CN113359899A - Temperature control method and device for foot bath barrel - Google Patents

Temperature control method and device for foot bath barrel Download PDF

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Publication number
CN113359899A
CN113359899A CN202110714581.5A CN202110714581A CN113359899A CN 113359899 A CN113359899 A CN 113359899A CN 202110714581 A CN202110714581 A CN 202110714581A CN 113359899 A CN113359899 A CN 113359899A
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China
Prior art keywords
water
temperature
barrel
foot bath
foot
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CN202110714581.5A
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Chinese (zh)
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CN113359899B (en
Inventor
朱江涛
向文林
许立
陈可夫
向文明
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Zuodian Industrial Hubei Co Ltd
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Zuodian Industrial Hubei Co Ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D23/00Control of temperature
    • G05D23/19Control of temperature characterised by the use of electric means
    • G05D23/20Control of temperature characterised by the use of electric means with sensing elements having variation of electric or magnetic properties with change of temperature
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47KSANITARY EQUIPMENT NOT OTHERWISE PROVIDED FOR; TOILET ACCESSORIES
    • A47K3/00Baths; Douches; Appurtenances therefor
    • A47K3/02Baths
    • A47K3/022Baths specially adapted for particular use, e.g. for washing the feet, for bathing in sitting position

Abstract

The invention provides a temperature control method and a temperature control device for a foot bath barrel, belonging to the field of intelligent manufacturing, wherein the method comprises the following steps: receiving a starting instruction sent by a terminal, and monitoring the water temperature conditions of all parts of the footbath barrel; comparing the water temperature condition results at all positions of the footbath barrel with set values, and judging whether the operation conditions for heating foot soaking water are met or not; in the operation process of heating foot soaking water, low-temperature water is heated and then heated, and is sprayed out from bottom to top to flow in any direction; the water temperature conditions of all parts of the foot bath barrel are monitored regularly until the water temperatures of all parts in the foot bath barrel are consistent; the user operation terminal controls the foot soaking barrel, and the foot soaking barrel operates semi-automatically according to the time length and the temperature set by the user, so that the use requirements of most people can be met, and the application is convenient.

Description

Temperature control method and device for foot bath barrel
Technical Field
The invention relates to the field of intelligent manufacturing, in particular to a temperature control method and device for a foot soaking barrel.
Background
Many people all like very hot water when soaking feet, think that the foot soaking is more comfortable like this, and the high foot of temperature not only is hot, and the foot is also slow after running, can be better warm the quilt, the unfavorable health of its high temperature of water, the foot soaking water temperature keeps below 50 ℃ best, the too high temperature of water can lead to the excessive expansion of foot blood vessel, and internal blood circulation flows to the low limbs more, causes the blood supply insufficiency of important organs such as heart, brain, kidney easily, even causes the emergence of disease, therefore, the mode selection of foot soaking is very exquisite: the selection of a foot soaking tool is very important, and a wooden barrel is preferably selected because plastic or iron cannot preserve heat and the heat degree cannot reach the expectation, the wooden barrel can effectively accelerate the blood circulation of the foot, the plastic and the iron can cause uneven heating, the middle is often too hot or too cold, and the foot soaking and health preserving are not facilitated; the temperature of the water is also taught and cannot be too hot or too cold, especially the old is not very sensitive to the temperature, the old cannot pay attention to the temperature and even can cause scalding, and if the temperature is too low, the purpose of soaking feet can not be achieved; the time for soaking the feet is also correct, the time for soaking the feet is kept within half an hour, the body is prevented from being damaged, the user can sleep without soaking the feet, the user can soak the feet 1 hour before the sleep, the blood circulation of the human body is very fast after the feet are soaked, and the brain is more active and is not beneficial to the sleep quality.
In conclusion, the foot bath foot soaking device can ensure that the water temperature of the foot bath is uniform and moderate as much as possible, the foot soaking time is not too long, most intelligent foot soaking barrels cannot control the water temperature and the water duration in place, the situations can be caused, and the health maintenance effect of the intelligent foot soaking barrels is difficult to be fully exerted.
SUMMARY OF THE PATENT FOR INVENTION
Aiming at the defects in the prior art, the invention provides a temperature control method and a temperature control device for a foot bath barrel, so as to improve the control condition of the existing intelligent foot bath barrel on the temperature and the duration of water.
