Humidification assembly and refrigeration equipment
By introducing an overflow trough design into the humidification component, the problem of water overflow when the refrigeration equipment shakes or tilts is solved, protecting the fan, ensuring the normal operation of the humidification function, and improving the stability and safety of the equipment.
Patent Information
- Application Number
- CN202520107715.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Existing refrigeration equipment is prone to damage when water overflows into the fan through the air outlet when shaken, tilted, or when the user disturbs the water in the water tank.
A humidification component was designed, including a tank, a humidification module and an overflow tank. The height of the overflow tank opening is higher than the bottom wall of the tank but not higher than the air outlet. When liquid overflows, it first flows into the overflow tank and is drained away, avoiding direct entry into the air outlet.
It effectively protects the fan, ensures the normal operation of the humidification function, prevents liquid overflow from damaging the fan, and improves the stability and safety of the refrigeration equipment.
Smart Images

Figure CN223678062U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to refrigeration equipment technical field, especially humidifying subassembly and refrigeration equipment. BACKGROUND
[0002] In the related art, a humidifying subassembly is arranged in a storage compartment of a refrigeration equipment, and a fan is arranged inside the humidifying subassembly, the fan discharges the humidity above a water tank to the storage compartment through a air supply opening, so as to realize a humidifying function, when the refrigeration equipment is shaken, tilted or a user stirs the water in the water tank, the water in the water tank is easy to overflow into the fan through the air supply opening and cause damage to the fan. SUMMARY
[0003] The utility model discloses at least one of the technical problems in the prior art is solved, for this purpose, the utility model provides a humidifying subassembly, can improve the problem that humidifying subassembly causes liquid to overflow into the fan through the air supply opening because of the refrigeration equipment is shaken, tilted or the user stirs the liquid in the tank body.
[0004] The utility model further provides a refrigeration equipment with the humidifying subassembly.
[0005] According to the humidifying subassembly of the first aspect embodiment of the utility model, the tank body is placed liquid, the humidifying module includes the base and the fan, the base is equipped with the installation groove and the air supply opening, the fan is located in the installation groove, the air supply opening is connected with the installation groove, and towards the tank body, the overflow tank is arranged between the tank body and the air supply opening, the height of the tank mouth of the overflow tank is higher than the height of the bottom wall of the tank body, and is not higher than the height of the air supply opening.
[0006] According to the humidifying subassembly of the utility model embodiment, at least has following beneficial effect: when normal operation, the fan sends out the airflow through the air supply opening, because the height of the tank mouth of the overflow tank is not higher than the height of the air supply opening, so as to not shield the airflow that flows from the air supply opening, the airflow that flows from the air supply opening will cross the overflow tank and pass through the tank body, the liquid in the tank body contacts the airflow that the fan blows, so as to produce high humidity gas, high humidity gas will flow into the storage compartment, so as to increase the humidity of the storage compartment, realize humidifying function, when the refrigeration equipment is shaken, tilted or the user stirs the liquid in the tank body, if the liquid in the tank body overflows towards the air supply opening, the liquid will flow into the overflow tank first and be discharged, so that the liquid is difficult to flow to the fan through the air supply opening, and the fan is protected.
[0007] According to some embodiments of the present application, the overflow groove is located at the top of the overflow groove, the overflow groove comprises a first side wall and a second side wall, the first side wall and the second side wall are arranged along the arrangement direction of the groove body and the humidifying module, the first side wall is located at the side of the second side wall close to the fan, and the height of the first side wall is higher than the height of the second side wall.
[0008] According to some embodiments of the present application, the overflow groove comprises a connecting rib, one side of the connecting rib is connected with the first side wall, and the other side of the connecting rib is connected with the second side wall.
[0009] According to some embodiments of the present application, the number of the connecting ribs is multiple, the arrangement direction of the groove body and the humidifying module is a first direction, the arrangement direction of the multiple connecting ribs is a second direction, and the first direction is perpendicular to the second direction.
[0010] According to some embodiments of the present application, the groove body is provided with an overflow port, the height of the overflow port is higher than the height of the bottom wall of the groove body, and is lower than the height of the groove of the overflow groove.
[0011] According to some embodiments of the present application, the bottom wall of the groove body is provided with a boss, the overflow port is arranged on the top surface of the boss, and the area of the overflow port is greater than the area of the groove of the overflow groove.
