Temperature control method of footbath basin, computer equipment and footbath basin

By independently heating the liquid in the medicine box in the foot bath and using the conveying equipment to connect with the basin, combining liquid level and temperature detection, the problem of insufficient heating of the medicine liquid is solved, achieving efficient drug extraction and a safe and reliable foot bathing experience.

CN120540447APending Publication Date: 2025-08-26GUANGDONG KAIMEIXIN ELECTRICAL TECH CO LTD
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Patent Information

Application Number
CN202510466514.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-08-26

AI Technical Summary

Technical Problem

During the heating process of the existing foot soaking bucket, the temperature of the medicine liquid in the medicine box cannot reach high temperature extraction, which affects the efficacy of the medicine. The heating equipment is set inside the barrel, resulting in inconvenience in operation and safety hazards.

Method used

The liquid in the medicine box is heated by independent heating equipment and connected to the basin through the conveying equipment to realize the mixing and separation of the liquid in the medicine box and the liquid in the pot, and liquid level detection and real-time temperature control are added to ensure that the liquid temperature in the medicine box reaches higher than the reference temperature.

Benefits of technology

It improves the extraction effect of the medicine bag, enhances the health care effect of foot soaking, and improves the safety and service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a temperature control method of a foot bath basin, computer equipment and the foot bath basin, and relates to the technical field of health care and rehabilitation equipment.The method comprises the steps that S1, heating equipment is started so that the heating equipment can heat liquid in a medicine box; s2, starting the conveying equipment, and conveying the liquid in the medicine box into the basin body through the conveying equipment so as to mix the liquid output by the medicine box with the liquid in the basin body; s3, the liquid in the basin body is conveyed into the medicine box through the conveying equipment; and S4, repeating the steps S1 to S3 until the real-time temperature of the liquid in the basin body reaches a preset reference temperature. By the adoption of the medicine box, the medicine bags in the medicine box can be independently heated, and the extraction effect is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of health care and rehabilitation equipment, and in particular to a temperature control method for a foot soaking basin, computer equipment, and the foot soaking basin. Background Art

[0002] The feet are also called the second heart of the human body. There are reflex areas and meridian distributions corresponding to various internal organs on the human feet. When soaking feet in warm water, these reflex areas can be stimulated, which can promote blood circulation, regulate the endocrine system, enhance the function of human organs, and achieve health care effects of preventing and treating diseases. Soaking feet is foot bath, which is one of the contents of traditional Chinese medicine foot therapy and is also a commonly used external treatment method. Soaking feet in hot water can relieve fatigue and promote sleep. At the same time, adding Chinese medicine to the water can also play a good auxiliary role in the treatment of diseases.

[0003] At present, when taking Chinese medicine foot bath in a foot bath bucket, the user usually soaks the medicinal materials in some hot water for 10 to 20 minutes before adding water for foot bath. This operation is relatively troublesome, and the medicinal materials for foot bath are scattered in the foot bath bucket, making it difficult to clean up the medicinal residues in a centralized manner. This causes inconvenience to the maintenance of the foot bath bucket and also affects the foot bath experience. Therefore, foot bath buckets with medicine boxes have appeared on the market.

[0004] For example, Chinese patent "CN113558968A" discloses a control method and device for a foot soaking bucket. During the operation of the heating pump water treatment, the water for foot soaking is input into the bucket through the water inlet pipe. The water is heated by the heating pipe during the process. The heated water enters the bucket, and the hot water is soaked with the medicinal materials in the medicine box to obtain a medicinal liquid, which is used for foot soaking. However, in the foot soaking bucket, the heating pump water module is arranged inside the bucket, and the heating pipe heats the medicinal liquid in the bucket and the medicine box at the same time, and the heating temperature is not high (the heating temperature cannot be higher than the foot soaking temperature), so as to avoid burns to the user and fail to achieve high-temperature extraction of the medicine package, which greatly reduces the health care effect of the medicine package. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to provide a temperature control method for a foot bath, a computer device and a foot bath, which can heat the medicine bags in the medicine box individually to improve the extraction effect.

