Waterway of bathroom foaming machine

By mixing the soap liquid with water in the bathroom foaming machine and then foaming, the problem of low foaming efficiency after mixing the soap liquid with air in the prior art is solved, and a more efficient foaming effect is achieved.

CN223143369UActive Publication Date: 2025-07-25GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
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Patent Information

Application Number
CN202422317806.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-25
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The foaming efficiency of the existing bathroom foaming machine is not high after mixing with the soap liquid and air, resulting in unsatisfactory foaming effect.

Method used

The soap liquid is mixed with water and then foamed. The water and soap liquid are respectively provided to the mixing chamber through the water supply device and the soap liquid supply device. After mixing, it forms a mixed liquid, and then transported to the foaming chamber through a pump assembly, and foaming is achieved by combining the foaming assembly with the mixed liquid.

Benefits of technology

Improves foaming efficiency, forms more bubbles, and improves user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223143369U_ABST
    Figure CN223143369U_ABST
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Abstract

The utility model relates to the technical field of bathroom accessories, in particular to a bathroom foaming machine waterway which comprises a mixing bin, a foaming box and a pump assembly. The mixing bin is respectively connected with a water supply device and a liquid soap supply device; the pump assembly is connected with the mixing bin and the foaming box, and a foaming assembly is arranged in the foaming box. By means of the arrangement, water and liquid soap are provided into the mixing bin through the water supply device and the liquid soap providing device respectively, mixed liquid is formed after the water and the liquid soap are mixed, then the mixed liquid is conveyed into the foaming box through the pump assembly, foaming is achieved through cooperation of the foaming assembly and the mixed liquid, and the foaming efficiency is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of sanitary wares, and particularly relates to a water circuit of a sanitary ware foaming machine. Background Art

[0002] The existing soap liquid (shower gel) used in sanitary wares is contained in a liquid storage bottle and is extruded manually. The extruded soap liquid is then foamed after being rubbed by both hands, and the foaming effect is not ideal.

[0003] The Chinese utility model patent with the publication number of CN205831706U discloses a sanitary ware foaming machine. This existing technology can extrude the soap liquid in the form of foam onto the hand, omitting the process of rubbing by both hands, and the foaming effect is better than that of hand rubbing. However, this existing technology still has structural deficiencies. It mixes the soap liquid with air and then foams. Due to the high concentration of the soap liquid, the foaming efficiency is not high.

[0004] Therefore, the existing technology still needs to be improved and developed. Content of the Utility Model

[0005] In order to solve the problems of the existing technology, the utility model provides a water circuit of a sanitary ware foaming machine, which foams after mixing the soap liquid with water, and has a high foaming efficiency.

[0006] In order to achieve the above purpose, the technical scheme applied by the utility model is as follows:

[0007] A water circuit of a sanitary ware foaming machine includes a mixing chamber, a foaming box and a pump assembly; the mixing chamber is respectively connected to a water supply device and a soap liquid supply device; the pump assembly is connected to the mixing chamber and the foaming box, and a foaming assembly is arranged in the foaming box. With such a setting, the water supply device and the soap liquid supply device respectively supply water and soap liquid to the mixing chamber. After the water and the soap liquid are mixed to form a mixed liquid, the pump assembly conveys the mixed liquid into the foaming box, and then the foaming assembly cooperates with the mixed liquid to achieve foaming, and the foaming efficiency is high.

[0008] According to the above scheme, the water supply device is a water tank, the soap liquid supply device is a soap liquid box, and the pump assembly includes a soap liquid pump and a clean water pump. The clean water pump is connected to the water tank and the mixing chamber, and the soap liquid pump is connected to the soap liquid box and the mixing chamber. With such a setting, the clean water pump conveys the water in the water tank into the mixing chamber; the soap liquid pump conveys the soap liquid in the soap liquid box into the mixing chamber. The water and the soap liquid are mixed to form a mixed liquid under the power provided by the clean water pump and the soap liquid pump, and the mixing effect is good.

