Novel water pan assembly and refrigerator
By setting an evaporation component and a height-adjustable drainage component in the water tray, the problems of large water tray space occupation and poor drainage are solved, efficient evaporation and discharge of condensed water are achieved, and the efficiency and safety of the refrigerator are improved.
Patent Information
- Application Number
- CN202422914270.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The existing water tray in the refrigerator has the problems of occupying a large space and having an unsatisfactory drainage effect. The self-evaporation structure takes up space and has an unsatisfactory effect, while the drainage structure is easily clogged.
A new water tray assembly is designed, which includes an evaporation assembly and a drainage assembly. The evaporation assembly is arranged in a circuitous manner at the bottom of the water tray through an evaporation pipe, and the drainage assembly is connected to the connecting piece through a height-adjustable drainage piece to ensure that the condensed water evaporates under normal circumstances and is discharged in time under extreme circumstances.
Effectively utilize the inner space of the drain pan to prevent condensation water accumulation, improve refrigeration efficiency, reduce maintenance costs, avoid drain pipe blockage, and ensure the dryness and safety of the refrigerator interior.
Smart Images

Figure CN223435343U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of refrigerators, in particular to a novel water receiving tray assembly and a refrigerator. Background Art
[0002] The drain pan collects condensed water generated by temperature fluctuations inside the freezer, ensuring a dry environment inside the freezer and preventing moisture from damaging electrical components. This also helps maintain the freezer's cooling performance. To effectively manage and treat this condensed water, most current drain pans on the market employ either self-evaporation or drainage mechanisms. However, these mechanisms still present some practical challenges.
[0003] The self-evaporation structure often places the water collection pan on the top of the compressor and uses the waste heat of the compressor to evaporate the condensed water. Although the cost is low, it takes up space in the engine compartment and the evaporation effect is not ideal. In addition, some improve the evaporation effect by installing a secondary condenser in the water collection pan, but this will cause corrosion to the secondary condenser in high-salinity environments such as coastal areas. In the long run, it may cause refrigerant leakage and bring safety hazards.
[0004] In terms of drainage structure, most water collection pans currently adopt a cantilever drainage structure. In order to ensure drainage performance, a larger diameter drain pipe is usually used, but this will take up more internal space, resulting in an increase in the overall volume of the water collection pan. Choosing a smaller diameter drain pipe, although it can save space, is prone to clogging due to impurities in the condensed water, affecting the normal use of the water collection pan.
[0005] Therefore, it is necessary to develop a new type of water tray assembly and refrigerator to optimize space utilization and ensure reliable drainage performance. Utility Model Content
[0006] In view of the above-mentioned problems of the large space occupied by the water receiving tray and the unsatisfactory drainage effect in the prior art, the technical solution adopted by the present invention to solve the technical problems is:
[0007] A new water receiving tray assembly includes a water receiving tray body, which is provided with a water tank opening and a water receiving tray inner cavity. It also includes an evaporation component located on the surface of the water receiving tray body and a drainage component with one end located in the water receiving tray inner cavity. The drainage component adjusts the liquid level height for draining overflow water by changing its height in the water receiving tray inner cavity.
[0008] Furthermore, the solution describes a new type of water receiving tray assembly, wherein the drainage assembly includes a connector fixed to the side of the water receiving tray body, and a drainage component detachably connected to the connector and located in the inner cavity of the water receiving tray, and a drainage outlet is provided on the side of the drainage component close to the water tank opening.
[0009] Furthermore, the scheme describes a new type of water receiving tray assembly, wherein the connecting member is located at one end outside the water receiving tray body and is also provided with a connecting end connected to a joint or a drain pipe, and the drainage member is also provided with a first mating end on the side close to the drain outlet, and the first mating end is connected to the drain pipe for adjusting the liquid level height for draining overflow water.
[0010] Furthermore, the solution describes a new type of water tray assembly, wherein the connecting end includes a second mating end and a third mating end, and the drainage member is arranged in an L-shape.
[0011] Furthermore, in the novel water receiving tray assembly described in the solution, the height from the drain outlet to the bottom of the water receiving tray body accounts for between five-sevenths and nine-tenths of the height of the inner cavity of the water receiving tray.
[0012] Furthermore, in the novel water receiving tray assembly described in the solution, the evaporation assembly includes an evaporation tube, and the evaporation tube is arranged in a circuitous manner and fixed at the bottom of the water receiving tray body.