[0012] According to some embodiments of the present application, the height of the groove of the overflow groove is at least 8mm higher than the height of the top surface of the boss.
[0013] According to some embodiments of the present application, the base is provided with an air guide part, the air guide part is provided with a first pipe opening and a second pipe opening, the first pipe opening is connected with the outlet of the fan, the second pipe opening is connected with the air outlet, and in the height direction of the base, the height of the first pipe opening is greater than the height of the second pipe opening.
[0014] According to some embodiments of the present application, the humidifying assembly comprises a shell, the groove body and the humidifying module are arranged in the shell, and the overflow groove penetrates through the shell.
[0015] The refrigeration equipment according to the second aspect of the present application comprises: a cabinet body provided with a storage compartment; a refrigeration assembly for providing a refrigeration environment for the storage compartment; and the humidifying assembly according to the first aspect of the present application for increasing the humidity of the storage compartment.
[0016] The refrigeration equipment according to the present application has at least the beneficial effects as described above, and details are not repeated here.
[0017] The additional aspects and advantages of the present application will be given partly in the following description, partly will become obvious from the following description, or will be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0018] The present application will be further described below in conjunction with the drawings and embodiments, wherein:
[0019] Figure 1 A schematic view of the humidifying assembly of the present application embodiment;
[0020] Figure 2 An exploded view of the humidifying assembly of the present application embodiment;
[0021] Figure 3 A top view of the humidifying assembly of the present application embodiment;
[0022] Figure 4 A sectional view of Figure 3 A sectional view of A-A;
[0023] Figure 5 A sectional view of Figure 4 An enlarged view of B;
[0024] Figure 6 A sectional view of the humidifying assembly of the present application embodiment from another perspective;
[0025] Figure 7 An enlarged view of C; Figure 6
[0026] A schematic view of the refrigeration equipment of the present application embodiment; Figure 8
[0027] A schematic view of the refrigeration equipment of the present application embodiment. Figure 9 LIST OF REFERENCE NUMERALS
[0028] Humidifying assembly 100, tank body 101, humidifying module 102, base 103, fan 104, mounting groove 105, air supply opening 106, boss 107, air guide part 108, first pipe opening 109, second pipe opening 110, shell 111, overflow opening 112;
[0029] Overflow tank 200, first side wall 201, second side wall 202, connecting rib 203;
[0030] Refrigeration equipment 300, cabinet 301, opening 302, layer plate 303, upper storage compartment 304, lower storage compartment 305, air supply air duct 306.
[0031] DETAILED DESCRIPTION
[0032] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0033] In low-temperature environments, the humidity inside refrigeration equipment often drops to very low levels, causing moisture to evaporate from the surface of items, leading to dryness and a decline in quality. Therefore, humidification components are installed inside refrigeration equipment to achieve a humidification function. These components increase the humidity inside the equipment by releasing water vapor or atomizing water droplets, thereby keeping items moist and preventing damage from dryness.
[0034] Taking a wine cabinet as an example, the humidifier in a wine cabinet is a device designed to maintain a suitable humidity environment inside the cabinet. Red wine, in particular, needs to be stored in a constant humidity environment to prevent the cork from drying out and the wine from evaporating, thus preserving the wine's taste and quality. Simply put, the humidifier in a wine cabinet ensures that fine wines do not spoil due to an overly dry environment.
[0035] Currently, most humidifiers on the market are active humidifiers. These typically consist of a humidifying fan and a water tank. The water tank contains water or humidifying materials such as volcanic rock or non-woven fabric containing moisture. The humidifying fan is located at one end of the water tank and blows air towards the other end, bringing the humidified air from the water tank into the wine cabinet. The elongated water tank design increases the water surface area, which helps to increase the evaporation rate. Furthermore, during humidification, more water molecules are exposed to the air, thus accelerating evaporation.
[0036] In related technologies, during the handling of refrigeration equipment, the equipment may shake or tilt. When the equipment shakes or tilts, or when the user moves the water in the water tank, the water in the water tank may easily overflow into the fan through the air outlet, causing damage to the fan.
[0037] Reference Figures 1 to 7 The image shows a humidification component 100 according to an embodiment of this utility model. (Refer to...) Figure 8 The image shows a refrigeration device 300 according to an embodiment of this utility model. The refrigeration device 300 can specifically be a refrigerator, wine cabinet, or other similar products. The following explains how the humidification component 100 and the refrigeration device 300 of this utility model solve the aforementioned problems.