In a first aspect, a preferred embodiment of the present invention provides a temperature control method for a foot bath tub, the method comprising:
receiving a starting instruction sent by a terminal, and monitoring the water temperature conditions of all parts of the footbath barrel;
comparing the water temperature condition results at all positions of the footbath barrel with set values, and judging whether the operation conditions for heating foot soaking water are met or not;
in the operation process of heating foot soaking water, low-temperature water is heated and then heated, and is sprayed out from bottom to top to flow in any direction;
the water temperature conditions of all parts of the foot bath barrel are monitored regularly until the water temperatures of all parts in the foot bath barrel are consistent;
and receiving a stop instruction sent by the terminal, and refusing to execute the operation.
Further, the comparison of the water temperature conditions at each position of the footbath bucket comprises the following steps:
sending a liquid level state signal at regular time;
acquiring the water temperature conditions in the liquid level state signal area, and eliminating the rest items except the lowest item in the water temperature conditions at all positions of the footbath barrel;
and comparing the lowest water temperature condition with a set value.
Further, the operation of performing foot soaking water heating includes:
receiving a thermal efficiency adjusting signal sent by the terminal;
the thermal efficiency adjustment signal indicates the speed at which the footbath bucket changes the water temperature condition.
Further, the stop instruction comprises an operation of refusing to execute the electric heating operation and an operation of refusing to execute the foot soaking water heating.
In another aspect, the present invention provides a temperature control device for a foot bath tub, the device comprising:
the foot bath barrel is provided with a base at the bottom, and a hollow gap is formed between the base and the foot bath barrel;
the heating part is placed at the bottom of the foot washing barrel and is provided with a water outlet which is positioned at the top and faces upwards and a water inlet which is positioned at one side of the water outlet;
the control terminal comprises a temperature detection module which is arranged in a layered manner from top to bottom along the inner peripheral wall of the water storage port of the foot bath barrel;
furthermore, a heating module arranged between the water outlet and the water inlet is arranged in the heating part, and the heating module comprises a PTC heating element and a turbine device arranged between the water outlet side and the water inlet of the heating module.
Furthermore, the front surface of the temperature detection module is tightly attached to the outer wall of the footbath barrel, the detection end of the temperature detection module is inserted into the footbath barrel to monitor the water temperature, and a gasket is arranged between the detection end of the temperature detection module and the outer wall of the footbath barrel.
Further, the temperature detection module comprises a liquid detection module, the liquid detection module is arranged at the top of the foot bath barrel, and a detection port of the liquid detection module is arranged perpendicular to the liquid level.
Further, be provided with the filter tip in the water inlet, the filter tip is including main part and at least one micropore that is located main part upper portion, wherein, impurity in the micropore separation bubble foot water enters into in the heating module.
Further, the control terminal comprises a processor, and a display module and a control module which are arranged on the upper portion of the processor, wherein the display module is used for prompting the water temperature condition, the mode state and the duration information of the foot soaking barrel, and the control module is used for indicating the control terminal to send out a starting instruction, an efficiency adjusting signal and a stopping instruction by the key-in operation of a user.
Further, the processor includes:
the storage module is used for storing storage commands executable by the processor;
and the timing module is used for recording the running time after the temperature of the foot soaking water reaches a set value and automatically sending a stop instruction when the running time is overtime.
According to the technical scheme, the temperature control method and device for the foot bath barrel, provided by the invention, have the following beneficial effects: the user operation terminal controls the foot soaking barrel, the foot soaking barrel operates semi-automatically according to the time length and the temperature set by the user, the use requirements of most people can be met, and the application is convenient and fast; the multi-position detection can ensure that the temperature of the foot soaking water reaches the preset requirement so as to avoid the intermittent condition that the foot soaking water stops before being heated; the low-temperature water is sprayed out from bottom to top after being heated, so that the mixing effect is promoted, and the temperature equalization state can be quickly achieved at all positions of the foot bath barrel; the control ability of current intelligence bubble foot bucket to water temperature, length is improved.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure.
Drawings
In order to more clearly illustrate the patentable embodiments of the invention, reference will now be made to the appended drawings, which are briefly described as embodiments or as required in the prior art description. In all the drawings, the elements or parts are not necessarily drawn to actual scale.
