Humidification module, humidification assembly and refrigeration equipment
By setting retaining ribs and a grille structure on the outer periphery of the air inlet of the humidification module, the problem of failure caused by water ingress into the fan is solved, and the reliability and service life of the humidification module are improved.
Patent Information
- Application Number
- CN202423074787.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-11
AI Technical Summary
In the existing wine cabinet humidification structure, the fan is easily flooded and causes malfunction, affecting the normal operation of the equipment.
A retaining rib is set on the outer periphery of the air inlet of the humidification module, combined with a grille structure to prevent water from flowing into the fan from the top surface of the shell, reducing the risk of water ingress.
It effectively avoids fan failure caused by water ingress and improves the reliability and service life of the humidification module.
Smart Images

Figure CN223470416U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to humidification technical field, especially humidification module, humidification subassembly and refrigeration plant. BACKGROUND
[0002] The storage of red wine generally requires to be stored in the humidity interval of 55%-75% to achieve better storage effect. In the existing wine cabinet product design, in order to effectively improve the humidity inside the wine cabinet, a humidification structure is generally used. The humidification structure includes a bottom shell and a humidification fan, the bottom shell is provided with a water tank, and the humidification fan is installed on the water tank. The wind blown out by the humidification fan drives the moisture above the water tank to be discharged into the internal space of the wine cabinet. In the related art, the fan is easily waterlogged and thus causes failure. SUMMARY
[0003] The utility model discloses at least one of the technical problems in the prior art. To this end, the utility model provides a humidification module, which can reduce the failure caused by waterlogging.
[0004] The utility model discloses further provide a humidification subassembly and refrigeration plant with the humidification module.
[0005] According to the humidification module of the first aspect embodiment of the utility model, it includes: the top surface of the shell is provided with the air inlet, the first fan is located in the shell and draws air through the air inlet, the blocking rib protrudes from the top surface of the shell and is located at the outer periphery of the air inlet.
[0006] According to the humidification module of the utility model embodiment, at least has the following beneficial effects: by setting the blocking rib at the outer periphery of the air inlet, when the water is replenished, or due to the user's misoperation, the water is prevented from flowing into the first fan from the top surface of the shell, and thus the failure of the first fan caused by waterlogging is reduced.
[0007] According to some embodiments of the utility model, the blocking rib surrounds the outer periphery of the air inlet, and the humidification module further includes a grille connected to the inner wall of the blocking rib.
[0008] According to the humidification subassembly of the second aspect embodiment of the utility model, it includes the water storage part and the humidification module of the first aspect embodiment of the utility model, the water storage part is used to store water or generate moisture, the humidification module is connected with the water storage part, the shell is provided with the air outlet, and the air outlet faces the water storage part.
[0009] According to the humidification subassembly of the utility model embodiment, at least has the following beneficial effects: by using the humidification module of the first aspect embodiment of the utility model, the failure caused by waterlogging can be reduced.
[0010] The refrigeration equipment according to the third aspect of the present application comprises a cabinet, a refrigeration assembly and the humidifying assembly according to the second aspect of the present application, the cabinet is provided with a storage chamber, the refrigeration assembly is used for providing a refrigeration environment for the storage chamber, and the humidifying assembly is used for increasing humidity of the storage chamber.
[0011] According to some embodiments of the present application, the refrigeration assembly comprises an evaporator, the shell is provided with a water collecting groove, the water collecting groove is located below the evaporator, the water collecting groove is provided with a water inlet, and the water collecting groove is used for guiding water flow to the water inlet to supplement water for the water storage member.
[0012] According to some embodiments of the present application, the cabinet is provided with an air duct plate and an opening, the opening is communicated with the storage chamber, the opening and the evaporator are located on opposite sides of the storage chamber, the air duct plate is located on one side of the evaporator close to the opening, the blocking rib comprises a first rib part, an upper edge of the first rib part is lower than a lower edge of the air duct plate, and along the arrangement direction of the evaporator and the air duct plate, the first rib part is located between the evaporator and the air duct plate.
[0013] According to some embodiments of the present application, the blocking rib comprises a second rib part, the second rib part is located on one side of the opening of the first rib part, and the second rib part is lower than the first rib part.
[0014] According to some embodiments of the present application, the first rib part is provided with a plurality of reinforcing ribs, and the plurality of reinforcing ribs are arranged at intervals along the length direction of the first rib part.