[0038] Reference Figures 1 to 3As shown, the humidifying assembly 100 comprises a tank body 101, a humidifying module 102 and a water overflow tank 200. The tank body 101 is used to hold water or humidifying materials such as volcanic rock, non-woven fabric and the like containing moisture. The humidifying module 102 comprises a base 103 and a fan 104, the base 103 is provided with a mounting groove 105 and an air outlet 106, the fan 104 is mounted in the mounting groove 105, the air outlet 106 is in communication with the mounting groove 105, and the air outlet 106 is arranged towards the tank body 101, and the upper end of the tank body 101 is open.
[0039] Referring to Figures 1 to 3 As shown, the water overflow tank 200 is located between the tank body 101 and the air outlet 106, and the height of the tank opening of the water overflow tank 200 is higher than the height of the bottom wall of the tank body 101, so that the tank body 101 can store a certain liquid level of liquid, and the height of the tank opening of the water overflow tank 200 is not higher than the height of the air outlet 106, that is, the height of the tank opening of the water overflow tank 200 can be the same as the height of the air outlet 106, or the height of the tank opening of the water overflow tank 200 can be lower than the height of the air outlet 106.
[0040] In normal operation, the fan 104 is started, and the fan 104 sends out airflow through the air outlet 106. Since the height of the tank opening of the water overflow tank 200 is not higher than the height of the air outlet 106, the airflow flowing out of the air outlet 106 will not be blocked by the water overflow tank 200, and the airflow flowing out of the air outlet 106 will pass through the tank body 101 above the tank body 101, and the liquid in the tank body 101 will be in contact with the airflow blown by the fan 104, thereby generating high-humidity gas, which will flow into the storage compartment of the refrigeration equipment 300, thereby increasing the humidity of the storage compartment and achieving the humidifying function.
[0041] When the refrigeration equipment 300 is shaken, tilted or the user stirs the liquid in the tank body 101, if the liquid in the tank body 101 overflows towards the air outlet 106, the liquid will first flow into the water overflow tank 200 and be discharged, so that the liquid is difficult to directly enter the air outlet 106 and flow into the fan 104, thereby protecting the fan 104. It can be understood that the water overflow tank 200 has a flow guiding effect, when the liquid in the tank body 101 is about to flow into the air outlet 106, the water overflow tank 200 can first guide the liquid into the tank opening thereof, thereby discharging the liquid about to overflow, so that the liquid is not easy to directly flow into the air outlet 106. In this process, the flow direction of the overflowing liquid into the water overflow tank 200 can refer to the arrow direction in Figure 7
[0042] Referring to Figure 1 and Figure 2 In some embodiments, the humidifying assembly 100 comprises a housing 111, the tank body 101 and the water overflow tank 200 are arranged in the housing 111, and the humidifying module 102 is detachably mounted in the housing 111, as shown in Figure 5 As shown, the overflow groove 200 penetrates the shell 111, so that the bottom of the shell 111 is formed with an opening in communication with the overflow groove 200, through which the liquid flowing into the overflow groove 200 is discharged to the outside of the humidifying assembly 100. In this embodiment, the groove body 101 and the overflow groove 200 are designed in an integrated manner, and the groove body 101 and the overflow groove 200 are formed on the shell 111, which can be manufactured by an integrated injection molding process. When the shell 111 is manufactured, the structure of the groove body 101 and the overflow groove 200 is also processed, which is convenient to manufacture and does not need to be assembled. In addition, the groove body 101 and the humidifying module 102 are also integrated, which is convenient to assemble and can also reduce the occupied space.
[0043] In other embodiments, the groove body 101 and the overflow groove 200 can also be designed in a split manner, that is, the groove body 101 and the overflow groove 200 are two separate parts, which are connected by fasteners or buckles.
[0044] In some embodiments, referring to Figure 5 As shown, the slot of the overflow groove 200 is located at the top of the overflow groove 200, that is, the slot of the overflow groove 200 is arranged upward. The overflow groove 200 includes a first side wall 201 and a second side wall 202. The height of the first side wall 201 is higher than that of the second side wall 202. The first side wall 201 and the second side wall 202 are arranged in a spaced manner along the arrangement direction of the groove body 101 and the humidifying module 102. The first side wall 201 and the second side wall 202 are arranged opposite to each other and parallel to each other. The first side wall 201 is arranged close to the fan 104, and the second side wall 202 is arranged close to the groove body 101.
