Multi-angle massage foot bath

By introducing the design of air pump and drying nozzle into the foot bath, combined with the switching valve and drive components, the rotation jet drainage and disinfection and cleaning of the massager is solved, and the drainage efficiency and hygiene are improved.

CN116616629BActive Publication Date: 2025-08-22CIXI MUWEN ELECTRIC CO LTD
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Patent Information

Application Number
CN202310603575.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-24
Publication Date
2025-08-22
Estimated Expiration
2043-05-24

AI Technical Summary

Technical Problem

The existing multi-angle massage foot baths need to reverse the entire equipment when draining, resulting in inconvenience in drainage, time-consuming and labor-intensive, and inefficient.

Method used

A multi-angle massage foot bath is designed. By setting an air pump and a drying nozzle inside the foot bath tub, the air path is controlled by switching valves to realize the blowing function of the massager. Combined with the drive component, the massager rotates the jet to drain, and switches the air path during drainage, and disinfects and cleans the massager and foot bath tub in combination with the use of disinfectant.

Benefits of technology

It improves drainage efficiency, reduces operating time and effort requirements, and improves hygiene and convenience of use, ensuring the cleanliness of foot baths.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of foot baths, and discloses a multi-angle massaging foot bath, comprising a foot bath bucket with a drainage channel on the side, a massager arranged inside the foot bath bucket, and a drying nozzle installed on the inner wall of the foot bath bucket, an air pump is arranged inside the foot bath bucket, the air pump is connected to the drying nozzle, a groove is provided at the bottom of the foot bath bucket, the massager is rotatably installed in the groove, a driving component is provided inside the foot bath bucket, the driving component drives the massager to rotate, the massager is provided with a plurality of air jet holes, a first ventilation pipe is connected between the drying nozzle and the air pump, a second ventilation pipe is connected between the massager and the air pump, a switching valve for switching the air path is installed between the first ventilation pipe, the second ventilation pipe and the output end of the air pump, the massager rotates and sprays air, thereby blowing out the accumulated water in the groove, improving the drainage capacity of the foot bath bucket, reducing the water accumulation in the bucket, convenient operation, saving time and labor, and improving the hygiene and convenience of the foot bath when in use.
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Description

Technical Field

[0001] The invention relates to the technical field of foot baths, in particular to a multi-angle massage foot bath. Background Art

[0002] A footbath is a container for soaking feet in hot water, typically made of wood or plastic. Some also incorporate functional materials like far-infrared heating film or essential oils to enhance the soaking effect. Footbaths are easy to use, require no power source, and offer the comfort of a footbath anytime, anywhere. They can promote blood circulation, alleviate fatigue, and improve sleep, making them ideal for those experiencing cold hands and feet in winter or those who spend long periods standing at work. To enhance the comfort of footbaths, massage functions are now being added to existing footbaths, resulting in the emergence of multi-angle massage footbaths.

[0003] A multi-angle massage foot bath is an electric device that combines multiple functions such as heating, massage, and bubbles. It is usually made of ABS plastic or other high-temperature resistant materials. It is equipped with multiple massagers, balls or air holes inside to stimulate and relax the feet. The working principle is to increase the water temperature in the barrel through the principle of resistive heating to achieve the effect of soaking the feet. At the same time, a massage wheel part is added to the bottom of the barrel to achieve the massage effect. Usually, the foot bath barrel adopts a fully enclosed design, encapsulating the motor and circuit board in a plastic shell to prevent water from seeping in. Some foot bath barrels also use a separate design to separate the motor and circuit board to prevent water from coming into contact with the circuit board.

[0004] The multi-angle massage foot bath is rich in functions and easy to operate. However, due to the space design, a groove needs to be opened at the bottom of the bucket first. The massager rolls in the groove, so that the upper side of the massager contacts the soles of the user's feet. This causes the foot soaking water in the bucket to enter the groove. When draining after soaking the feet, the water in the groove below the massager cannot be directly discharged. At this stage, if you want to drain the accumulated water in the bucket, you usually need to turn the entire foot bath upside down to drain the accumulated water in the bucket. This method of drainage is inconvenient, time-consuming and labor-intensive, and has low drainage efficiency. Therefore, it does not meet the existing needs. We have proposed a multi-angle massage foot bath. Summary of the Invention

[0005] The present invention provides a multi-angle massage foot bath, which has beneficial effects and solves the problem mentioned in the above background technology that at present, if you want to drain the accumulated water in the bucket, you usually need to turn the entire foot bath upside down to drain the accumulated water in the bucket. This method of drainage is inconvenient, time-consuming and labor-intensive, and has low drainage efficiency.