FIG. 1 is a flow chart of a temperature control method for a foot bath tub according to the present invention;
FIG. 2 is a block diagram of a preferred embodiment of a temperature control device for a foot bath tub according to the present invention;
FIG. 3 is a flow chart showing the comparison of the results of the water temperature conditions at various positions of the footbath bucket in the temperature control method for the footbath bucket according to the present invention;
FIG. 4 is a flowchart illustrating an operation of heating foot bath water in the temperature control method for a foot bath tub according to the present invention;
FIG. 5 is a cross-sectional view of a preferred embodiment of a temperature control device for a foot bath tub according to the present invention;
fig. 6 is an external view of a preferred embodiment of a temperature control device for a foot bath tub according to the present invention.
Reference numerals: 1. a footbath barrel; 11. a base; 2. a heating section; 21. a water inlet; 211. a filter tip; 212. micropores; 22. a water outlet; 23. a heating module; 231. a PTC heating element; 232. a turbine device; 3. a control terminal; 31. a temperature detection module; 311. a gasket; 312. a liquid detection module; 32. a display module; 33. a control module; 34. a storage module; 35. and a timing module.
Detailed Description
Embodiments of the patented technology of the present invention will be described in detail below with reference to the drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only used as examples, and the protection scope of the present invention is not limited thereby.
In an embodiment, a temperature control method and a temperature control device for a foot bath tub provided by this embodiment are, as shown in fig. 1, the method including: step S101, receiving a starting instruction sent by a terminal, and monitoring the water temperature conditions of all parts of the footbath barrel; step S102, comparing the water temperature condition results of all parts of the footbath barrel with set values, and judging whether the operation conditions for heating foot soaking water are met or not; step S103, in the operation process of heating the foot soaking water, the low-temperature water is heated and then heated, and is sprayed from bottom to top to flow in any direction; step S104, regularly executing the monitoring of the water temperature conditions at all positions of the foot bath barrel until the water temperatures at all positions in the foot bath barrel are consistent; and step S105, receiving a stop instruction sent by the terminal, and refusing to execute the operation.
In summary, according to the temperature control method for the foot bath barrel provided by the embodiment, after the water temperature conditions at each position of the foot bath barrel are detected in advance, the operation of heating the foot bath water is controlled according to the comparison result, the low-temperature foot bath water and the heated foot bath water exchange heat in a hot water heating backflow mode to promote the two to quickly keep a uniform temperature state, and the operation of heating the foot bath water is stopped according to the water temperature conditions at each position of the foot bath barrel.
Further, the comparison of the water temperature conditions at each position of the footbath bucket comprises the following steps: step S101a, regularly sending a liquid level state signal; step S101b, acquiring water temperature conditions in the liquid level state signal area, and eliminating other items except the lowest item in the water temperature conditions at all positions of the footbath barrel; step S101c, comparing the lowest water temperature condition with a set value.
Specifically, as shown in fig. 3, the liquid level state signal ascertaining distance is a distance between the liquid level and the signal transmitting position, the distance between the liquid level and the barrel bottom can be automatically obtained according to the distance between the signal transmitting position and the barrel bottom as a reference standard, the water temperature condition within the distance is recorded, one or more items with the lowest temperature are preferably selected as the reference standard, if the reference standard is not greater than a user set value, the operation of heating the foot soaking water is executed, and if the reference standard is greater than the user set value, the operation of heating the foot soaking water is rejected;
it is worth mentioning that when the record of the highest water temperature is larger than the preset value, the terminal sends out a high-temperature alarm instruction to remind a user of scalding risk; when the record of the highest water temperature condition is far larger than the record of the lowest water temperature condition, under the condition, the system determines that the water circulation is not smooth due to external force, the situations of equipment damage, explosion and the like are seriously caused, the terminal can send out a safety alarm instruction and synchronously send out a heating stopping instruction, and the safety is high; the preset value is a feasible temperature range, the selectable temperature range is set to be 38-50 ℃, the temperature range can be divided into multiple levels, and when the maximum water temperature condition record is below the preset value temperature range, the terminal sends out a heating prompt; when the maximum water temperature condition record is within the preset value temperature range, the terminal sends a standard reaching instruction;
further, as shown in fig. 4, the operation of performing the foot soaking water heating includes:
step S103a, receiving a thermal efficiency adjusting signal sent by the terminal;
and step S103b, the thermal efficiency adjustment signal instructs the footbath bucket to change the water temperature condition speed.