[0013] Furthermore, in the novel water receiving tray assembly described in the solution, a reinforcing rib is provided on the side of the water receiving tray body in contact with the evaporation tube, and a plurality of reinforcing ribs are provided.
[0014] Furthermore, the solution describes a new type of water receiving tray assembly, which also includes a heat preservation assembly. The evaporation tube is located between the bottom of the water receiving tray body and the heat preservation assembly. The heat preservation assembly is used to prevent heat loss from the evaporation tube.
[0015] Furthermore, the scheme describes a new type of water receiving tray assembly, wherein the bottom of the water receiving tray body is also provided with a plurality of fixed ends for fixing the evaporation tube, the water receiving tray body is provided with a fastening end, the fastening end is provided with a plurality of fastening ends and is used to fix the water receiving tray body on the refrigerator, the fastening end is provided with a fastening hole, and the fastening hole is arranged as a long hole.
[0016] Furthermore, a refrigerator further includes a refrigerator body.
[0017] The beneficial effects of the utility model are as follows:
[0018] The utility model arranges an evaporation component and a drainage component on the water receiving pan body, so that under normal circumstances, the condensed water in the inner cavity of the water receiving pan can be evaporated by the evaporation component, thereby effectively preventing the continuous accumulation of condensed water. In extreme cases, when the speed at which the condensed water flows into the inner cavity of the water receiving pan exceeds the evaporation speed, the drainage component can promptly discharge the condensed water that is about to overflow. This arrangement ensures that the water receiving pan assembly can automatically drain the accumulated water. In addition, the drainage position height of the drainage component is adjustable, and the user can adjust the drainage position to a position closer to the water tank opening according to actual needs. This arrangement can not only make full use of the storage space in the inner cavity of the water receiving pan, but also allow the inner cavity of the water receiving pan to have more space for using a large-diameter drain pipe, thereby effectively avoiding the problem of easy blockage caused by the small diameter of the drain pipe.
[0019] The present invention will be further described below with reference to the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the appearance of a new water tray assembly of the present utility model.
[0021] Figure 2 This is a cross-sectional schematic diagram of a new water receiving tray assembly of the present utility model.
[0022] Figure 3 This is a schematic diagram of the appearance of a new water tray assembly of the present utility model.
[0023] Figure 4 This is an exploded schematic diagram of a new water tray assembly of the present utility model.
[0024] Figure 5 This is an enlarged schematic diagram of part I of a new water receiving tray assembly of the present invention. DETAILED DESCRIPTION
[0025] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.
[0026] like Figures 1-5 A new type of water receiving tray assembly is shown, including a water receiving tray body 1, which is provided with a water tank opening 11 and a water receiving tray cavity 12, and further includes an evaporation component 2 located on the surface of the water receiving tray body 1, and a drainage component 3 with one end located in the water receiving tray cavity 12. The drainage component 3 adjusts the liquid level height for draining overflow water by changing its height in the water receiving tray cavity 12.
[0027] The utility model discloses a water pan assembly, including water pan main part 1, evaporate component 2 and drainage component 3, water pan main part 1's inside is provided with water pan cavity 12, evaporate component 2 is arranged on water pan main part 1, and drainage component 3 is arranged on water pan main part 1, evaporate component 2 is connected with water pan cavity 12, and drainage component 3 is connected with water pan cavity 12, evaporate component 2 is evaporated component, and drainage component 3 is drainage component, the utility model discloses a water pan main part 1 is provided with evaporate component 2 and drainage component 3, makes under normal circumstances, the condensate water of water pan cavity 12 can evaporate through evaporate component 2 to prevent the sustained accumulation of condensate water effectively, and under extreme circumstances, when the speed of condensate water flowing into water pan cavity 12 exceeds the evaporation speed, drainage component 3 can promptly discharge the condensate water that will overflow, this setting ensures that water pan component can automatically remove the ponding, in addition, the drainage position height of drainage component 3 can be adjusted, and the user can adjust the drainage position to be closer to the position of water tank opening 11 according to actual demand, this setting not only can make full use of the storage space of water pan cavity 12, but also makes water pan cavity 12 have more space to use the drain pipe of big caliber, thereby effectively avoid the problem of easy blockage caused by the small caliber of drain pipe.
