Water collection box and water purifier
By incorporating wing plates and anti-slip grooves on the water dispenser's water collection box, combined with magnetic connections and a water level detection device, the problem of users' fingers touching the water accumulation area when pouring water is solved, achieving a more comfortable and stable grip and intelligent water accumulation management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GREE ELECTRIC APPLIANCE INC OF ZHUHAI
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-03
AI Technical Summary
The current design of the water dispenser's water tray surface makes it easy for users' fingers to come into contact with the water accumulation area when pouring water, requiring them to wipe their fingers after pouring, resulting in a poor user experience.
The water collection box is equipped with wing plates. The gripping part of the wing plates has a rounded chamfered structure and anti-slip grooves. Combined with the magnetic connection method, it improves the stability and convenience of holding. It is also equipped with a water level detection device and a timer to prevent water accumulation.
The rounded chamfered structure and anti-slip groove design reduce the contact between fingers and water accumulation areas, improving grip and stability, preventing slippage, and combined with intelligent water level detection and timing reminders, it avoids water accumulation, enhances user experience and device intelligence.
Smart Images

Figure CN224441045U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of household appliance technology, specifically to a water receiving box and a water purifier. Background Technology
[0002] Currently, most water dispenser trays have a flat or simple curved surface, requiring users to directly touch the surface when removing the tray. To prevent the tray from slipping from their hands, users need to place their fingers under the water to improve grip when pouring water.
[0003] Therefore, when users pour water, their fingers are likely to come into contact with the water accumulation area, requiring them to wipe their fingers afterward, resulting in a poor user experience. Utility Model Content
[0004] In view of this, this application provides a water receiving box and a water purifier to solve the technical problem in the prior art where users' fingers easily come into contact with the water accumulation area when pouring water, requiring users to wipe their fingers after pouring.
[0005] In a first aspect, this application provides a water receiving box, which includes:
[0006] The box body is equipped with a water receiving cavity;
[0007] A wing plate is provided on at least one side of the box body; a portion of the wing plate is recessed to form a gripping part, which is suitable for fingers to be inserted and pressed; the bottom surface of the gripping part has a rounded chamfered structure, which matches the shape of the fingers;
[0008] Anti-slip grooves are provided at the bottom of the gripping part; the extension direction of the anti-slip grooves has a certain angle with the insertion direction of the fingers.
[0009] Beneficial Effects: This embodiment features a wing plate on the water container, allowing users to easily remove the container by simply grasping the wing plate. The wing plate's extended length facilitates gripping, eliminating the need for users to extend their fingers into the water-filled area for better handling and preventing finger contact with the water. This also eliminates the need to wipe fingers after emptying. Furthermore, the wing plate incorporates a rounded chamfered structure, enhancing grip and comfort. Compared to a flat structure, the rounded chamfered structure provides a more comfortable grip. Additionally, the bottom of the gripping area features an anti-slip groove. The angle between the groove's extension direction and the finger's insertion direction increases friction between the finger and the gripping area, reducing the risk of slippage.
[0010] In one alternative implementation, the wing plate includes a first wing plate disposed on the side of the housing away from the water purifier.
[0011] Beneficial effects: This embodiment features only one first wing plate, forming a single-wing plate structure. Positioning the first wing plate on the side furthest from the water purifier increases its overall width, thereby increasing the gripping surface and improving the user's gripping experience, making it more stable. Furthermore, the single-wing plate structure allows for convenient installation by magnetically attaching the container after water is poured in.
[0012] In one alternative embodiment, the wing includes a second wing disposed on opposite sides of the housing.
[0013] Beneficial effects: In this embodiment, the wing plate is set as two second wing plates to form a double-wing structure. When the user takes out the water box, he / she can directly use both hands to grasp the corresponding second wing plate on each side, thereby increasing the stability of the user when grasping.
[0014] In one alternative embodiment, the box body is provided with both a first wing plate and a second wing plate.
[0015] Beneficial effects: This embodiment is equipped with both a first wing plate and a second wing plate. When it is necessary to invert the water box to collect the water, the user can choose to hold it with one hand or two hands according to the actual situation, which improves the user experience.
[0016] In one alternative implementation, the first wing and the second wing are connected to form an integral structure.
[0017] Beneficial effects: In this embodiment, the first wing plate and the second wing plate are integrated into a single structure, which can increase the overall structural strength of the first wing plate and the second wing plate. When the water box is taken out to pour water, the pressure on the user's gripping position can be distributed in time, thereby avoiding the first wing plate and the second wing plate from breaking after long-term use.