[0015] The refrigeration equipment according to the embodiments of the present application has at least the following beneficial effects: by adopting the humidifying assembly according to the second aspect of the present application, the failure caused by water inlet can be reduced.
[0016] Additional aspects and advantages of the present application will be given in part in the following description, become obvious from the following description, or be understood by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0017] The present application will be further described below in combination with the drawings and embodiments, wherein:
[0018] Figure 1 is a sectional view of the refrigeration equipment in the related art;
[0019] Figure 2 is Figure 1 is an enlarged view of A shown;
[0020] Figure 3 is a sectional view of the humidifying assembly according to the embodiments of the present application;
[0021] Figure 4 For Figure 3 The enlarged view shown at B
[0022] Figure 5 It is the structure diagram of humidifying assembly of the utility model embodiment;
[0023] Figure 6 It is the sectional view of refrigeration equipment of the utility model embodiment;
[0024] Figure 7 For Figure 6 The enlarged view shown at C.
[0025] Reference signs:
[0026] Humidifying module 100;Housing 101;First fan 102;Rib 103;First rib part 1031;Reinforcing rib 10311;Second rib part 1032;Grating 104;Straight grating 1041;Arc grating 1042;Air inlet 105;Cover plate 106;Air outlet 107;First air outlet 108;Water receiving groove 109;Water inlet 110;First mounting groove 112;Second mounting groove 113;Partition 114;Temperature and humidity sensor 115;Detection port 116;
[0027] Humidifying assembly 201;Water storage part 202;Connecting air duct 203;First pipe opening 2031;Second pipe opening 2032;Groove body 204;
[0028] Cabinet body 301;Storage room 302;
[0029] Evaporator 401;
[0030] Air duct plate 501;Opening 502;
[0031] Supply air duct 601;Return air outlet 602. DETAILED DESCRIPTION
[0032] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the present application, and cannot be understood as limiting the present application.
[0033] In the description of the present application, it should be understood that, in relation to the orientation description, for example, the orientation or position relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or position relationship shown in the drawings, only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as limiting the present application.
[0034] In the description of the utility model, the meaning of several is one or more, the meaning of multiple is two or more, greater than, less than, more than, etc. Understand as not including the number, above, below, within, etc. Understand as including the number. If it is described to the first, the second is only used for distinguishing the purpose of technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0035] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installation, connection should be understood broadly, and the person skilled in the art can determine the specific meaning of the above words in the utility model in combination with the specific content of the technical scheme.
[0036] Referring to Figure 1 And Figure 2 As shown in the figure, the related refrigeration equipment includes cabinet 301, refrigeration assembly and humidification assembly 201, the cabinet 301 is provided with storage room 302, the storage room 302 provides space for article storage, the refrigeration assembly is used to provide refrigeration environment for the storage room 302, and the refrigeration assembly includes evaporator 401.In low-temperature environment, the humidity in the refrigeration equipment is often reduced to a low level, resulting in evaporation of moisture on the surface of the article, causing drying and quality decline of the article.Humidification assembly 201 is used to increase the humidity of storage room 302, and is configured to produce a high-humidity airflow in a controlled manner, and the high-humidity airflow is delivered to the air supply duct 601, so that the high-humidity airflow flows into the storage room 302 with the cooling airflow.It can be understood that the humidity in the high-humidity airflow is large, which can increase the humidity in the storage room 302, so as to maintain the humid state of the article and prevent it from being damaged due to drying.
[0037] It can be understood that the humidification assembly 201 is located below the evaporator 401, and when the refrigeration equipment defrosts, the defrosting water generated under the action of gravity falls to the humidification assembly 201, which can supplement water for the humidification assembly 201, thereby recycling the defrosting water, which can effectively reduce the frequency of water addition by the user and realize the recycling of the defrosting water.
[0038] Specifically, the humidification assembly 201 includes a housing 101, the housing 101 is provided with a water collecting groove 109, the water collecting groove 109 is located below the evaporator 401, the water collecting groove 109 collects the collected condensate / defrosting water into a water flow, the water collecting groove 109 is provided with a water inlet 110, the water inlet 110 is located at the bottom wall of the water collecting groove 109, the water collecting groove 109 is used to drain the water flow to the water inlet 110, and the water flow flows into the inside of the humidification assembly 201 from the water inlet 110, thereby supplementing water for the humidification assembly 201.