[0028] Specifically, the present invention is generally used in situations where it is inconvenient to directly discharge condensed water. By arranging an evaporation component 2 and a drainage component 3 on the water receiving pan main body 1, under normal working conditions, the evaporation component 2 can quickly evaporate the condensed water in the inner cavity 12 of the water receiving pan, effectively preventing the continuous accumulation of water, which not only helps to keep the internal environment of the refrigerator dry, but also indirectly improves the overall refrigeration efficiency of the refrigerator, because excessive condensed water will increase the burden on the refrigerator and affect its cooling effect; further, when encountering extreme situations, such as when the condensed water generation rate exceeds the evaporation rate, the arrangement of the drainage component 3 can temporarily discharge the condensed water that is about to overflow, preventing the condensed water from overflowing into the interior of the refrigerator, causing water accumulation inside the refrigerator; further, this arrangement effectively reduces manual intervention, thereby reducing maintenance costs; further, the traditional drainage structure adopts a straight cantilever drain pipe, which usually extends straight from the side of the water receiving pan. Although this arrangement can achieve basic drainage functions, it has some obvious limitations. First, the straight cantilever drain pipe occupies a large space, and it is necessary to reserve a drainage pipe in the inner cavity 12 of the water receiving pan. The space of the diameter should be given to the straight cantilever drain pipe, which will further compress the available space and affect the layout and installation of other components. Secondly, in some occasions due to space limitations, the straight cantilever drain pipe often uses a smaller diameter drain pipe to adapt to the limited space, which increases the risk of drain pipe blockage, especially when the condensate contains impurities, which can easily lead to poor drainage or even complete blockage, thereby affecting the normal operation of the refrigerator. The utility model installs a drain assembly 3 arranged vertically at a right angle on the side of the water receiving pan body 1, so that the drain outlet of the drain assembly 3 is arranged along the inner wall of the water receiving pan cavity 12 towards the water tank opening 11, so that the size of the drain assembly 3 does not occupy the space of the water receiving pan cavity 12, thereby avoiding the problem that the traditional straight cantilever drain pipe needs to occupy the corresponding diameter space in the water receiving pan cavity 12, and providing more storage space for the water receiving pan cavity 12; further, the utility model realizes the height adjustment of the drainage position through the drain assembly 3, so that the user can flexibly adjust the drainage position according to actual use needs. This arrangement further enables the user to make full use of the storage space of the water receiving pan cavity 12.
[0029] Further, such as Figures 1-5 A new type of water receiving tray assembly is shown, wherein the drainage assembly 3 includes a connecting member 31 fixed to the side of the water receiving tray body 1, and a drainage member 32 detachably connected to the connecting member 31 and located in the inner cavity 12 of the water receiving tray, and a drainage outlet 33 is provided on the side of the drainage member 32 close to the water tank opening 11.
[0030] The utility model has a detachable connection arrangement between the drainage member 32 and the connecting member 31. This arrangement not only enables the user to replace the drainage member 32 with an appropriate length according to the actual depth of the water receiving tray cavity 12, but also facilitates the user's maintenance and replacement work; further, a drainage port 33 is provided on the side of the drainage member 32 close to the water tank opening 11. This arrangement ensures that the condensed water will not be discharged until it reaches a position close to the water tank opening 11, ensuring that the water receiving tray cavity 12 can accommodate more condensed water to the greatest extent while avoiding overflow.
[0031] Further, such as Figures 1-5 A new type of water receiving tray assembly is shown, wherein the connecting member 31 is located on the outside of the water receiving tray body 1 and is also provided with a connecting end 37 connected to a joint or a drain pipe, and the drainage member 32 is also provided with a first mating end 34 on the side close to the drain outlet 33, and the first mating end 34 is connected to the drain pipe for adjusting the liquid level height for draining overflow water.
[0032] The utility model provides a connecting end 37 connected to a joint or a drain pipe at one end of the connecting piece 31 located on the outside of the water receiving pan body 1, so that the overflowing condensed water can be effectively guided to a designated position by the joint or the drain pipe for discharge, thereby avoiding the problem of water accumulation inside the refrigerator caused by overflow of the water receiving pan body 1; further, a first mating end 34 is provided on the side of the drain piece 32 close to the drain outlet 33, and the user can adjust the drainage position by inserting drain pipes of different lengths on the first mating end 34 to ensure that the inner cavity 12 of the water receiving pan can accommodate more condensed water to the greatest extent.
[0033] Further, such as Figures 1-5 A novel water tray assembly is shown, wherein the connecting end 37 includes a second mating end 35 and a third mating end 36, and the drainage member 32 is arranged in an L-shape.
