Positioning installation part and foot bath device

By using positioning mounting brackets to suspend and fix the delivery pipe of the water vapor pressurization component in the foot bath, the noise problem caused by the vibration of the water vapor pressurization component is solved, achieving quieter and more efficient water vapor delivery.

CN224039598UActive Publication Date: 2026-03-27AISE HEALTH DIGITAL TECHNOLOGY (HAINAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing foot bath device's water vapor pressurization component generates regular vibrations during the water vapor delivery process, resulting in collision noise between components.

Method used

The delivery pipe of the water vapor pressurization component is suspended and positioned using positioning mounting parts. The upper horizontal part of the positioning mounting parts is fixed to the partition plate to reduce vibration and collision noise between components. The delivery pipe is further fixed by bending parts and mating parts to avoid bending and displacement.

Benefits of technology

It effectively reduces the vibration and noise of the water vapor pressurization component, avoids collision noise between components, and improves the stability and efficiency of water vapor flow.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a positioning installation part and a foot bath device, belongs to the field of health care, and aims to solve the problem that collision noise is generated among all parts due to the fact that a water vapor pressurizing assembly of an existing foot bath device generates regular vibration in the water vapor conveying process. And the vertical part enables the lower transverse part and the conveying pipe to keep a distance from the upper transverse part, and the positioning mounting piece is fixed on the separation disc through the upper transverse part, so that the conveying pipe is suspended, positioned and mounted, vibration is weakened, and collision noise generated among all parts is avoided. And moreover, the positioning mounting piece can support the conveying pipe, so that the conveying pipe is prevented from being bent, and water vapor flow resistance is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the health care field, concretely relates to a positioning mounting piece and foot bath device. BACKGROUND

[0002] The existing foot bath device forms fluid beam through pressurized injection of warm water vapor, and the fluid beam impacts on the foot to produce massage stimulation. The generation of the fluid beam depends on the water vapor pressurizing assembly. During the water vapor delivery process of the water vapor pressurizing assembly, including inhaling water vapor, heating water vapor and spraying water vapor, regular vibration will be generated due to the pulse-like working principle. After long-term use, the vibration will cause collision noise between the components. SUMMARY

[0003] The utility model discloses a positioning mounting piece and foot bath device for weakening vibration and avoiding collision noise between components to overcome the defects caused by regular vibration of the water vapor pressurizing assembly of the existing foot bath device during the water vapor delivery process.

[0004] To achieve the above-mentioned purpose, the positioning mounting piece includes a main body part, which includes an upper horizontal part, a lower horizontal part and a vertical part connected between the upper horizontal part and the lower horizontal part. The upper horizontal part is configured to fix and install the main body part, and the lower horizontal part is configured to position and install the delivery pipe.

[0005] Accordingly, the vertical part keeps the lower horizontal part and the delivery pipe away from the upper horizontal part. The delivery pipe is suspended and positioned by the positioning mounting piece to weaken vibration and avoid collision noise between components. In addition, the positioning mounting piece can support the delivery pipe to avoid bending and reduce water vapor flow resistance.

[0006] Preferably, the positioning mounting piece includes a matching part, which is matched with the lower horizontal part to position and install the delivery pipe. The matching part can better position and fix the delivery pipe on the lower horizontal part.

[0007] Preferably, the matching part and the lower horizontal part are connected together by a fastener and position and install the delivery pipe. In this way, the matching part and the lower horizontal part can be reliably assembled and position and fix the delivery pipe to avoid loosening and displacement of the delivery pipe.

[0008] Preferably, the matching part or / and the lower horizontal part is provided with a positioning groove for positioning the delivery pipe. In this way, the delivery pipe is positioned and fixed, and at the same time, the delivery pipe is prevented from being squeezed and deformed to affect water vapor flow.

[0009] Preferably, the positioning and mounting member comprises a bending member, which is provided with a bending groove for positioning and fixing the conveying pipe along the length direction of the bending member, and the bending member is mounted to the lower transverse part of the at least one main body part. In this way, the conveying pipe can be arranged in the bending groove, and a longer pipe section instead of a shorter local part can be positioned and fixed, so that the conveying pipe can be more reliably positioned and fixed, and deformation, displacement and reduced flow area of the conveying pipe during turning and reversing can be avoided.