[0006] In order to solve the above technical problems, the present invention provides a temperature control method for a foot soaking basin, wherein the foot soaking basin includes a basin body and a medicine box with a heating device, and the basin body and the medicine box are connected by a conveying device. The temperature control method includes: S1, starting the heating device so that the heating device heats the liquid in the medicine box; S2, starting the conveying device, and conveying the liquid in the medicine box into the basin body through the conveying device to mix the liquid output from the medicine box with the liquid in the basin body; S3, conveying the liquid in the basin body into the medicine box through the conveying device; S4, repeating steps S1 to S3 until the real-time temperature of the liquid in the basin body reaches a preset reference temperature.

[0007] As an improvement to the above-mentioned solution, the method of transferring the liquid in the basin to the medicine box through the conveying device includes: closing the conveying device so that the liquid in the basin flows back into the medicine box through the conveying device, or starting the conveying device to transfer the liquid in the medicine box into the basin through the conveying device.

[0008] As an improvement of the above solution, the temperature control method of the foot bath basin further includes: after the liquid in the basin body is transferred to the medicine box by the conveying device, the liquid level in the basin body is the same as the liquid level in the medicine box.

[0009] As an improvement to the above-mentioned solution, the temperature control method of the foot bath basin also includes: in the process of conveying the liquid in the medicine box into the basin body through the conveying device, the liquid level information in the medicine box is obtained in real time, wherein: when the liquid level information in the medicine box is lower than the preset liquid level, the conveying device is stopped from conveying the liquid in the medicine box into the basin body.

[0010] As an improvement to the above-mentioned scheme, the temperature control method of the foot bath basin also includes: obtaining the real-time temperature of the liquid in the basin body in real time; when the real-time temperature of the liquid in the basin body is lower than the preset minimum temperature, repeating steps S1 to S3 until the real-time temperature of the liquid in the basin body reaches the reference temperature again, and the minimum temperature is lower than the reference temperature.

[0011] As an improvement of the above-mentioned scheme, the temperature control method of the foot bath basin also includes: starting the heating device within a first preset time period, so that the heating device heats the liquid in the medicine box within the first preset time period; starting the conveying device within a second preset time period, and conveying the liquid in the medicine box into the basin body through the conveying device within the second preset time period to mix the liquid output from the medicine box with the liquid in the basin body; and conveying the liquid in the basin body to the medicine box through the conveying device within a third preset time period.

[0012] As an improvement to the above solution, the heating device heats the liquid in the medicine box so that the temperature of the liquid in the medicine box reaches an extraction temperature, and the extraction temperature is higher than the reference temperature.

[0013] Correspondingly, the present invention also provides a computer device, including a memory and a processor, wherein the memory stores a computer program, wherein the processor implements the steps of the above-mentioned foot bath temperature control method when executing the computer program.

[0014] Correspondingly, the present invention also provides a foot soaking basin, which includes a basin body, a medicine box, a heating device, a temperature sensor, a conveying device and the above-mentioned computer device; the heating device is arranged in the medicine box, for heating the liquid in the medicine box; the temperature sensor is arranged in the basin body, for real-time detection of the real-time temperature of the liquid in the basin body; the basin body and the medicine box are connected through the conveying device, and the conveying device is used for liquid transmission between the basin body and the medicine box; the computer device is electrically connected to the heating device, temperature sensor and conveying device respectively.

[0015] As an improvement of the above solution, the foot bath further includes a liquid level sensor electrically connected to the computer device, and the liquid level sensor is used to detect the liquid level information in the medicine box in real time.

[0016] The implementation of the present invention has the following beneficial effects:

[0017] The foot bathing basin used in the present invention is not directly connected to the medicine box, but is connected through a conveying device. That is, by controlling the state of the conveying device, the liquid in the medicine box can be independently heated and fully integrated with the liquid in the medicine box and the basin body, which has high flexibility.