[0045] This embodiment can also be understood as that the slot of the overflow groove 200 is arranged in an inclined manner. The plane where the slot of the overflow groove 200 is located is an inclined plane. The lowest height of the slot of the overflow groove 200 is higher than the height of the bottom wall of the groove body 101. When the humidifying assembly 100 is inclined at a large angle or the user moves the liquid in the groove body 101 violently, the liquid overflowing from the groove body 101 will jump over the side wall of the groove body 101. Since the height of the first side wall 201 is higher, the liquid jumping over the side wall of the groove body 101 will be blocked by the first side wall 201 and cannot directly enter the air supply port 106. The first side wall 201 can guide the overflowing liquid into the overflow groove 200, so that the overflowing liquid is discharged through the overflow groove 200, which can effectively prevent the overflowing liquid from directly entering the air supply port 106 through the slot of the overflow groove 200. The second side wall 202 also has a drainage effect. When the humidifying assembly 100 is inclined at a small angle or the user moves the liquid in the groove body 101 slightly, part of the liquid jumping over the side wall of the groove body 101 will be guided into the overflow groove 200 by the second side wall 202, which is conducive to discharging the overflowing liquid.
[0046] In other embodiments, the upper end of the first side wall 201 and the upper end of the second side wall 202 of the above-mentioned embodiments can also be flush with each other, that is, the height of the first side wall 201 is the same as the height of the second side wall 202, which can be understood as the face where the slot of the overflow groove 200 is located can be a horizontal plane. In this way, the overflow groove 200 can also normally drain the overflowing liquid.
[0047] In other embodiments, the slot of the overflow groove 200 can be transferred to the side wall of the tank body 101, so that the slot of the overflow groove 200 is directly communicated with the inner cavity of the tank body 101, and the slot of the overflow groove 200 has a certain height, which is higher than the bottom wall of the tank body 101. When the humidifying assembly 100 is shaken, tilted or the user stirs the liquid in the tank body 101, the liquid flows along the side wall of the tank body 101 and directly flows into the slot of the overflow groove 200, and the liquid will not flow over the side wall of the tank body 101, which can also achieve the effect of preventing overflow. On this basis, a top wall can also be arranged at the top position between the first side wall 201 and the second side wall 202, that is, the top wall is connected between the first side wall 201 and the second side wall 202, and the top wall closes the top position between the first side wall 201 and the second side wall 202, so that part of the airflow flowing out of the air outlet 106 will not directly enter the overflow groove 200, but directly enter the tank body 101, forming a high-humidity airflow, thereby reducing the loss of high-humidity airflow and improving the humidifying effect.
[0048] Referring to Figure 7 In some embodiments, the overflow groove 200 includes a connecting rib 203, which is located in the internal space of the overflow groove 200, one side of the connecting rib 203 is connected to the first side wall 201, and the other side of the connecting rib 203 is connected to the second side wall 202, that is, the connecting rib 203 is connected between the first side wall 201 and the second side wall 202. Since the overflow groove 200 is mainly processed by removing materials, the structural strength will be affected, and the connecting rib 203 can be understood as a reinforcing rib, which can play a role in strengthening the structural strength. The connecting rib 203 can be integrally formed with the shell 111, which is convenient to manufacture.
[0049] Referring to Figure 3 and Figure 7As shown, in some embodiments, the number of connecting ribs 203 is multiple, the arrangement direction of the tank 101 and the humidifying module 102 is defined as the first direction, the arrangement direction of the multiple connecting ribs 203 is defined as the second direction, the first direction is perpendicular to the second direction, and the first direction and the second direction are respectively perpendicular to the height direction of the humidifying assembly 100. The connecting rib 203 is configured as a sheet structure, the thickness of the connecting rib 203 is thin, the thickness direction of the connecting rib 203 is the second direction, and the connecting rib 203 extends along the height direction of the humidifying assembly 100. In this way, the structural strength of the overflow tank 200 can be further enhanced, and the connecting rib 203 can also separate the internal space of the overflow tank 200. In addition, the connecting rib 203 separates the slot of the overflow tank 200 into multiple small slots, and the multiple small slots are arranged at intervals along the arrangement direction of the multiple connecting ribs 203. When the overflow liquid enters the multiple small slots, it is separated into multiple small flow liquids by the multiple connecting ribs 203, so as to avoid the overflow liquid from gathering together to form a large flow wave, thereby reducing the wave height of the overflow liquid and reducing the risk of liquid overflowing to the air outlet 106.
