Embedded water dispenser body

CN224723055UActive Publication Date: 2026-09-08SHAOXING GOOD ELECTRIC CO LTD
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Patent Information

Application Number
CN202521952564.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-09-08
Estimated Expiration
2035-09-11

AI Technical Summary

Technical Problem

[0003]然而在实际应用过程中,倘若饮水机的热水出水口附近有热蒸汽积聚时,如果用户不小心接触到这些高温蒸汽,依然很容易造成烫伤

Benefits of technology

[0016] Beneficial effects: Compared with the prior art, the advantages of this utility model are as follows: The embedded water dispenser body is based on the existing hot and cold water outlets. By opening an air outlet on the front end face of the recessed water receiving cavity, and by using a fan and connecting pipes to blow air through the air outlet, the steam at the hot water outlet is dispersed, avoiding accumulation and preventing scalding. At the same time, based on its dispersing effect, it can effectively alleviate the condensation of water on the recessed water receiving cavity and the screen, especially in cold weather.

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Abstract

The utility model discloses an embedded water dispenser body, including the recessed water receiving cavity with the casing, the cold and hot water outlet nozzle of being located on the casing and the fan of being located on the casing, the front end face of recessed water receiving cavity on the casing is equipped with the air outlet, and the air outlet is located the rear side of the water outlet end of cold and hot water outlet nozzle, the air outlet is connected with the air outlet of connecting pipeline to the fan to send the wind of fan through the air outlet, the embedded water dispenser body of the utility model is based on the basis of cold and hot water outlet nozzle, and the air outlet is equipped on the front end face of recessed water receiving cavity, and the steam at hot water outlet is blown away by the blowing of fan and connecting pipeline, thereby avoiding the accumulation, preventing the scald, and based on the blowing effect, especially can effectively alleviate the condensate on recessed water receiving cavity and the condensate on the screen in cold weather.
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Description

Technical Field

[0001] This invention belongs to the field of embedded water dispenser technology, and particularly relates to an embedded water dispenser body. Background Technology

[0002] The hot and cold water outlets of the water dispenser can be separated, that is, by dividing the shell into two independent parts with cold water chamber and hot water chamber, so that cold water or hot water can be dispensed selectively according to needs, avoiding temperature cross-contamination between hot and cold water caused by using a single outlet; at the same time, a steam flow channel is formed at the upper end of the two chambers, so that steam can be discharged from the hot water chamber, improving the stability of the hot water outlet flow and avoiding splashing and scalding.

[0003] However, in actual use, if hot steam accumulates near the hot water outlet of the water dispenser, users can easily get scalded if they accidentally come into contact with this high-temperature steam.

[0004] Therefore, based on the existing separate hot and cold water outlets, an embedded water dispenser body is designed to effectively prevent the accumulation of hot steam and to de-condensate on the recessed water receiving cavity and the screen. Utility Model Content

[0005] Purpose of the utility model: The technical problem to be solved by this utility model is to provide an embedded water dispenser body that can effectively prevent the accumulation of hot steam and alleviate the condensation of condensate on the recessed water receiving cavity and the screen.

[0006] Technical solution: The embedded water dispenser body of this utility model includes a housing with a recessed water receiving cavity, hot and cold water nozzles on the housing, and a fan on the housing.

[0007] An air outlet is provided on the front end face of the recessed water receiving cavity on the housing. The air outlet is located behind the water outlet of the hot and cold water nozzle. The fan is connected to the air outlet through a connecting pipe so that the air generated by the fan can be transmitted through the air outlet.

[0008] Furthermore, the fan and connecting pipe of the embedded water dispenser body are provided with a support bracket to connect the fan to the housing.

[0009] Furthermore, the hot and cold water outlets of the embedded water dispenser are located at the upper end of the casing, and their outlets extend into the recessed water receiving cavity.