[0018] At the same time, the present invention can heat the liquid in the medicine box separately through the heating device, so that the temperature of the liquid in the medicine box is different from the temperature of the liquid in the basin during the heating process, thereby performing high-temperature extraction on the medicine package / herbal medicine in the medicine box and improving the efficacy of the medicine package / herbal medicine;

[0019] Furthermore, the present invention adds a liquid level detection function, which greatly improves the service life and safety of the foot bath;

[0020] More preferably, the present invention also adds a real-time temperature measurement function, which can effectively ensure that the temperature of the liquid in the basin is always close to the reference temperature during the foot soaking process, thereby improving the foot soaking effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a flow chart of a first embodiment of the temperature control method for a footbath of the present invention;

[0022] Figure 2 This is a flow chart of a second embodiment of the temperature control method for a footbath of the present invention;

[0023] Figure 3 4 is a flow chart of a third embodiment of the temperature control method for a footbath of the present invention;

[0024] Figure 4 This is a flow chart of the fourth embodiment of the temperature control method of the footbath of the present invention.

[0025] Figure 5 This is a schematic structural diagram of an embodiment of a foot soaking basin of the present invention;

[0026] Figure 6 This is a three-dimensional diagram of an embodiment of a footbath of the present invention;

[0027] Figure 7 It is a cross-sectional view of an embodiment of a foot soaking basin of the present invention. DETAILED DESCRIPTION

[0028] To make the objectives, technical solutions, and advantages of the present invention more apparent, the present invention will be further described in detail below with reference to the accompanying drawings. It is hereby stated that any directional terms such as "up," "down," "left," "right," "front," "back," "inside," and "outside" that appear or will appear herein are based solely on the accompanying drawings and are not intended to limit the present invention.

[0029] See also Figure 1 , Figure 1 A flow chart of a first embodiment of a temperature control method for a footbath according to the present invention is shown, comprising:

[0030] S101, starting a heating device to heat the liquid in the medicine box;

[0031] In the existing foot soaking basin, the basin body is directly connected to the medicine box, which mainly functions as a filter for the medicine residue. At the same time, a heating pipe is arranged inside the basin body, and the heating pipe heats the medicine liquid in the barrel body and the medicine box at the same time. Different from the prior art, the basin body and the medicine box in the foot soaking basin used in the present invention are not directly connected, but are connected through a conveying device. At the same time, the heating device is arranged inside the medicine box, which only heats the liquid in the medicine box and does not heat the liquid in the basin body (see Figure 6 and Figure 7 ).

[0032] Correspondingly, since the heating tube in the existing foot bath simultaneously heats the basin body and the liquid medicine in the medicine box, the heating temperature of the liquid medicine is the same as the foot bath temperature. The foot bath temperature is generally around 35°C, which is not suitable for high-temperature extraction of the medicine bags / medicinal materials in the medicine box, greatly affecting the foot bath effect. Unlike the prior art, in the present invention, the heating device heats the liquid in the medicine box alone. The temperature of the liquid in the medicine box is significantly different from the temperature of the liquid in the basin body, and it is ensured that after the heating device heats the liquid in the medicine box, the temperature of the liquid in the medicine box reaches the extraction temperature. The extraction temperature is higher than the foot bath temperature (i.e., the reference temperature), so the medicine bags / medicinal materials in the medicine box can be extracted at high temperature, improving the foot bath effect. Generally, the extraction temperature can be as high as 90°C.

[0033] In this embodiment, the heating device may be a heating rod, but is not limited thereto, as long as heating can be achieved.

[0034] It should be noted that the heating duration of the heating device can be controlled according to a time setting or a temperature setting, or it can continue heating throughout the entire foot soaking process. For example, the heating duration of each heating device can be set to 10 minutes; for another example, the heating device can be set to stop heating after heating the liquid in the medicine box to 100°C; for another example, the heating device can be set to continue heating throughout the foot soaking process.

[0035] S102, starting the conveying device to convey the liquid in the medicine box to the basin body through the conveying device to mix the liquid output from the medicine box with the liquid in the basin body;

[0036] In the existing foot soaking basin, the basin body is directly connected to the medicine box, and the medicine box mainly serves to filter the medicine residue. Different from the prior art, the basin body and the medicine box in the foot soaking basin used in the present invention are not directly connected, but are connected through a conveying device, that is, by controlling the state of the conveying device, the liquid in the medicine box can be independently heated and the liquid in the medicine box can be fully integrated with the liquid in the basin body (see Figure 6 and Figure 7 ).