[0006] The present invention provides the following technical solutions: a multi-angle massage foot bath, comprising a foot bath barrel with a drainage channel on the side, a massager arranged inside the foot bath barrel and a drying nozzle installed on the inner wall of the foot bath barrel, an air pump is arranged inside the foot bath barrel, the air pump is connected to the drying nozzle, a groove is provided at the bottom of the foot bath barrel, the massager is rotatably installed in the groove, a driving assembly is provided inside the foot bath barrel, the driving assembly drives the massager to rotate, the massager comprises a massage shell and a massage core located inside the massage shell, a plurality of massage ridges are distributed on the outside of the massage shell, a plurality of air jet holes are provided on the massage ridges, a first ventilation pipe is connected between the drying nozzle and the air pump, a second ventilation pipe is connected between the massager and the air pump, and a switching valve for switching the air path is installed between the first ventilation pipe, the second ventilation pipe and the output end of the air pump.

[0007] As an optional solution of a multi-angle massage foot bath described in the present invention, the switching valve includes a fixed valve body fixedly installed inside the foot bath bucket, and a rotating valve body rotatably installed on the upper side of the fixed valve body, the interior of the fixed valve body is connected to the interior of the rotating valve body, an air inlet is opened on the side of the fixed valve body, an air outlet is opened on the side of the rotating valve body, an external rotating shaft is coaxially installed on the top of the rotating valve body, and a knob is coaxially connected to the end of the external rotating shaft, and the knob is located on the outside of the foot bath bucket.

[0008] As an optional solution of the multi-angle massaging foot bath described in the present invention, when the air outlet is connected to the channel where the first ventilation pipe is located, the air pump is connected to the drying nozzle, and the drying nozzle works to discharge air.

[0009] As an optional solution of the multi-angle massaging foot bath described in the present invention, when the air outlet is connected to the channel where the second ventilation pipe is located, the air pump is connected to the air jet hole, and the massager rotates while spraying air outward, and the accumulated water in the groove is blown out.

[0010] As an optional solution of the multi-angle massage foot bath described in the present invention, wherein: the massage shell is fixedly connected to the massage inner core, the air jet hole is arranged at an angle, a socket is provided at the center of the massage inner core, a rotating shaft is inserted into the socket, the rotating shaft is arranged to be a hollow shaft, an air vent is provided on the outside of the rotating shaft, the air vent is located between the gap between the massage shell and the massage inner core, the air vent is connected to the air jet hole, a bearing is installed on the outside of the end of the rotating shaft, and the outside of the bearing is connected to the second ventilation pipe.

[0011] As an optional solution of the multi-angle massage foot bath described in the present invention, the driving assembly includes a reduction motor installed inside the foot bath barrel, the output end of the reduction motor is keyed to an output shaft, the end of the output shaft is installed with a driving gear, and the outer side of the rotating shaft is installed with a passive gear, and the driving gear is meshed with the passive gear for transmission.

[0012] As an optional solution of the multi-angle massage foot bath described in the present invention, wherein: a liquid adding chamber is provided inside the foot bath bucket, the liquid adding chamber is configured as a box body with disinfectant stored inside, the pipe mouth of the liquid adding chamber extends to the outside of the foot bath bucket, and the pipe mouth of the liquid adding chamber is provided with a tube cover, the bottom of the liquid adding chamber is connected to an infusion tube, the infusion tube is configured as a sealed hose, and the end of the infusion tube is connected to the second ventilation tube.

[0013] A control groove is provided inside the footbath bucket, and a control rod is slidably inserted into the control groove. The inner end of the control rod is in contact with the infusion tube, and the outer end of the control rod is connected to a rod cap, and the rod cap is threadedly connected to the outer wall of the footbath bucket. A limit ring is installed on the outside of the control rod, and a limit block is provided on the inner wall of the control groove. A spring is sleeved on the outside of the control rod, and the spring is located between the limit ring and the bottom of the control groove.

