Refrigeration water storage basin
By setting up a water storage chamber and a refrigerator in the bathroom basin, the function of still providing ice water during water outage is achieved, which solves the problem that the bathroom basin cannot store water and provide cold water, and meets the user's use needs in high-temperature environments.
Patent Information
- Application Number
- CN202422036153.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing bathroom tub cannot store water and cannot provide cold water, which will not be able to use it when water is out of order, especially in high temperature environments that cannot meet user needs.
A water basin including a water storage chamber, a refrigerator, a temperature sensor and a water level sensor is designed to refrigerate the water in the water storage chamber through a refrigerator, and provide ice water through a water pump and a faucet, and control the operation of the entire system in combination with the display panel.
Ice water can still be provided for users to use in the event of water outage, which meets the needs of face washing, hands washing and cold compresses, and solves the problem of using bathroom tubs in high temperature environments.
Smart Images

Figure CN223135250U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sanitary wares, and particularly relates to a water basin with refrigeration and water storage functions. Background Art
[0002] In daily life, the sanitary wares used in bathrooms only have the function of washing and do not have the function of storing water. When the water supply is cut off, normal water use cannot be carried out. In addition, the faucet on the sanitary ware can only provide normal temperature water or hot water, and cannot provide ice water with a lower temperature. When the temperature is relatively high in summer, people want to use ice water to wash their faces and hands to eliminate the heat.
[0003] It can be seen that the existing technology still needs to be improved. Summary of the Utility Model
[0004] In view of the deficiencies of the above-mentioned prior art, the purpose of the present utility model is to provide a water basin with refrigeration and water storage functions, aiming to solve the technical problems of inability to store water and provide cold water.
[0005] In order to achieve the above purpose, the present utility model adopts the following technical solutions:
[0006] A water basin with refrigeration and water storage functions includes a frame body, a water storage basin, a refrigerator, a first faucet and a display panel. A water trough and a water storage cavity are arranged in the water storage basin, and the water storage cavity is located outside the water trough. The refrigerator is provided with a first water outlet, a first water inlet and a second water inlet. The first water inlet is communicated with the water storage cavity through a first water outlet pipe, and a first water pump is arranged on the first water outlet pipe. The first water outlet is communicated with the water storage cavity through a first water inlet pipe, and the second water inlet is externally connected to a water source. The first faucet is arranged on the frame body, and the first faucet is communicated with the water storage cavity through a second water outlet pipe, and a second water pump is arranged on the second water outlet pipe. A temperature sensor, a first water level sensor and a second water level sensor are arranged in the water storage cavity. The first water level sensor is located above the second water level sensor. The first water pump, the second water pump, the refrigerator, the temperature sensor, the first water level sensor and the second water level sensor are all electrically connected to the display panel.
[0007] Further, the water storage basin includes an inner shell and an outer shell. The inner shell is recessed downward to form a water trough, and the water storage cavity is located between the inner shell and the outer shell. A first heat-insulating cotton is arranged in the inner shell, and a second heat-insulating cotton is arranged in the outer shell. A through groove is arranged between the inner shell and the outer shell. One end of the through groove is communicated with the water trough, and the other end extends to the outside of the outer shell. A drainer is installed in the through groove.
[0008] Further, the inner shell includes a first inner layer, a first outer layer and a first connecting pipe for connecting the first inner layer and the first outer layer. The first outer layer matches the shape of the first inner layer. A plurality of first ribs are arranged between the first inner layer and the first outer layer, and the first heat-insulating cotton is arranged between adjacent first ribs.
[0009] Further, the outer shell includes a second inner layer, a second outer layer, and a second connecting pipe for connecting the second inner layer and the second outer layer. The second connecting pipe extends to the lower end of the first connecting pipe; the second outer layer matches the shape of the second inner layer, and a number of second rib strips are provided between the second inner layer and the second outer layer. The second heat insulation cotton is arranged between adjacent two second rib strips.
[0010] Further, a first flange extending inward is provided in the first connecting pipe, and a second flange extending inward is provided at the lower end of the second connecting pipe. A number of third rib strips arranged in a circumferential array are provided between the first flange and the second flange, and third heat insulation cotton is arranged between adjacent two third rib strips.