[0037] In this embodiment, the conveying device may be a water pump with a pipeline, but is not limited thereto, as long as liquid transmission can be achieved.

[0038] S103, delivering the liquid in the basin to the medicine box through a delivery device;

[0039] Accordingly, the method for transferring the liquid in the basin to the medicine box by the delivery device includes:

[0040] (1) Close the delivery device to allow the liquid in the basin to flow back into the medicine box through the delivery device.

[0041] When the delivery device uses a one-way pump with a pipeline, bidirectional flow of liquid can be achieved by turning the one-way pump on and off. For example, when the one-way pump is on, the liquid in the medicine box can be transported to the basin. When the one-way pump is off, the one-way pump is in the conducting state, and the liquid in the basin can flow back into the medicine box using the U-tube principle.

[0042] (2) Start the conveying device to convey the liquid in the medicine box into the basin body through the conveying device.

[0043] When the delivery device uses a bidirectional pump with a pipeline, bidirectional flow of the liquid can be achieved by activating the bidirectional pump. For example, when the bidirectional pump is energized in the forward direction, the liquid in the medicine box can be transferred to the basin, and when the bidirectional pump is energized in the reverse direction, the liquid in the basin can be transferred to the medicine box.

[0044] Furthermore, after the liquid in the basin is transferred to the medicine box by the conveying device, the liquid level in the basin is the same as the liquid level in the medicine box.

[0045] S104, repeating steps S101 to S103 until the real-time temperature of the liquid in the basin reaches a preset reference temperature.

[0046] Generally, the base temperature can be set to 35°C, but it is not limited to this and can be set specifically according to the needs of the medicinal bath.

[0047] In actual application, by repeating steps S101 to S103 three times, the real-time temperature of the liquid in the basin can reach the preset reference temperature; during the entire heating process, the foot soaking operation can be performed simultaneously to achieve high-temperature extraction of the medicine bag and improve the user's foot soaking comfort.

[0048] See also Figure 2 , Figure 2 A flow chart of a second embodiment of the temperature control method for a footbath of the present invention is shown, comprising:

[0049] S201, starting the heating device to heat the liquid in the medicine box;

[0050] S202, starting the conveying device to convey the liquid in the medicine box to the basin body through the conveying device to mix the liquid output from the medicine box with the liquid in the basin body;

[0051] S203, obtaining the liquid level information in the medicine box in real time;

[0052] S204, when the liquid level information in the medicine box is lower than the preset liquid level, stop delivering the liquid in the medicine box to the basin through the delivery device;

[0053] It should be noted that after the heating device is turned off, a certain amount of residual heat is still retained. If the liquid in the medicine box is emptied, it will be detrimental to the service life of the heating device. In addition, if the heating device cannot be turned off normally, it will easily cause the heating device to dry burn, which is not in compliance with safety standards.

[0054] and Figure 1 What is different from the first embodiment shown is that a liquid level detection function is added in this embodiment. During the process of transporting the liquid in the medicine box to the basin body through the conveying equipment, the liquid level information in the medicine box is obtained in real time. When the liquid level information in the medicine box is lower than the preset liquid level, the conveying equipment is stopped from transporting the liquid in the medicine box to the basin body.

[0055] Generally, the heating device is located at the bottom of the medicine box, and the preset liquid level is located above the heating device to ensure that the heating device is always immersed during operation.

[0056] S205, delivering the liquid in the basin to the medicine box through the delivery device;

[0057] S206, repeating steps S201 to S205 until the real-time temperature of the liquid in the basin reaches a preset reference temperature.

[0058] Therefore, the present invention greatly improves the service life and safety of the foot soaking basin by adding a liquid level detection function.

[0059] See also Figure 3 , Figure 3 A flow chart of a third embodiment of the temperature control method for a footbath of the present invention is shown, comprising:

[0060] S301, starting the heating device to heat the liquid in the medicine box;

[0061] S302, starting the conveying device to convey the liquid in the medicine box to the basin body through the conveying device to mix the liquid output from the medicine box with the liquid in the basin body;

[0062] S303, delivering the liquid in the basin to the medicine box through the delivery device;

[0063] S304, repeating steps S301 to S303 until the real-time temperature of the liquid in the basin reaches a preset reference temperature.

