Ice making assembly and refrigeration equipment
By designing the water box assembly and trigger structure, convenient water filling and accurate control of the refrigerator's ice-making component are achieved, solving the problems of inconvenient water filling and overflow, and improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TCL HOME APPLIANCES (HEFEI) CO LTD
- Filing Date
- 2025-04-24
- Publication Date
- 2026-05-12
AI Technical Summary
The existing refrigerator ice-making components are inconvenient to add water to and the amount of water added is inaccurate, which causes water to easily overflow from the ice tray, affecting the user experience and convenience.
采用水盒组件与触发结构配合的设计,通过触发翻转盖组件使密封塞脱离出水口,实现水盒组件与制冰容器的连通,准确控制加水量,避免溢出。
It improves the ease of operation and user experience of the ice-making components, ensures accurate water addition, prevents water overflow, and enhances user satisfaction.
Smart Images

Figure CN224230417U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electrical manufacturing technology, and in particular to an ice-making component and a refrigeration device. Background Technology
[0002] Refrigerators, as an indispensable home appliance in modern households, maintain a low-temperature environment through their refrigeration systems to achieve functions such as food preservation, refrigeration, and freezing, greatly facilitating people's daily lives. Ice-making modules, as an extended functional module within the refrigerator, are highly sought after. These modules can convert water into ice cubes, meeting users' needs for cold drinks and food preservation.
[0003] However, existing refrigerator ice-making components have problems such as inconvenience in adding water and inaccurate water volume, which can easily cause water to overflow from the ice tray when adding water, thus affecting the user's experience and convenience in using the ice-making components to some extent. Utility Model Content
[0004] Based on this, embodiments of this application provide an ice-making component and a refrigeration device.
[0005] In a first aspect, embodiments of this application provide an ice-making assembly, including:
[0006] A water box bracket, wherein the water box bracket is provided with a triggering structure and a first water outlet;
[0007] A water box assembly includes a water box, a box cover, and a flip-top assembly. The box cover is connected to the water box and includes a first cover body with a second water outlet. The flip-top assembly is rotatably connected to the box cover and includes a flip-top cover. The flip-top cover includes a connected second cover body and a sealing plug. The sealing plug is used to seal the second water outlet. When the water box assembly is installed on the water box bracket, the triggering structure triggers the flip-top assembly to flip and cause the sealing plug to disengage from the second water outlet. At this time, the first water outlet and the second water outlet are connected.
[0008] The housing is located below the water box bracket and connected to the water box bracket;
[0009] An ice-making container is installed on the housing and positioned below the first water outlet.
[0010] In some embodiments, the water box bracket includes a connected bracket body and a mounting portion, the mounting portion including a connected first bottom and a first side, the first bottom being provided with the first water outlet, and the first side being provided with the trigger structure; and / or,
[0011] The area of the first outlet is larger than the area of the second outlet.
[0012] In some embodiments, a first limiting structure is provided on the first bottom portion, and a second limiting structure is provided on the first side portion. When the water box assembly is installed on the water box bracket, the water box assembly is engaged between the first limiting structure and the second limiting structure; and / or,
[0013] The upper surface of the first bottom includes a first region and a second region, wherein the second region is located between the first region and the first outlet, the first region is used to support the water box, and the height of the points on the second region gradually decreases from one end near the first region to the other end near the first outlet; and / or,
[0014] The first bottom has a viewing window.
[0015] In some embodiments, the flip cover assembly further includes a torsion spring, and the flip cover further includes a first mounting shaft connected to the second cover body. The torsion spring is sleeved on the first mounting shaft, and both ends of the torsion spring are respectively connected to the first cover body of the box cover and the second cover body of the flip cover.
[0016] In some embodiments, the torsion spring includes a central helical portion and a first torsion arm and a second torsion arm connected to both ends of the central helical portion. The central helical portion is sleeved on the first mounting shaft. The axis of the first mounting shaft coincides with the axis of rotation of the second cover. The first torsion arm is connected to the first cover, and the second torsion arm is connected to the second cover. The second torsion arm and the sealing plug are respectively disposed on opposite sides of the first mounting shaft.
[0017] In some embodiments, when the flip cover is in the closed state, the angle between the first torsion arm and the second torsion arm is α; when the flip cover is in the open state, the angle between the first torsion arm and the second torsion arm is β, and α is greater than β.