[0010] Furthermore, the hot and cold water outlet of the embedded water dispenser body includes a housing with a cold water cavity and a hot water cavity, and an end cap located at the top of the housing; the upper side of the hot water cavity is connected to the upper side of the cold water cavity to form a flow channel for steam to flow from the hot water cavity to the cold water cavity, and the end cap is provided with a cold water pipe that extends into the cold water cavity.

[0011] Furthermore, the bottom of the housing of the embedded water dispenser has a cold water outlet and a hot water outlet, and the side wall of the hot water chamber has a hot water inlet. The cold water outlet is connected to the cold water chamber, and both the hot water inlet and the hot water outlet are connected to the hot water chamber.

[0012] Furthermore, the cold water pipe of the embedded water dispenser body extends into the cold water cavity and protrudes through the cold water outlet.

[0013] Furthermore, the end cap of the embedded water dispenser body is equipped with a baffle plate on the side of the steam flow channel. The baffle plate extends into the hot water cavity to prevent hot water entering from the hot water inlet from splashing into the steam flow channel after impacting the inner wall of the shell. The baffle plate is located at the upper end of the hot water inlet.

[0014] Furthermore, the cold water pipe of the embedded water dispenser body is located inside the cold water cavity and forms a gap with the cold water cavity body so that the gap becomes a flow channel for steam.

[0015] Furthermore, the hot water outlet of the embedded water dispenser is equipped with a baffle to ensure that the water flows out in a balanced and uniform manner. One end of the baffle is located on the inner wall of the hot water outlet, and the other end is set towards the center of the hot water outlet to form an intermediate water flow channel.

[0016] Beneficial effects: Compared with the prior art, the advantages of this utility model are as follows: The embedded water dispenser body is based on the existing hot and cold water outlets. By opening an air outlet on the front end face of the recessed water receiving cavity, and by using a fan and connecting pipes to blow air through the air outlet, the steam at the hot water outlet is dispersed, avoiding accumulation and preventing scalding. At the same time, based on its dispersing effect, it can effectively alleviate the condensation of water on the recessed water receiving cavity and the screen, especially in cold weather. Attached Figure Description

[0017] Figure 1 This is a front view of the embedded water dispenser body of this utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the embedded water dispenser body of this utility model. Figure 1 ;

[0019] Figure 3 This is a schematic diagram of the structure of the embedded water dispenser body of this utility model. Figure 2 ;

[0020] Figure 4 This is a schematic diagram of the structure of the embedded water dispenser body of this utility model. Figure 3 ;

[0021] Figure 5 This is a front view of the detachable hot and cold water nozzle of this utility model;

[0022] Figure 6 This is a bottom view of the separate hot and cold water outlet of this utility model;

[0023] Figure 7 This is a cross-sectional view of the separate hot and cold water nozzle of this utility model. Detailed Implementation

[0024] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings.

[0025] It should be noted that the body of the embedded water dispenser of this utility model is only one part of an embedded water dispenser. It, along with the necessary filtration devices (such as water purifier cartridges), water purifier tank, and a cold water branch (including a cold tank and cold water valve) and a hot water branch (including a hot water tank and hot water valve) connected to the outlet of the water purifier tank, together constitute the embedded water dispenser. The cold water and hot water branches are connected to cold water pipes, and the hot water branch is connected to the hot water inlet. Other components necessary for an embedded water dispenser are all known in the art and can be added according to the actual layout; these will not be described in detail here.

[0026] The embedded water dispenser of this utility model includes a housing 1 and hot and cold water nozzles 2 disposed on the housing 1, such as Figure 1 As shown. The housing 1 is recessed rearward to form a recessed water receiving cavity. Hot and cold water nozzles 2 are located at the upper end of the housing 1, and their outlets extend into the recessed water receiving cavity.