[0064] S305, obtaining the real-time temperature of the liquid in the basin in real time;

[0065] S306, when the real-time temperature of the liquid in the basin is lower than the preset minimum temperature, repeat steps S301 to S303 until the real-time temperature of the liquid in the basin reaches the reference temperature again and the minimum temperature is lower than the reference temperature.

[0066] and Figure 1 What is different from the first embodiment shown is that this embodiment continues to detect the real-time temperature of the liquid in the basin after the real-time temperature of the liquid in the basin reaches a preset reference temperature, thereby heating the liquid in the basin again through steps S301 to S303, ensuring that the temperature is always near the reference temperature during the foot soaking process, thereby improving the foot soaking effect.

[0067] See also Figure 4 , Figure 4 A flow chart of a fourth embodiment of the temperature control method for a footbath of the present invention is shown, comprising:

[0068] S401, starting a heating device within a first preset time period, so that the heating device heats the liquid in the medicine box within the first preset time period;

[0069] It should be noted that the heating time of the heating device can be controlled according to the time setting or temperature setting, or it can continue heating during the entire foot soaking process.

[0070] For example, the heating time of each heating device can be set to 10 minutes;

[0071] For example, the heating device can be set to heat the liquid in the medicine box to 100°C and then stop heating;

[0072] For another example, the heating device can be set to continue heating during the entire foot soaking process, but the temperature of the liquid in the basin can be adjusted by starting the delivery device at a fixed time: that is, if the temperature of the liquid in the basin is lower than the reference temperature, the liquid in the medicine box is mixed with the liquid in the basin; if the temperature of the liquid in the basin is higher than the reference temperature, the liquid in the medicine box is avoided from being mixed with the liquid in the basin, and the liquid in the medicine box is always heated separately to achieve sufficient extraction, and wait until the temperature of the liquid in the basin is lower than the reference temperature again before mixing again).

[0073] In this embodiment, the heating time of the heating device is controlled according to the time setting. Generally, the first preset time can be set to 10 minutes, but it is not limited to this and can be set specifically according to the amount of liquid in the basin and the medicine box.

[0074] S402, starting the delivery device within a second preset time period, and delivering the liquid in the medicine box to the basin through the delivery device within the second preset time period, so as to mix the liquid output from the medicine box with the liquid in the basin;

[0075] It should be noted that the conveying time of the conveying equipment can be controlled according to the time setting or the liquid level setting.

[0076] For example, the conveying time of each conveying device can be set to 1 minute;

[0077] For example, it can be set that when the liquid level information in the medicine box is lower than the preset liquid level, the liquid in the medicine box is stopped from being transported into the basin through the transport device;

[0078] In this embodiment, the delivery time of the delivery device is controlled according to the time setting. Generally, the second preset time can be set to 1 minute, but is not limited to this and can be set specifically according to the amount of liquid in the medicine box.

[0079] S403: delivering the liquid in the basin to the medicine box through the delivery device within a third preset time period.

[0080] Similarly, during reflux, the delivery time of the conveying equipment can be controlled according to the time setting or liquid level setting.

[0081] For example, the conveying time of each conveying device can be set to 1 minute;

[0082] For example, it can be set that when the liquid level information in the medicine box is higher than the maximum liquid level, the liquid in the basin is stopped from being transported to the medicine box through the transport device;

[0083] For another example, the output device may not be set, and the U-tube principle may be used to automatically return the liquid in the basin to the medicine box, but automatic heating may be achieved by timing the start of the heating device.

[0084] In this embodiment, the delivery time of the delivery device is controlled according to the time setting. Generally, the third preset time can be set to 1 minute, but is not limited to this and can be set specifically according to the amount of liquid in the medicine box.

[0085] S404, repeating steps S401 to S403 until the real-time temperature of the liquid in the basin reaches a preset reference temperature.

