Water-vapor separated water outlet nozzle structure

By incorporating a baffle and water outlet in the spout structure, effective separation of hot water and steam is achieved, solving the problem of steam ejection when the spout dispenses hot water, reducing the danger of high-temperature steam, and ensuring stable water output.

CN223601275UActive Publication Date: 2025-11-28GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
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Patent Information

Application Number
CN202423117008.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-28
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing water taps produce hot water containing a large amount of steam, which can easily cause steam spraying, posing a risk of scalding, and the water-steam separation effect is poor.

Method used

A water outlet structure for water vapor separation was designed, which includes a water channel and an air channel in the main shell. The hot water pipe outlet end is equipped with a baffle and an outlet hole. After the hot water is blocked and dispersed by the baffle, it is sprayed through the outlet hole and separated by collision. The water vapor condenses in the air channel and the gas is discharged from the air outlet, increasing the contact area to improve the separation effect.

Benefits of technology

It achieves complete separation of hot water and steam, reduces the risk of injury from high-temperature steam, ensures a stable water flow, avoids steam blasting, and improves safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water vapor separation water outlet nozzle structure which comprises a main shell, a water channel and an air channel are arranged in the main shell, the upper end of the main shell is connected with a hot water pipe, the lower end of the main shell is provided with a water outlet, the main shell is provided with an air outlet, a first end of the air channel is communicated with a first end of the water channel, and a second end of the air channel is communicated with a second end of the water channel. The second end of the air channel is communicated with the air outlet, the second end of the water channel is communicated with the water outlet, the water outlet end of the hot water pipe extends into the first end of the water channel, and a first baffle is fixedly connected to the lower portion of a port of the water outlet end of the hot water pipe. A first water outlet hole is formed between a port of the water outlet end of the hot water pipe and the first baffle and faces the inner wall of the water channel. By means of the arrangement, hot water is blocked by the first baffle after flowing out of the hot water pipe and then turns to be sprayed out through the first water outlet to collide with the side wall of the water channel, the hot water is scattered twice, and water vapor is thoroughly separated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water outlet nozzle technical field, especially point to a water vapor separation's water outlet nozzle structure. BACKGROUND

[0002] Water outlet nozzle is often used in the water outlet end of water pipeline, and is more common in drinking water machine, water purifier or water softener, when hot water is discharged, a large amount of steam is contained in the hot water, which is easy to cause steam spraying phenomenon and scalding.

[0003] In order to solve the above problems, the utility model discloses a water vapor separation's water outlet nozzle structure, including casing and water outlet nozzle, the casing one end is equipped with inlet pipe, the other end of casing is equipped with through -hole, water outlet nozzle is fixed in the casing, water vapor separation chamber is equipped in water outlet nozzle, water vapor separation chamber one end is communicated with inlet pipe, water vapor separation chamber other end is communicated with through -hole, water outlet nozzle upper end is equipped with the toothed port, exhaust passage one end is communicated with water vapor separation chamber through toothed port, exhaust passage other end is communicated with through -hole. The utility model discloses inlet pipe is connected on the heating pipe of table type water purifier, and the heating pipe rapidly boils the water and produces the boiling water vapor mixture flow into the water vapor separation chamber, and the water flow and the airflow flow along the hot water flow channel and the steam airflow channel respectively, and the water flow flows out from the through -hole downward, and the airflow flows upward into the exhaust passage and then is discharged from the through -hole, the exhaust passage prolongs the flow path of steam airflow, and makes it condense, reduces the risk of high temperature steam injury. But the utility model in actual use hot water from inlet pipe to water vapor separation chamber no separation disperses, gas and hot water are still directly sprayed from the through -hole.

[0004] Therefore, the prior art still needs to be improved and developed. UTILITY MODEL CONTENTS

[0005] The utility model discloses a water vapor separation's water outlet nozzle structure.

[0006] In order to achieve the above object, the utility model adopts the technical scheme as follows:

[0007] The utility model provides a water vapor separation's water outlet nozzle structure, including main casing, water channel and gas channel are equipped with in the main casing, the hot water pipe is connected with the upper end of main casing, the water outlet is equipped with the lower end of main casing, the gas outlet is equipped with on the main casing, the first end of gas channel with the first end of water channel intercommunication, the second end of gas channel with the gas outlet intercommunication, the second end of water channel with the water outlet intercommunication, the water outlet end of hot water pipe stretches into the first end of water channel, the water outlet end port of hot water pipe is fixedly connected with the first baffle below, the first water outlet hole is formed between the water outlet end port of hot water pipe with the first baffle, the first water outlet hole is towards the inner wall of water channel setting, through above-mentioned structure setting, hot water flows out after being first baffle blocked and scattered, and then turns and is scattered by the collision of the first water outlet hole with the side wall of water channel, hot water is scattered twice, and water vapor is completely separated, hot water flows through water channel and flows out from the water outlet, and water flow is stable and does not scatter, gas flows upward into gas channel and is discharged from the gas outlet, and the gas channel prolongs the flow path of gas, makes it condense, reduces the risk of high-temperature steam hurting people.

