with the regulating liquid, thereby reducing the temperature of the reagents and avoiding burns and other situations caused by too high a temperature of the reagents.
[0033] Of course, the regulating liquid in this embodiment can also be a liquid with a higher temperature for heating the stored liquid. Compared with the prior art, this embodiment can conveniently adjust the temperature of the liquid flowing out of the container, is applicable to scenarios with relatively low requirements for temperature adjustment accuracy, can effectively improve the efficiency of adjusting the temperature of the stored liquid, and reduce the time and cost of temperature adjustment.
[0034] The above is only a preferred embodiment of the present invention and does not impose any form of limitation on the present invention. Although the present invention has been disclosed above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments by using the disclosed technical content within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A water storage container with adjustable temperature, characterized in that: include: case; A partition plate is disposed in the shell and divides the shell into a liquid storage chamber and a liquid regulating chamber; A plurality of baffles are arranged on one side of the shell, a storage liquid channel connected to the storage liquid cavity is formed between adjacent baffles, a regulating liquid channel connected to the regulating liquid cavity is formed between the baffle close to the shell and the inner wall of the shell, and a liquid outlet connected to the storage liquid channel is provided on the shell.
2. A temperature-adjustable water storage container according to claim 1, characterized in that: The partition is horizontally arranged in the shell and located between the inner wall of the shell and the baffle, and the regulating liquid chamber is located at the bottom of the shell.
3. A temperature-adjustable water storage container according to claim 2, characterized in that: There are at least two partitions and a heat insulation layer is provided between adjacent partitions.
4. The temperature-adjustable water storage container according to claim 1, characterized in that: The level of the liquid outlet is higher than the top of the shell, and a folded corner is provided at a corner of the shell near the liquid outlet.
5. A temperature-adjustable water storage container according to any one of claims 1 to 4, characterized in that: The side wall of the shell is provided with a regulating component which can control the connection or disconnection of the regulating liquid channel.
6. A temperature-adjustable water storage container according to claim 5, characterized in that: The adjustment component comprises: Sealing plates are symmetrically arranged in the regulating liquid channel, gaps are formed between adjacent sealing plates, and through holes that can communicate with each other are arranged on one side of the sealing plate close to the baffle; A rotary rod is bolted to the side wall of the shell, one end of the rotary rod extends into the sealing plate and is provided with a piston which is slidably sealed with the inner wall of the sealing plate and can block the through hole, and the other end of the rotary rod extends out of the shell and is provided with a knob.
7. The temperature-adjustable water storage container according to claim 1, characterized in that: The baffle plate between the storage liquid channel and the regulating liquid channel is a heat conduction plate, and the remaining baffle plates are heat insulation plates.