[0011] Further, a third water inlet and a second water outlet are provided at the bottom of the outer shell. The second water outlet is arranged away from the third water inlet. The third water inlet is connected to the first water inlet pipe, and the second water outlet is connected to the first water outlet pipe.
[0012] Further, a third water inlet pipe is provided in the water storage cavity. The upper end of the third water inlet pipe extends to the upper part of the water storage cavity, and its lower end is connected to the third water inlet.
[0013] Further, the second water inlet is connected to a second water inlet pipe. A valve is provided on the second water inlet pipe, and a filter is connected to the end of the second water inlet pipe. The filter is externally connected to a water source.
[0014] Further, a second faucet is further included. The second faucet has a cold water end and a hot water end. The cold water end is connected to the second water inlet pipe through a fourth water inlet pipe, and the hot water end is connected to a water heater. The water heater is connected to an external water source.
[0015] Beneficial effects: The water basin for refrigerated water storage provided by the present utility model stores a certain amount of water in the water storage basin through the arrangement of the water storage cavity for use during a water outage; and a refrigerator is provided, which can cool the water in the water storage cavity. Users can use the ice water in the water storage cavity to wash their faces and hands to relieve the heat, and can also use the ice water to rinse the scalded area to reduce pain, which can meet the usage requirements of users. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the water basin for refrigerated water storage provided by the present utility model.
[0017] Figure 2 is Figure 1 an enlarged view of part A of
[0018] Figure 3 is a structural diagram of the water basin for refrigerated water storage provided by the present utility model.
[0019] Figure 4 is an exploded view of the inner shell in the water basin for refrigerated water storage provided by the present utility model.
[0020] Figure 5 Explosion diagram of the outer shell of the water basin for refrigerated water storage provided by the present utility model.
[0021] Figure 6 Schematic connection diagram of the display panel in the water basin for refrigerated water storage provided by the present utility model.
[0022] Description of main component symbols: frame body 1, water storage basin 2, water tank 21, water storage cavity 22, inner shell 23, first inner layer 231, first outer layer 232, first connecting pipe 233, first rib 234, first flange 235, outer shell 24, second inner layer 241, second outer layer 242, second connecting pipe 243, second rib 244, second flange 245, third rib 246, third water inlet 247, second water outlet 248, through slot 25, drainer 26, drainer body 261, first clamping block 262, second clamping block 263, third water inlet pipe 27, refrigerator 3, first water outlet pipe 31, first water pump 32, first water inlet pipe 33, second water inlet pipe 34, valve 35, first faucet 4, second water outlet pipe 41, second water pump 42, display panel 5, temperature sensor 6, first water level sensor 7, second water level sensor 8, filter 9, second faucet 10, fourth water inlet pipe 101, water heater 20. Detailed implementation manners
[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] Please refer to Figures 1-6, the present utility model provides a water basin for refrigerated water storage, which includes a frame body 1, a water storage basin 2, a refrigerator 3, a first faucet 4 and a display panel 5. A water trough 21 and a water storage cavity 22 are arranged in the water storage basin 2, and the water storage cavity 22 is located on the periphery of the water trough 21. The refrigerator 3 is provided with a first water outlet, a first water inlet and a second water inlet. The first water inlet is communicated with the water storage cavity 22 through a first water pipe 31, and a first water pump 32 is arranged on the first water pipe 31. The first water outlet is communicated with the water storage cavity 22 through a first water inlet pipe 33, and the second water inlet is externally connected to a water source; the first faucet 4 is arranged on the frame body 1, and the first faucet 4 is communicated with the water storage cavity 22 through a second water pipe 41, and a second water pump 42 is arranged on the second water pipe 41; a temperature sensor 6, a first water level sensor 7 and a second water level sensor 8 are arranged in the water storage cavity 22. The first water level sensor 7 is located above the second water level sensor 8. Specifically, the first water level sensor 7 is used to detect the highest water level in the water storage cavity 22, and the second water level sensor 8 is used to detect the lowest water level in the water storage cavity 22. The first water pump 32, the second water pump 42, the refrigerator 3, the temperature sensor 6, the first water level sensor 7 and the second water level sensor 8 are all electrically connected to the display panel 5.