[0009] According to the above solution, the mixing chamber is separated into a purified water chamber and a mixing chamber by a partition. The first water inlet of the purified water chamber is connected to the water tank, the fourth water inlet of the purified water pump is connected to the purified water chamber, and the fourth water outlet of the purified water pump is connected to the mixing chamber; the third water inlet of the soap liquid pump is connected to the soap liquid tank, and the third water outlet of the soap liquid pump is connected to the mixing chamber; the first water outlet of the mixing chamber is connected to the foaming box. With this setting, when the purified water pump works, it first pumps the water in the water tank into the purified water chamber for storage and then transports it to the mixing chamber; when the soap liquid pump works, it transports the soap liquid in the soap liquid tank to the mixing chamber, and the mixed liquid is then transported to the foaming box through the first water outlet. In practical applications, there are two groups of purified water pumps to make the pumping efficiency and mixing efficiency higher.

[0010] According to the above solution, a plurality of flow guiding plates are provided in the mixing chamber, and the plurality of flow guiding plates cooperate to form a swirling flow path. With this setting, the water and the soap liquid can be more fully mixed under the action of the swirling flow path, and the mixing effect is better.

[0011] According to the above solution, the soap liquid tank is provided with a liquid outlet joint, the liquid outlet joint is connected with a three-way pipe, and the three-way pipe is connected to the third water inlet of the soap liquid pump through a pipeline one. With this setting, when the soap liquid pump works, the soap liquid in the soap liquid tank enters the mixing chamber through the liquid outlet joint, the three-way pipe and the pipeline one.

[0012] According to the above solution, the liquid outlet joint is provided with a check valve two. With this setting, the soap liquid in the soap liquid tank can only be discharged through the liquid outlet joint and cannot flow back.

[0013] According to the above solution, a cleaning pump is further included. The three-way pipe is connected to the second water outlet of the cleaning pump through a pipeline two, and the second water inlet of the cleaning pump is connected to the purified water chamber. With this setting, when the cleaning pump works, the water in the purified water chamber enters the three-way pipe through the pipeline two. Under the restriction of the check valve two, the water cannot enter the soap liquid tank and can only enter the mixing chamber through the pipeline one, so as to achieve the purpose of flushing the three-way pipe and the pipeline one, and effectively prevent the relatively concentrated soap liquid from condensing in the three-way pipe and the pipeline two to cause pipe blockage. In practical applications, the second water inlet of the cleaning pump can also be externally connected to a water source or a cleaning liquid.

[0014] According to the above solution, the water tank is provided with a water outlet joint, and the water outlet joint is provided with a check valve one. With this setting, the water in the water tank can only be discharged through the water outlet joint and cannot flow back.

[0015] According to the above solution, a flow divider is further included. The fifth water inlet of the flow divider is connected to the first water outlet of the mixing chamber through a pipeline three, and the plurality of fifth water outlets of the flow divider are connected to the foaming box and are cooperatively arranged with the foaming components in the foaming box. With this setting, the mixed liquid enters the flow divider through the first water outlet and the fifth water inlet, and the mixed liquid is then divided into a plurality of fifth water outlets and enters the foaming box, so that the mixed liquid forms a water curtain and then cooperates with the foaming components to foam.

[0016] According to the above solution, the foaming assembly includes a foaming plate and a blower. The foaming plate is located below the water outlet five of the diverter. A plurality of air holes are provided on the foaming plate. The blower is connected to the air inlet end of the air holes through an air duct, and the air outlet end of the air holes is arranged in cooperation with the water outlet five of the diverter. With this arrangement, the foaming plate is set below the water outlet five of the diverter. The mixed liquid forms a water curtain and falls on the surface of the foaming plate to form a water film. When the blower works, the generated air flow blows out after passing through the air duct and the air holes, forming a high-pressure air flow to continuously blow the water film, thereby forming countless bubbles. In practical applications, a bracket is fixed on the foaming box, and a cover body is fixed on the bracket. An air duct is formed between the cover body and the bracket; the number of the water outlet five of the diverter, the foaming plate, and the air duct is equal, and they are respectively arranged in cooperation.

