Intelligent temperature control massage ice bucket bathtub

The intelligent temperature-controlled massage ice bucket bathtub design solves the problem of bathtubs being unable to accurately adjust water temperature and having limited massage functions, enabling flexible switching between cold and hot water baths and personalized massage, thus enhancing the user's bathing experience.

CN224166196UActive Publication Date: 2026-04-28GUANGZHOU SUNRANS SANITARY WARE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU SUNRANS SANITARY WARE
Filing Date
2025-04-18
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing bathtubs have limited functionality, cannot precisely adjust water temperature to meet users' needs for cold water baths, and offer only basic massage functions to fail to meet personalized needs, resulting in a poor user experience.

Method used

Design an intelligent temperature-controlled massage ice bucket bathtub, comprising an ice bucket, a delivery component, and a heating component. The ice bucket is used to hold a low-temperature water source, the delivery component delivers the low-temperature water source to the heating component, the heating component heats it to a preset temperature and delivers it into the bathing tub, and combined with an ozone generator and control panel, achieves precise control and personalized adjustment of water temperature.

Benefits of technology

It achieves precise water temperature control, allows for flexible switching between cold and hot water baths, enhances the user's bathing experience, provides personalized massage functions, and significantly improves user satisfaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent temperature control massage ice bucket bathtub. The intelligent temperature control massage ice bucket bathtub comprises a bathtub body, a bath tank arranged on the bathtub body, an ice bucket arranged on the bathtub body, an ozone generator arranged on the bathtub body, a conveying assembly connected to the ice bucket through a pipeline, and a heating assembly connected to the conveying assembly through a pipeline. The ice bucket is used for containing a low-temperature water source, the conveying assembly is used for conveying the low-temperature water source to the heating assembly, and the heating assembly is used for heating the low-temperature water source to a preset temperature and conveying the low-temperature water source into the bath tank. By arranging the ice bucket, the conveying assembly and the heating assembly, the low-temperature water source can be heated to the preset temperature and conveyed into the bath tank, then the water temperature is accurately controlled, the bath requirement of a user in a daily use scene is met, the use requirement of the user in a cold water bath use scene can be further met, and the bath experience of the user is remarkably improved. The device has the advantages of simple structure, simplicity and convenience in operation, low implementation cost and convenience in popularization and implementation.
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Description

Technical Field

[0001] This application belongs to the field of bathtub equipment technology, specifically relating to an intelligent temperature-controlled massage ice tub bathtub. Background Technology

[0002] In the current technology, with the improvement of people's living standards, bathtubs, as a modern bathing device, are becoming increasingly popular. However, existing bathtubs have relatively limited functions, typically only having a water storage function, and thus have many shortcomings in use, such as difficulty in water temperature adjustment and only providing hot water.

[0003] In the current technology, with the improvement of people's living standards, the popularity of cold water baths is becoming more and more widespread. Users will feel refreshed and clear-headed after a cold water bath, and it can also enhance the body's resistance to disease. It is known as "vascular gymnastics".

[0004] In existing technologies, smart bathtubs play an important role in improving people's quality of life. However, traditional bathtubs typically only provide hot water and cannot provide cold water, nor can they flexibly adapt to user needs, resulting in a poor user experience. Furthermore, existing bathtub massage functions are relatively limited, failing to meet the personalized needs of different users for massage intensity and methods, and thus struggling to satisfy the growing demands of consumers.

[0005] Therefore, improvements are urgently needed to comprehensively enhance the performance, functionality, and user experience of existing bathtubs, thereby improving the user experience and quality of life. Utility Model Content

[0006] This application addresses the technical problems of existing bathtubs, which typically have limited functionality, primarily water storage, and cannot precisely regulate water temperature. Furthermore, existing water temperature control devices mostly regulate the temperature of hot water, failing to meet users' needs for cold water baths and resulting in a poor user experience. Therefore, this application proposes an intelligent temperature-controlled massage ice tub bathtub.

[0007] This application adopts the following solution: an intelligent temperature-controlled massage ice bucket bathtub, including a bathtub body, a bathing tub disposed on the bathtub body, an ice bucket disposed on the bathtub body, an ozone generator disposed on the bathtub body, a conveying assembly with pipes connected to the ice bucket, and a heating assembly with pipes connected to the conveying assembly. The ice bucket is used to contain a low-temperature water source, the conveying assembly is used to convey the low-temperature water source to the heating assembly, and the heating assembly is used to heat the low-temperature water source to a preset temperature and convey it into the bathing tub.

