Novel water defrosting mechanism for air cooler
The novel water defrosting mechanism in cold wind machines addresses splashback and uneven distribution issues by using a T-shaped pipe and distributor design, enhancing defrosting efficiency and preventing damage.
Patent Information
- Application Number
- CN202422098028.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-28
AI Technical Summary
During the defrosting process of existing air coolers, the frost water is prone to splashing, causing the shell to deform and the air leaves to damage, and the uneven distribution of the frost water affects the defrost effect.
A new type of water frost flushing mechanism is designed, including a T-shaped water inlet pipe, trapezoidal splash cover, water homogenizer, hydrophobic plate and water outlet plate. Through the synergy of these components, splashing is reduced and uniform distribution of frost flushing water is achieved.
It effectively reduces the possibility of frost water splashing, ensures the uniform distribution of frost water, improves the defrost efficiency and working process, and avoids damage to the shell and wind blades.
Smart Images

Figure CN223106367U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cooling fans, and particularly relates to a water defrosting mechanism for a new type of cooling fan. Background Technique
[0002] Among the defrosting methods of cooling fans used in cold storages, the water defrosting method is simple and easy to implement, has a short time, and has a direct effect. Therefore, it is widely used in most usage scenarios.
[0003] At present, there are many cooling fan structures using the water defrosting method on the market, but there are also certain limitations, and there are certain problems: when the existing water defrosting cooling fan is defrosting, the defrosting water will flush the frost attached to the heat exchange tubes into the lower water collecting tray together. During this period, the defrosting water sometimes splashes out, splashes on the cooling fan housing, and even splashes outside the housing. With the refrigeration process, these water droplets condense into ice crystals, and after repeating several times, they will condense into ice blocks. If not dealt with in time, the ice blocks may cause the housing to deform, the fan blades of the fan to deform and be damaged, affecting the normal use of the cold storage. In addition, for the water source input into the cooling fan, there is also an uneven distribution situation, which to a certain extent affects the water defrosting work process and cannot effectively meet the use requirements. Summary of the Utility Model
[0004] Aiming at the technical problems existing in the above water defrosting process, the utility model provides a water defrosting mechanism for a new type of cooling fan, which has reasonable design, simple structure, convenient processing, can effectively reduce the possibility of splashing of defrosting water during the water defrosting process, ensure the uniform distribution of defrosting water, guarantee the effective progress of water defrosting work, ensure the defrosting operation effect, improve the work process, and effectively meet the use requirements.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is a water defrosting mechanism for a new type of cooling fan, including a cooling fan body. The cooling fan body includes a frame. A fan group is arranged in front of the frame, a heat exchange group is arranged in the frame, a water defrosting assembly is arranged above the frame. The water defrosting assembly includes a housing. An inlet pipe arranged in a T-shaped layout is arranged in the housing. A splash-proof cover designed in a trapezoidal shape is arranged above the inlet pipe. A water equalizer is arranged in the inlet pipe parallel to the housing. A drain plate is arranged below the housing. A drain groove designed in a key shape is opened in the drain plate. An outlet plate is arranged below the drain plate. A water dropping hole is opened in the outlet plate.
[0006] Preferably, the water equalizer includes a water guiding pipe. The lower part of the water guiding pipe is evenly provided with water dispersers designed in a conical shape. Water inlet holes are opened in the water dispersers. A plurality of water outlet holes arranged in an inclined layout are evenly opened in the water dispersers, and the extension line above them is communicated with the water inlet holes. The end part of the water outlet hole is designed in a flared shape from the inside to the outside.
[0007] Preferably, a cover plate is arranged above the shell, and a mounting plate for limiting the cover plate is arranged above the cover plate, one side of the mounting plate is designed in an outer L shape, and the other side thereof is provided with a buckle plate designed in an inner L shape.
[0008] Preferably, a vertical plate is provided on the outer side of the shell, and a buckle groove is provided in the vertical plate for facilitating the insertion of the buckle plate.
[0009] Compared with the prior art, the advantages and positive effects of the utility model are:
[0010] 1. The utility model provides a novel water defrosting mechanism for a cold air machine. Through the water defrosting component, on the one hand, it can reduce the possibility of splashing of defrosting water. On the other hand, under the action of the water equalizer, the defrosting water can be synchronously discharged to a certain extent. At the same time, the distribution range of the defrosting water is effectively increased, the effective defrosting work is guaranteed, the defrosting effect is ensured, the working process is improved, and the use requirements are met. The device is reasonably designed, simple in structure, and easy to process. It can effectively reduce the possibility of splashing of defrosting water during the water defrosting process, and ensure the uniform distribution of defrosting water, ensure the effective defrosting work, ensure the defrosting effect, improve the working process, and effectively meet the use requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions of the embodiments of the utility model, the following is a brief introduction to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor.