Specifically, the thermal efficiency adjustment relies on changing the velocity of flow, electric heating temperature realizes, the velocity of flow is higher, electric heating temperature is higher then the temperature variation is faster, it needs to explain that, bubble foot water is too fast to be heated, can cause local bubble foot water high temperature, produces very big discomfort, it is higher to adjust the thermal efficiency before the bubble foot, can play rapid heating's effect, bubble foot in-process, with the thermal efficiency down-regulated, play the effect of slow warm water, can not produce strong thrill.
Further, the stop instruction comprises an operation of refusing to execute the electric heating operation and an operation of refusing to execute the foot soaking water heating.
Specifically, refusing to execute the heating function of the operation that the electrothermal operation instructs to turn off the foot soaking water heating, so that the foot soaking water circulation process is continuously performed, and the heated hot water and the low-temperature water are continuously mixed, so that the foot soaking water can be continuously promoted to realize uniform temperature;
optionally, under the state of refusing to carry out the electric heat operation, change bubble foot water circulation velocity of flow alone, can promote hot water circulation, promote the bubble foot water to flow, can let the user experience the sensation of "bubble hot spring", improved the comfortable experience of bubble foot and felt.
As shown in fig. 2, 5 and 6, the apparatus includes: the footbath device comprises a footbath barrel 1, wherein a base 11 is arranged at the bottom of the footbath barrel 1, and a hollow gap is formed between the base 11 and the footbath barrel 1; a heating part 2, wherein the heating part 2 is arranged at the bottom of the foot washing barrel 1, and the heating part 2 is provided with a water outlet 22 positioned at the top and upwards and a water inlet 21 positioned at one side of the water outlet 22; the control terminal 3 comprises a temperature detection module 31, and the temperature detection module 31 is arranged in a layered manner up and down along the inner peripheral wall of the water storage port of the footbath barrel 1;
in summary, the control terminal 3 can be a smart phone, a tablet computer, a notebook computer, a touch panel, etc., and aims to realize instruction control on the control terminal 3, when the control terminal 3 is located at the foot bath tub 1, the control terminal is connected in an electrical connection manner, and when the control terminal 3 is located outside the foot bath tub 1, the control terminal is connected in a wireless manner, and the wireless connection manner includes a 2G network, a 3G network, a 4G network, a bluetooth connection, etc.; the heating part 2 is positioned in the base 11, a water outlet 22 and a water inlet 21 of the heating part are arranged at the bottom of the footbath barrel 1 to heat the circulating foot soaking water, as the preferred technology, the water outlet 22 is arranged at the middle position of the footbath barrel 1, at least one water inlet 21 is arranged at the periphery of the water outlet 22, and preferably, the water outlet 22 is designed into a porous raised structure, so that hot water is sprayed upwards and is diffused outwards, the effects of floating up hot water and sinking low-temperature water can be promoted, and heat exchange is fully realized in the process; the temperature detection modules 31 are uniformly distributed on the inner peripheral wall of the water storage port, can sense the water temperature conditions of different height positions in the foot bath barrel 1, and are optional, and the temperature detection modules 31 are arranged on four horizontal directions of the water storage port and one bottom wall respectively as one of sensing structures of the application.
Further, a heating module 23 is arranged in the heating part 2 and located between the water outlet 22 and the water inlet 21, and the heating module 23 includes a PTC heating element 231 and a turbine device 232 located between the water outlet side of the heating module 23 and the water inlet 21;
specifically, the PTC heating element 231 and the turbine device 232 are arranged side by side, optionally, the PTC heating element 231 includes a pipe body and a resistance plate attached to the pipe body, the resistance plate is electrically connected to generate heat, and the heat is conducted to the pipe body and the water body, so as to realize the function of heating the water body, preferably, the pipe body can be designed into a special-shaped structure, such as a snake-shaped structure, a spiral structure, a sleeve-shaped structure and a plate-shaped structure with fins inside, so as to increase the contact area or duration of the water body and the PTC heating element 231, and improve the effect of preheating the water body; the propeller blade is arranged in the turbine device 232, the propeller blade can be in any known blade shape in the field and aims to drive the water body to flow, and preferably, the propeller blade is arranged at an inclination angle of 45 degrees, so that the propeller blade is positively and negatively driven by the turbine device 232 motor and can drive the water body to circulate positively and negatively, and the turbulent flow can be formed in the foot bath barrel 1, so that the heat exchange effect is enhanced.