[0027] The core of the built-in water dispenser body lies in the air outlet 4 located on the front end face of the recessed water receiving cavity on the casing 1, such as... Figure 1 and Figure 2 As shown. The air outlet 4 is located at the same horizontal level as the hot water outlet end of the hot and cold water outlet 2, and the air outlet 4 is located behind the water outlet end, so that the air blown out by the air outlet 4 can disperse the steam of the hot water, on the one hand to prevent the steam from accumulating, and on the other hand to alleviate the condensation of water by dispersing it.

[0028] like Figure 3As shown, the airflow from the air outlet 4 is achieved by a fan 3 (preferably a fan) connected to the housing 1 and a connecting pipe 5 connected to the air outlet channel of the fan 3. The air outlet of the fan 3 is connected to the connecting pipe 5. The connecting pipe 5 is also connected to the air outlet 4. The air generated by the fan 3 is delivered to the air outlet 4 through the connecting pipe 5 to disperse the hot steam. The position of the fan 3 can be flexibly set according to requirements, such as... Figure 3 or Figure 4 As shown, it can be installed on the upper end or side of the housing 1. It should be noted that the fan used in this invention is a low-power fan with relatively weak airflow, sufficient only to disperse hot steam; the fan can be selected according to actual needs. The fan 3 can be switched on and off using the operating interface on the display screen on the housing, or an extended switch can be used for convenient operation. A support frame 6 extends from the connecting pipe 5, using this support frame to connect the connecting pipe 5 and the fan 3 to the housing 1. A bolt-on detachable connection can be used, facilitating maintenance and replacement of the fan 3.

[0029] The separate hot and cold water outlet used in this invention can be a previously designed separate hot and cold water outlet. Its structure is as follows: Figures 5 to 7 As shown, the device includes a housing 9 and an end cap 10 located at the top of the housing 9. The bottom of the housing 9 has a cold water outlet 13 and a hot water outlet 14, and a hot water inlet 15 is located on the side wall of the housing 9. A cold water pipe 12 is provided on the end cap 10, extending into the housing 9. The hot water outlet 14 has 3n (n is a natural number) baffles 17, which are evenly distributed around the circumference of the outlet. The specific number of baffles 17 can be flexibly set according to the actual size of the outlet, and this invention does not impose a specific limitation. One end of each baffle 17 is located on the inner side wall of the hot water outlet 14, and the other end faces the center of the hot water outlet 14, forming a central water flow channel. This ensures a stable and uniform flow of water at the hot water outlet 14 regardless of the water flow rate, preventing splashing. When the water flow velocity is high, the specific surface area of ​​the hot water outlet 14 in contact with the water flow can be increased, thereby increasing the friction force of the water flow, increasing the viscosity force of the water flow, and reducing the Reynolds number of the water flow, so that the water flow is out in a laminar state, achieving a stable and uniform flow mode. When the water flow velocity is low, due to the concentrating and gathering effect of the baffle 17, the water flow can be concentrated and flow out from the middle channel formed by the baffle 17, avoiding dispersion, and also achieving a stable and uniform flow mode, preventing water splashing.

[0030] The housing 9 is divided into two independent cavities: a cold water cavity 7 and a hot water cavity 8. The bottom end of the cold water cavity 7 is connected to the cold water outlet 13. The cold water pipe 12 is located inside the cold water cavity 7, and there is a certain gap between it and the inner wall of the cold water cavity 7. The hot water inlet 15 and the hot water outlet 14 are connected to the hot water cavity 8. The upper end of the hot water cavity 8 is connected to the upper end of the cold water cavity 7, thereby forming a flow channel 11 for steam to rise from the hot water cavity 8 and flow into the cold water cavity 7. Based on the gap between the flow channel 11 and the cold water pipe 12 in the side wall of the cold water cavity 7, a steam flow path is formed. If necessary, the steam can be discharged through the cold water outlet 13, further improving the stability of the water flow at the hot water outlet 14 and avoiding splashing and scalding. Preferably, the hot water cavity 8 and the cold water cavity 7 can share the same side wall. When there is a certain gap between the side wall and the end cap 10, a steam flow path 11 can be formed.