[0012] Figure 1 It is a structural schematic diagram of a new type of water defrosting mechanism for a cold air machine;
[0013] Figure 2 A schematic diagram of a portion of the internal structure of the water defrosting assembly provided by the utility model;
[0014] Figure 3 A side view of a portion of the internal structure of the water defrosting assembly provided by the utility model;
[0015] Figure 4 It is a partial structural cross-sectional schematic diagram of the water homogenizer provided by the utility model;
[0016] Figure 5 A partial structural side view of the water homogenizer provided by the utility model;
[0017] In the above figures, 1 is the main body of the air cooler; 2 is the frame; 3 is the fan group; 4 is the housing; 5 is the water inlet pipe; 6 is the splash guard; 7 is the water distributor; 71 is the water diversion pipe; 72 is the water disperser; 721 is the water inlet hole; 722 is the water outlet hole; 8 is the hydrophobic plate; 81 is the hydrophobic groove; 9 is the water outlet plate; 91 is the water falling hole; 10 is the cover plate; 11 is the mounting plate; 111 is the buckling plate; 12 is the vertical plate; 121 is the buckling groove. Detailed implementation mode
[0018] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described below with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0019] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the present invention is not limited by the limitations of the specific embodiments disclosed in the following specification.
[0020] Embodiment, as Figures 1 to 5 shown, a water flushing mechanism for a new type of air cooler includes the main body 1 of the air cooler. The main body 1 of the air cooler includes a frame 2. A fan group 3 is arranged in front of the frame 2, and a heat exchange group is arranged in the frame 2. The establishment of the above-mentioned various device and equipment components are all existing mature and commonly used technical means, and the specific establishment and installation methods will not be elaborated here; The purpose of this embodiment is to solve the possibility of splashing when the existing main body 1 of the air cooler conducts water flushing work. Specifically: A water flushing assembly is arranged above the frame 2. The water flushing assembly includes a housing 4. An inlet water pipe 5 arranged in a T-shaped layout is arranged in the housing 4. A splash guard 6 designed in a trapezoidal shape is arranged above the inlet water pipe 5, which can isolate the flushing water during the flushing process and at the same time guide it to the position close to the hydrophobic plate 8, reduce resource waste, and ensure the effective progress of the flushing work; In order to further improve the rationality of the device and equipment and ensure the synchronization of the discharge of the flushing water, a water distributor 7 is arranged in the inlet water pipe 5 parallel to the housing 4. Its function is to synchronously discharge the flushing water input into the inlet water pipe 5 through the water distributor 7 and then guide it in a large range to ensure the smooth progress of the subsequent flushing work; Further: A hydrophobic plate 8 is arranged below the housing 4. A hydrophobic groove 81 designed in a key shape is opened in the hydrophobic plate 8. A water outlet plate 9 is arranged below the hydrophobic plate 8. A water falling hole 91 is opened in the water outlet plate 9. Among them, for the established hydrophobic groove 81, it can increase the flow path and outflow volume of the flushing water, ensure smoothness, and the flushing water flowing out of the hydrophobic groove 81 will be discharged through the water falling hole 91. This design is used to ensure that the flushing water can be discharged with a large pressure, so as to complete the flushing treatment of the air cooler, ensure the work process, and improve the practicability;
[0021] In the above process: Through the provided water defrosting component, on the one hand, it can reduce the possibility of defrosting water splashing, and on the other hand, under the action of the water distributor 7, the defrosting water can be synchronously discharged to a certain extent. At the same time, it effectively increases the distribution range of the defrosting water, ensures the effective progress of the defrosting work, guarantees the defrosting effect, improves the working process, and meets the use requirements; This device is reasonably designed, has a simple structure, is convenient to process, and can effectively reduce the possibility of defrosting water splashing during the water defrosting process, ensure the uniform distribution of the defrosting water, guarantee the effective progress of the water defrosting work, ensure the defrosting operation effect, improve the working process, and effectively meet the use requirements.