[0017] Advantages of the present utility model:

[0018] With the present utility model arranged in this way, water and soap liquid are respectively provided into the mixing chamber through the water supply device and the soap liquid supply device. After the water and the soap liquid are mixed to form a mixed liquid, the mixed liquid is then transported into the foaming box through the pump assembly, and then foaming is achieved through the cooperation of the foaming assembly and the mixed liquid, with high foaming efficiency. Description of the Drawings

[0019] Figure 1 is the water circuit schematic diagram of the present utility model;

[0020] Figure 2 is the assembly schematic diagram of the water tank and the mixing chamber of the present utility model;

[0021] Figure 3 is the structural schematic diagram of the mixing chamber of the present utility model;

[0022] Figure 4 is the schematic diagram of the diversion channel in the mixing cavity of the present utility model;

[0023] Figure 5 is the assembly schematic diagram of pipeline one, pipeline two, and pipeline three of the present utility model;

[0024] Figure 6 is the schematic diagram of the foaming box of the present utility model;

[0025] Figure 7 is the schematic diagram of the pump assembly of the present utility model;

[0026] Figure 8 is the schematic diagram of the blower of the present utility model.

[0027] In the figure:

[0028] 1. Water tank; 11. Water outlet joint; 12. Check valve 1; 2. Mixing chamber; 20. Partition board; 21. Purified water chamber; 22. Mixing chamber; 23. Water inlet 1; 24. Water outlet 1; 25. Deflector; 26. Diversion channel; 3. Cleaning pump; 31. Water inlet 2; 32. Water outlet 2; 4. Soap solution pump; 41. Water inlet 3; 42. Water outlet 3; 5. Purified water pump; 51. Water inlet 4; 52. Water outlet 4; 61. Pipeline 1; 62. Pipeline 2; 63. Pipeline 3; 7. Soap solution tank; 71. Liquid outlet joint; 72. Three-way pipe; 73. Check valve 2; 8. Foaming box; 81. Shunt; 82. Water inlet 5; 83. Water outlet 5; 84. Foaming board; 85. Air hole; 91. Bracket; 92. Blower; 93. Air duct; 94. Cover body. Detailed implementation mode

[0029] The technical solution of the present utility model will be described below in conjunction with the drawings and embodiments.

[0030] As Figures 1 to 8 shown, a water circuit of a bathroom foaming machine according to the present utility model includes a mixing chamber 2, a foaming box 8 and a pump assembly; the mixing chamber 2 is respectively connected to a water supply device and a soap solution supply device; the pump assembly is connected to the mixing chamber 2 and the foaming box 8, and a foaming assembly is provided in the foaming box 8. With such a setting, water and soap solution are respectively supplied to the mixing chamber 2 by the water supply device and the soap solution supply device. After the water and soap solution are mixed to form a mixed liquid, the mixed liquid is then transported into the foaming box 8 by the pump assembly, and then foaming is achieved by the cooperation of the foaming assembly and the mixed liquid, with high foaming efficiency.

[0031] Furthermore, preferably, the water supply device of the present utility model is a water tank 1, and the soap solution supply device is a soap solution tank 7. The water supply device can also be an external water source, and the soap solution supply device can also be an external soap solution supply source. The pump assembly includes a soap solution pump 4 and a purified water pump 5. The purified water pump 5 is connected to the water tank 1 and the mixing chamber 2, and the soap solution pump 4 is connected to the soap solution tank 7 and the mixing chamber 2. With such a setting, the water in the water tank 1 is transported into the mixing chamber 2 by the purified water pump 5; the soap solution in the soap solution tank 7 is transported into the mixing chamber 2 by the soap solution pump 4. The water and soap solution are mixed to form a mixed liquid under the power provided by the purified water pump 5 and the soap solution pump 4, and the mixing effect is good.