[0018] In some embodiments, the lid further includes a first frame, which is disposed on the side of the first cover away from the water box and connected to the first cover. The first frame is provided with a water guide portion, which is recessed towards the outside of the first frame. When the water box assembly is installed on the water box bracket, the water guide portion is located below the second water outlet, and one end of the water guide portion away from the first cover is disposed corresponding to the first water outlet.
[0019] In some embodiments, the lid further includes a second frame, which is disposed on the side of the first lid facing the water box and connected to the first lid;
[0020] The second frame is embedded inside the opening end of the water box, and a sealing ring is provided between the second frame and the water box.
[0021] In some embodiments, the ice-making assembly further includes a knob mounted on the housing, one end of the ice-making container being connected to the knob and the other end being rotatably connected to the housing; and / or,
[0022] The ice-making assembly further includes an ice storage box disposed below the ice-making container. The housing has an opening through which the ice storage box can enter and exit the housing; and / or,
[0023] When the water box assembly is installed on the water box bracket, the side of the water box that contacts the water box bracket is the bottom surface, and the height of the points on the bottom surface gradually decreases from the bottom of the water box to the lid.
[0024] Secondly, embodiments of this application provide a refrigeration device, including the ice-making component described above.
[0025] The ice-making component provided in this application uses a water tank assembly to realize the water filling function of the ice-making component. After the user fills the water tank assembly with water, the user can directly install the water tank assembly on the water tank bracket. Since the triggering structure on the water tank bracket can trigger the flip cover assembly to flip and cause the sealing plug to disengage from the second water outlet on the cover, at this time, the first water outlet on the water tank bracket is connected to the second water outlet on the cover. The water in the water tank assembly enters the ice-making container through the first water outlet. The water tank assembly can accurately control the amount of water added, avoiding the problem of water overflowing from the ice-making container. Moreover, the operation is relatively convenient, thereby improving the user's experience and convenience in using the ice-making component. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below.
[0027] Figure 1 This is a three-dimensional structural diagram of the ice-making component provided in an embodiment of this application.
[0028] Figure 2 This is a schematic diagram of the explosion and decomposition of the ice-making component provided in the embodiments of this application.
[0029] Figure 3 This is a top view of the ice-making assembly provided in an embodiment of this application.
[0030] Figure 4 for Figure 3 The diagram shows a cross-sectional view of the structure along the AA direction.
[0031] Figure 5 This is a top view of the water box bracket provided in an embodiment of this application.
[0032] Figure 6 for Figure 5 The diagram shows a cross-sectional view of the structure along the BB direction.
[0033] Figure 7 This is a three-dimensional structural diagram of the water box assembly provided in the embodiment of this application when it is in a closed state.
[0034] Figure 8 This is a top view of the water box assembly provided in the embodiment of this application when it is in a closed state.
[0035] Figure 9 for Figure 8 The diagram shows a cross-sectional view of the structure along the CC direction.
[0036] Figure 10 This is a three-dimensional structural diagram of the water box assembly provided in the embodiment of this application when it is in the open state.
[0037] Figure 11 This is a top view of the water tank assembly provided in the embodiment of this application when it is in the open state.
[0038] Figure 12 for Figure 11 The diagram shows a cross-sectional view of the structure along the DD direction.
[0039] Figure 13 This is a three-dimensional structural diagram of the box lid provided in an embodiment of this application.
[0040] Component symbol explanation:
[0041] 100. Ice-making assembly; 20. Water tank bracket; 21. Bracket body; 22. Mounting part; 31. First bottom; 312. First water outlet; 313. Viewing window; 314. First limiting structure; 301. First area; 302. Second area; 32. First side; 321. Triggering structure; 322. Second limiting structure; 40. Water tank assembly; 41. Water tank; 42. Cover; 421. First cover; 401. Second water outlet; 423, First frame; 402, Water guide; 422, Second frame; 424, Partition; 425, Vent hole; 50, Flip cover; 51, Second cover; 52, Sealing plug; 53, First mounting shaft; 10, Torsion spring; 11, Central spiral part; 12, First torsion arm; 13, Second torsion arm; 60, Sealing ring; 70, Housing; 71, Opening; 81, Ice maker; 82, Knob; 83, Ice storage box. Detailed Implementation
[0042] 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 a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0043] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0044] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0045] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0046] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0047] Please see Figure 1 , Figure 2 , Figure 3 and Figure 4 This application provides an ice-making assembly 100, including a water tank support 20, a water tank assembly 40, a housing 70, and an ice-making container 81. The water tank support 20 is provided with a trigger structure 321 and a first water outlet 312. The water tank assembly 40 includes a water tank 41, a lid 42, and a flip-top assembly. The lid 42 is connected to the water tank 41 and includes a first cover body 421 with a second water outlet 401. The flip-top assembly is rotatably connected to the lid 42 and includes a flip-top 50. The flip-top 50 includes a... The second cover 51 and the sealing plug 52 are connected. The sealing plug 52 is used to seal the second water outlet 401. When the water box assembly 40 is installed on the water box bracket 20, the trigger structure 321 triggers the flip cover assembly to flip and cause the sealing plug 52 to disengage from the second water outlet 401. At this time, the first water outlet 312 is connected to the second water outlet 401. The housing 70 is disposed below the water box bracket 20 and connected to the water box bracket 20. The ice container 81 is installed on the housing 70 and disposed below the first water outlet 312.