[0022] In order to effectively complete the uniform discharge of the defrosting water, the water distributor 7 includes a water inlet pipe 71. Below the water inlet pipe 71, there are evenly distributed water dispersers 72 designed in a conical shape. In the water disperser 72, there are water inlet holes 721. In the water disperser 72, there are evenly distributed a plurality of water outlet holes 722 arranged in an inclined manner, and the extension line above it is connected to the water inlet hole 721. The end of the water outlet hole 722 is designed to be flared from the inside to the outside. Specifically described as: The height inside the water inlet pipe 71 is slightly higher than the height of the inner wall of the water inlet pipe 5, so that the positions of each water distributor 7 can achieve synchronous water discharge. That is to say: When the water volume in the water inlet pipe 5 reaches a certain level, the water inlet pipes 71 at multiple water distributors 7 will synchronously intake water to ensure the consistency of water discharge. For the established water outlet holes 722, it effectively increases the coverage range of the defrosting water discharge, ensuring the effective progress of the defrosting work. Of course, to ensure the thoroughness of water discharge from the water inlet pipe 5, water guide holes can be opened at the water inlet pipe 5 between two adjacent water dispersers 72. This part will be pre-discharged to the hydrophobic plate 8 and the water outlet plate 9 after inputting defrosting water into the water inlet pipe 5, and then the water volume is increased, so that each water disperser 72 can synchronously intake water, thereby fully increasing the large-scale discharge of the defrosting water by the water distributor 7 in the housing 4, guaranteeing the effective progress of the defrosting work, improving the working process, and meeting the use requirements.
[0023] In order to ensure the integrity of the water defrosting component, a cover plate 10 is provided above the housing 4. Above the cover plate 10, there is a mounting plate 11 that plays a limiting role for the cover plate 10. One side of the mounting plate 11 is designed in an outer L shape, and the other side is provided with a buckle plate 111 designed in an inner L shape. The cover plate 10 can seal the upper part of the housing 4, ensuring the aesthetics of the device and equipment while also increasing the service strength of the device and equipment, and can protect components such as the water inlet pipe 5, improving the protection performance and saving costs.
[0024] In order to effectively complete the convenient installation of the cover plate 10 and reduce the operation difficulty, a vertical plate 12 is provided on the outer side of the housing 4, and a fastening groove 121 for inserting the fastening plate 111 is formed in the vertical plate 12. The specific description is as follows: during installation, insert the fastening plate 111 of the mounting plate 11 into the fastening groove 121 to achieve quick connection, and then connect the other end of the mounting plate 11 to the housing 4 by bolts, which greatly improves the installation process of the device and reduces the operation difficulty.
[0025] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as the technical content of the present invention is not departed from, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A water defrosting mechanism for a new type of air cooler, comprising an air cooler body, the air cooler body includes a frame, a fan group is arranged in front of the frame, and a heat exchange group is arranged in the frame, characterized in that, Above the frame, there is a water defrosting component. The water defrosting component includes a housing. Inside the housing, there is a water inlet pipe arranged in a T-shaped layout. Above the water inlet pipe, there is a splash guard designed in a trapezoidal shape. Inside the water inlet pipe parallel to the housing, there is a water distributor. Below the housing, there is a hydrophobic plate. Inside the hydrophobic plate, there is a hydrophobic groove designed in a key shape. Below the hydrophobic plate, there is a water outlet plate. Inside the water outlet plate, there are water dropping holes.
2. The water defrosting mechanism for a new type of air cooler according to claim 1, characterized in that, The water distributor includes a water guiding pipe. Below the water guiding pipe, there are evenly distributed water dispersers designed in a conical shape. Inside the water dispersers, there are water inlet holes. Inside the water dispersers, there are evenly distributed a plurality of water outlet holes arranged in an inclined manner, and the extension line above them is connected to the water inlet holes. The end of the water outlet hole is designed to be flared from the inside to the outside.
3. A water defrosting mechanism for a new type of air cooler according to claim 2, characterized in that, Above the housing, there is a cover plate. Above the cover plate, there is a mounting plate that limits the position of the cover plate. One side of the mounting plate is designed in an outer L shape, and the other side is provided with a buckle plate designed in an inner L shape.
4. A water defrosting mechanism for a new type of air cooler according to claim 3, characterized in that, On the outside of the housing, there is a vertical plate. Inside the vertical plate, there is a fastening groove for facilitating the insertion of the buckle plate.