[0050] It can be understood that, in some embodiments, the tank 101 can receive defrosting water of the refrigeration equipment 300 as a humidifying water source. During the operation of the refrigeration equipment 300, the defrosting water does not continuously increase. When the accumulated defrosting water in the tank 101 is relatively large, in order to avoid the defrosting water overflowing to the outside of the tank 101 by climbing over the side wall of the tank 101, the tank 101 needs to discharge a part of the defrosting water.
[0051] Referring to Figure 4 As shown, in some embodiments, the tank 101 is provided with an overflow port 112, the overflow port 112 connects the inner cavity of the tank 101 and the outside of the tank 101, the height of the overflow port 112 is higher than the height of the bottom wall of the tank 101, and the height of the overflow port 112 is lower than the slot height of the overflow tank 200. When the face where the slot of the overflow tank 200 is located is arranged to be inclined, it is necessary to ensure that the lowest height of the slot of the overflow tank 200 is higher than the height of the overflow port 112.
[0052] It should be noted that the overflow port 112 is mainly used for normal discharge when the liquid level in the tank 101 is too high, and the overflow port 112 can discharge the overflow liquid to a specific position, thereby controlling the liquid level height in the tank 101. The overflow groove 200 is mainly used for preventing the liquid in the tank 101 from overflowing into the air outlet 106. The two mainly aim at different situations. When the refrigeration equipment 300 shakes, tilts or the user stirs the liquid in the tank 101, if part of the liquid overflows in the direction of the air outlet 106, that is, part of the liquid accumulates on the side of the tank 101 close to the air outlet 106, at this time, the liquid level height around the overflow port 112 may be low, and the overflow port 112 may not be able to discharge this part of the liquid to ensure the safety of the fan 104. The overflow port 112 and the overflow groove 200 in the present embodiment can simultaneously consider the above two overflow situations. In addition, when the overflow port 112 is blocked, the overflow port 112 cannot realize the drainage function. With the accumulation of liquid, the liquid level height in the tank 101 gradually rises above the height of the overflow port 112. When the liquid level height is higher than the height of the groove of the overflow groove 200, the overflow liquid can be discharged through the overflow groove 200, that is, the overflow groove 200 can play a backup drainage function, which has a safety effect.
[0053] Referring to Figure 4 In some embodiments, the bottom wall of the tank 101 is provided with a boss 107, the boss 107 is upwardly protruding, the height of the boss 107 is lower than the height of the groove of the overflow groove 200, and the overflow port 112 is opened on the top surface of the boss 107. The maximum liquid storage liquid level height of the tank 101 depends on the height of the boss 107. The area of the overflow port 112 is greater than the area of the groove of the overflow groove 200, that is, the drainage capacity of the overflow port 112 is greater than the drainage capacity of the overflow groove 200. In the present embodiment, the overflow port 112 serves as the main overflow outlet. Since the drainage capacity of the overflow port 112 is large, it will discharge more liquid, which has a greater impact. The overflow port 112 can be connected to the water pan of the refrigeration equipment 300 through a water pipe, so as to collect the liquid overflowing from the overflow port 112. The overflow groove 200 is mainly used for preventing overflow when tilting. The liquid overflowing from the overflow groove 200 will not be much. Even if the liquid flowing out of the overflow groove 200 drips into the storage compartment of the refrigeration equipment 300, it will not have a great impact on the storage compartment. Therefore, the overflow groove 200 does not need to be connected to the water pipe to discharge the liquid into the water pan. In addition, due to the limitation of the position layout of the overflow groove 200, the overflow groove 200 needs to be located between the tank 101 and the air outlet 106. If the overflow groove 200 is also connected to the water pipe, the water pipe may hinder the articles in the storage compartment, resulting in a more troublesome position layout of each part. The position layout of the overflow port 112 is relatively free compared with the overflow groove 200, and the limitation is less. The overflow port 112 can be arranged at any position of the tank 101. In actual design, the position of the overflow port 112 can be arranged according to the convenience of the water pipe arrangement.