[0048] For example, the water box bracket 20 and the housing 70 can be detachably connected, for example by means of snap-fit or screw connection; in other embodiments, the water box bracket 20 and the housing 70 can also be an integral structure.
[0049] The ice-making component 100 provided in this embodiment uses a water box component 40 to realize the water filling function of the ice-making component 100. After the user fills the water box component 40 with water, the user can directly install the water box component 40 on the water box bracket 20. Since the trigger structure 321 on the water box bracket 20 can trigger the flip cover component to flip and make the sealing plug 52 disengage from the second water outlet 401 on the box cover 42, at this time, the first water outlet 312 on the water box bracket 20 is connected to the second water outlet 401 on the box cover 42. The water in the water box component 40 enters the ice-making container 81 through the first water outlet 312. The water box component 40 can accurately control the amount of water added, avoid the problem of water overflowing from the ice-making container 81, and is more convenient to operate, thereby improving the user's experience and convenience in using the ice-making component 100.
[0050] Please see Figure 5 and Figure 6 See also Figure 4The water box bracket 20 includes a bracket body 21 and a mounting part 22 connected together. The mounting part 22 includes a first bottom 31 and a first side 32 connected together. The first bottom 31 is provided with the first water outlet 312, and the first side 32 is provided with the trigger structure 321.
[0051] Please see Figure 4 For example, the area of the first outlet 312 is larger than the area of the second outlet 401, so that the water flowing out of the second outlet 401 can pass smoothly through the first outlet 312 into the ice container 81, avoiding the water flow obstruction that causes excess water to remain on the first bottom 31, thereby preventing the residual water on the first bottom 31 from freezing the water box 41 on the water box support 20.
[0052] Please see Figure 5 and Figure 6 See also Figure 4 For example, the upper surface of the first bottom 31 includes a first region 301 and a second region 302, wherein the second region 302 is located between the first region 301 and the first outlet 312. The first region 301 is used to support the water box 41. From one end near the first region 301 to one end near the first outlet 312, the height of the points on the second region 302 gradually decreases, that is, the second region 302 is inclined, so that excess residual water on the first bottom 31 can flow out from the first outlet 312, preventing the residual water on the first bottom 31 from freezing the water box 41 to the water box support 20. For example, the second region 302 can be an inclined plane or an arc-shaped surface.
[0053] Please see Figure 6 See also Figure 4 The first bottom 31 is provided with a first limiting structure 314, and the first side 32 is provided with a second limiting structure 322. When the water box assembly 40 is installed on the water box bracket 20, the water box assembly 40 is locked between the first limiting structure 314 and the second limiting structure 322.
[0054] It is understandable that by setting the first limiting structure 314 and the second limiting structure 322, after the water box assembly 40 is installed on the mounting part 22, the first limiting structure 314 and the second limiting structure 322 can be used to limit the water box assembly 40 and prevent the water box assembly 40 from shaking.
[0055] Please see Figure 5 and Figure 6 See also Figure 4 The first bottom 31 is provided with a viewing window 313.
[0056] Understandably, by providing a viewing window 313 on the first bottom 31, users can observe the water level and freezing status inside the ice-making container 81 through the viewing window 313, making it convenient for users to use.
[0057] For example, the first bottom 31 is provided with a hollow part, and a light-transmitting plate is provided at the position of the hollow part. The light-transmitting plate constitutes the viewing window 313, and the first limiting structure 314 is provided on the light-transmitting plate.