Further, the front surface of the temperature detection module 31 is tightly attached to the outer wall of the foot bath barrel 1, the detection end of the temperature detection module 31 is inserted into the foot bath barrel 1 to monitor the water temperature, and a gasket 311 is arranged between the detection end of the temperature detection module 31 and the outer wall of the foot bath barrel 1;
specifically, the temperature detection module 31 is arranged between the outer wall of the foot bath barrel 1 and the base 11, so that the electric connection end of the temperature detection module 31 cannot be wetted, the gasket 311 is extruded and attached between the outer wall of the foot bath barrel 1 and the base 11, a sealing effect is achieved, leakage of water in the barrel can be avoided, optionally, the end portion of the temperature detection module 31 is inserted into a hole in the outer wall of the foot bath barrel 1, and the base 11 is pressed against the tail end of the temperature detection module 31, so that the temperature detection module 31 is firmly fixed.
Further, the temperature detection module 31 comprises a liquid detection module 312, the liquid detection module 312 is arranged at the top position of the footbath barrel 1, and a detection port of the liquid detection module 312 is arranged vertical to the liquid level;
specifically, the liquid detection module 312 is an infrared sensor, a float level meter, and the like, and is designed to realize a liquid level detection function and sense the change of the liquid level in the footbath barrel 1, preferably, the liquid detection module 312 can reflect the water addition amount of the footbath barrel 1, and after the water addition amount of the footbath barrel 1 reaches a proper height, the liquid detection module 312 sends liquid level height information and converts the water storage amount in the barrel according to the liquid level height.
Further, a filter 211 is arranged in the water inlet 21, the filter 211 comprises a main body and at least one micropore 212 positioned at the upper part of the main body, wherein the micropore 212 prevents impurities in the foot soaking water from entering the heating module 23.
Specifically, the filter 211 is detachably connected to the water inlet 21, and optionally, a vertical groove is formed in the end of the water inlet 21, so that the filter 211 can be perfectly fitted into the vertical groove, and the vertical groove is prevented from falling off; the filter 211 is made of plastic material and stainless steel material, the micro-holes 212 can be designed into matrix shape, layer ring structure, etc., preferably, the heating module 23 is provided with a filter element structure inside, the filter element can be sponge, porous filter material, etc., effectively improving the filtering effect,
further, the control terminal 3 comprises a processor, and a display module 32 and a control module 33 which are arranged on the upper portion of the processor, wherein the display module 32 is used for prompting the water temperature condition, the mode state and the duration information of the foot bath barrel, and the control module 33 is operated by a user to input to instruct the control terminal 3 to send out a starting instruction, an efficiency adjusting signal and a stopping instruction;
specifically, when control terminal 3 is touch panel, display module 32, control module 33 expose control terminal 3, and optionally, control module 33 includes at least one button, and the button includes switch machine key and shift key, presses switch machine key headstock gear for a long time, presses the shift key switching mode for a short time, and this mode includes at least: the control module comprises a temperature adjusting module, a thermal efficiency adjusting module, a time length adjusting mode and a flow speed adjusting module, wherein a mode of confirming the on-off key is pressed for a short time, the gear position can be switched by pressing the switching key for a short time under different modes, and the operation is confirmed by pressing the on-off key for a short time.
Further, the processor includes: a storage module 34 for storing storage commands executable by the processor; the timing module 35 is used for recording the running time after the temperature of the foot soaking water reaches a set value, and automatically sending a stop instruction when the running time is overtime;
specifically, timing module 35 controls liquid to examine module 312 and regularly sends liquid and examine signal to control terminal 3 to the quantity of correction operation temperature detection module 31, simultaneously, timing module 35 instruction treater provides the running time length after bubble foot water temperature reaches the setting value, convenient intelligence.
In the description of the present patent application, numerous specific details are set forth. However, it is understood that embodiments of the invention may be practiced without these specific details. In some instances, well-known methods, structures and techniques have not been shown in detail in order not to obscure an understanding of this description.