[0008] In some possible embodiments, the system further includes a first water outlet and a second water outlet disposed opposite to each other on the bath tub, and a water distributor disposed on the conveying assembly, the water distributor being connected to the pipes of the first water outlet and the second water outlet respectively, so that water flows out from the first water outlet and the second water outlet respectively.

[0009] In some possible embodiments, the ozone generator is used to generate ozone, and the ozone generator pipeline is connected to the second water outlet to deliver the ozone into the bathing tub.

[0010] In some possible embodiments, a control panel is also provided on the ice bucket, wherein the control panel, the conveying assembly, and the heating assembly are simultaneously signal-connected, and the control panel is used to control the water temperature in the bath tub.

[0011] In some possible embodiments, a reflux assembly disposed on the bath tub is also included, the reflux assembly being used to return water in the bath tub to the ice bucket.

[0012] In some possible embodiments, a filter assembly is also included between the ice bucket and the delivery assembly, the filter assembly being used to filter the low-temperature water source output from the ice bucket.

[0013] In some possible embodiments, a boss is also provided on one side of the bottom of the bath tub, on which the user can sit.

[0014] In some possible embodiments, a drain assembly is also provided on the bathtub body for draining water from the bath tub outside the bath tub. The drain assembly includes a drain outlet at the bottom of the bath tub and a drain pipe on the drain outlet.

[0015] In some possible embodiments, the bathtub body includes a base, a frame disposed on the base, and a tub disposed on the frame, with the bathing tub and the ice bucket simultaneously disposed on the tub, and the ozone generator, the conveying assembly, and the heating assembly simultaneously disposed between the tub and the frame.

[0016] Compared with the prior art, this application has the following beneficial effects:

[0017] This application provides an intelligent temperature-controlled massage ice bucket bathtub, comprising a bathtub body, a bathing tub mounted on the bathtub body, an ice bucket mounted on the bathtub body, an ozone generator mounted on the bathtub body, a delivery assembly connected to the ice bucket, and a heating assembly connected to the delivery assembly. The ice bucket holds a low-temperature water source, the delivery assembly delivers the low-temperature water source to the heating assembly, and the heating assembly heats the low-temperature water source to a preset temperature and delivers it to the bathing tub. By incorporating the ice bucket, delivery assembly, and heating assembly, the low-temperature water source can be heated to a preset temperature and delivered to the bathing tub, thereby precisely controlling the water temperature. This not only meets the user's daily bathing needs but also further satisfies the user's needs in cold water bathing scenarios, significantly improving the user's bathing experience. It has the advantages of simple structure, easy operation, low implementation cost, and ease of promotion and implementation. Attached Figure Description

[0018] Figure 1 This is a structural schematic diagram of an intelligent temperature-controlled massage ice tub bathtub according to this application;

[0019] Figure 2 This is a schematic diagram of the internal structure of an intelligent temperature-controlled massage ice tub bathtub according to this application;

[0020] Figure 3 This is a schematic diagram of the internal structure of a smart temperature-controlled massage ice tub bathtub from another perspective. Detailed Implementation

[0021] Combination Figure 1-3 The content shown further illustrates the technical solution provided in this application: an intelligent temperature-controlled massage ice bucket bathtub, comprising a bathtub body 1, a bathing tub 2 disposed on the bathtub body 1, an ice bucket 4 disposed on the bathtub body 1, an ozone generator 3 disposed on the bathtub body 1, a conveying assembly 5 with pipelines connected to the ice bucket 4, and a heating assembly with pipelines connected to the conveying assembly 5. The ice bucket 4 is used to contain a low-temperature water source, the conveying assembly 5 is used to convey the low-temperature water source to the heating assembly, and the heating assembly is used to heat the low-temperature water source to a preset temperature and convey it into the bathing tub 2.

[0022] In actual implementation, the ice bucket is a tub body mounted on the main body of the bathtub, and a refrigeration component is mounted on the tub body. The refrigeration component is used to cool the water source inside the tub.

[0023] In actual implementation, a compression refrigeration unit is selected for the refrigeration components, which can quickly reduce the temperature of the water source in the ice bucket, quickly meet the user's cold water bath needs, and greatly improve the user experience.