[0039] It can be understood that the active humidification type humidification assembly 201 generally comprises the humidification module 100 and the water storage part 202, the water storage part 202 can be a water tank or a humidification material such as a water-containing volcanic rock and a non-woven fabric, the shell 101 is provided with the air supply port 107, the air supply port 107 faces the water storage part 202, the humidification module 100 is located at one end of the water storage part 202 and blows air to the other end through the air supply port 107, and the high-humidity air in the water storage part 202 is brought into the wine cabinet through the humidification module 100. The shell 101 is provided with the air inlet 105, and the humidification module 100 inhales air through the air inlet 105. Since the air inlet 105 is located on the top surface of the shell 101, and the water collecting tank 109 is also located on the top surface of the shell 101, when the condensed water of the evaporator 401 falls into the water collecting tank 109, the condensed water may flow into the humidification module 100 from the air inlet 105, or the user may misoperate to pour water into the air inlet 105, causing damage to the humidification fan.
[0040] The humidification module 100 of the embodiment of the utility model avoids the failure caused by adding water by setting the blocking rib 103 on the top surface of the shell 101 and locating the blocking rib 103 at the outer peripheral wall of the air inlet 105. The humidification module 100, the humidification assembly 201 and the refrigeration equipment of the embodiment of the utility model will be further described below with reference to the accompanying drawings. Figures 3 to 7 The humidification module 100, the humidification assembly 201 and the refrigeration equipment of the embodiment of the utility model will be further described below with reference to the accompanying drawings.
[0041] The humidification module 100 of the embodiment of the utility model avoids the failure caused by adding water by setting the blocking rib 103 on the top surface of the shell 101 and locating the blocking rib 103 at the outer peripheral wall of the air inlet 105. The humidification module 100, the humidification assembly 201 and the refrigeration equipment of the embodiment of the utility model will be further described below with reference to the accompanying drawings. Figures 3 to 7 It can be understood that the humidification module 100 provided by the utility model comprises a shell 101, a first fan 102 and a blocking rib 103, the top surface of the shell 101 is provided with an air inlet 105, the first fan 102 is located in the shell 101 and inhales air through the air inlet 105, the blocking rib 103 protrudes from the top surface of the shell 101 and is located at the outer periphery of the air inlet 105, forming a structure enclosed on four sides, and when the condensed water falls on the top surface of the shell 101, the blocking rib 103 can effectively block the water flow from flowing directly into the first fan 102 from the top surface of the shell 101. When water is added, water flows into the first fan 102 from the top surface of the shell 101, or the user misoperates to pour water into the air inlet 105, thereby reducing the failure of the first fan 102 caused by water inflow.
[0042] The humidification module 100 of the embodiment of the utility model avoids the failure caused by adding water by setting the blocking rib 103 on the top surface of the shell 101 and locating the blocking rib 103 at the outer peripheral wall of the air inlet 105. The humidification module 100, the humidification assembly 201 and the refrigeration equipment of the embodiment of the utility model will be further described below with reference to the accompanying drawings. Figures 3 to 5 In other embodiments, the blocking rib 103 protrudes from the top surface of the shell 101 and is intermittently located at the outer periphery of the air inlet 105, and the blocking rib 103 can be composed of two or more sections, the arc-shaped blocking ribs 103 are spaced apart by a certain distance, part of the airflow is allowed to pass through more smoothly, the air exchange rate of the first fan 102 is improved, and at the same time, even if a small amount of water drops or accidental water inflow occurs, most of the water flow will still be blocked and guided to other areas of the shell 101 due to the presence of the blocking rib 103.
[0043] It should be noted that in other embodiments, the air inlet 105 has a plurality of alternative forms and is not limited to a specific shape, and can be flexibly selected according to actual use requirements, equipment size, performance requirements and other factors, such as a circular shape, a square shape, a triangular shape or other suitable shapes.