[0014] As an optional solution of the multi-angle massage foot bath described in the present invention, a massage plate is provided at the bottom of the foot bath barrel, the massage plate includes a foot plate located inside the foot bath barrel, a plurality of fixed protrusions are distributed on the upper side of the foot plate, a drainage channel is provided between the foot plate and the inner wall of the foot bath barrel, the drainage channel is connected to the drainage channel, the water inlet of the drainage channel is installed with a filter cover for filtering, the water outlet of the drainage channel is installed with a drainage pipe, and the drainage pipe is hung on the side of the foot bath barrel.

[0015] As an optional solution of the multi-angle massage foot bath described in the present invention, a roller is installed at the bottom of the foot bath barrel, a slide groove is opened on the top of the foot bath barrel, a pull rod is slidably installed in the slide groove, a limiting protrusion is provided on the side of the pull rod, the limiting protrusion is slidably engaged with the slide groove, and a handle is installed on the top of the pull rod.

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

[0017] 1. The multi-angle massage foot bath has the function of blowing air through the arrangement of the air pump and the drying nozzle. By arranging air jet holes on the surface of the massager and connecting a second vent pipe between the air jet holes and the air pump, there are two air paths in the foot bath bucket. A switching valve is installed at the intersection of the first vent pipe, the second vent pipe and the air outlet of the air pump, and the control end of the switching valve is installed on the outside of the foot bath bucket. When the foot bath bucket needs to be drained, the knob is turned, and the knob drives the external rotating shaft to rotate, thereby changing the position of the air outlet of the switching valve, and the air outlet is turned from a channel facing the first vent pipe to a channel facing the second vent pipe, so that the blowing air is changed from drying to leading to the massager. The air flow enters the rotating shaft through the second vent pipe and enters the massager through the vent hole. The massager is driven to rotate by the driving component. The massager rotates while spraying air, thereby blowing out the accumulated water in the groove, increasing the drainage capacity of the foot bath bucket, reducing the water accumulation in the bucket, and being easy to operate, saving time and effort, improving the hygiene and convenience of the foot bath bucket during use, and improving the drainage effect.

[0018] 2. This multi-angle massage foot bath is equipped with a liquid adding chamber inside the foot bath bucket. The liquid adding chamber is filled with disinfectant. When the second ventilation pipe is ventilated, the disinfectant in the liquid adding chamber enters the second ventilation pipe, and the gas and liquid mix into the massager, first disinfecting and cleaning the internal space of the massager. Then, as the massager rotates, the disinfectant is ejected from the air jet hole, thereby disinfecting and cleaning the groove and the foot bath bucket, further improving the hygiene of the foot bath during use.

[0019] 3. This multi-angle massage foot bath can move the control rod by rotating the rod cap through the cooperation of the control rod and the control slot. When the rod cap is locked with the thread of the side wall of the foot bath bucket, the spring is compressed between the limit ring and the bottom of the control slot. At this time, the inner end of the control rod and the infusion tube are in interference fit, and the infusion tube cannot conduct fluid normally, thereby realizing the closure of the infusion cleaning function; rotating the rod cap unlocks the thread of the rod cap and the side wall of the foot bath bucket, and the control rod can move outward. At this time, under the influence of the spring force, the control rod will automatically bounce outward, so that the inner end of the control rod is separated from the infusion tube, and the infusion tube can conduct fluid normally, realizing the opening of the infusion cleaning function. It has a simple structure and is easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention when moving.

[0021] Figure 2 It is a schematic diagram of the overall three-dimensional structure of the present invention.

[0022] Figure 3 It is a schematic diagram of the top structure of the present invention.

[0023] Figure 4 It is a schematic diagram of the three-dimensional structure of the massager of the present invention.

[0024] Figure 5 It is a schematic diagram of the first side cross-sectional structure of the present invention.

[0025] Figure 6 It is a schematic diagram of the second side cross-sectional structure of the present invention.

[0026] Figure 7 It is a schematic diagram of the cross-sectional structure of the massager of the present invention.

[0027] Figure 8 It is a schematic diagram of the switching valve structure of the present invention.

[0028] Figure 9 It is a schematic diagram of the enlarged structure of point A of the present invention.

[0029] Figure 10 It is a schematic diagram of the enlarged structure of point B of the present invention.