[0008] The utility model also includes two opposite setting baffle, baffle both sides with main casing inner wall fixed connection, the outside wall of baffle with the inside wall of main casing forms gas channel, the inside wall of two baffles with the inside wall of main casing surrounds water channel, the first water outlet hole is towards the inside wall of baffle setting, and the baffle with main casing is integrally formed. Through above-mentioned structure setting, the baffle with main casing need not manual assembly when assembling, can avoid the generation of assembly error, the first end of gas channel with the first end of water channel intercommunication channel is the cavity of main casing upper portion, and the intercommunication space is big, can avoid the problem of condensate water droplet blocking gas channel.

[0009] According to the above scheme, two baffles are mutually symmetrical, the inside wall of baffle is provided with an arc surface, the first water outlet hole is arranged towards the arc surface, and specifically, two first water outlet holes are provided and correspond to two baffles. Through the above structure, hot water is scattered after being blocked by the first baffle, and then distributed to the first water outlet hole. After the hot water is sprayed out of the first water outlet hole, it is scattered again by the arc surface. The hot water can be more fully scattered.

[0010] According to the above scheme, the arc surface is a concave arc surface. Through the above structure, the contact area between hot water and the arc surface can be increased, so that the water vapor separation is more sufficient.

[0011] According to the above scheme, two baffles extend downward to form the water outlet. Through the above structure, the water channel directly communicates with the water outlet.

[0012] According to the above scheme, the first baffle is a flat plate structure, and the water outlet end of the hot water pipe is perpendicular to the first baffle.

[0013] According to the above scheme, the main shell comprises an upper cover and a shell, an opening is arranged at the upper end of the shell, the upper cover is arranged on the opening of the shell, the two side edges of the partition plate are fixedly connected with the inner wall of the shell, the outer side wall of the two partition plates and the inner side wall of the shell form the gas passage, the inner side wall of the partition plate and the inner side wall of the shell form the water passage, the hot water pipe is fixed on the upper cover, and the water outlet end of the hot water pipe extends into the first end of the water passage. Through the above structural arrangement, the hot water pipe is fixed on the upper cover, and the upper cover is installed on the shell, so that the assembly of the utility model is facilitated.

[0014] The utility model also includes a cold water pipe, the cold water pipe is fixed on the upper cover, and the water outlet end of the cold water pipe extends into the first end of the water passage. Through the above structural arrangement, the utility model can also control the outflow of cold water, or can realize the mixed outflow of cold water and hot water.

[0015] According to the above scheme, a second baffle is fixedly connected below the water outlet port of the cold water pipe, a second water outlet hole is formed between the second baffle and the water outlet port, and the second water outlet hole is arranged towards the partition plate. Through the above structural arrangement, cold water flows out through the second water outlet hole after impacting the second baffle, and the cold water is dispersed into the water passage to fully contact and mix with hot water, so that warm water is obtained.

[0016] According to the above scheme, the outer side wall of the shell is provided with a screw mounting hole. Through the above structural arrangement, the utility model is conveniently installed on a water purifier or other equipment.

[0017] The utility model has the advantages of:

[0018] In use, hot water flows out through the hot water pipe, is first blocked and dispersed by the first baffle, is then sprayed out through the first water outlet hole, collides with the side wall of the water passage and is dispersed, is dispersed twice, and water vapor is completely separated. Hot water flows out from the water outlet through the water passage, and the water flow is stable and does not scatter. Gas flows upward into the gas passage and is discharged from the gas outlet. The gas passage prolongs the flow path of the gas, condenses the gas, and reduces the risk of high-temperature steam hurting people. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 It is a longitudinal sectional view of the utility model;

[0020] Fig. 2 It is a transverse sectional view of the utility model;

[0021] Fig. 3 is a exploded view of the utility model.