[0024] This application provides an intelligent temperature-controlled massage ice bucket bathtub, comprising a bathtub body, a bathing tub mounted on the bathtub body, an ice bucket mounted on the bathtub body, an ozone generator mounted on the bathtub body, a delivery assembly connected to the ice bucket, and a heating assembly connected to the delivery assembly. The ice bucket holds a low-temperature water source, the delivery assembly delivers the low-temperature water source to the heating assembly, and the heating assembly heats the low-temperature water source to a preset temperature and delivers it to the bathing tub. By incorporating the ice bucket, delivery assembly, and heating assembly, the low-temperature water source can be heated to a preset temperature and delivered to the bathing tub, thereby precisely controlling the water temperature. This not only meets the user's daily bathing needs but also further satisfies the user's needs in cold water bathing scenarios, significantly improving the user's bathing experience. It has the advantages of simple structure, easy operation, low implementation cost, and ease of promotion and implementation.

[0025] In this embodiment, the system also includes a first water outlet 20 and a second water outlet 21 located opposite to each other on the bathing tub 2, and a water distributor located on the conveying assembly 5. The water distributor is connected to the first water outlet 20 and the second water outlet 21 respectively, so that water flows out from the first water outlet 20 and the second water outlet 21 respectively.

[0026] In actual implementation, a delivery pump is selected for the delivery component and a heat pump is selected for the heating component. The heat pump can not only accurately heat the low-temperature water source, but also deliver the heated water to the bathing tub, which can quickly respond to user needs. This allows the bathtub to be freely switched between daily bathing and cold water bathing scenarios, significantly improving the user's bathing experience.

[0027] In practice, by setting up an ice bucket, the bathtub can provide both cold and hot water bath options to meet the user's needs in different scenarios.

[0028] Specifically, the compressor refrigeration system rapidly lowers the temperature of the water in the ice bucket. When a user needs a cold water bath, they control the delivery component via the control panel to deliver cold water to the bath tub, meeting their bathing needs. When a user needs a hot water bath, they control the heating component (heat pump system / titanium alloy electric heating element) via the control panel to heat the water, which, in conjunction with the reflux component and PID algorithm, maintains a stable water temperature.

[0029] In this embodiment, the ozone generator 3 is used to generate ozone, and the ozone generator 3 pipeline is connected to the second water outlet 21 to deliver ozone into the bathing tub 2.

[0030] In actual implementation, both the first and second water outlets are spray nozzles. By using the relatively positioned first and second water outlets, pressure can be applied to achieve a massage effect on the human body, significantly improving the user's bathing experience.

[0031] In practice, users can easily control the water temperature via the control panel to meet their personalized needs in different scenarios. The cold shower function, through precise adjustment, continuously provides users with a suitable low-temperature water temperature, ensuring a comfortable experience, suitable for scenarios requiring cooling or relaxation. Furthermore, the SPA massage shower function, through intelligent control, can precisely set the water temperature according to user preferences, ensuring a comfortable and relaxing experience every time you shower. Whether it's a cold shower or a SPA massage shower, the system supports one-button operation. Users can easily achieve personalized needs and enhance the overall user experience by simply making settings through the control panel.

[0032] In this embodiment, a control panel 7 is also provided on the ice bucket 4. The control panel 7, the conveying component 5, and the heating component are all connected by signals. The control panel 7 is used to control the water temperature in the bathing tub 2.

[0033] In actual implementation, users can adjust the operating parameters of the conveying and heating components through the control panel, thereby setting the water temperature of the bath tub to the preset value.

[0034] In this embodiment, a return flow component 8 is also provided on the bathing tub 2. The return flow component 8 is used to return the water in the bathing tub 2 to the ice bucket 4.

[0035] In actual implementation, the recirculation component includes a recirculation hole located at the bottom of the bath tub and a recirculation pump located between the recirculation hole and the ice bucket. The recirculation pump is used to transport water from the bath tub to the ice bucket to achieve water recirculation.

[0036] In this embodiment, a filter assembly 40 is also provided between the ice bucket 4 and the conveying assembly 5. The filter assembly 40 is used to filter the low-temperature water source output from the ice bucket 4.

[0037] In actual implementation, pressure-type filter components are selected to significantly improve their filtration capacity for low-temperature water sources and improve water quality.