[0030] In the figure: 110, foot bath tub; 120, massage plate; 121, foot plate; 122, fixed protrusion; 123, drainage channel; 130, drainage channel; 140, massager; 141, massage shell; 142, massage core; 143, jack; 144, massage protrusion; 145, air jet; 150, groove; 160, handle; 170, pull rod; 180, slide; 190, limit protrusion; 210, drying nozzle; 220, roller; 230, drainage pipe; 240, filter cover; 250, rotating shaft; 251, vent; 25 2. Bearing; 260. Infusion tube; 270. Liquid adding chamber; 300. Drive assembly; 310. Reducer motor; 320. Output shaft; 330. Drive gear; 340. Passive gear; 400. Switching valve; 410. Fixed valve body; 420. Rotating valve body; 430. External rotating shaft; 440. Air inlet; 450. Air outlet; 510. Air pump; 520. First ventilation pipe; 530. Second ventilation pipe; 610. Control rod; 620. Rod cap; 630. Control slot; 640. Limit block; 650. Limit ring; 660. Spring. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] Example 1

[0033] This embodiment is intended to promote the solution to the current problem that if you want to drain the water in the bucket, you usually need to turn the entire foot bath over to drain the water in the bucket. This method is inconvenient, time-consuming and labor-intensive, and has low drainage efficiency. Please refer to Figures 1-10 A multi-angle massage foot bath includes a foot bath barrel 110 with a drainage channel 130 on the side, a massager 140 arranged inside the foot bath barrel 110, and a drying nozzle 210 installed on the inner wall of the foot bath barrel 110. An air pump 510 is provided inside the foot bath barrel 110, and the air pump 510 is connected to the drying nozzle 210. A groove 150 is provided at the bottom of the foot bath barrel 110, and the massager 140 is rotatably installed in the groove 150. A driving component 300 is provided inside the foot bath barrel 110, and the driving component 300 drives the massager 140 to rotate. The massager 140 includes a massage shell 141 and a massage core 142 located inside the massage shell 141. A plurality of massage ridges 144 are distributed on the outer side of the massage shell 141. A plurality of air jet holes 145 are opened on the massage ridges 144. A first ventilation pipe 520 is connected between the drying nozzle 210 and the air pump 510. A second ventilation pipe 530 is connected between the massager 140 and the air pump 510. A switching valve 400 for switching the air path is installed between the first ventilation pipe 520, the second ventilation pipe 530 and the output end of the air pump 510.

[0034] See Figure 1 、 Figure 2 and Figure 3 The footbath tub 110 is provided with a massage plate 120 at the bottom thereof. The massage plate 120 includes a foot plate 121 located inside the footbath tub 110. A plurality of fixed protrusions 122 are distributed on the upper side of the foot plate 121. In conjunction with the rotating massager 140, a multi-angle massage can be achieved. A drainage channel 123 is provided between the foot plate 121 and the inner wall of the footbath tub 110. The drainage channel 123 is connected to the drainage channel 130. The water inlet of the drainage channel 130 is provided with a filter cover 240 for filtering. The filter cover 240 is provided as a plastic mesh cover with threaded mounting. A drainage pipe 230 is provided at the water outlet of the drainage channel 130. The drainage pipe 230 is hung on the side of the footbath tub 110.

[0035] The switching valve 400 includes a fixed valve body 410 fixedly installed inside the foot bath tub 110, and a rotating valve body 420 rotatably installed on the upper side of the fixed valve body 410. The interior of the fixed valve body 410 is connected to the interior of the rotating valve body 420. An air inlet 440 is opened on the side of the fixed valve body 410, and an air outlet 450 is opened on the side of the rotating valve body 420. An external rotating shaft 430 is coaxially installed on the top of the rotating valve body 420, and a knob is coaxially connected to the end of the external rotating shaft 430. The knob is located on the outside of the foot bath tub 110. By turning the knob, the knob drives the external rotating shaft 430 to rotate, thereby changing the position of the air outlet 450 of the switching valve 400, and turning the air outlet 450 from the channel facing the first ventilation pipe 520 to the channel facing the second ventilation pipe 530, so that the blowing is changed from drying to leading to the massager 140. The air flow passes through the second ventilation pipe 530 into the rotating shaft 250 and enters the massager 140 through the vent 251.