[0010] Preferably, in order to facilitate installation, the bending member comprises a first fastening part and a second fastening part, and the first fastening part and the second fastening part are fastened and assembled together. In this way, after the conveying pipe is arranged in the bending groove, the first fastening part and the second fastening part are fastened together to complete the assembly, and the operation is convenient.

[0011] Preferably, the positioning and mounting member is made of elastic material. Vibration can be buffered.

[0012] The foot bath device comprises:

[0013] a foot bath cavity;

[0014] a massage assembly, which comprises a plurality of massage nozzles protruding from the foot bath cavity, and the massage nozzles are provided with spray holes;

[0015] a partition disc, which defines a lower space below the partition disc;

[0016] a heating and atomizing assembly for heating and atomizing water;

[0017] a water vapor pressurizing assembly for pressurizing water vapor generated by the heating and atomizing assembly and delivering the water vapor to the massage nozzles, which comprises a vapor pump located in the lower space, a conveying pipe, a first one-way valve, a control valve, a storage tank and a first heating device arranged in the conveying pipe path, the first one-way valve and the control valve are sequentially connected in series in the conveying pipe path between the vapor pump and the first heating device, the storage tank is connected in the conveying pipe path between the first one-way valve and the control valve, and the first one-way valve controls the flow of water vapor from the vapor pump to the control valve; at least part of the pipe section of the conveying pipe is positioned and mounted by a positioning and mounting member, and the positioning and mounting member is fixed to the partition disc by the upper transverse part thereof.

[0018] In this way, the conveying pipe is suspended and positioned and mounted by the positioning and mounting member, vibration is weakened, and collision noise between components is avoided.

[0019] The foot bath device can first close the control valve, fill the storage tank with water vapor, open the control valve when the air pressure in the storage tank reaches the required pressure, and make the high-pressure water vapor flow to the massage nozzles, so that the water vapor sprayed from the spray holes has sufficient pressure.

[0020] Preferably, the water vapor pressurizing assembly further comprises a fan and a second one-way valve, the fan and the second one-way valve are connected in the conveying pipe path between the control valve and the first heating device, the second one-way valve controls the flow of the air flow generated by the fan to the first heating device. Accordingly, the control valve is closed, the fan is opened, the air flow can be generated, and the water vapor path downstream of the fan is dried. At the same time, the first heating device is started, the air flow is heated, the drying efficiency is higher, and the effect is better.

[0021] Preferably, the heating atomization assembly comprises a heating atomization water tank, a second heating device and an ultrasonic atomizer, the second heating device and the ultrasonic atomizer are arranged at the bottom of the heating atomization water tank, the sidewall of the heating atomization water tank is provided with a suction port, and the suction port is connected with the steam pump of the water vapor pressurizing assembly. After water is added to the heating atomization water tank, the second heating device and the ultrasonic atomizer are submerged in water for atomizing and heating the water into water vapor.

[0022] The utility model discloses a positioning installation piece is positioned and installed to the conveying pipe of water vapor pressurizing assembly, and the lower horizontal part and conveying pipe keep away from the upper horizontal part, and the positioning installation piece is fixed on the partition disc by its upper horizontal part. Realize the suspension positioning installation of conveying pipe, weaken the vibration, avoid the collision noise between each component. And, the positioning installation piece can support the conveying pipe, avoid the bending of conveying pipe, reduce the water vapor flow resistance. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is the structure exploded schematic view of foot bath device of the utility model;

[0024] Figure 2 It is the structure schematic view of a positioning installation piece of the utility model;

[0025] Figure 3 It is the structure schematic view of another positioning installation piece of the utility model;

[0026] Figure 4 It is another structure exploded schematic view of foot bath device of the utility model;

[0027] Figure 5 It is the structure schematic view of third positioning installation piece of the utility model;

[0028] Figure 6 It is the structure schematic view of the positioning installation piece of the utility model suspending and positioning installation of conveying pipe;

[0029] Figure 7 It is the position relation schematic view of massage nozzle and water vapor dispersion flow channel of the utility model;

[0030] Figure 8 It is the cut structure schematic view of water vapor dispersion plate of the utility model;

[0031] Figure 9 The structure exploded schematic view of the massage nozzle of the utility model;

[0032] Figure 10 The section view of the head seat of the utility model;

[0033] Figure 11 The assembly relationship schematic view of the tubular shaft and the shaft sleeve of the utility model;

[0034] Mark explanation in the figure:

[0035] 100 massage assembly:

[0036] 120 installation disc,

[0037] 130 massage nozzle, 131 head seat, 1311 injection hole, 1312 water vapor chamber, 1313 key shaft section, 132 tubular shaft, 1321 lower shaft section, 1322 rotating baffle ring, 1323 upper shaft section, 1324 sealing ring;

[0038] 140 water vapor dispersion plate, 141 first dispersion flow channel, 142 second dispersion flow channel, 143 input interface, 144 installation interface, 145 shaft sleeve,

[0039] 150 driven gear, 151 square hole,

[0040] 200 heating atomization assembly: 210 heating atomization water tank, 211 suction port, 220 second heating device, 230 ultrasonic atomizer, 240 cover shell;

[0041] 300 water vapor pressurization assembly: 310 vapor pump, 320 delivery pipe, 330 first one-way valve, 340 storage tank, 350 control valve, 360 first heating device, 370 second one-way valve, 380 fan, 390 inlet pipe;

[0042] 400 positioning installation piece: 410 main body, 411 upper horizontal part, 4111 perforation, 412 lower horizontal part, 4121 positioning groove, 413 vertical part, 420 cooperation part, 421 positioning groove, 430 fastener, 440 bending piece, 441 bending groove, 442 first buckling part, 443 second buckling part, 450 rubber pin shaft piece;

[0043] 500 upper shell: 501 mouth, 502 insertion port, 503 control screen;

[0044] 610 positioning disc, 620 separation disc;

[0045] 700 lower shell;

[0046] 800 water bottle. DETAILED DESCRIPTION

[0047] In order to make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme in the utility model embodiment will be clearly and completely described below in combination with the drawings in the utility model embodiment. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0048] The terms "comprising" and "having" and any variations thereof in the specification and claims of the utility model are intended to cover non-exclusive inclusion, for example, a method or product comprising a series of technical features does not have to be limited to the clearly listed technical features, and other technical features that can be included in the method or product without being clearly listed can also be included.

[0049] In the description of the utility model, it should be understood that the technical features defined by the terms "first", "second" and the like have a sequential concept, and only for the purpose of clearly describing the defined technical features, the defined technical features can be clearly distinguished from other technical features, and it does not represent the actual implementation of such naming, so it cannot be understood as a limitation of the utility model.

[0050] The utility model will be described in detail below in combination with specific embodiments and drawings.

[0051] Figure 1 A foot bath device is shown, which comprises: an upper shell 500, a lower shell 700, a foot bath cavity, a massage assembly 100, a heating and atomizing assembly 200, a water vapor pressurizing assembly 300 and a controller.

[0052] The foot bath cavity is defined between the upper shell 500 and the massage assembly 100, and the upper shell 500 has a mouth 501 for the foot to enter and exit the foot bath cavity. The upper shell 500 also has an insertion port 502 for inserting a water bottle 800 to add water to the heating and atomizing water tank 210. The upper shell 500 is also configured with a control screen 503 for displaying the working state of the foot bath device and controlling the foot bath device.

[0053] As shown in Figure 1 、 Figure 4 、 Figures 7-8 The massage assembly 100 comprises a plurality of massage nozzles 130 configured with spray holes. The massage nozzles 130 are distributed on the upper side of the mounting disc 120 and protrude into the foot bath cavity. Each massage nozzle extends downward through a tubular shaft into the water vapor dispersion flow channel on the lower side of the mounting disc 120.

[0054] The lower side of the mounting disc 120 is provided with Figures 7-8The water vapor dispersion plate 140 is shown. The water vapor dispersion plate 140 is a plate-like member, on which water vapor dispersion channels are distributed, for dispersing the water vapor delivered to be evenly distributed to each of the massage nozzles. In the structure shown, the water vapor dispersion channels are formed by arranging corresponding shaped grooves on the water vapor dispersion plate, and covering the grooves with a cover plate. In other embodiments, the grooves can be arranged on the cover plate, and the cover plate is assembled to the water vapor dispersion plate to form the water vapor dispersion channels. In Figure 8 The water vapor dispersion plate 140 is shown. The water vapor dispersion plate 140 is a plate-like member, on which water vapor dispersion channels are distributed, for dispersing the water vapor delivered to be evenly distributed to each of the massage nozzles. In the structure shown, the water vapor dispersion channels are formed by arranging corresponding shaped grooves on the water vapor dispersion plate, and covering the grooves with a cover plate. In other embodiments, the grooves can be arranged on the cover plate, and the cover plate is assembled to the water vapor dispersion plate to form the water vapor dispersion channels. In Figure 11 The shaft sleeve 145 is shown in

[0055] The water vapor is delivered to the water vapor dispersion channels through the input interface, and then distributed to each of the massage nozzles. The plurality of massage nozzles 130 are arranged in two columns, and are symmetrically arranged left and right, for forming two areas arranged left and right, each of which is used for performing massage on one foot, to increase the comfort. Moreover, the massage assembly 100 is positioned and installed on the positioning disc 610.