[0054] In some other embodiments, the overflow port 112 can also be arranged on the sidewall of the tank body 101, and the height of the overflow port 112 is higher than the height of the bottom wall of the tank body 101.
[0055] Referring to Figure 4 In some embodiments, the height of the overflow groove of the overflow tank 200 is at least 8 mm higher than the height of the top surface of the boss 107. Referring to Figure 4 When the face where the overflow groove of the overflow tank 200 is arranged is inclined, the lowest height of the overflow groove of the overflow tank 200 is at least 8 mm higher than the height of the top surface of the boss 107, which can also be understood as the height difference between the second sidewall 202 and the top surface of the boss 107 is H, and H≥8 mm. Such an arrangement can make the liquid in the tank body 101 overflow from the overflow port 112 as much as possible, rather than from the overflow tank 200 for anti-toppling, in addition, H is not suitable to be arranged too small, if H is too small, for example, H is less than 8 mm, the liquid is prone to directly overflow from the overflow tank 200 during normal overflow, and when the overflow tank 200 discharges too much liquid, the impact on the storage compartment is greater.
[0056] Referring to Figures 3 to 5 In some embodiments, the base 103 is provided with an air guide portion 108, the back of the air guide portion 108 is respectively provided with a first pipe opening 109 and a second pipe opening 110, the first pipe opening 109 is connected to the outlet of the fan 104, and the second pipe opening 110 is connected to the air outlet 106. In the height direction of the base 103, the height of the first pipe opening 109 is greater than the height of the second pipe opening 110. In this embodiment, the air guide portion 108 can guide the airflow sent by the fan 104 to flow from a lower position to a higher position, so that the airflow sent by the fan 104 can enter the tank body 101 by passing through the overflow tank 200, which is equivalent to guiding the airflow to rise. By arranging the air guide portion 108, the height of the fan 104 does not need to be lifted, which facilitates reducing the height of the fan 104, thereby reducing the overall occupied space.
[0057] In some embodiments, the air guide portion 108 has a guide slope, which is located between the first pipe opening 109 and the second pipe opening 110, and the height of the guide slope gradually increases from the first pipe opening 109 to the second pipe opening 110, so as to guide the airflow to gradually rise.
[0058] In some embodiments, the air guide portion 108 can be integrally formed with the base 103, or the air guide portion 108 and the base 103 are two separate parts, and the air guide portion 108 is detachably installed on the base 103.
[0059] Referring to Figure 8 and Figure 9As shown, the refrigeration equipment 300 comprises a cabinet 301, a refrigeration assembly and the humidifying assembly 100 of the above embodiment, the cabinet 301 is provided with a storage compartment and an air supply duct 306 for conveying airflow to the storage compartment, the refrigeration assembly is used to provide a refrigeration environment for the storage compartment, and the refrigeration assembly comprises an evaporator and a compressor, which are configured to generate a cooling airflow in a controlled manner and to send the cooling airflow to the storage compartment through the air supply duct 306, that is, the refrigeration assembly is used to refrigerate the storage compartment. The humidifying assembly 100 is arranged in the cabinet 301 and is configured to generate airflow in a controlled manner so as to humidify the storage compartment.
[0060] Referring to Figure 1 and Figure 8 As shown, it can be understood that the cabinet 301 comprises a layer plate 303, which separates the space in the cabinet 301, and the storage compartment can be divided into an upper storage compartment 304 and a lower storage compartment 305 to form different storage spaces, which is more convenient for classified storage. The humidifying assembly 100 is installed on the layer plate 303. When the refrigeration equipment 300 is shaken, tilted or the user stirs the liquid in the groove 101, the overflowing liquid will be discharged into the lower storage compartment 305 by the overflow groove 200. Since the liquid overflowing from the overflow groove 200 will not be much, even if the liquid flowing out of the overflow groove 200 drops into the lower storage compartment 305, it will not have a great impact on the lower storage compartment 305.