[0036] In the specific setting, the massage shell 141 is fixedly connected to the massage inner core 142. Figure 4 and Figure 7 The air jet hole 145 is tilted and can assist the massager 140 in rotating when the air jet hole 145 is released. The center of the massage core 142 is provided with a socket 143, and a shaft 250 is inserted into the socket 143. The shaft 250 is set as a hollow shaft to allow air flow to move. Figure 9 A vent hole 251 is provided on the outside of the rotating shaft 250. The vent hole 251 is located between the gap between the massage shell 141 and the massage inner core 142. The vent hole 251 is connected to the jet hole 145. A bearing 252 is installed on the outside of the end of the rotating shaft 250. The outside of the bearing 252 is connected to the second ventilation pipe 530. Through the setting of the bearing 252, the rotation of the rotating shaft 250 will not affect the second ventilation pipe 530.

[0037] See Figure 6 The driving assembly 300 includes a reduction motor 310 installed inside the foot bath tub 110. The reduction motor 310 is configured as a motor with a planetary reducer. The output end of the reduction motor 310 is keyed to an output shaft 320. The end of the output shaft 320 is installed with a driving gear 330. The outer side of the rotating shaft 250 is installed with a passive gear 340. The driving gear 330 is meshed with the passive gear 340 for transmission.

[0038] When the air outlet 450 is connected to the channel where the first ventilation pipe 520 is located, the air pump 510 is connected to the drying nozzle 210, and the drying nozzle 210 starts to discharge air.

[0039] When the air outlet 450 is connected to the channel where the second ventilation pipe 530 is located, the air pump 510 is connected to the air jet hole 145, and the massager 140 rotates while spraying air outward, and the accumulated water in the groove 150 is blown out.

[0040] In this embodiment, a switching valve 400 is installed at the intersection of the first ventilation pipe 520, the second ventilation pipe 530 and the air outlet of the air pump 510, and the control end of the switching valve 400 is installed on the outside of the footbath 110. When the footbath 110 needs to be drained, the knob is turned, and the knob drives the external rotating shaft 430 to rotate, thereby changing the position of the air outlet 450 of the switching valve 400, and turning the air outlet 450 from facing the channel of the first ventilation pipe 520 to facing the second ventilation pipe 530. The channel changes the air blowing from drying to passing to the massager 140. The air flow passes through the second vent pipe 530 and enters the rotating shaft 250, and enters the massager 140 through the vent hole 251. The massager 140 is driven to rotate by the driving component 300. The massager 140 rotates and sprays air at the same time, thereby blowing out the accumulated water in the groove 150, increasing the drainage capacity of the foot bath barrel 110, reducing the water accumulation in the barrel, and being easy to operate, saving time and effort, and improving the hygiene and convenience of the foot bath when in use.

[0041] Example 2

[0042] This embodiment is intended to help solve the problem that when there is water in the bucket, the foot soaking water will flow into the massager 140 and breed bacteria inside the massager 140. This embodiment is an improvement made on the basis of embodiment 1. For details, please refer to Figures 1-10 The footbath tub 110 is provided with a liquid adding chamber 270, which is configured as a box body containing disinfectant. The nozzle of the liquid adding chamber 270 extends to the outside of the footbath tub 110, and the nozzle of the liquid adding chamber 270 is provided with a pipe cover. Disinfectant can be added to the liquid adding chamber 270 by opening the pipe cover. The bottom of the liquid adding chamber 270 is connected to an infusion tube 260, which is configured as a sealed hose. The end of the infusion tube 260 is connected to the second vent pipe 530. The disinfectant in the liquid adding chamber 270 enters the second vent pipe 530, and the gas and liquid mix and enter the massager 140, first disinfecting and cleaning the internal space of the massager 140, and then as the massager 140 rotates, it is ejected from the air jet hole 145 to achieve disinfection inside the tub.

[0043] See Figure 5 The bottom of the footbath 110 is provided with three rollers 220, which are located at the three vertices of an equiangular triangle. The top of the footbath 110 is provided with a chute 180, in which a pull rod 170 is inserted and slidably installed. The side of the pull rod 170 is provided with a limiting protrusion 190, which is slidably engaged with the chute 180. A handle 160 is installed on the top of the pull rod 170. Pulling the handle 160 can drive the entire footbath to move, making it more convenient to use.