[0022] In the figure: 1, main shell; 2, water passage; 3, gas passage; 4, hot water pipe; 5, water outlet; 6, partition; 7, cold water pipe; 11, upper cover; 12, shell; 13, screw mounting hole; 41, first baffle; 42, first water outlet hole; 61, camber; 71, second water outlet hole. DETAILED DESCRIPTION

[0023] The technical scheme of the utility model will be described below in combination with the drawings and examples. Example

[0024] As Figs. 1-3 shown, the utility model provides a water vapor separation's water outlet nozzle structure, including main shell 1, water passage 2 and gas passage 3 are equipped with in the inside of main shell 1, the upper end of main shell 1 is connected with hot water pipe 4, the lower end of main shell 1 is equipped with water outlet 5 and gas outlet (not shown in the drawing), the first end of gas passage 3 is communicated with the first end of water passage 2, the second end of gas passage 3 is communicated with the gas outlet, the second end of water passage 2 is communicated with water outlet 5, the water outlet end of hot water pipe 4 is inserted into the first end of water passage 2, the water outlet end port of hot water pipe 4 is fixedly connected with first baffle 41 below, the first water outlet hole 42 is formed between the water outlet end port of hot water pipe 4 and first baffle 41, and first water outlet hole 42 is arranged towards the inner wall of water passage 2. Through the above structure setting, hot water is first blocked and scattered by first baffle 41 after flowing out of hot water pipe 4, and then is sprayed out of first water outlet hole 42 and collides with the side wall of water passage 2 to be scattered, so that hot water is scattered twice, water vapor is completely separated, hot water flows out of water outlet 5 through water passage 2, water flow is stable and does not scatter, gas flows upward into gas passage 3 and is discharged from the gas outlet, and gas passage 3 prolongs the flow path of gas, so that the gas is condensed, and the risk of high-temperature steam hurting people is reduced.

[0025] The utility model also includes two oppositely arranged partitions 6, the two side edges of partition 6 are fixedly connected with the inner wall of main shell 1, the outer side wall of partition 6 and the inner side wall of main shell 1 form gas passage 3, the inner side walls of the two partitions 6 and the inner side wall of main shell 1 enclose water passage 2, first water outlet hole 42 is arranged towards the inner side wall of partition 6, and specifically, partition 6 is integrally formed with main shell 1. Through the above structure setting, partition 6 and main shell 1 do not need to be manually assembled during assembly, so that the generation of assembly error can be avoided, the first end of gas passage 3 and the first end of water passage 2 communicate through a cavity in the upper part of main shell 1, the communicating space is large, and the problem of condensate water blocking gas passage 3 can be avoided.

[0026] Further, the two said partitions 6 are symmetrical to each other, the inner wall of the said partition 6 is provided with a curved surface 61, the said first water outlet hole 42 is arranged towards the curved surface 61, specifically, the said first water outlet hole 42 is provided with two, and corresponds to the two said partitions 6 one by one. Through the above structure, the hot water is scattered after being blocked by the first baffle 41, and then is distributed to the first water outlet hole 42, the hot water is scattered after being sprayed out of the first water outlet hole 42, and then is blocked by the curved surface 61, so that the hot water can be more fully scattered.

[0027] Further, the said curved surface 61 is a concave curved surface. Through the above structure, the contact area between the hot water and the curved surface 61 can be increased, so that the water vapor separation is more sufficient.

[0028] Further, the two said partitions 6 extend downward to form the water outlet 5, more specifically, the outer wall of the downward extension of the said partition 6 and the inner wall of the lower end of the said main shell 1 form an air outlet. Through the above structure, the said water channel 2 directly communicates with the water outlet 5.

[0029] Further, the said first baffle 41 is a flat plate structure, and the water outlet end of the said hot water pipe 4 is perpendicular to the first baffle 41. Through the above structure, the water inlet channel in the said hot water pipe 4 and the said first water outlet hole 42 form a ninety-degree angle, the water flow impact force is large, and the water vapor separation is more sufficient.

[0030] Further, the said main shell 1 includes an upper cover 11 and an outer shell 12, the upper end of the said outer shell 12 is provided with an opening, the said upper cover 11 is arranged on the opening of the said outer shell 12, the two side edges of the said partition 6 are fixedly connected with the inner wall of the said outer shell 12, the outer wall of the two said partitions 6 and the inner wall of the said outer shell 12 form the said air channel 3, the inner wall of the said partition 6 and the inner wall of the said outer shell 12 enclose the water channel 2, the said hot water pipe 4 is fixed on the said upper cover 11, and the water outlet end of the said hot water pipe 4 extends into the first end of the said water channel 2. Through the above structure, the said hot water pipe 4 is fixed on the said upper cover 11, and the said upper cover 11 is installed on the outer shell 12, so that the assembly of the utility model is facilitated.