[0061] Referring to Figure 8 and Figure 9 As shown, the layer plate 303 is provided with the groove 101 of the above embodiment, that is, the groove 101 is opened on the layer plate 303 when the cabinet 301 is made, and the groove 101 can store water or place humidifying materials. The groove 101 is formed in different sizes according to different sizes of the layer plate 303, and the humidifying module 102 can be made into a unified size, which improves the universality of the humidifying module 102. The humidifying module 102 has many parts and a complex structure, and making it into a universal module can reduce the cost of the refrigeration equipment 300. The groove 101 has a simple structure and is easy to make, and changing the size of the groove 101 will not significantly increase the cost. The groove 101 and the humidifying module 102 form the humidifying assembly 100, and the groove 101 and the humidifying module 102 of the humidifying assembly 100 are arranged separately in the embodiment, so that the groove 101 is integrally formed with the layer plate 303 of the cabinet 301, and the humidifying module 102 is an independent and universal module, which not only improves the universality but also makes the overall appearance of the refrigeration equipment 300 more uniform. The size of the humidifying module 102 is smaller than that of the humidifying assembly 100, and the difficulty of installation and disassembly is lower.
[0062] It can be understood that the installation position of the humidifying module 102 can be reserved on the layer plate 303, that is, the layer plate 303 is provided with the installation position, and the humidifying module 102 is installed on the installation position. The layer plate 303 is provided with a groove, part of the groove forms the tank body 101 and can store liquid, and the other part forms the installation position for placing the humidifying module 102, which is convenient for manufacturing and installation.
[0063] In the description of the utility model, it needs to be understood that the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right and the like, is based on the orientation or positional relationship shown in the drawing, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as the restriction of the utility model.
[0064] In the description of the utility model, the meaning of several is one or more, and the meaning of multiple is two or more, and greater than, less than, more than and the like are not included in the number, and above, below and the like are included in the number.If it is described to the first, second, it is only used for distinguishing the technical features for the purpose, and therefore cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0065] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing and connecting should be understood in a broad sense, and the person skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.
[0066] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.
Claims
1. A humidifying assembly, characterized by, The humidifying assembly comprises: a tank body in which liquid is placed; a humidifying module, the humidifying module comprises a base and a fan, the base is provided with a mounting groove and an air outlet, the fan is located in the mounting groove, and the air outlet is communicated with the mounting groove and faces the tank body; a water overflow groove is arranged between the tank body and the air outlet, the height of the groove opening of the water overflow groove is higher than the height of the bottom wall of the tank body and is not higher than the height of the air outlet.
2. The humidifying assembly of claim 1, wherein, The groove opening of the water overflow groove is located at the top of the water overflow groove, the water overflow groove comprises a first side wall and a second side wall, the first side wall and the second side wall are arranged at intervals along the arrangement direction of the tank body and the humidifying module, the first side wall is located on the side of the second side wall close to the fan, and the height of the first side wall is higher than the height of the second side wall.
3. The humidifying assembly of claim 2, wherein, The water overflow groove comprises a connecting rib, one side of the connecting rib is connected with the first side wall, and the other side of the connecting rib is connected with the second side wall.
4. The humidifying assembly of claim 3, wherein, The number of the connecting ribs is plural, the arrangement direction of the tank body and the humidifying module is a first direction, the arrangement direction of the plural connecting ribs is a second direction, and the first direction is perpendicular to the second direction.
5. The humidifying assembly of claim 1, wherein, The tank body is provided with a water overflow port, the height of the water overflow port is higher than the height of the bottom wall of the tank body and is lower than the height of the groove opening of the water overflow groove.
6. The humidifying assembly of claim 5, wherein, The bottom wall of the tank body is provided with a boss, the water overflow port is arranged on the top surface of the boss, and the area of the water overflow port is greater than the area of the groove opening of the water overflow groove.
7. The humidifying assembly of claim 6, wherein, The height of the groove opening of the water overflow groove is at least 8 mm higher than the height of the top surface of the boss.
8. The humidifying assembly of claim 1, wherein, The base is provided with an air guide portion, the air guide portion is provided with a first pipe opening and a second pipe opening, the first pipe opening is connected with the outlet of the fan, the second pipe opening is connected with the air outlet, and in the height direction of the base, the height of the first pipe opening is greater than the height of the second pipe opening.
9. The humidifying assembly of claim 8, wherein, The humidifying assembly comprises a shell, the tank body and the humidifying module are arranged in the shell, and the water overflow groove penetrates through the shell.
10. A refrigeration appliance characterised in that, The humidifying assembly comprises: a cabinet body provided with a storage compartment; a refrigeration assembly for providing a refrigeration environment for the storage compartment; the humidifying assembly according to any one of claims 1 to 9 is used for increasing the humidity of the storage compartment.