[0018] In one optional embodiment, the water receiving box further includes:
[0019] A water level detection device is installed inside the housing; the water level detection device is used to detect the actual water level inside the housing.
[0020] A timer connected to a water level detection device.
[0021] Beneficial effects: This embodiment includes a water level detection device to monitor the actual water level in the container. When the actual water level is high, a timer automatically starts. If the user has not emptied the water from the container within a certain time, the timer will issue a reminder to ensure timely emptying and prevent bacterial growth due to prolonged water accumulation. When the actual water level falls below a preset value, the timer is reset and turned off.
[0022] In one optional embodiment, the water receiving box further includes:
[0023] The control module is communicatively connected to the water level detection device and the timer; the control module is also suitable for communicatively connecting to a terminal.
[0024] Beneficial effects: This embodiment connects the control module to the terminal, allowing users to understand the actual water level in the water collection box in a timely manner. Users can then choose to empty the water in the collection box at an appropriate time according to their needs, avoiding the risk of forgetting and causing bacterial growth due to prolonged water accumulation.
[0025] In one alternative implementation, the control module is used for wireless communication with the terminal.
[0026] Beneficial effects: This embodiment connects the control module and the terminal wirelessly, allowing users to remotely monitor the water level in the water collection box through the terminal, enabling intelligent management of the water collection box and further improving the convenience and intelligence of use.
[0027] In one alternative embodiment, the water level detection device is a pressure sensor, which is disposed on the bottom surface inside the housing.
[0028] Beneficial effects: In this embodiment, the water level detection device is a pressure sensor. Because pressure sensors have high sensitivity, installing them at the bottom of the water collection box allows for better monitoring of the water accumulation inside. Furthermore, placing the pressure sensor in a corner of the bottom of the water collection box further improves detection accuracy, as corners are less susceptible to environmental influences.
[0029] In one alternative implementation, the water level detection device is activated periodically.
[0030] Beneficial effects: This embodiment activates the water level detection device periodically, for example, every 1 hour, 2 hours, 3 hours, etc., thereby significantly reducing the overall power consumption of the water purifier. Users can adjust the specific operating cycle according to actual usage, improving the user experience.
[0031] Secondly, this application provides a water purifier, which includes a water receiving box as described in any of the above embodiments. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the specific embodiments of this application or the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0033] Figure 1 A schematic diagram of the structure of the box body in this application with two second wing plates;
[0034] Figure 2 for Figure 1 A partial structural diagram of part A shown;
[0035] Figure 3 A schematic diagram of the structure of the box body in this application with a single first wing plate;
[0036] Figure 4 This is a perspective view of the interior of the box in this application.
[0037] Explanation of reference numerals in the attached figures:
[0038] 1. Box body; 11. Water receiving cavity; 12. Water level detection device;
[0039] 2. First wing plate; 3. Second wing plate; 4. Grip part; 5. Anti-slip groove. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0041] In the description of this application, it should be noted that the terms "inner," "upper," "outer," "lower," "underneath," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0042] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "communication" should be interpreted broadly. For example, they can refer to fixed communication, detachable communication, or integral communication; they can refer to mechanical communication or electrical communication; they can refer to direct connection or indirect connection through an intermediate medium; they can refer to communication within two components; and they can refer to wireless communication or wired communication. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0043] Currently, most water dispenser trays have a flat or simple curved surface, requiring users to directly touch the tray when removing it from the dispenser. To prevent the tray from slipping from their hands, users need to extend their fingers into the water-filled area for better grip. Consequently, users' fingers easily come into contact with the water-filled area while pouring, necessitating wiping their fingers afterward, resulting in a poor user experience.
[0044] In view of this, this application provides a water receiving box and a water purifier to solve the technical problem in the prior art where users' fingers easily come into contact with the water accumulation area when pouring water, requiring users to wipe their fingers after pouring.
[0045] The following is combined Figures 1 to 4 This describes an embodiment of the present application.
[0046] like Figures 1 to 4 As shown in the embodiments of this application, in one aspect, this application provides a water receiving box, which includes a box body 1, a wing plate, and an anti-slip groove 5.
[0047] Specifically, in this embodiment, the inside of the box 1 is provided with a water receiving cavity 11. In actual use, when water is spilled from the water purifier, the water can flow directly from the water receiving hole into the water receiving cavity 11, so that the water receiving cavity 11 can collect the spilled water.