In the description herein, reference to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present patent. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
The above examples are only used to illustrate the technical solutions of the present invention, but not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art will understand that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; the modifications or substitutions do not make the essence of the corresponding technical solution depart from the scope of the technical solutions of the embodiments of the patent of the present invention, and the technical solutions are all covered in the claims and the specification of the patent of the present invention.

Claims (10)

1. A method of temperature control for a foot bath bucket, the method comprising:
receiving a starting instruction sent by a terminal, and monitoring the water temperature conditions of all parts of the footbath barrel;
comparing the water temperature condition results at all positions of the footbath barrel with set values, and judging whether the operation conditions for heating foot soaking water are met or not;
in the operation process of heating foot soaking water, low-temperature water is heated and then heated, and is sprayed out from bottom to top to flow in any direction;
the water temperature conditions of all parts of the foot bath barrel are monitored regularly until the water temperatures of all parts in the foot bath barrel are consistent;
and receiving a stop instruction sent by the terminal, and refusing to execute the operation.
2. The method for controlling the temperature of a foot bath barrel according to claim 1, wherein the comparison of the water temperature conditions at all positions of the foot bath barrel comprises the following steps:
sending a liquid level state signal at regular time;
acquiring the water temperature conditions in the liquid level state signal area, and eliminating the rest items except the lowest item in the water temperature conditions at all positions of the footbath barrel;
and comparing the lowest water temperature condition with a set value.
3. The temperature control method for the foot bath tub according to claim 1, wherein the performing of the foot bath water heating operation includes:
receiving a thermal efficiency adjusting signal sent by the terminal;
the thermal efficiency adjustment signal indicates the speed at which the footbath bucket changes the water temperature condition.
4. The method as claimed in claim 1, wherein the stop command includes refusing to perform the electric heating operation and refusing to perform the foot bath water heating operation.
5. A temperature control device for a foot bath bucket, the device comprising:
the foot bath barrel is provided with a base at the bottom, and a hollow gap is formed between the base and the foot bath barrel;
the heating part is placed at the bottom of the foot washing barrel and is provided with a water outlet which is positioned at the top and faces upwards and a water inlet which is positioned at one side of the water outlet;
the control terminal comprises a temperature detection module which is arranged in a layered manner from top to bottom along the inner peripheral wall of the water storage port of the foot bath barrel;
the heating part is internally provided with a heating module positioned between the water outlet and the water inlet, and the heating module comprises a PTC heating element and a turbine device positioned between the water outlet side and the water inlet of the heating module.
6. The temperature control device for the foot bath barrel according to claim 5, wherein the temperature detection module is tightly attached to the outer wall of the foot bath barrel on the front side, the detection end of the temperature detection module is inserted into the interior of the foot bath barrel to monitor the temperature of water, and a gasket is arranged between the detection end of the temperature detection module and the outer wall of the foot bath barrel.
7. The temperature control device for the foot bath bucket according to claim 6, wherein the temperature detection module comprises a liquid detection module, the liquid detection module is arranged at the top position of the foot bath bucket, and the detection port of the liquid detection module is arranged vertical to the liquid level.
8. The temperature control device for the foot soaking bucket according to claim 5, wherein a filter is arranged in the water inlet, the filter comprises a main body and at least one micropore arranged at the upper part of the main body, and the micropore blocks impurities in the foot soaking water from entering the heating module.
9. The temperature control device for the foot soaking bucket according to claim 5, wherein the control terminal comprises a processor, and a display module and a control module which are arranged on the upper part of the processor, wherein the display module is used for prompting the water temperature condition, the mode state and the time length information of the foot soaking bucket, and the control module is used for being input by a user to instruct the control terminal to send out a starting instruction, an efficiency adjusting signal and a stopping instruction.
10. The temperature control device for a foot bath bucket according to claim 9, wherein the processor comprises:
the storage module is used for storing storage commands executable by the processor;
and the timing module is used for recording the running time after the temperature of the foot soaking water reaches a set value and automatically sending a stop instruction when the running time is overtime.
CN202110714581.5A 2021-06-26 2021-06-26 Temperature control method and device for foot bath barrel Active CN113359899B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113842070A (en) * 2021-10-20 2021-12-28 武汉左点科技有限公司 Heating time length measuring method and device

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