[0031] The utility model also includes a cold water pipe 7, the said cold water pipe 7 is fixed on the said upper cover 11, and the water outlet end of the said cold water pipe 7 extends into the first end of the said water channel 2. Through the above structure, the utility model can also control the cold water to flow out, or can realize the mixed flow of cold water and hot water.

[0032] Further, a second baffle (not shown in the figure) is fixedly connected below the water outlet port of the cold water pipe 7, a second water outlet hole 71 is formed between the second baffle and the water outlet port, and the second water outlet hole 71 is arranged towards the partition plate 6. Through the above structure, the cold water flows out through the second water outlet hole 71 after impacting the second baffle, and the cold water is dispersed into the water channel 2 to fully contact and mix with the hot water, so as to obtain warm water.

[0033] Further, a screw mounting hole 13 is arranged on the outer side wall of the shell 12. Through the above structure, the device is conveniently mounted on a water purifier or other equipment.

[0034] The above is only a preferred embodiment of the present application, so equivalent changes or modifications made according to the structure, features and principles described in the patent application range of the present application are included in the patent application range of the present application.

Claims

1. A water vapor separation outlet nozzle structure, comprising a main shell (1), a water channel (2) and a gas channel (3) are arranged inside the main shell (1), a hot water pipe (4) is connected to the upper end of the main shell (1), an outlet (5) is arranged at the lower end of the main shell (1), an air outlet is arranged on the main shell (1), the first end of the gas channel (3) is communicated with the first end of the water channel (2), the second end of the gas channel (3) is communicated with the air outlet, and the second end of the water channel (2) is communicated with the outlet (5), characterized in that the water outlet end of the hot water pipe (4) extends into the first end of the water channel (2), a first baffle (41) is fixedly connected below the water outlet end port of the hot water pipe (4), a first water outlet hole (42) is formed between the water outlet end port of the hot water pipe (4) and the first baffle (41), and the first water outlet hole (42) is arranged towards the inner wall of the water channel (2). Further comprising two oppositely arranged partitions (6), the two side edges of the partitions (6) are fixedly connected with the inner wall of the main shell (1), the outer side wall of the partition (6) and the inner side wall of the main shell (1) form the gas channel (3), the inner side walls of the two partitions (6) and the inner side wall of the main shell (1) form the water channel (2), and the first water outlet hole (42) is arranged towards the inner side wall of the partition (6).

2. The water vapor separated water outlet nozzle structure according to claim 1, characterized by, The two partitions (6) are symmetrical to each other, the inner side wall of the partition (6) is provided with a curved surface (61), and the first water outlet hole (42) is arranged towards the curved surface (61).

3. The water vapor separating spout structure according to claim 2, wherein The curved surface (61) is a concave curved surface.

4. The water vapor separating spout structure according to claim 3, wherein The two partitions (6) extend downward to form the outlet (5).

5. The water vapor separating spout structure according to claim 3, wherein The first baffle (41) is a flat plate structure, and the water outlet end of the hot water pipe (4) is perpendicular to the first baffle (41).

6. The water vapor separating spout structure of claim 2, wherein, The main shell (1) comprises an upper cover (11) and an outer shell (12), the upper end of the outer shell (12) is provided with an opening, the upper cover (11) is arranged on the opening of the outer shell (12), the two side edges of the partition (6) are fixedly connected with the inner wall of the outer shell (12), the outer side wall of the two partitions (6) and the inner side wall of the outer shell (12) form the gas channel (3), the inner side wall of the partition (6) and the inner side wall of the outer shell (12) form the water channel (2), the hot water pipe (4) is fixed on the upper cover (11), and the water outlet end of the hot water pipe (4) extends into the first end of the water channel (2).

7. The water vapor separating spout structure of claim 2, wherein, Further comprising a cold water pipe (7), the cold water pipe (7) is fixed on the upper cover (11), and the water outlet end of the cold water pipe (7) extends into the first end of the water channel (2).

8. The water vapor separating spout structure according to claim 7, wherein A second baffle is fixedly connected below the water outlet port of the cold water pipe (7), a second water outlet hole (71) is formed between the second baffle and the water outlet port, and the second water outlet hole (71) is arranged towards the partition (6).

9. The water vapor separating spout structure of claim 8, wherein, The outer side wall of the outer shell (12) is provided with a screw mounting hole (13).

10. The water vapor separating spout structure of claim 7, wherein, ​

Citation Information

Patent Citations

  • Water-vapor separated water outlet nozzle structure

    CN220275404U