[0048] Furthermore, in this embodiment, the wing plates are disposed on at least one side of the box body 1. That is, the wing plates can be disposed on the front side, the left side, the rear side, or the right side of the box body 1. Of course, one, two, three, or four wing plates can also be disposed in total. Each side can also be disposed on one, two, three, or four wing plates, etc. This embodiment is merely an example illustrating the placement and number of wing plates, but it does not limit the scope. Those skilled in the art can modify it according to actual circumstances, as long as the same technical effect is achieved.
[0049] Furthermore, in this embodiment, a portion of the wing plate is recessed to form a gripping part 4, which is suitable for finger insertion and pressing. The bottom surface of the gripping part 4 has a rounded chamfered structure, which matches the shape of the finger, making the rounded chamfered structure a biomimetic structure that fits the finger. The width of the gripping part 4 can be set to 2 to 3 times the diameter of the fingertip.
[0050] The structure of the gripping part 4 can be either a recess for pressing with a finger or an insertion hole for inserting a finger. Of course, this embodiment is merely an example of the structure of the gripping part 4, and is not intended to limit it. Those skilled in the art can make changes according to actual circumstances, as long as the same technical effect is achieved.
[0051] Furthermore, in this embodiment, the anti-slip groove 5 is provided at the bottom of the gripping part 4, and the extending direction of the anti-slip groove 5 has a certain angle with the insertion direction of the finger. Regarding the specific parameters of the anti-slip groove 5, the depth of each anti-slip groove 5 is between 0.8mm and 1.2mm.
[0052] In this embodiment, a wing plate is provided on the body 1 of the water receiving box, allowing the user to directly grasp the wing plate to remove the water receiving box. Because the wing plate has a certain extension length, it is easy for the user to grip, eliminating the need to extend fingers into the water accumulation area for a better grip. This prevents the user's fingers from contacting the water accumulation area, thus eliminating the need to wipe fingers after emptying. Furthermore, this embodiment features a rounded chamfer structure on the wing plate, which enhances the grip and makes it more comfortable for the user. Compared to a flat structure, the rounded chamfer structure provides a better grip. Additionally, this embodiment has an anti-slip groove 5 at the bottom of the gripping part 4. Since the extension direction of the anti-slip groove 5 forms an angle with the insertion direction of the fingers, it increases the friction between the fingers and the gripping part 4, reducing the risk of slippage.
[0053] Furthermore, in this embodiment, the water receiving box can be made of ABS-121 material, which has good heat resistance and impact resistance. This material is not only durable but also easy to clean, suitable for long-term use, and also has a certain degree of flexibility, which can resist external impacts to a certain extent and extend its service life.
[0054] Furthermore, in an optional embodiment, the wing plate includes a first wing plate 2, which is disposed on the side of the housing 1 away from the water purifier. The first wing plate 2 can be trapezoidal in shape, with its longest bottom edge coinciding with the side edge of the housing 1 and its shortest top edge located on the side away from the water purifier.
[0055] With this configuration, this embodiment uses only one first wing plate 2, forming a single-wing plate structure. Positioning the first wing plate 2 on the side furthest from the water purifier increases its overall width, thereby increasing the gripping surface and improving the user's gripping experience, making it more stable. Furthermore, with this single-wing plate structure, the box body 1 can be directly and magnetically attached to the water purifier after pouring water, making installation more convenient.
[0056] The water tray connects to the water purifier via a magnetic closure, allowing for quick and easy installation and removal, meeting user convenience needs. The magnetic connection not only facilitates disassembly and cleaning but also effectively prevents the water tray from accidentally falling off, ensuring safety during use. Furthermore, the magnetic connection reduces mechanical wear and extends the lifespan of the water tray.
[0057] Furthermore, in an optional embodiment, the wing plate includes a second wing plate 3, which is disposed on opposite sides of the box body 1. Specifically, the second wing plate 3 can also be configured as a trapezoidal structure, with its longest bottom edge coinciding with the side edge of the box body 1 and its shortest top edge located on the side away from the box body 1.
[0058] With this configuration, the wing plate in this embodiment is set as two second wing plates 3, forming a double-wing structure. When the user takes out the water box, he / she can directly use both hands to grasp the corresponding second wing plate 3 on each side, thereby increasing the stability of the user when grasping.