[0058] Please see Figure 9 and Figure 12 See also Figure 4 The flip cover assembly also includes a torsion spring 10, and the flip cover 50 also includes a first mounting shaft 53 connected to the second cover body 51. The torsion spring 10 is sleeved on the first mounting shaft 53, and the two ends of the torsion spring 10 are respectively connected to the first cover body 421 of the box cover 42 and the second cover body 51 of the flip cover 50.
[0059] It should be noted that by setting the torsion spring 10 and connecting its two ends to the first cover body 421 of the box cover 42 and the second cover body 51 of the flip cover 50 respectively, when the flip cover 50 rotates under the action of external force, the torsion spring 10 will undergo elastic deformation and accumulate elastic potential energy. When the external force disappears, the elastic potential energy will be converted into a restoring force, so that the flip cover 50 returns to its initial state.
[0060] Please see Figure 12 The torsion spring 10 includes a central helical portion 11 and a first torsion arm 12 and a second torsion arm 13 connected to both ends of the central helical portion 11. The central helical portion 11 is sleeved on the first mounting shaft 53. The axis of the first mounting shaft 53 coincides with the axis of rotation of the second cover 51. The first torsion arm 12 is connected to the first cover 421, and the second torsion arm 13 is connected to the second cover 51. The second torsion arm 13 and the sealing plug 52 are respectively disposed on opposite sides of the first mounting shaft 53.
[0061] It is understandable that, since the second torsion arm 13 and the sealing plug 52 are respectively located on opposite sides of the first mounting shaft 53, and the second cover body 51 of the flip cover 50 rotates around the rotation axis of the second cover body 51, that is to say, the second cover body 51 can be regarded as a lever, and the second torsion arm 13 and the sealing plug 52 can be regarded as the two ends of the lever.
[0062] like Figure 7 , Figure 8 and Figure 9As shown, when the flip cover 50 is in the closed state and the sealing plug 52 seals the second water outlet 401, the side of the second cover 51 connected to the sealing plug 52 is slightly tilted towards the water box 41, and the side of the second cover 51 connected to the second torsion arm 13 is slightly tilted away from the water box 41. That is to say, at this time, the torsion spring 10 gives the side of the second cover 51 connected to the sealing plug 52 an appropriate outward pushing force, thereby tilting the side of the second cover 51 connected to the second torsion arm 13 inward based on the lever principle, thereby achieving the sealing of the second water outlet 401.
[0063] like Figure 10 , Figure 11 and Figure 12 As shown, when the flip cover 50 is in the open state and the sealing plug 52 is disengaged from the second water outlet 401, the side of the second cover 51 connected to the sealing plug 52 tilts away from the water box 41, and the side of the second cover 51 connected to the second torsion arm 13 tilts towards the water box 41.
[0064] It can be seen that by setting the second torsion arm 13 and the sealing plug 52 on opposite sides of the first mounting shaft 53, the lever principle can be used to achieve the closing or opening of the flip cover 50.
[0065] Please see Figure 7 , Figure 8 and Figure 9 When the flip cover 50 is in the closed state, the included angle between the first torsion arm 12 and the second torsion arm 13 is α; please refer to Figure 10 , Figure 11 and Figure 12 When the flip cover 50 is in the open state, the included angle between the first torsion arm 12 and the second torsion arm 13 is β, and α is greater than β.
[0066] It should be noted that when the torsion spring 10 is in its initial unloaded state, the angle between the first torsion arm 12 and the second torsion arm 13 is close to 90°, while α and β are both less than 90°. This means that the torsion spring 10 is in a compressed state when the flip cover 50 is in both the closed and open states. Since α is greater than β, that is, when the water tank assembly 40 is not installed on the water tank bracket 20, the flip cover 50 is in the closed state. At this time, the compression of the torsion spring 10 is relatively light (α is larger). When the water tank assembly 40 is installed on the water tank bracket 20, the trigger structure 321... Applying a force to the flip cover 50 causes it to rotate. At this time, the flip cover 50 is in the open state, and the torsion spring 10 is compressed to a greater degree (β is smaller). That is to say, when the flip cover 50 is in the open state, the torsion spring 10 is deformed to a greater degree and accumulates more elastic potential energy. Therefore, when the water box 41 is removed from the water box bracket 20, that is, when the flip cover 50 is disengaged from the trigger structure 321, the second cover 51 of the flip cover 50 will spontaneously return to the initial position, so that the sealing plug 52 is pressed against the second water outlet 401 again to seal the flip cover assembly.