[0086] For example, clean water is injected into the medicine box and the basin, and the medicine package is put into the medicine box; first, the heating device is started to work for 10 minutes to perform high-temperature extraction on the medicine package in the medicine box, and the conveying device does not work during the 10 minutes; after 10 minutes, the heating device is turned off and the conveying device is started to work for 1 minute to transport the medicine liquid in the medicine box to the basin to mix with the clean water in the basin; after 1 minute, the conveying device is turned off, and the mixed liquid in the basin flows back to the medicine box using the U-tube principle, and the liquid level in the basin is consistent with the liquid level in the medicine box; then, the heating device is restarted to work for 10 minutes to perform high-temperature extraction on the medicine package in the medicine box again..., and the heating and conveying process is circulated until the real-time temperature of the mixed liquid in the basin reaches 35°C, and the heating device and conveying device no longer work.

[0087] For another example, clean water is injected into the medicine box and the basin, and the medicine bag is put into the medicine box; first, the heating equipment is started to perform continuous high-temperature extraction on the medicine bag in the medicine box, and the conveying equipment does not work within the first 10 minutes; after 10 minutes, the conveying equipment is started for 1 minute to convey the medicine liquid in the medicine box to the basin to mix with the clean water in the basin; after 1 minute, the conveying equipment is turned off, and the mixed liquid in the basin flows back to the medicine box using the U-tube principle, and the liquid level in the basin is consistent with the liquid level in the medicine box; during this process, the heating equipment continues to heat... and the transmission process is circulated until the real-time temperature of the mixed liquid in the basin reaches 35°C, and the heating equipment and conveying equipment no longer work.

[0088] From the above, it can be seen that the basin body and the medicine box in the foot soaking basin used in the present invention are not directly connected, but are connected through a conveying device, that is, by controlling the state of the conveying device, independent heating of the liquid in the medicine box and full fusion of the liquid in the medicine box and the liquid in the basin body can be achieved; in addition, the present invention heats the liquid in the medicine box separately by a heating device, so that the temperature of the liquid in the medicine box is significantly different from the temperature of the liquid in the basin body, and ensures that after the heating device heats the liquid in the medicine box, the temperature of the liquid in the medicine box reaches the extraction temperature, and the extraction temperature is higher than the foot soaking temperature (i.e., the reference temperature), and the medicine bag / medicinal material in the medicine box can be extracted at high temperature to improve the foot soaking effect; further, the present invention adds a liquid level detection function, which greatly improves the service life and safety of the foot soaking basin; at the same time, the present invention also adds a real-time temperature measurement function to ensure that the temperature is always near the reference temperature during the foot soaking process, thereby improving the foot soaking effect.

[0089] See also Figures 5-7 , Figures 5-7 The specific structure of the foot bathing basin 100 of the present invention is shown, which includes a basin body 1, a medicine box 2, a heating device 3, a temperature sensor 5, a conveying device 4 and the above-mentioned computer device 6;

[0090] The heating device 3 is provided in the medicine box 2 and is used to heat the liquid in the medicine box 2 . In this embodiment, the heating device 3 is located at the bottom of the medicine box 2 .

[0091] The temperature sensor 5 is provided in the basin body 1 and is used to detect the real-time temperature of the liquid in the basin body 1 in real time;

[0092] The basin body 1 and the medicine box 2 are connected through a conveying device 4, which is used for liquid transmission between the basin body 1 and the medicine box 2; in this embodiment, the conveying device 4 is arranged at the bottom of the basin body 1, and the conveying device 4 can be a water pump 42 with a pipeline 41 (the pipeline 41 is provided with multiple water inlets and outlets 411 located at the bottom of the basin body 1 and the water inlet and outlet located at the bottom of the medicine box 2), but this is not limited to this, as long as liquid transmission can be achieved.

[0093] The computer device 6 is electrically connected to the heating device 3, the temperature sensor 5 and the conveying device 4 respectively. The computer device 6 includes a memory and a processor. The memory stores a computer program. When the processor executes the computer program, the steps of the temperature control method of the foot bath are implemented.