[0059] Furthermore, in an optional embodiment, the container 1 is provided with both a first wing plate 2 and a second wing plate 3. That is, the first wing plate 2 is located on the side of the container 1 away from the water purifier, and the two second wing plates 3 are located on opposite sides of the container 1. When using the container, the user can either use one hand to hold the first wing plate 2 to remove the water container, or use both hands to hold the second wing plates 3 to remove the water container.
[0060] Of course, the wing plate and the box body 1 can be fixed using a fixed connection method, such as bonding or welding. A detachable connection method can also be used. This can be achieved using screws and screw holes, clips and slots, or magnetic attraction.
[0061] The following provides examples of detachable connection methods. For instance, additional fixing plates can be provided on both sides of the box body 1. Those skilled in the art can change the number of fixing plates according to actual needs, such as 1, 2, 3, 4, etc. Screw holes are then made on the fixing plates, and another screw hole is made on the wing plate at the corresponding screw hole position. Then, the box body 1 is connected to the wing plate using screws. Furthermore, when using a snap-fit and slot method for fixing, snap-fit can be additionally provided on the box body 1. Those skilled in the art can change the number of snap-fit according to actual needs, such as 1, 2, 3, 4, etc. Then, slots that can cooperate with the snap-fit are made on the wing plate at the corresponding snap-fit positions. Then, the snap-fit on the box body 1 is directly inserted into the slots on the wing plate, thereby connecting the box body 1 to the wing plate. When fixing by magnetic attraction, a magnetic sheet can be additionally set on the box body 1. Those skilled in the art can change the number of magnetic sheets according to the actual situation, such as 1, 2, 3, 4, etc. Then, a magnetic sheet of opposite shape that can attract the magnetic sheet is made on the wing plate at the position corresponding to the magnetic sheet. Then, the magnetic sheet on the box body 1 is directly aligned with the magnetic sheet of opposite shape embedded in the wing plate, thereby magnetically connecting the box body 1 and the wing plate.
[0062] Of course, this embodiment is merely an example of a detachable connection method, but it does not limit the scope of the invention. Those skilled in the art can make changes according to the actual situation to achieve the same technical effect.
[0063] With this configuration, this embodiment includes both a first wing plate 2 and a second wing plate 3. When it is necessary to invert the water tank to collect accumulated water, the user can choose to hold it with one hand or two hands according to the actual situation, thus improving the user experience.
[0064] Furthermore, in one optional embodiment, the first wing plate 2 and the second wing plate 3 are connected to form an integral structure. That is, the first wing plate 2 and the second wing plate 3 are integrally molded by injection molding. Of course, the box body 1, the first wing plate 2 and the second wing plate 3 can also be integrally molded by injection molding, which can improve the overall structural strength of the water receiving box.
[0065] In actual use, users can freely hold either part of the first wing plate 2 and the second wing plate 3, avoiding situations where a wing plate is blocked by external objects, making it impossible to remove. Furthermore, since the first wing plate 2 and the second wing plate 3 are a single integrated structure, there is no risk of breakage due to structural weakness.
[0066] With this configuration, the first wing plate 2 and the second wing plate 3 are integrated into one structure, which can increase the overall structural strength of the first wing plate 2 and the second wing plate 3. When the water box is taken out to pour water, the pressure on the user's gripping position can be distributed in time, thereby avoiding the first wing plate 2 and the second wing plate 3 from breaking after long-term use.
[0067] Furthermore, in an alternative embodiment, the water receiving box also includes a water level detection device 12 and a timer.
[0068] Specifically, in this embodiment, a water level detection device 12 is installed in the housing 1, and the water level detection device 12 is used to detect the actual water level in the housing 1. A timer is connected to the water level detection device 12.
[0069] In actual operation, users can set the warning water level line in box 1. For example, the warning water level line can be set at 2mm. When the water level detection device 12 detects that the actual water level in box 1 is higher than the warning water level line, it indicates that there is a lot of water accumulation, and the user needs to clean it up promptly. At this time, the timer also starts simultaneously. If the actual water level exceeds the warning water level line for a certain period of time, the timer will remind the user to clean the water. After the user cleans the water, if the actual water level is lower than the warning water level line, the timer will reset to zero and turn off. Users can also adjust the warning water level line according to their actual needs.
[0070] Of course, the duration of the timer can be 5 hours, 8 hours, 10 hours, 12 hours, 15 hours, 20 hours, 24 hours, etc. This embodiment is merely an example of the duration, but it does not limit the duration. Those skilled in the art can adjust the duration of the timer according to the actual situation to meet the user's actual needs.