[0044] Specifically, the blocking rib 103 surrounds the outer periphery of the air inlet 105 and forms a four-side closed structure. The humidification module 100 further comprises a grid 104, which is composed of a plurality of grid bars, including a plurality of straight grid bars 1041 and a plurality of arc-shaped grid bars 1042. The plurality of arc-shaped grid bars 1042 are combined into a ring structure, and the plurality of straight grid bars 1041 are connected to the arc-shaped grid bars 1042 to form a cross-shaped structure. The grid 104 is connected to the inner wall of the blocking rib 103 to prevent the condensed water dripping from the upper evaporator 401 from directly falling into the first fan 102 from the air inlet 105, thereby reducing the risk of water entering the first fan 102, and also enhancing the strength of the blocking rib 103. The grid 104 can also form a parallel strip structure by a plurality of straight grid bars 1041. Here, the forming method of the grid 104 is not limited as long as it can meet the function of preventing the condensed water dripping from the upper part from directly falling into the first fan 102. It can be understood that the grid 104 can be fastened and installed by aligning the reserved hole positions of the shell 101 through bolt connection or clamping, or integrally formed with the shell 101 by plastic injection molding, thereby facilitating operation and simplifying assembly.
[0045] Referring to Figure 3 It can be understood that the humidification assembly 201 of the embodiment of the utility model comprises the water storage member 202 and the humidification module 100 of the embodiment of the utility model, the water storage member 202 is used for storing moisture or generating humidity, the humidification module 100 is connected with the water storage member 202, the shell 101 is provided with an air outlet 107, and the air outlet 107 faces the water storage member 202. The shell 101 is provided with a first installation groove 112 and a second installation groove 113, and a partition 114 is arranged between the first installation groove 112 and the second installation groove 113. The partition 114 is located at the bottom position of the first installation groove 112 and the second installation groove 113, so that the bottom of the first installation groove 112 and the second installation groove 113 cannot be connected, but the top of the first installation groove 112 and the second installation groove 113 can be connected. The first fan 102 is arranged in the first installation groove 112, and the water storage member 202 is arranged in the second installation groove 113.
[0046] It should be noted that in other embodiments, the water storage member 202 and the humidifying module 100 have various forms of arrangement, as long as the air outlet 107 is arranged towards the water storage member 202, the water storage member 202 and the humidifying module 100 can be two independent parts installed separately, covered by the cover plate 106, and independently operated and maintained and replaced individually; or the two parts can be arranged on the same base, and the base is covered by the cover plate 106, so that the stability and compactness of the overall structure can be enhanced.
[0047] Referring to Figure 3 As shown in the figure, it can be understood that the humidifying assembly 201 comprises a connecting air duct 203. In the embodiment, the connecting air duct 203 is used to guide the airflow blown by the first fan 102 to the water storage member 202. The connecting air duct 203 is provided with a first pipe opening 2031 and a second pipe opening 2032, the first pipe opening 2031 is connected to the outlet of the first fan 102, and the second pipe opening 2032 is connected to the water storage member 202. The first fan 102 and the connecting air duct 203 are arranged along the length direction of the shell 101. The outlet size of the first fan 102 is substantially equal to the height of the first mounting groove 112 in the height direction of the shell 101. Since the first mounting groove 112 and the second mounting groove 113 are provided with a partition 114 therebetween, and the water storage member 202 has a certain height, the height of the first pipe opening 2031 is greater than the height of the second pipe opening 2032 in the height direction of the shell 101. The airflow blown by the first fan 102 is guided to the water storage member 202, which can contact the humidifying material in a larger area and improve the humidifying efficiency.
[0048] Referring to Figure 3 As shown in the figure, it can be understood that the water storage member 202 comprises a tank 204, and the tank 204 stores liquid. The top of the tank 204 is open, so that the liquid in the tank 204 can release moisture. After the first fan 102 is started, the airflow is blown to the tank 204 through the air outlet 107. The liquid in the tank 204 contacts the airflow blown by the first fan 102, so that high-humidity gas enters the target space and increases the humidity of the target space.