[0025] During operation, the user can operate the display panel 5 to control the refrigeration temperature of the refrigerator 3. When the temperature sensor 6 detects that the temperature of the water in the water storage cavity 22 is higher than the preset temperature, the first water pump 32 pumps out the water in the water storage cavity 22, so that the water enters the refrigerator 3 through the first water pipe 31. After the refrigerator 3 cools the water, it then flows back to the water storage cavity 22 through the first water inlet pipe 33, so as to keep the temperature in the water storage cavity 22 within the preset temperature value, realizing the function of refrigerating the water in the water storage cavity 22.
[0026] In the case of a water cut-off, when the first faucet 4 is opened, the second water pump 42 starts. The second water pump 42 pumps out the ice water in the water storage cavity 22, and the ice water flows to the first faucet 4 through the second water pipe 41. The user can control the water output by controlling the switch on the first faucet 4, so that the user can use the ice water to wash the face and hands to achieve the purpose of eliminating the heat. In addition, when being scalded, the scalded part can also be rinsed with ice water; when skin care is needed, the facial mask can also be placed in the ice water to achieve the purpose of cold compress of the facial mask. Since there is no water source replenished into the water storage cavity 22 in the case of a water cut-off, when the second water level sensor 8 detects that the ice water in the water storage cavity 22 reaches the lowest water level, it means that the ice water in the water storage cavity 22 has been used up, and the refrigerator 3, the first water pump 32 and the second water pump 42 stop working.
[0027] When resuming water use, the external water source is supplemented to the refrigerator 3 through the second water inlet. After the refrigerator 3 cools the water, it is discharged into the water storage cavity 22. When the first water level sensor 7 detects that the ice water in the water storage cavity 22 reaches the highest water level, the external water source stops supplementing water to the refrigerator 3, and the first water pump 32 starts, so that the refrigerator 3 circulates and cools the ice water in the water storage cavity 22 to ensure that the temperature of the ice water in the water storage cavity 22 is maintained within the preset temperature value.
[0028] It should be noted that the ice water in the water storage cavity 22 can also be used without stopping the water supply.
[0029] In the above, a single-chip microcomputer is provided in the display panel 5 as the control main board, which can input signals according to predefined programs and logics, and then control each component. Touch buttons or physical buttons are also provided on the display panel 5 to realize the user operation function. The display panel 5 is a prior art, and its specific structure and working principle will not be elaborated here.
[0030] In the above, a refrigeration module is provided in the refrigerator 3, which can cool the water input into the refrigerator 3. The refrigerator 3 is a prior art, and its specific structure and working principle will not be elaborated here.
[0031] In a preferred embodiment, refer to Figure 1 , the water storage basin 2 includes an inner shell 23 and an outer shell 24. The inner shell 23 is recessed downward to form a water tank 21 for holding water; the water storage cavity 22 is located between the inner shell 23 and the outer shell 24. A first heat insulation cotton is provided in the inner shell 23, and a second heat insulation cotton is provided in the outer shell 24. The first heat insulation cotton and the second heat insulation cotton play a role in heat insulation and heat preservation, avoiding heat exchange between the ice water in the water storage cavity 22 and the outside world, thereby increasing the working load of the refrigerator 3. A through groove 25 is provided between the inner shell 23 and the outer shell 24. One end of the through groove 25 is communicated with the water tank 21, and the other end extends to the outside of the outer shell 24. A drainer 26 is installed in the through groove 25 for draining the water in the water tank 21.
[0032] In this embodiment, refer to Figure 4 , the inner shell 23 includes a first inner layer 231, a first outer layer 232, and a first connecting pipe 233 for connecting the first inner layer 231 and the first outer layer 232. The first connecting pipe 233 is used to communicate the water tank 21 and the water storage cavity 22, and the through groove 25 is located in the first connecting pipe 233; the first outer layer 232 matches the shape of the first inner layer 231, and several first rib strips 234 are provided between the first inner layer 231 and the first outer layer 232. Setting multiple first rib strips 234 can improve the structural strength of the inner shell 23, and the first heat insulation cotton is provided between adjacent two first rib strips 234, so that the inner shell 23 has the function of heat insulation and heat preservation.
[0033] Preferably, the first connecting pipe 233 is located in the middle of the inner shell 23, which is beneficial to empty the water in the water tank 21.