[0071] Furthermore, users can also adjust the duration of the timer to suit their specific needs.
[0072] With this configuration, this embodiment includes a water level detection device 12, which can detect the actual water level in the container 1. When the actual water level is high, the timer automatically starts. If the user has not emptied the water from the container after a certain period of time, the timer will issue a reminder to remind the user to empty the water in time to prevent bacterial growth caused by prolonged water accumulation. When the actual water level falls below a preset value, the timer is reset to zero and turned off.
[0073] Furthermore, in an optional embodiment, the water receiving box also includes a control module, which is communicatively connected to the water level detection device 12 and the timer. The control module is adapted to communicate with a terminal. The control module can be wired or wirelessly connected to the terminal. The terminal can be a display device installed on the water purifier, or a user's mobile phone, laptop, tablet, desktop computer, or other similar device. In this way, the user can check the working status of the water receiving box at any time.
[0074] When installing a display device onto a water purifier, it can be fixed using methods such as bonding or welding. Alternatively, a detachable connection can be used, employing screws and screw holes, clips and slots, or magnetic attraction.
[0075] The following are examples of detachable connection methods. For instance, a mounting bracket can be installed on the display device, with additional fixing plates on the bracket. Those skilled in the art can vary the number of fixing plates according to actual needs (one, two, three, four, etc.). Screw holes are then made on the fixing plates, and another screw hole is made on the water purifier at the corresponding screw hole position. The water purifier is then connected to the fixing plate using screws. Alternatively, when using a snap-fit and slot method for fixation, snap-fits can be additionally installed on the water purifier. Those skilled in the art can vary the number of snap-fits according to actual needs (one, two, three, four, etc.). Slots that can cooperate with the snap-fits are then made on the mounting bracket of the display device at the corresponding snap-fit positions. The snap-fits on the water purifier are then directly inserted into the slots of the mounting bracket, thereby connecting the water purifier to the pressure sensor. When fixing using magnetic attraction, an additional magnetic sheet can be set on the water purifier. Those skilled in the art can change the number of magnetic sheets according to the actual situation, such as 1, 2, 3, 4, etc. Then, on the mounting bracket of the pressure sensor, a magnetic sheet of opposite polarity that can attract the magnetic sheet is made at the position corresponding to the magnetic sheet. Then, the magnetic sheet on the water purifier is directly aligned with the magnetic sheet of opposite polarity embedded on the pressure sensor, thereby magnetically connecting the water purifier and the pressure sensor.
[0076] Of course, this embodiment is merely an example of a detachable connection method, but it does not limit the scope of the invention. Those skilled in the art can make changes according to the actual situation to achieve the same technical effect.
[0077] Of course, this embodiment is merely an example of terminal types, but it does not limit the scope of the embodiment. Those skilled in the art can make adjustments according to the actual situation to meet the actual needs of users.
[0078] With this configuration, the control module is connected to the terminal for communication, allowing users to understand the actual water level in the water collection box on the terminal in a timely manner. Users can then choose to empty the water in the water collection box at an appropriate time according to their own needs, avoiding the situation where users forget to empty it and cause bacterial growth due to prolonged water accumulation.
[0079] Furthermore, in an optional implementation, the control module is used for wireless communication with the terminal. The wireless communication method can be Bluetooth or a network communication connection. In actual use, users can download a dedicated application to the terminal to view the water purifier's operating status, allowing them to remotely monitor the water purifier's status in real time and thus understand the water level in the water collection box.
[0080] With this configuration, the control module is wirelessly connected to the terminal, allowing users to remotely monitor the water level in the water collection box via the terminal. This enables intelligent management of the water collection box, further improving its ease of use and intelligence.
[0081] Furthermore, in an optional embodiment, the water level detection device 12 is a pressure sensor, which is disposed on the bottom surface inside the housing 1.
[0082] Of course, the pressure sensor and housing 1 can be fixed using a fixed connection method, such as bonding or welding. A detachable connection method can also be used, employing screws and screw holes, clips and slots, or magnetic attraction.