[0049] Specifically, the tank 204 contains liquid, and its top is open so that the liquid can evaporate. After the first fan 102 is started, air flow is blown to the tank 204 through the air outlet 107, and the liquid in the tank 204 interacts with the air flow generated by the first fan 102 to form high-humidity air that enters the target space and increases the humidity of the target space. It should be noted that the water storage member 202 can also contain humidifying materials such as volcanic rock and non-woven fabric, which have porous water absorption properties. The pore size and volume of the porous water absorption material are smaller than the diameter and volume of ordinary water droplets, thereby preventing water droplets from passing through but allowing air flow to pass through. The air flow generated by the first fan 102 enters the second mounting groove 113 from above the partition strip 114, contacts the humidifying material, and carries away the moisture stored therein to form high-humidity air. When the first fan 102 starts to operate, relatively dry air is sucked in and accelerated, and then quickly blown out from the plurality of first air outlets 108, passing through the surface of the humidifying material. The air with higher humidity is quickly carried away from the surface of the humidifying material and mixed with the air in the target space, thereby increasing the relative humidity of the target space. Since the wet air above the humidifying material is removed, the moisture of the water storage member 202 below the humidifying material is quickly absorbed and evaporated (water vapor has a small density), so that the air above the humidifying material always maintains a high humidity state. The water storage member 202 can also be a humidifier, such as an ultrasonic humidifier and a steam humidifier. The ultrasonic humidifier uses a high-frequency vibrating ultrasonic transducer (usually made of ceramic or metal material) to atomize water into micron-sized particles, and then blows the water mist into the air through a fan. This technology does not generate heat, so it is called a “cold mist” humidifier. The steam humidifier heats the water to boiling through a heating element to generate steam, and then releases the steam into the air. This type of humidifier is also called a “hot mist” humidifier.
[0050] Referring to Figure 3 and Figure 5As shown, it can be understood that the shell 101 includes a cover plate 106, the air inlet 105 and the blocking rib 103 are arranged on the cover plate 106, and the water storage member 202 is arranged below the cover plate 106. The space below the cover plate 106 is reasonably utilized, the cover plate 106 is provided with an air outlet corresponding to the water storage member 202, the air outlet includes a plurality of first air outlets 108, and the high-humidity air flows out from the plurality of first air outlets 108 respectively. When the first fan 102 is powered on and works, the relatively dry air is sucked into the first fan 102 and accelerated, and then the dry air quickly passes through the liquid surface in the groove 204, and the air with high humidity of the liquid surface is quickly taken away from the air outlet on the cover plate 106 to the storage compartment 302 and mixed with the air, thereby increasing the relative humidity of the storage compartment 302. Since the plurality of first air outlets 108 are arranged in a spaced manner away from the first fan 102, the air outlet area of a single first air outlet 108 is small, so that the high-humidity air cannot be concentrated and flow out from the first air outlets 108 close to the first fan 102, and more high-humidity air will flow away from the first fan 102, so that more moisture stored in the liquid can be taken away, thereby improving the humidification efficiency.
[0051] It can be understood that the cover plate 106 includes an air outlet area, which is divided into a plurality of air outlet units with equal distances away from the first fan 102 in a direction away from the first fan 102, and each air outlet unit is provided with a first air outlet 108. The air outlet amount of the air outlet unit farther away from the first fan 102 is greater, so that the air outlet amount of the air outlet area increases in a direction away from the first fan 102, so that more air flow passes through the end of the liquid surface away from the first fan 102, the contact area and contact time of the liquid surface and the air flow are increased, so that the humidity of the air flow blown out by the humidification assembly 201 is higher.
[0052] Referring to Figure 3 As shown, it can be understood that the humidification module 100 includes a temperature and humidity sensor 115, an upper side wall of the cover plate 106 is provided with a detection port 116 penetrating through the shell 101, the temperature and humidity sensor 115 is installed inside the shell 101 and close to one side of the detection port 116, and the air in the storage compartment 302 can reach the temperature and humidity sensor 115 through the detection port 116. The temperature and humidity sensor 115 transmits a signal to the controller according to the detected value, and then controls the opening and closing of the humidification assembly 201. The humidity in the storage compartment 302 is accurately controlled, the humidity is prevented from being too high or too low, and the internal environment of the storage compartment 302 is ensured to be in a relatively suitable temperature and humidity range. It should be noted that in other embodiments, the detection port 116 can also be arranged on the side of the shell 101.
[0053] Referring to Figure 6As shown, it can be understood that the refrigeration equipment of the embodiment of the present application comprises a cabinet 301, a refrigeration assembly and the humidifying assembly 201 of the embodiment of the present application, the cabinet 301 is provided with a storage compartment 302, the refrigeration assembly is used for providing a refrigeration environment for the storage compartment 302, and the humidifying assembly 201 is used for increasing the humidity of the storage compartment 302.