[0038] In this embodiment, a protrusion 22 is also provided on one side of the bottom of the bath tub 2, and the user can sit on the protrusion 22.

[0039] In this embodiment, a drainage component 9 is also provided on the bathtub body 1. The drainage component 9 is used to drain the water in the bath tub 2 out of the bath tub 2. The drainage component 9 includes a drain outlet 90 at the bottom of the bath tub 2 and a drain pipe 91 on the drain outlet 90.

[0040] In this embodiment, the bathtub body 1 includes a base 10, a frame 11 on the base 10, and a tub 12 on the frame 11. The bathing tub 2 and the ice bucket 4 are both located on the tub 12. The ozone generator 3, the conveying assembly 5, and the heating assembly are both located between the tub 12 and the frame 11.

[0041] In actual implementation, the cylinder body also includes multiple skirts mounted on the frame.

[0042] This application provides an intelligent temperature-controlled massage ice bucket bathtub, comprising a bathtub body, a bathing tub mounted on the bathtub body, an ice bucket mounted on the bathtub body, an ozone generator mounted on the bathtub body, a delivery assembly connected to the ice bucket, and a heating assembly connected to the delivery assembly. The ice bucket holds a low-temperature water source, the delivery assembly delivers the low-temperature water source to the heating assembly, and the heating assembly heats the low-temperature water source to a preset temperature and delivers it to the bathing tub. By incorporating the ice bucket, delivery assembly, and heating assembly, the low-temperature water source can be heated to a preset temperature and delivered to the bathing tub, thereby precisely controlling the water temperature. This not only meets the user's daily bathing needs but also further satisfies the user's needs in cold water bathing scenarios, significantly improving the user's bathing experience. It has the advantages of simple structure, easy operation, low implementation cost, and ease of promotion and implementation.

[0043] The embodiments provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core ideas of this utility model. It should be noted that those skilled in the art can make several improvements and modifications to this utility model without departing from the principles of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A smart temperature-controlled massage ice tub bathtub, characterized in that, The bathtub includes a bathtub body (1), a bathing tub (2) on the bathtub body (1), an ice bucket (4) on the bathtub body (1), an ozone generator (3) on the bathtub body (1), a conveying assembly (5) with pipes connected to the ice bucket (4), and a heating assembly with pipes connected to the conveying assembly (5). The ice bucket (4) is used to hold a low-temperature water source, the conveying assembly (5) is used to convey the low-temperature water source to the heating assembly, and the heating assembly is used to heat the low-temperature water source to a preset temperature and convey it into the bathing tub (2).

2. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a first water outlet (20) and a second water outlet (21) respectively disposed on the bathing tub (2), and a water distributor disposed on the conveying assembly (5), the water distributor being connected to the first water outlet (20) and the second water outlet (21) respectively, so that water flows out from the first water outlet (20) and the second water outlet (21) respectively.

3. The intelligent temperature-controlled massage ice tub bathtub according to claim 2, characterized in that, The ozone generator (3) is used to generate ozone. The ozone generator (3) is connected to the second water outlet (21) to deliver ozone into the bathing tub (2).

4. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a control panel (7) located on the ice bucket (4), the control panel (7), the conveying component (5) and the heating component are connected by signals, and the control panel (7) is used to control the water temperature in the bathing tub (2).

5. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a return assembly (8) provided on the bathing tub (2), the return assembly (8) being used to return the water in the bathing tub (2) to the ice bucket (4).

6. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a filter assembly (40) disposed between the ice bucket (4) and the conveying assembly (5), the filter assembly (40) being used to filter the low-temperature water source output from the ice bucket (4).

7. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a boss (22) located on one side of the bottom of the bath tub (2), on which the user can sit.

8. The intelligent temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, It also includes a drain assembly (9) provided on the bathtub body (1), the drain assembly (9) being used to drain water from the bath tub (2) outside the bath tub (2), the drain assembly (9) including a drain outlet (90) provided at the bottom of the bath tub (2), and a drain pipe (91) provided on the drain outlet (90).

9. A smart temperature-controlled massage ice tub bathtub according to claim 1, characterized in that, The bathtub body (1) includes a base (10), a frame (11) on the base (10), and a tub (12) on the frame (11). The bathing tub (2) and the ice bucket (4) are both located on the tub (12). The ozone generator (3), the conveying assembly (5), and the heating assembly are both located between the tub (12) and the frame (11).