[0034] Further, referring to Figure 5 , the outer shell 24 includes a second inner layer 241, a second outer layer 242 and a second connecting pipe 243 for connecting the second inner layer 241 and the second outer layer 242. The second connecting pipe 243 extends to the lower end of the first connecting pipe 233. The second connecting pipe 243 is used to communicate the water outlet cavity and the outside of the second outer layer 242. The first connecting pipe 233 and the second connecting pipe 243 form a through groove 25 to discharge the water in the water tank 21; the second outer layer 242 matches the shape of the second inner layer 241. There are several second rib strips 244 between the second inner layer 241 and the second outer layer 242. Arranging multiple second rib strips 244 can improve the structural strength of the outer shell 24. The second heat insulation cotton is arranged between adjacent two second rib strips 244, so that the outer shell 24 has the function of heat insulation and heat preservation.
[0035] Furthermore, referring to Figure 2 , 5 , a first flange 235 extending inward is provided in the first connecting pipe 233, and a second flange 245 extending inward is provided at the lower end of the second connecting pipe 243. The first flange 235 and the second flange 245 cooperate to install the drainer 26. Among them, the drainer 26 is a prior art, and its specific structure and working principle will not be elaborated. The drainer 26 includes a drainer body 261, a first clamping block 262 provided on the upper part of the drainer body 261, and a second clamping block 263 threadedly connected to the drainer body 261. The first flange 235 is used to support the first clamping block 262, and the second flange 245 abuts against the second clamping block 263 to realize the stable installation of the drainer 26.
[0036] There are several third rib strips 246 arranged in a circumferential array between the first flange 235 and the second flange 245. The third heat insulation cotton is arranged between adjacent two third rib strips 246. Arranging multiple third rib strips 246 can improve the structural strength of the first connecting pipe 233 and the second connecting pipe 243, and further improve the connection stability between the inner shell 23 and the outer shell 24. And the third heat insulation cotton is provided to improve the heat insulation and heat preservation effect of the second connecting pipe 243, and avoid heat exchange between the ice water in the water storage cavity 22 and the drainer 26.
[0037] In a preferred embodiment, referring to Figure 1 , 5, a third water inlet 247 and a second water outlet 248 are provided at the bottom of the outer shell 24. The second water outlet 248 is arranged away from the third water inlet 247. The third water inlet 247 is connected to the first water inlet pipe 33, and the second water outlet 248 is connected to the first water outlet pipe 31. Through the above settings, the distance between the ice water discharged from the refrigerator 3 and the water to be cooled in the refrigerator 3 is increased, so as to facilitate the mixing of the ice water and the water in the water storage cavity 22.
[0038] Further, referring to Figure 1 , a third water inlet pipe 27 is provided in the water storage cavity 22. The upper end of the third water inlet pipe 27 extends to the upper part of the water storage cavity 22, and its lower end is connected to the third water inlet 247. According to the phenomenon that the water with higher temperature rises and the water with lower temperature sinks, the third water inlet pipe 27 is arranged to be able to discharge the ice water discharged from the refrigerator 3 to the top of the water storage cavity 22. When the ice water with lower temperature flows downward, the mixing efficiency of the ice water and the water in the water storage cavity 22 is further improved.
[0039] In a preferred embodiment, referring to Figure 1 , the second water inlet is connected to a second water inlet pipe 34. A valve 35 is provided on the second water inlet pipe 34. The end of the second water inlet pipe 34 is connected to a filter 9. The filter 9 is externally connected to a water source, and the filter 9 can play a role in purifying water. The valve 35 is electrically connected to the display panel 5, and the clean water is controlled to enter the refrigerator 3 by controlling the valve 35.
[0040] Further, referring to Figure 1 , it further includes a second faucet 10. The second faucet 10 is provided with a cold water end and a hot water end. The cold water end is connected to the second water inlet pipe 34 through a fourth water inlet pipe 101, and the hot water end is connected to a water heater 20. The water heater 20 is connected to an external water source. In addition, the water heater 20 can also be connected to the second water inlet pipe 34 to improve the quality of the water entering the water heater 20, and further ensure the quality of the water for users. The user can control the switch of the second faucet 10 to control the output of normal temperature water, hot water, and the water consumption of the second faucet 10.