[0054] With reference to Figures 3 to 7 As shown, it can be understood that the refrigeration assembly comprises an evaporator 401, the shell 101 is provided with a water collecting groove 109, the water collecting groove 109 is located below the evaporator 401, the water collecting groove 109 is provided with a water inlet 110, the water inlet 110 is located above the water storage part 202, and the water collecting groove 109 is used for guiding the water flow to the water inlet 110 to supplement the water storage part 202.
[0055] In other embodiments, the cover plate 106 is provided with a water collecting groove 109, the water collecting groove 109 is located below the evaporator 401, and the water collecting groove 109 is located below the evaporator 401 and is used for collecting and guiding the water flow. Specifically, the water collecting groove 109 collects the condensed water / defrosting water into a water flow and guides the water flow to the water storage part 202. Part of the first air outlet 108 extends to the water collecting groove 109, when the water flow of the water collecting groove 109 flows to the first air outlet 108 located in the water collecting groove 109, the water flow falls from the first air outlet 108, thereby supplementing the water storage part 202. For example, when the refrigeration equipment defrosts, the defrosting water generated under the action of gravity falls into the water collecting groove 109, and the defrosting water reflows along the water collecting groove 109 to the water storage part 202 for repeated use, which can effectively reduce the frequency of water supplementing by the user.
[0056] With reference to Figure 3 And Figure 5 As shown, it can be understood that the depth of the water collecting groove 109 gradually increases in the direction close to the water storage part 202, and the liquid has a tendency to flow downward, thereby guiding the water flow to flow better towards the water storage part 202. In other embodiments, the bottom wall width of the water collecting groove 109 gradually decreases, so that the liquid flow rate gradually increases towards the water storage part 202, which can better and more concentratedly reach the water inlet 110 at the far end.
[0057] Further, with reference to Figure 6 And Figure 7As shown, the cabinet body 301 is provided with an air duct plate 501 and an opening 502, the opening 502 communicates with the storage compartment 302, the opening 502 and the evaporator 401 are located on opposite sides of the storage compartment 302, and the air duct plate 501 is located on the side of the evaporator 401 close to the opening 502. The cabinet body 301 is further provided with a supply air duct 601, the supply air duct 601 includes a second air outlet communicating with the storage compartment 302 and a return air outlet 602, the second air outlet is located at the top of the storage compartment 302, and the return air outlet 602 is located at the bottom of the storage compartment 302. The refrigeration equipment includes a second fan for promoting air circulation between the storage compartment 302 and the supply air duct 601, and the first air outlet 108 is arranged at a position close to the return air outlet 602. When the second fan and the humidifying assembly 201 are both in a working state, the high-humidity airflow generated by the humidifying assembly 201 passes through the return air outlet 602 to the supply air duct 601, and then enters the storage compartment 302 through the second air outlet. After being accelerated twice by the second fan, the high-humidity airflow is more fully mixed with the air in the storage compartment 302 after being discharged from the second air outlet, thereby further improving the efficiency of humidification. The blocking rib 103 includes a first rib portion 1031, the upper edge of the first rib portion 1031 is lower than the lower edge of the air duct plate 501, the appearance is kept beautiful, simple and smooth, the first rib portion 1031 is arranged along the arrangement direction of the evaporator 401 and the air duct plate 501, and the first rib portion 1031 is located between the evaporator 401 and the air duct plate 501, so that water droplets dropped from the evaporator 401 can be effectively blocked, and the air inlet is avoided from being affected.
[0058] With reference to Figure 3 and Figure 5 It can be understood that the blocking rib 103 includes a second rib portion 1032, the second rib portion 1032 is located on the side of the opening 502 of the first rib portion 1031, the second rib portion 1032 is located on the side facing the storage compartment 302, the first rib portion 1031 is located on the side close to the water collecting groove 109, and the second rib portion 1032 is lower than the first rib portion 1031, so that the appearance is relatively flat and beautiful, the occupation of space is reduced, the volume of the wine cabinet is avoided from being affected, and the second rib portion 1032 can effectively avoid that a user pours liquid on the partition plate during use of the wine cabinet, so that the liquid flows into the humidifying module 100, and the humidifying module 100 is damaged.