[0067] Understandably, when the water box assembly 40 is not installed on the water box bracket 20, the sealing plug 52 in the flip cover assembly will automatically press against the second water outlet 401 under the action of the torsion spring 10 to seal the flip cover 50 and prevent the flip cover 50 from shaking and causing poor sealing.
[0068] Please see Figure 9 , Figure 10 and Figure 12 The lid 42 further includes a first frame 423, which is disposed on the side of the first cover 421 away from the water box 41 and connected to the first cover 421. The first frame 423 is provided with a water guide 402, which is recessed towards the outside of the first frame 423. When the water box assembly 40 is installed on the water box bracket 20, the water guide 402 is located below the second water outlet 401, and the end of the water guide 402 away from the first cover 421 is provided corresponding to the first water outlet 312.
[0069] Please see Figure 9 , Figure 10 and Figure 12 The lid 42 further includes a second frame 422, which is disposed on the side of the first cover 421 facing the water box 41 and connected to the first cover 421; the second frame 422 is embedded in the opening 71 of the water box 41, and a sealing ring 60 is provided between the second frame 422 and the water box 41.
[0070] It is understandable that by setting a sealing ring 60 between the water box 41 and the second frame 422, the water box 41 can be sealed to prevent water leakage.
[0071] For example, please refer to Figure 5 The water box support 20 is provided with a plurality of first water outlets 312 spaced apart. Please refer to [link / reference]. Figure 10 The first cover 421 is provided with a plurality of second water outlets 401 arranged at intervals, and the plurality of first water outlets 312 and the plurality of second water outlets 401 are respectively arranged correspondingly.
[0072] Please see Figure 13 The cover 42 also includes a partition 424, which is provided between any two adjacent second water outlets 401. The first cover 421 and the second frame 422 are both connected to the partition 424.
[0073] It is understandable that by setting a partition 424 between adjacent second water outlets 401, the water in the water box 41 can flow evenly into multiple second water outlets 401, and then evenly into the ice-making container 81.
[0074] Please see Figure 10 The first frame 423 is provided with a plurality of water guiding parts 402, and the plurality of water guiding parts 402 respectively correspond to a plurality of second water outlets 401.
[0075] Please see Figure 2 and Figure 4 The number of ice-making containers 81 is multiple, and the multiple ice-making containers 81 are respectively set with multiple first water outlets 312.
[0076] In the embodiments of this application, "multiple" refers to two or more, such as three, four, five, six, etc.
[0077] Please see Figure 12 For example, the first cover 421 of the box cover 42 has a vent hole 425, which is used to balance the internal and external air pressure of the water box 41 and ensure that the amount of water flowing out of each second water outlet 401 is consistent.
[0078] Please see Figure 12 For example, there are multiple vent holes 425. By setting multiple vent holes 425, it is possible to prevent individual vent holes 425 from being blocked by water and frozen, which would cause the water box 41 to lose its air permeability.
[0079] For example, the water box 41 has a water filling scale line to remind the user of the water amount to be added. The water amount must be sufficient to ensure that when the water box assembly 40 is installed on the water box bracket 20, the vent 425 is above the water surface in the vertical direction.
[0080] Please see Figure 2 and Figure 4 The ice-making assembly 100 also includes a knob 82, which is mounted on the housing 70. One end of the ice-making container 81 is connected to the knob 82, and the other end is rotatably connected to the housing 70.
[0081] Understandably, by setting knob 82, once the ice in ice container 81 is completely frozen, the user can rotate knob 82 to make ice container 81 rotate, thereby causing the ice in ice container 81 to flip and fall into ice storage box 83.
[0082] Please see Figure 2 and Figure 4 The ice-making assembly 100 also includes an ice storage box 83, which is disposed below the ice-making container 81. The housing 70 has an opening 71, through which the ice storage box 83 can enter and exit the housing 70.
[0083] Understandably, the ice storage box 83 can be used to store pre-made ice cubes. When a user needs to use ice cubes, they can pull the ice storage box 83 to expose it outside the housing 70 for easy access.
[0084] Please see Figure 4 When the water box assembly 40 is installed on the water box bracket 20, the surface of the water box 41 that contacts the water box bracket 20 is the bottom surface. From the bottom of the water box 41 to the lid 42, the height of the points on the bottom surface gradually decreases, that is, the water box 41 is in an inclined state, thereby facilitating water flow. For example, the bottom surface can be a flat surface or a curved surface.