[0034] The utility model provides a second mating end 35 and a third mating end 36 at the connecting end 37, so that the connector for draining overflow water can be tightly fixed to the second mating end 35 through a threaded connection, thereby ensuring the safety and stability of the connection; further, the connector or drain pipe for draining overflow water can also be directly inserted into the third mating end 36 to achieve quick and easy installation and connection, thereby simplifying the installation steps and improving maintenance convenience; further, the drain member 32 is L-shaped, so that the drain member 32 can be installed on the side of the water receiving pan body 1, and through the right-angled structure, the drain outlet 33 is closer to the position of the water tank opening 11, and this arrangement effectively optimizes the space utilization of the inner cavity 12 of the water receiving pan; further, the L-shaped arrangement of the drain member 32 helps to reduce the overall volume of the drain assembly 3, so that it can be easily installed and used in application scenarios with limited space.
[0035] Further, such asFigures 1-5 A new water pan assembly is shown, wherein the height of the drain port 33 to the bottom of the water pan body 1 is between five-sevenths and nine-tenths of the height of the water pan inner cavity 12.
[0036] The height of the drain port 33 to the bottom of the water pan body 1 is set to be between five-sevenths and nine-tenths of the height of the water pan inner cavity 12, which ensures that the space of the water pan inner cavity 12 can be fully utilized to store condensed water, and also ensures that there is enough buffer space even when the condensed water flows into the water pan inner cavity 12 too quickly, which helps to timely discharge the condensed water and avoids the overflow problem caused by excessive water accumulation; further, if the height of the drain port 33 is less than five-sevenths of the height of the water pan inner cavity 12, the effective volume of the water pan inner cavity 12 for storing condensed water will be reduced, resulting in waste of space; further, if the height of the drain port 33 is greater than nine-tenths of the height of the water pan inner cavity 12, it will lead to the situation that when the condensed water flows into the water pan inner cavity 12 too quickly, it cannot be discharged in time and there is not enough space for buffering, which will cause the condensed water to easily overflow.
[0037] Further, as shown in Figures 1-5 A new water pan assembly is shown, wherein the evaporation assembly 2 includes an evaporation pipe 21, and the evaporation pipe 21 is fixed in a winding manner at the bottom of the water pan body 1.
[0038] In the utility model, the condensed water collected in the water pan inner cavity 12 is subjected to evaporation treatment by the evaporation pipe 21, which effectively reduces the accumulation of condensed water in the water pan inner cavity 12, thereby preventing the problem of condensed water overflow; further, the evaporation pipe 21 is fixed in a winding manner at the bottom of the water pan body 1, which makes the evaporation pipe 21 fully utilize the area of the bottom of the water pan body 1 for heating, so that the evaporation process is more uniform and efficient, which helps to quickly reduce the amount of condensed water in the water pan inner cavity 12, thereby improving the evaporation efficiency.
[0039] Further, as shown in Figures 1-5 A new water pan assembly is shown, wherein the water pan body 1 is provided with a reinforcing rib 13 on the side in contact with the evaporation pipe 21, and the reinforcing rib 13 is provided with a plurality of
[0040] The present invention provides a plurality of parallel reinforcing ribs 13 at the bottom of the water receiving pan body 1 where it contacts the evaporation tube 21. This arrangement not only ensures the flatness of the bottom of the water receiving pan body 1, but also enables the evaporation tube 21 to fit more fully to the bottom of the water receiving pan body 1, thereby optimizing the heat conduction effect and promoting the rapid evaporation of condensed water; further, this arrangement can also avoid the problem of deformation of the bottom of the water receiving pan body 1 caused by long-term heating of the evaporation tube 21, thereby extending the service life of the entire water receiving pan assembly.
[0041] Further, such as Figures 1-5 A new type of water receiving tray assembly is shown, which also includes a heat preservation assembly 4. The evaporation tube 21 is located between the bottom of the water receiving tray body 1 and the heat preservation assembly 4. The heat preservation assembly 4 is used to prevent the heat loss of the evaporation tube 21.
[0042] The utility model provides an insulation component 4 in the water receiving pan assembly. In this embodiment, the insulation component 4 is aluminum foil and insulation sponge. In this embodiment, the evaporation tube 21 is placed between the bottom of the water receiving pan body 1 and the insulation component 4, so that the evaporation tube 21 is covered with aluminum foil and insulation sponge in a closed environment. This arrangement not only effectively reduces the heat loss of the evaporation tube 21, thereby ensuring that the heat generated by the evaporation tube 21 can efficiently act on the evaporation of condensed water; further, this arrangement can also effectively isolate the evaporation tube 21 from the influence of external dust, impurities, moisture and salt, thereby avoiding corrosion or damage to the evaporation tube 21 due to external environmental factors.