[0059] Specifically, along the length direction of the water collecting groove 109, the length of the first rib 1031 is greater than the maximum size of the air inlet 105, one end of the first rib 1031 is connected with the water collecting groove 109, and the other end extends vertically towards the air inlet 105, and the first rib 1031 acts on the water collecting groove 109 to receive water droplets dropped from the evaporator 401. The internal parts of the refrigeration fan may be inclined during assembly, or the refrigeration fan may be inclined due to other external factors, and the water droplets do not drop vertically to the bottom wall of the water collecting groove 109. Due to the long length from the lower edge of the evaporator 401 to the bottom wall of the water collecting groove 109, the water droplets have a high splashing height, and the length of the first rib 1031 is long, which can prevent the water droplets from dropping at multiple angles and also prevent the water droplets from splashing into the humidifying module 100. The overall shape of the first rib 1031 is not limited to a straight shape. In addition to being arranged in a straight shape, it can also be composed of multiple arcs with different curvatures or the same curvature, and the arcs are smoothly transitioned between each other to avoid stress concentration points. The specific shape and size are adjusted according to the shape of the air inlet 105 and the use requirements.
[0060] Further, the first rib 1031 is provided with a plurality of reinforcing ribs 10311, and the plurality of reinforcing ribs 10311 are arranged at intervals along the length direction of the first rib 1031. The reinforcing ribs 10311 can improve the rigidity and strength of the overall structure of the first rib and enhance the service life of the first rib 1031. In order to reduce the influence of the first rib 1031 on the overall appearance, the thickness of the first rib 1031 is set to be thin, but the length of the first rib 1031 is long and is easy to be damaged. For example, broken during installation, or accidentally collided with objects during use, resulting in bending. By arranging the plurality of reinforcing ribs 10311, the strength of the first rib 1031 can be increased. In addition, each reinforcing rib 10311 is arranged in the up-down direction, and the plurality of reinforcing ribs 10311 are arranged at intervals along the length direction of the first rib 1031, which can reduce the influence on the overall appearance.
[0061] 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-mentioned embodiments, and various changes can be made within the knowledge range possessed by ordinary skilled in the art without departing from the purpose of the utility model.
Claims
1. A humidifying module applied to a refrigeration device, characterized in that, The humidifying module comprises: a housing, a top surface of the housing is provided with an air inlet; a first fan, located in the housing, and drawing air through the air inlet; a blocking rib, protruding from the top surface of the housing and located at the outer periphery of the air inlet.
2. The humidification module of claim 1, wherein, The blocking rib surrounds the outer periphery of the air inlet, and the humidifying module further comprises a grille connected to the inner wall of the blocking rib.
3. A humidification assembly characterized by, The humidifying module comprises: a water storage member for storing water or generating moisture; the humidifying module of claim 1 or 2, connected to the water storage member, the housing is provided with an air outlet, the air outlet is directed towards the water storage member.
4. The humidifying assembly of claim 3, wherein, The housing comprises a cover plate, the air inlet and the blocking rib are provided on the cover plate, the water storage member is provided below the cover plate, and the cover plate is provided with an air outlet corresponding to the area of the water storage member.
5. A refrigeration appliance characterised in that, The humidifying module comprises: a cabinet body provided with a storage compartment; a refrigeration assembly for providing a refrigerated environment for the storage compartment; the humidifying assembly of claim 3 or 4, for increasing the humidity of the storage compartment.
6. The refrigeration appliance of claim 5, wherein, The refrigeration assembly comprises an evaporator, the housing is provided with a water collecting groove, the water collecting groove is located below the evaporator, the water collecting groove is provided with a water inlet, and the water collecting groove is used to guide water flow to the water inlet to supplement water for the water storage member.
7. The refrigeration appliance of claim 6, wherein, The cabinet body is provided with an air duct plate and an opening, the opening communicates with the storage compartment, the opening and the evaporator are located on opposite sides of the storage compartment, the blocking rib comprises a first rib portion, the upper edge of the first rib portion is lower than the lower edge of the air duct plate, and the first rib portion is located between the evaporator and the air duct plate along the arrangement direction of the evaporator and the air duct plate.
8. The refrigeration appliance of claim 7, wherein, The blocking rib comprises a second rib portion, the second rib portion is located on the side of the first rib portion away from the opening, and the second rib portion is lower than the first rib portion.
9. The refrigeration appliance of claim 8, wherein, The length of the first rib portion is greater than the maximum size of the air inlet along the length direction of the water collecting groove.
10. The refrigeration appliance of claim 9, wherein, The first rib portion is provided with a plurality of reinforcing ribs, and the reinforcing ribs are arranged at intervals along the length direction of the first rib portion.