[0083] The following provides an example of a detachable connection method. For instance, a mounting bracket can be fitted onto the pressure sensor, with an additional fixing plate on the bracket. Those skilled in the art can vary the number of fixing plates according to actual needs (one, two, three, four, etc.). Screw holes are then made on the fixing plates, and another screw hole is made on the bottom of the housing at the corresponding screw hole position, ensuring the screw hole does not penetrate the housing. The housing 1 is then connected to the fixing plate using screws. Alternatively, when using a snap-fit and slot method for fixation, snap-fits can be added to the housing 1. Those skilled in the art can vary the number of snap-fits according to actual needs (one, two, three, four, etc.). A slot is then made on the pressure sensor mounting bracket at the corresponding snap-fit position to engage with the snap-fit. The snap-fits on the housing 1 are then directly inserted into the slots of the mounting bracket, thereby connecting the housing 1 to the pressure sensor. When fixing by magnetic attraction, a magnetic sheet can be additionally set on the housing 1. Those skilled in the art can change the number of magnetic sheets according to the actual situation, such as 1, 2, 3, 4, etc. Then, on the mounting bracket of the pressure sensor, a magnetic sheet of opposite shape that can attract the magnetic sheet is made at the position corresponding to the magnetic sheet. Then, the magnetic sheet on the housing 1 is directly aligned with the magnetic sheet of opposite shape embedded in the pressure sensor, thereby magnetically connecting the housing 1 and the pressure sensor.
[0084] Of course, this embodiment is merely an example of a detachable connection method, but it does not limit the scope of the invention. Those skilled in the art can make changes according to the actual situation to achieve the same technical effect.
[0085] With this configuration, the water level detection device 12 in this embodiment is a pressure sensor. Because pressure sensors have high sensitivity, installing them at the bottom of the water receiving box allows for better monitoring of the water accumulation inside the box 1. Furthermore, the pressure sensor can be placed in a corner at the bottom of the water receiving box, as corners are less susceptible to environmental influences, further improving detection accuracy.
[0086] Furthermore, in an optional implementation, the water level detection device 12 operates periodically. In this embodiment, to further optimize system power consumption, the pressure sensor can be set to operate once every 5 hours. This strategy not only significantly reduces overall power consumption but also allows for a certain error range, such as 10 hours, while ensuring normal system operation. Despite this error range, the water level detection device 12 can still reliably monitor water level changes, ensuring that the cleanliness of the water collection box is not affected.
[0087] With this configuration, the water level detection device 12 will be activated periodically in this embodiment, for example, every 1 hour, 2 hours, 3 hours, etc., thereby significantly reducing the overall power consumption of the water purifier. Users can adjust the specific operating cycle according to actual usage, improving the user experience.
[0088] Secondly, this application provides a water purifier, which includes a water receiving box as described in any of the above embodiments.
[0089] Although embodiments of this application have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of this application, and all such modifications and variations fall within the scope defined by the appended claims.
Claims
1. A water receptacle, characterized in that include: The box body (1) is provided with a water receiving cavity (11); A wing plate is provided on at least one side of the box body (1); a portion of the wing plate is recessed to form a gripping part (4), which is suitable for fingers to be inserted and pressed; the bottom surface of the gripping part (4) has a rounded chamfer structure, which matches the shape of the fingers; An anti-slip groove (5) is provided at the bottom of the gripping part (4); the extending direction of the anti-slip groove (5) has a certain angle with the insertion direction of the finger.
2. The water receptacle of claim 1, wherein, The wing plate includes a first wing plate (2), which is disposed on the side of the box body (1) away from the water purifier.
3. The water receptacle of claim 1, wherein, The wing plate includes a second wing plate (3), which is disposed on opposite sides of the box body (1).
4. The water receptacle of claim 1, wherein, The box body (1) is provided with a first wing plate (2) and a second wing plate (3).
5. The water receptacle of claim 4, wherein, The first wing plate (2) and the second wing plate (3) are connected to form an integral structure.
6. The water receptacle according to any one of claims 1 to 5, characterized in that The water collection box also includes: A water level detection device (12) is installed in the housing (1); the water level detection device (12) is used to detect the actual water level in the housing (1); A timer is connected to the water level detection device (12).
7. The water receptacle of claim 6, wherein, The water collection box also includes: The control module is communicatively connected to the water level detection device (12) and the timer; the control module is adapted to communicate with a terminal.
8. The water receptacle of claim 7, wherein, The control module is used for wireless communication connection with the terminal.
9. The water receptacle according to claim 7 or 8, characterized in that The water level detection device (12) is a pressure sensor, which is located on the bottom surface inside the box (1).
10. A net pot machine characterized by, include: The water receiving box as described in any one of claims 1 to 9.