[0032] Furthermore, the mixing chamber 2 is separated by a partition 20 into a purified water chamber 21 and a mixing chamber 22. The first water inlet 23 of the purified water chamber 21 is connected to the water tank 1, the fourth water inlet 51 of the purified water pump 5 is connected to the purified water chamber 21, and the fourth water outlet 52 of the purified water pump 5 is connected to the mixing chamber 22. The third water inlet 41 of the soap liquid pump 4 is connected to the soap liquid tank 7, and the third water outlet 42 of the soap liquid pump 4 is connected to the mixing chamber 22. The first water outlet 24 of the mixing chamber 22 is connected to the foaming box 8. With this arrangement, when the purified water pump 5 works, it first pumps the water in the water tank 1 into the purified water chamber 21 for storage and then transports it to the mixing chamber 22. When the soap liquid pump 4 works, it transports the soap liquid in the soap liquid tank 7 to the mixing chamber 22, and the mixed liquid is then transported to the foaming box 8 through the first water outlet 24.

[0033] In practical applications, there are two groups of the purified water pumps 5 to make the pumping efficiency and mixing efficiency higher.

[0034] Furthermore, a plurality of flow guiding plates 25 are provided in the mixing chamber 22, and the plurality of flow guiding plates 25 cooperate to form a swirling flow channel 26. With this arrangement, the water and the soap liquid can be more fully mixed under the action of the swirling flow channel 26, and the mixing effect is better.

[0035] Furthermore, the soap liquid tank 7 is provided with a liquid outlet joint 71, the liquid outlet joint 71 is connected with a three-way pipe 72, and the three-way pipe 72 is connected to the third water inlet 41 of the soap liquid pump 4 through a pipeline 61. With this arrangement, when the soap liquid pump 4 works, the soap liquid in the soap liquid tank 7 enters the mixing chamber 22 after passing through the liquid outlet joint 71, the three-way pipe 72, and the pipeline 61.

[0036] Furthermore, a check valve II 73 is provided on the liquid outlet joint 71. With this arrangement, the soap liquid in the soap liquid tank 7 can only be discharged through the liquid outlet joint 71 and cannot flow back. Of course, the check valve II 73 can also be provided at the connection interface between the three-way pipe 72 and the liquid outlet joint 71 to achieve the same purpose.

[0037] Furthermore, the present utility model further includes a cleaning pump 3. The three-way pipe 72 is connected to the second water outlet 32 of the cleaning pump 3 through a pipeline 62, and the second water inlet 31 of the cleaning pump 3 is connected to the purified water chamber 21. With this arrangement, when the cleaning pump 3 works, the water in the purified water chamber 21 enters the three-way pipe 72 through the pipeline 62. Under the restriction of the check valve II 73, the water cannot enter the soap liquid tank 7, and the water can only enter the mixing chamber 22 through the pipeline 61, so as to achieve the purpose of flushing the three-way pipe 72 and the pipeline 61, and effectively prevent the relatively concentrated soap liquid from condensing in the three-way pipe 72 and the pipeline 62 to cause pipe blockage.

[0038] In practical applications, the second water inlet 31 of the cleaning pump 3 can also be externally connected to a water source or a cleaning liquid.

[0039] Furthermore, the water tank 1 is provided with a water outlet joint 11, and the water outlet joint 11 is provided with a first one-way valve 12. With such a setting, the water in the water tank 1 can only be discharged through the water outlet joint 11 and cannot flow back. Of course, the first one-way valve 12 can also be arranged at the first water inlet 23 of the water purification chamber 21 to achieve the same purpose.

[0040] Furthermore, the present utility model further includes a diverter 81. The fifth water inlet 82 of the diverter 81 is connected to the first water outlet 24 of the mixing chamber 22 through a third pipeline 63. Multiple fifth water outlets 83 of the diverter 81 are connected to the foaming box 8 and are arranged in cooperation with the foaming components in the foaming box 8. With such a setting, the mixed liquid enters the diverter 81 through the first water outlet 24 and the fifth water inlet 82, and then the mixed liquid is diverted to multiple fifth water outlets 83 and enters the foaming box 8, so that the mixed liquid forms a water curtain and then cooperates with the foaming components to foam.