[0044] In this embodiment: when the second ventilation pipe 530 is ventilated, the disinfectant in the liquid adding chamber 270 enters the second ventilation pipe 530, and the gas and liquid mix and enter the massager 140, first disinfecting and cleaning the internal space of the massager 140, and then as the massager 140 rotates, it is ejected from the jet hole 145, thereby disinfecting and cleaning the inside of the groove 150 and the foot bath bucket 110, further improving the hygiene of the foot bath during use.

[0045] Example 3

[0046] This embodiment is intended to promote the solution of the problem that disinfectant is not required for each drainage. This embodiment is an improvement made on the basis of embodiment 1. For details, please refer to Figures 1-10 A control groove 630 is provided inside the footbath bucket 110, and a control rod 610 is slidably inserted in the control groove 630. The inner end of the control rod 610 contacts the infusion tube 260, and the outer end of the control rod 610 is connected to a rod cap 620. The rod cap 620 is threadedly connected to the outer wall of the footbath bucket 110. When the rod cap 620 is threadedly locked with the side wall of the footbath bucket 110, the inner end of the control rod 610 is in interference fit with the infusion tube 260, and the infusion tube 260 cannot conduct liquid normally, thereby realizing the closure of the infusion cleaning function; when the rod cap 620 is threadedly unlocked with the side wall of the footbath bucket 110, the inner end of the control rod 610 is not in contact with the infusion tube 260, and the infusion tube 260 can conduct liquid normally, realizing the opening of the infusion cleaning function.

[0047] A limit ring 650 is integrally installed on the outside of the control rod 610, a limit block 640 is set on the inner wall of the control groove 630, and a spring 660 is sleeved on the outside of the control rod 610. The spring 660 is located between the limit ring 650 and the bottom of the control groove 630.

[0048] In this embodiment: through the cooperation of the control rod 610 and the control groove 630, the rod cap 620 can be rotated to drive the control rod 610 to move. When the rod cap 620 is locked with the side wall thread of the foot bath bucket 110, the spring 660 is compressed between the limit ring 650 and the bottom of the control groove 630. At this time, the inner end of the control rod 610 is in interference fit with the infusion tube 260, and the infusion tube 260 cannot conduct fluid normally, thereby realizing the closure of the infusion cleaning function; rotating the rod cap 620, so that the rod cap 620 and the side wall thread of the foot bath bucket 110 are unlocked, and the control rod 610 can move outward. At this time, under the influence of the elastic force of the spring 660, the control rod 610 will automatically bounce outward, so that the inner end of the control rod 610 is separated from the infusion tube 260, and the infusion tube 260 can conduct fluid normally, realizing the opening of the infusion cleaning function, with a simple structure and convenient operation.

[0049] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0050] The above is only 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 technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.

Claims

1. A multi-angle massage foot bath, comprising a foot bath barrel (110) with a drainage channel (130) provided on the side, a massager (140) provided inside the foot bath barrel (110), and a drying nozzle (210) installed on the inner wall of the foot bath barrel (110), an air pump (510) provided inside the foot bath barrel (110), and the air pump (510) is connected to the drying nozzle (210), characterized in that: The foot bath tub (110) has a groove (150) at its bottom, and the massager (140) is rotatably mounted in the groove (150). A driving assembly (300) is provided inside the foot bath tub (110), and the driving assembly (300) drives the massager (140) to rotate. The massager (140) includes a massage shell (141) and a massage inner core (142) located inside the massage shell (141). A plurality of massage ridges (144) are distributed on the outer side of the massage shell (141). A plurality of air jet holes (145) are provided on the massage rib (144), and the air jet holes (145) are arranged at an angle. A first ventilation pipe (520) is connected between the drying nozzle (210) and the air pump (510), a second ventilation pipe (530) is connected between the massager (140) and the air pump (510), and a switching valve (400) for switching the air path is installed between the first ventilation pipe (520), the second ventilation pipe (530) and the output end of the air pump (510); The switching valve (400) includes a fixed valve body (410) fixedly mounted inside the foot bath barrel (110), and a rotating valve body (420) rotatably mounted on the upper side of the fixed valve body (410). The interior of the fixed valve body (410) is connected to the interior of the rotating valve body (420). An air inlet (440) is provided on the side of the fixed valve body (410), and an air outlet (450) is provided on the side of the rotating valve body (420). When the air outlet (450) is connected to the channel where the second ventilation pipe (530) is located, the air pump (510) is connected to the air jet hole (145). The massager (140) rotates while spraying air outward, and the accumulated water in the groove (150) is blown out. A socket (143) is provided at the center of the massage inner core (142), a rotating shaft (250) is inserted into the socket (143), the rotating shaft (250) is configured as a hollow shaft, an air vent (251) is provided on the outside of the rotating shaft (250), the air vent (251) is communicated with the air jet hole (145), a bearing (252) is installed on the outside of the end of the rotating shaft (250), and the outside of the bearing (252) is connected to the second air vent pipe (530).