[0085] This application also provides a refrigeration device, including the ice-making component 100 in any of the above embodiments.
[0086] For example, the refrigeration equipment can be a refrigerator, freezer, freezer box, ice maker, etc.
[0087] The ice-making components and refrigeration equipment provided in the embodiments of this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application, and the descriptions of the embodiments above are only for the purpose of helping to understand this application. Furthermore, those skilled in the art will recognize that, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. An ice-making component, characterized in that, include: A water box bracket, wherein the water box bracket is provided with a triggering structure and a first water outlet; A water box assembly includes a water box, a box cover, and a flip-top assembly. The box cover is connected to the water box and includes a first cover body with a second water outlet. The flip-top assembly is rotatably connected to the box cover and includes a flip-top cover. The flip-top cover includes a connected second cover body and a sealing plug. The sealing plug is used to seal the second water outlet. When the water box assembly is installed on the water box bracket, the triggering structure triggers the flip-top assembly to flip and cause the sealing plug to disengage from the second water outlet. At this time, the first water outlet and the second water outlet are connected. The housing is located below the water box bracket and connected to the water box bracket; An ice-making container is installed on the housing and positioned below the first water outlet.
2. The ice-making assembly according to claim 1, characterized in that, The water box bracket includes a connected bracket body and a mounting portion. The mounting portion includes a connected first bottom and a first side. The first bottom is provided with the first water outlet, and the first side is provided with the trigger structure; and / or, The area of the first outlet is larger than the area of the second outlet.
3. The ice-making assembly according to claim 2, characterized in that, A first limiting structure is provided on the first bottom, and a second limiting structure is provided on the first side. When the water box assembly is installed on the water box bracket, the water box assembly is engaged between the first limiting structure and the second limiting structure; and / or, The upper surface of the first bottom includes a first region and a second region, wherein the second region is located between the first region and the first outlet, the first region is used to support the water box, and the height of the points on the second region gradually decreases from one end near the first region to the other end near the first outlet; and / or, The first bottom has a viewing window.
4. The ice-making assembly according to claim 1, characterized in that, The flip cover assembly also includes a torsion spring, and the flip cover also includes a first mounting shaft connected to the second cover body. The torsion spring is sleeved on the first mounting shaft, and the two ends of the torsion spring are respectively connected to the first cover body of the box cover and the second cover body of the flip cover.
5. The ice-making assembly according to claim 4, characterized in that, The torsion spring includes a central helical portion and a first torsion arm and a second torsion arm connected to both ends of the central helical portion. The central helical portion is sleeved on the first mounting shaft. The axis of the first mounting shaft coincides with the axis of rotation of the second cover. The first torsion arm is connected to the first cover, and the second torsion arm is connected to the second cover. The second torsion arm and the sealing plug are respectively disposed on opposite sides of the first mounting shaft.
6. The ice-making assembly according to claim 5, characterized in that, When the flip cover is in the closed state, the angle between the first torsion arm and the second torsion arm is α; when the flip cover is in the open state, the angle between the first torsion arm and the second torsion arm is β, and α is greater than β.
7. The ice-making assembly according to claim 1, characterized in that, The lid also includes a first frame, which is disposed on the side of the first cover away from the water box and connected to the first cover. The first frame is provided with a water guide portion, which is recessed towards the outside of the first frame. When the water box assembly is installed on the water box bracket, the water guide portion is located below the second water outlet, and the end of the water guide portion away from the first cover is provided corresponding to the first water outlet.
8. The ice-making assembly according to claim 1, characterized in that, The lid also includes a second frame, which is disposed on the side of the first lid facing the water box and connected to the first lid; The second frame is embedded inside the opening end of the water box, and a sealing ring is provided between the second frame and the water box.
9. The ice-making assembly according to claim 1, characterized in that, The ice-making assembly further includes a knob mounted on the housing, one end of the ice-making container being connected to the knob and the other end being rotatably connected to the housing; and / or The ice-making assembly also includes an ice storage box, which is disposed below the ice-making container. The housing has an opening through which the ice storage box can enter and exit the housing. And / or, When the water box assembly is installed on the water box bracket, the side of the water box that contacts the water box bracket is the bottom surface, and the height of the points on the bottom surface gradually decreases from the bottom of the water box to the lid.
10. A refrigeration device, characterized in that, Includes the ice-making assembly as described in any one of claims 1-9.