[0094] Furthermore, the footbath further comprises a liquid level sensor electrically connected to the computer device 6, and the liquid level sensor is used to detect the liquid level information in the medicine box 2 in real time. In this embodiment, the liquid level sensor is located in the medicine box 2.

[0095] Therefore, in the process of the conveying device 4 conveying the liquid in the medicine box 2 into the basin body 1, the liquid level information in the medicine box 2 is obtained in real time through the liquid level sensor. When the liquid level information in the medicine box 2 is lower than the preset liquid level, the conveying device 4 stops conveying the liquid in the medicine box 2 into the basin body 1, which greatly improves the safety of the foot bath basin.

[0096] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications are also considered to be within the scope of protection of the present invention.

Claims

1. A temperature control method for a footbath, characterized in that: The foot bathing basin comprises a basin body and a medicine box with a heating device, wherein the basin body and the medicine box are connected via a conveying device, and the temperature control method comprises: S1, starting the heating device to heat the liquid in the medicine box; S2, starting the conveying device to convey the liquid in the medicine box to the basin through the conveying device, so as to mix the liquid output from the medicine box with the liquid in the basin; S3, delivering the liquid in the basin to the medicine box through the delivery device; S4, repeating steps S1 to S3 until the real-time temperature of the liquid in the basin reaches a preset reference temperature.

2. The temperature control method of the foot bath according to claim 1, characterized in that: The method of transferring the liquid in the basin to the medicine box by the delivery device comprises: Close the delivery device to allow the liquid in the basin to flow back into the medicine box through the delivery device, or The conveying device is started to convey the liquid in the medicine box into the basin through the conveying device.

3. The temperature control method for a footbath according to claim 1 or 2, characterized in that: Also includes: After the liquid in the basin is transferred to the medicine box by the conveying device, the liquid level in the basin is the same as the liquid level in the medicine box.

4. The temperature control method of the foot bath according to claim 1, characterized in that: Also includes: During the process of delivering the liquid in the medicine box to the basin by the delivery device, the liquid level information in the medicine box is obtained in real time, wherein: When the liquid level information in the medicine box is lower than the preset liquid level, the liquid in the medicine box is stopped from being transported into the basin by the transporting device.

5. The temperature control method of the foot bath according to claim 1, characterized in that: Also includes: Acquiring the real-time temperature of the liquid in the basin in real time; When the real-time temperature of the liquid in the basin is lower than the preset minimum temperature, steps S1 to S3 are repeated until the real-time temperature of the liquid in the basin reaches the reference temperature again, and the minimum temperature is lower than the reference temperature.

6. The temperature control method for a footbath according to claim 1, wherein: Also includes: activating the heating device within a first preset time period, so that the heating device heats the liquid in the medicine box within the first preset time period; activating the delivery device within a second preset time period, and delivering the liquid in the medicine box to the basin through the delivery device within the second preset time period, so as to mix the liquid output from the medicine box with the liquid in the basin; The liquid in the basin is delivered to the medicine box by the delivery device within a third preset time period.

7. The temperature control method for a footbath according to claim 1 or 6, characterized in that: The heating device heats the liquid in the medicine box so that the temperature of the liquid in the medicine box reaches an extraction temperature, which is higher than the reference temperature.

8. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the temperature control method for a footbath according to any one of claims 1 to 7 are implemented.

9. A foot soaking basin, characterized in that: It comprises a basin, a medicine box, a heating device, a temperature sensor, a conveying device and the computer device according to claim 8; The heating device is provided in the medicine box and is used to heat the liquid in the medicine box; The temperature sensor is arranged in the basin body and is used to detect the real-time temperature of the liquid in the basin body in real time; The basin body and the medicine box are connected via the conveying device, and the conveying device is used for transferring liquid between the basin body and the medicine box; The computer device is electrically connected to the heating device, the temperature sensor and the conveying device respectively.

10. The foot soaking basin according to claim 9, characterized in that: It also includes a liquid level sensor electrically connected to the computer device, and the liquid level sensor is used to detect the liquid level information in the medicine box in real time.

Citation Information

Patent Citations

  • Foot bath barrel control method and device

    CN113558968A