2. A multi-angle massage foot bath according to claim 1, characterized in that: An external rotating shaft (430) is coaxially mounted on the top of the rotating valve body (420), and a knob is coaxially connected to the end of the external rotating shaft (430), and the knob is located outside the footbath bucket (110).

3. The multi-angle massage foot bath according to claim 2, characterized in that: When the air outlet (450) is connected to the channel where the first ventilation pipe (520) is located, the air pump (510) is connected to the drying nozzle (210), and the drying nozzle (210) works to discharge air.

4. The multi-angle massage foot bath according to claim 1, characterized in that: The massage shell (141) is fixedly connected to the massage inner core (142), and the vent hole (251) is located between the massage shell (141) and the massage inner core (142).

5. The multi-angle massage foot bath according to claim 1, characterized in that: The driving assembly (300) includes a reduction motor (310) installed inside the foot bath tub (110), an output shaft (320) is keyed to the output end of the reduction motor (310), a driving gear (330) is installed at the end of the output shaft (320), and a driven gear (340) is installed on the outer side of the rotating shaft (250), and the driving gear (330) and the driven gear (340) are meshed and transmitted.

6. The multi-angle massage foot bath according to claim 1, characterized in that: A liquid adding chamber (270) is provided inside the foot bath bucket (110), and the liquid adding chamber (270) is configured as a box body containing disinfectant. The pipe mouth of the liquid adding chamber (270) extends to the outside of the foot bath bucket (110), and the pipe mouth of the liquid adding chamber (270) is provided with a pipe cover. The bottom of the liquid adding chamber (270) is connected to an infusion tube (260), and the infusion tube (260) is configured as a sealed hose. The end of the infusion tube (260) is connected to the second ventilation tube (530).

7. The multi-angle massage foot bath according to claim 6, characterized in that: A control groove (630) is provided inside the footbath bucket (110), a control rod (610) is slidably inserted into the control groove (630), the inner end of the control rod (610) contacts the infusion tube (260), the outer end of the control rod (610) is connected to a rod cap (620), and the rod cap (620) is threadedly connected to the outer wall of the footbath bucket (110), a limit ring (650) is installed on the outer side of the control rod (610), a limit block (640) is provided on the inner wall of the control groove (630), and a spring (660) is sleeved on the outer side of the control rod (610), and the spring (660) is located between the limit ring (650) and the bottom of the control groove (630).

8. The multi-angle massage foot bath according to claim 1, characterized in that: A massage plate (120) is provided at the bottom of the footbath barrel (110), and the massage plate (120) includes a foot plate (121) located inside the footbath barrel (110), and a plurality of fixed protrusions (122) are distributed on the upper side of the foot plate (121). A drainage channel (123) is provided between the foot plate (121) and the inner wall of the footbath barrel (110), and the drainage channel (123) is connected to the drainage channel (130). A filter cover (240) for filtering is installed at the water inlet of the drainage channel (130), and a drainage pipe (230) is installed at the water outlet of the drainage channel (130), and the drainage pipe (230) is hung on the side of the footbath barrel (110).

9. The multi-angle massage foot bath according to claim 1, characterized in that: A roller (220) is installed at the bottom of the footbath bucket (110), a slide groove (180) is opened on the top of the footbath bucket (110), a pull rod (170) is inserted and slidably installed in the slide groove (180), a limiting protrusion (190) is provided on the side of the pull rod (170), the limiting protrusion (190) is slidably engaged with the slide groove (180), and a handle (160) is installed on the top of the pull rod (170).

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