[0041] By providing the first faucet 4 and the second faucet 10, users can select water with multiple temperatures; and a water storage cavity 22 is provided in the water storage basin 2, which does not affect water use during a water cut-off state, can meet the use needs of different users, and can be used in various scenarios such as family bathrooms, kitchens, and medical use.
[0042] It can be understood that for those of ordinary skill in the art, equivalent substitutions or changes can be made according to the technical solutions and the inventive concept of the present invention, and all such changes or substitutions should fall within the protection scope of the present invention.
Claims
1. A water basin for refrigerated water storage, characterized in that, It includes a frame body, a water storage basin, a refrigerator, a first faucet and a display panel. A water tank and a water storage cavity are provided in the water storage basin, and the water storage cavity is located outside the water tank. The refrigerator is provided with a first water outlet, a first water inlet and a second water inlet. The first water inlet is communicated with the water storage cavity through a first water outlet pipe, and a first water pump is arranged on the first water outlet pipe. The first water outlet is communicated with the water storage cavity through a first water inlet pipe, and the second water inlet is externally connected to a water source; the first faucet is arranged on the frame body, and the first faucet is communicated with the water storage cavity through a second water outlet pipe, and a second water pump is arranged on the second water outlet pipe; a temperature sensor, a first water level sensor and a second water level sensor are arranged in the water storage cavity. The first water level sensor is located above the second water level sensor. The first water pump, the second water pump, the refrigerator, the temperature sensor, the first water level sensor and the second water level sensor are all electrically connected to the display panel.
2. The water basin for refrigerated water storage according to claim 1, wherein The water storage basin includes an inner shell and an outer shell. The inner shell is recessed downward to form a water tank, and the water storage cavity is located between the inner shell and the outer shell. A first heat insulation cotton is arranged in the inner shell, and a second heat insulation cotton is arranged in the outer shell; a through groove is arranged between the inner shell and the outer shell. One end of the through groove is communicated with the water tank, and the other end extends to the outside of the outer shell. A drainer is installed in the through groove.
3. The water basin for refrigerated water storage according to claim 2, wherein, The inner shell includes a first inner layer, a first outer layer and a first connecting pipe for connecting the first inner layer and the first outer layer. The first outer layer matches the shape of the first inner layer. A plurality of first rib strips are arranged between the first inner layer and the first outer layer, and the first heat insulation cotton is arranged between adjacent two first rib strips.
4. The water basin for refrigerated water storage according to claim 3, wherein, The outer shell includes a second inner layer, a second outer layer and a second connecting pipe for connecting the second inner layer and the second outer layer. The second connecting pipe extends to the lower end of the first connecting pipe; the second outer layer matches the shape of the second inner layer. A plurality of second rib strips are arranged between the second inner layer and the second outer layer, and the second heat insulation cotton is arranged between adjacent two second rib strips.
5. The water basin for refrigerated water storage according to claim 4, characterized in that, A first flange extending inward is arranged in the first connecting pipe, and a second flange extending inward is arranged at the lower end of the second connecting pipe. A plurality of third rib strips arranged in a circumferential array are arranged between the first flange and the second flange, and a third heat insulation cotton is arranged between adjacent two third rib strips.
6. The water basin for refrigerated water storage according to claim 2, characterized in that, A third water inlet and a second water outlet are arranged at the bottom of the outer shell. The second water outlet is arranged away from the third water inlet. The third water inlet is connected to the first water inlet pipe, and the second water outlet is connected to the first water outlet pipe.
7. The water basin for refrigerated water storage according to claim 6, characterized in that, A third water inlet pipe is arranged in the water storage cavity. The upper end of the third water inlet pipe extends to the upper part of the water storage cavity, and the lower end thereof is connected to the third water inlet.
8. The water basin for refrigerated water storage according to claim 1, wherein, The second water inlet is connected with a second water inlet pipe. A valve is arranged on the second water inlet pipe, and a filter is connected to the end of the second water inlet pipe. The filter is externally connected to a water source.
9. The water basin for refrigerated water storage according to claim 8, characterized in that, It further includes a second faucet. The second faucet is provided with a cold water end and a hot water end. The cold water end is connected to the second water inlet pipe through a fourth water inlet pipe, and the hot water end is connected with a water heater. The water heater is connected to an external water source.