[0031] In addition to the cold water pipe 12, the end cap 10 is also equipped with a baffle plate 16. The baffle plate 16 is located on one side of the steam flow channel 11 and above the hot water inlet 15. The baffle plate 16 extends into the hot water chamber 8 to prevent hot water entering from the hot water inlet 15 from splashing into the steam flow channel 11 after impacting the inner wall of the shell 9.

[0032] The separate hot and cold water outlet divides the housing into two independent parts: a cold water chamber 7 and a hot water chamber 8. This allows for selective dispensing of either cold or hot water as needed, avoiding temperature fluctuations between the hot and cold water caused by using the same outlet. Additionally, a steam flow channel 11 is formed at the upper end of both chambers, allowing steam to be discharged from the hot water chamber 8. This improves the stability of the water flow at the hot water outlet 14 and prevents splashing and scalding.

Claims

1. An embedded water dispenser body, characterized in that, The water dispenser body includes a housing (1) with a recessed water receiving cavity, hot and cold water nozzles (2) on the housing (1) and a fan (3) on the housing (1); An air outlet (4) is provided on the front end face of the recessed water receiving cavity on the housing (1). The air outlet (4) is located behind the water outlet end of the hot and cold water outlet (2). The fan (3) is connected to the air outlet (4) through a connecting pipe (5) so that the air generated by the fan (3) can be transmitted through the air outlet (4).

2. The embedded water dispenser body according to claim 1, characterized in that, A support frame (6) extends from the fan (3) and the connecting pipe (5) to connect the fan (3) to the housing (1) by means of the support frame.

3. The embedded water dispenser body according to claim 1, characterized in that, The hot and cold water nozzles (2) are located at the upper end of the housing (1), and their water outlets extend into the recessed water receiving cavity.

4. The embedded water dispenser body according to claim 3, characterized in that, The hot and cold water outlet (2) includes a housing (9) having a cold water chamber (7) and a hot water chamber (8), and an end cap (10) located at the top of the housing (9); the upper end of the hot water chamber (8) is connected to the upper end of the cold water chamber (7) to form a flow channel (11) through which steam flows from the hot water chamber (8) to the cold water chamber (7); the end cap (10) is provided with a cold water pipe (12), and the cold water pipe (12) extends into the cold water chamber (7).

5. The embedded water dispenser body according to claim 4, characterized in that, The bottom of the shell (9) is provided with a cold water outlet (13) and a hot water outlet (14). The side wall of the hot water cavity (8) is provided with a hot water inlet (15). The cold water outlet (13) is connected to the cold water cavity (7). The hot water inlet (15) and the hot water outlet (14) are both connected to the hot water cavity (8).

6. The embedded water dispenser body according to claim 5, characterized in that, The cold water pipe (12) extends into the cold water cavity (7) and extends through the cold water outlet (13).

7. The embedded water dispenser body according to claim 4, characterized in that, A baffle plate (16) is provided on the end cap (10) on one side of the steam flow channel (11). The baffle plate (16) extends into the hot water chamber (8) to prevent hot water entering from the hot water inlet (15) from splashing into the steam flow channel (11) after being impacted by the inner wall of the shell (9). The baffle plate (16) is located at the upper end of the hot water inlet (15).

8. The embedded water dispenser body according to claim 4, characterized in that, The cold water pipe (12) is located inside the cold water cavity (7) and forms a gap with the cold water cavity (7) so that the gap becomes a flow channel for steam.

9. The embedded water dispenser body according to claim 5, characterized in that, The hot water outlet (14) is provided with a baffle (17) to make the water flow out in a balanced and uniform state. One end of the baffle (17) is provided on the inner wall of the hot water outlet (14), and the other end is set towards the center of the hot water outlet (14) to form an intermediate water flow channel.