[0041] Furthermore, the foaming components include a foaming plate 84 and a blower 92. The foaming plate 84 is located below the fifth water outlet 83 of the diverter 81. The foaming plate 84 is provided with a plurality of air holes 85. The blower 92 is connected to the air inlet end of the air holes 85 through an air duct 93, and the air outlet end of the air holes 85 is arranged in cooperation with the fifth water outlet 83 of the diverter 81. With such a setting, the foaming plate 84 is arranged below the fifth water outlet 83 of the diverter 81. The water curtain formed by the mixed liquid will fall on the surface of the foaming plate 84 to form a water film. When the blower 92 works, the generated air flow blows out after passing through the air duct 93 and the air holes 85, forming a high-pressure air flow, so as to continuously blow the water film, thereby forming countless bubbles.

[0042] In practical applications, a bracket 91 is fixed on the foaming box 8, and a cover 94 is fixed on the bracket 91. An air duct 93 is formed between the cover 94 and the bracket 91; the number of the fifth water outlets 83 of the diverter 81, the foaming plate 84 and the air duct 93 is equal, and they are respectively arranged in cooperation.

[0043] The embodiments of the present utility model have been described above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present utility model, those of ordinary skill in the art can also make many forms without departing from the purpose of the present utility model and the scope protected by the claims, and all of them belong to the protection scope of the present utility model.

Claims

1. A water circuit of a bathroom foaming machine, characterized in that: It includes a mixing chamber (2), a foaming box (8) and a pump assembly; The mixing chamber (2) is respectively connected to a water supply device and a soap solution supply device; The pump assembly is connected to the mixing chamber (2) and the foaming box (8), and a foaming assembly is provided in the foaming box (8).

2. The water circuit of a bathroom foaming machine according to claim 1, characterized in that: The water supply device is a water tank (1), the soap solution supply device is a soap solution tank (7), the pump assembly includes a soap solution pump (4) and a clean water pump (5), the clean water pump (5) is connected to the water tank (1) and the mixing chamber (2), and the soap solution pump (4) is connected to the soap solution tank (7) and the mixing chamber (2).

3. The water circuit of a bathroom foaming machine according to claim 2, characterized in that: The mixing chamber (2) is separated into a clean water chamber (21) and a mixing chamber (22) by a partition plate (20). The clean water chamber (21) is connected to the water tank (1) through a pipeline, and the clean water pump (5) is connected to the clean water chamber (21) and the mixing chamber (22); the soap solution pump (4) is connected to the soap solution tank (7) and the mixing chamber (22), and the mixing chamber (22) is connected to the foaming box (8).

4. The water circuit of a bathroom foaming machine according to claim 3, characterized in that: A plurality of flow guiding plates (25) are provided in the mixing chamber (22), and the plurality of flow guiding plates (25) cooperate to form a swirling flow path (26).

5. A water circuit of a bathroom foaming machine according to claim 3, characterized in that: The soap solution tank (7) is provided with a liquid outlet joint (71), the liquid outlet joint (71) is connected with a three-way pipe (72), and the three-way pipe (72) is connected to the soap solution pump (4) through a pipeline one (61).

6. The water circuit of a bathroom foaming machine according to claim 5, characterized in that: The liquid outlet joint (71) is provided with a check valve two (73).

7. The water circuit of a bathroom foaming machine according to claim 5, characterized in that: It further includes a cleaning pump (3), the three-way pipe (72) is connected to the cleaning pump (3) through a pipeline two (62), and the cleaning pump (3) is connected to the clean water chamber (21).

8. The water circuit of a bathroom foaming machine according to claim 3, characterized in that: The water tank (1) is provided with a water outlet joint (11), and the water outlet joint (11) is provided with a check valve one (12).

9. The water circuit of a bathroom foaming machine according to claim 3, characterized in that: It further includes a diverter (81), the mixing chamber (22) is connected to the diverter (81) through a pipeline three (63), and the diverter (81) is connected to the foaming box (8).

10. The water circuit of a bathroom foaming machine according to claim 1, characterized in that: The foaming assembly includes a foaming plate (84) and a blower (92), a plurality of air holes (85) are provided on the foaming plate (84), and the blower (92) is connected to the air holes (85) through an air duct (93).

Citation Information

Patent Citations

  • Bathroom foaming machine

    CN205831706U