[0043] Further, such as Figures 1-5 A new type of water receiving tray assembly is shown, wherein the bottom of the water receiving tray body 1 is also provided with multiple fixed ends 14 for fixing the evaporation tube 21, and the water receiving tray body 1 is provided with a fastening end 15, and the fastening end 15 is provided with multiple and is used to fix the water receiving tray body 1 on the refrigerator, and the fastening end 15 is provided with a fastening hole 16, and the fastening hole 16 is arranged as a long hole.
[0044] The utility model provides a plurality of fixing ends 14 for fixing the evaporation tube 21 on the water receiving pan main body 1. This arrangement ensures that the evaporation tube 21 can be firmly installed on the bottom of the water receiving pan main body 1, and avoids the evaporation tube 21 from being separated from the bottom surface of the water receiving pan main body 1 due to vibration, thereby ensuring high evaporation efficiency; further, by providing a plurality of fastening ends 15 on the water receiving pan main body 1, and each fastening end 15 is provided with a fastening hole 16 arranged in the form of a long hole, this arrangement not only allows the user to fine-tune the installation position of the water receiving pan main body 1 according to the internal structure of the refrigerator, but also ensures that the water receiving pan main body 1 can be firmly fixed on the refrigerator, thereby enhancing the stability of the overall structure.
[0045] Further, such as Figures 1-5A refrigerator is shown, wherein the refrigerator body is located above the water pan assembly.
[0046] The water pan assembly in the utility model includes a water pan main body 1, an evaporation assembly 2 and a drainage assembly 3, so that the water pan assembly can effectively evaporate the condensed water through the evaporation assembly 2 under normal circumstances, and prevent the condensed water from accumulating, and in the extreme case, when the inflow speed of the condensed water exceeds the evaporation speed, the drainage assembly 3 can timely drain the condensed water about to overflow, thereby ensuring the sanitary condition of the internal environment of the refrigerator; further, the utility model places the water pan assembly below the refrigerator, which makes the condensed water more effectively collected and treated, and effectively reduces the influence of the condensed water on the internal environment of the refrigerator.
[0047] As Figures 1-5 The embodiments of the utility model are as follows:
[0048] Embodiment one
[0049] The embodiment provides a novel water pan assembly, which mainly comprises a water pan main body 1, an evaporation assembly 2 and a drainage assembly 3. The water pan main body 1 is provided with a water tank opening 11 and a water pan inner cavity 12, which are used for collecting the condensed water generated in the internal environment of the refrigerator due to temperature change. The evaporation assembly 2 comprises an evaporation pipe 21, which is fixed to the bottom of the water pan main body 1 through a fixed end 14 and is arranged in a meandering manner, and is used for heating and evaporating the condensed water, thereby reducing the accumulation of the condensed water. The drainage assembly 3 is installed on the side surface of the water pan main body 1 and comprises a connecting piece 31 and a detachable drainage piece 32, which can timely drain the condensed water about to overflow when the generation speed of the condensed water exceeds the evaporation speed, thereby preventing the accumulated water from affecting the operation of the refrigerator. In addition, in order to enhance the strength of the entire water pan main body 1, a plurality of parallel reinforcing ribs 13 are arranged on the bottom of the water pan main body 1, so as to avoid deformation caused by long-term heating. In addition, a heat preservation assembly 4 is additionally arranged, which comprises an aluminum foil and a heat preservation sponge, and the evaporation pipe 21 is wrapped by the aluminum foil and the heat preservation sponge, so as to effectively isolate the influence of external environmental factors and reduce heat loss, thereby promoting the evaporation efficiency.
[0050] During the installation of the drain assembly 3 and the adjustment of the drain outlet 33, the user first needs to fix the connector 31 to the side of the water tray body 1. Next, according to the actual height of the water tray inner cavity 12, select a drain piece 32 of appropriate length and insert one end of it into the connector 31. The drain piece 32 is set in an L shape, and the drain outlet 33 is rotated to the side of the water tank opening 11. The purpose of this setting is to ensure that as much condensed water as possible is accumulated in the water tray inner cavity 12 until it reaches a certain height before draining, thereby maximizing the use of storage space. At this time, the height from the drain outlet 33 to the bottom of the water tray body 1 is five-sevenths of the height of the water tray inner cavity 12. In addition, the second mating end 35 at the other end of the connector 31 is connected to the joint through a thread to guide the overflow water to the designated location.
[0051] When the water tray assembly needs to be fixed, the water tray assembly is firmly mounted on a predetermined mounting surface by using the fastening hole 16 provided in the form of an elongated hole on the fastening end 15 and by using a threaded connection method.
[0052] Example 2:
[0053] This embodiment is similar to the first embodiment, except that the height from the drain outlet 33 to the bottom of the water receiving tray body 1 accounts for nine tenths of the height of the inner cavity 12 of the water receiving tray.
[0054] Example 3:
[0055] This embodiment is similar to the first embodiment, except that the height from the drain outlet 33 to the bottom of the water receiving tray body 1 accounts for six sevenths of the height of the inner cavity 12 of the water receiving tray.
[0056] Example 4:
[0057] This embodiment is similar to the first embodiment, except that a first mating end 34 is provided on the side of the drain member 32 near the drain opening 33. After the drain member 32 is installed, if the drain position needs to be raised toward the water tank opening 11, the first mating end 34 allows the user to further adjust the drain position by inserting drain pipes of different lengths.
[0058] Embodiment 5:
[0059] This embodiment is similar to the fourth embodiment, except that in this embodiment, the connector 31 is provided with a third mating end 36 at one end of the second mating end 35 for directly inserting a connector or a water pipe, so that overflow water can be guided to a designated location by installing a connector or a water pipe.
[0060] Example 6:
[0061] The water receiving tray assembly in this embodiment is similar to that in the fifth embodiment. In addition, this embodiment further provides a refrigerator for freezing items, and the water receiving tray assembly is placed under the refrigerator.
[0062] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.
Claims
1. A novel water receiving tray assembly, comprising a water receiving tray body (1), wherein the water receiving tray body (1) is provided with a water tank opening (11) and a water receiving tray inner cavity (12), and is characterized in that: It also includes an evaporation component (2) located on the surface of the water receiving tray body (1), and a drainage component (3) with one end located in the inner cavity (12) of the water receiving tray. The drainage component (3) adjusts the height of the liquid level for draining overflow water by changing its height in the inner cavity (12) of the water receiving tray.
2. A novel water tray assembly according to claim 1, characterized in that: The drainage assembly (3) comprises a connecting piece (31) fixed to the side of the water receiving tray body (1), and a drainage piece (32) detachably connected to the connecting piece (31) and located in the inner cavity (12) of the water receiving tray. A drainage outlet (33) is provided on a side of the drainage piece (32) close to the water tank opening (11).
3. A novel water tray assembly according to claim 2, characterized in that: The connecting member (31) is provided with a connecting end (37) on one end outside the water receiving tray body (1) for connecting to a joint or a drain pipe. The drain member (32) is provided with a first mating end (34) on a side close to the drain outlet (33). The first mating end (34) is connected to the drain pipe for adjusting the height of the liquid level for draining away overflow water.
4. A novel water tray assembly according to claim 3, characterized in that: The connecting end (37) comprises a second mating end (35) and a third mating end (36), and the drainage member (32) is arranged in an L-shape.
5. A novel water tray assembly according to claim 2, characterized in that: The height from the drain outlet (33) to the bottom of the water receiving tray body (1) accounts for between five sevenths and nine tenths of the height of the water receiving tray inner cavity (12).
6. A novel water tray assembly according to claim 1, characterized in that: The evaporation assembly (2) comprises an evaporation tube (21), and the evaporation tube (21) is arranged in a circuitous manner and fixed at the bottom of the water receiving tray body (1).
7. A novel water tray assembly according to claim 6, characterized in that: A side of the water receiving tray body (1) in contact with the evaporation tube (21) is further provided with a reinforcing rib (13), and a plurality of the reinforcing ribs (13) are provided.
8. The novel water tray assembly according to claim 6, characterized in that: It also includes a heat preservation component (4), the evaporation tube (21) is located between the bottom of the water receiving tray body (1) and the heat preservation component (4), and the heat preservation component (4) is used to prevent heat loss from the evaporation tube (21).
9. The novel water tray assembly according to claim 6, characterized in that: The bottom of the water receiving tray body (1) is also provided with a plurality of fixing ends (14) for fixing the evaporation tube (21), and the water receiving tray body (1) is provided with a fastening end (15), and the fastening end (15) is provided with a plurality of fastening holes (16) for fixing the water receiving tray body (1) on the refrigerator. The fastening holes (16) are arranged in the form of elongated holes.
10. A refrigerator, characterized in that: The utility model comprises a refrigerator body and a novel water receiving tray assembly according to any one of claims 1 to 9.