[0056] As shown in Figure 9 The massage nozzle 130 includes the head seat 131 shown in Figure 10 and the tubular shaft 132 shown in Figure 11 The head seat 131 is provided with a water vapor chamber 1312 and a plurality of spray holes 1311 for spraying water vapor from the water vapor chamber. The upper end of the tubular shaft 132 is sealingly inserted into the head seat 131, and communicates with the water vapor chamber 1312 and the spray holes 1311. The lower end of the tubular shaft 132 extends into the water vapor dispersion channels for receiving water vapor from the water vapor dispersion channels. In this way, each spray hole can spray water vapor with consistent force. Moreover, the upper end of the tubular shaft is sealingly connected to the head seat, and the lower end of the tubular shaft is sealingly connected to the water vapor dispersion plate. The sealing is achieved by sleeving a sealing ring on the corresponding part of the tubular shaft, to ensure that the massage nozzle can rotate flexibly while preventing water vapor leakage. The head seat 131 has a key shaft section 1313, which is square-shaped, and the driven gear 150 is sleeved on the key shaft section 1313 through a square hole 151. In this way, the driven gear can drive the massage nozzle.

[0057] The installation disc 120 keeps installation space with the water vapor dispersion plate 140, and the installation space is isolated from the water vapor dispersion flow channel, avoiding the water vapor in the water vapor dispersion flow channel from entering the installation space, and causing adverse effects on the structures in the installation space, such as gears. The plurality of massage nozzles 130 are rotatably distributed on the upper side of the installation disc 120 and are each connected to the water vapor dispersion flow channel. Therefore, the installation disc serves as the assembly base of the massage nozzles and bears the massage nozzles and the pressure from the feet during foot bath.

[0058] Specifically, the tubular shaft 132 is rotatably assembled with the shaft sleeve 145 in a one-to-one correspondence. As shown in the figure, Figure 11 The tubular shaft 132 is arranged in the shaft sleeve 145 and extends downward to form a lower shaft segment 1321, and at least one rotating retainer ring 1322 is sleeved on the lower shaft segment, which serves as a sealing ring. The rotating retainer ring not only restricts the tubular shaft in the shaft sleeve, but also plays a sealing role to prevent water vapor from leaking from the rotating gap between the tubular shaft and the shaft sleeve. In particular, the rotating retainer ring is sleeved on the lower shaft segment rather than being squeezed between the inner walls of the tubular shaft and the shaft sleeve, and when the tubular shaft rotates relative to the shaft sleeve, the rotating retainer ring generates less resistance, thereby ensuring the flexibility of the rotation of the tubular shaft. When there are multiple rotating retainer rings, the sealing life can be increased. The tubular shaft 132 also extends upward to form an upper shaft segment 1323, and at least one sealing ring 1324 is sleeved on the upper shaft segment, which is squeezed between the upper shaft segment 1323 and the head seat 131. In this way, the tubular shaft and the head seat are sealed.

[0059] A plurality of driven gears 150 are located in the installation space and are each arranged with a massage nozzle 130 to rotate with the massage nozzle. Specifically, as shown in the figure, Figure 9 The driven gear 150 is drivingly assembled with the upper shaft segment 1323 and the head seat 131. The structure shown in the figure is that the upper shaft segment 1323 and the head seat 131 are each provided with a key shaft segment 1313, and the driven gear 150 is provided with a square hole 151, which is sleeved on the key shaft segment 1313 of the upper shaft segment 1323 and the head seat 131 to rotate with the entire massage nozzle, avoiding relative rotation between the tubular shaft and the head. The driven gear is rotated by a driving gear, and the driving gear is driven by a motor.

[0060] The heating and atomizing assembly 200 is used for heating and atomizing water. It includes a heating and atomizing water tank 210, a second heating device 220, and an ultrasonic atomizer 230, which are arranged at the bottom of the heating and atomizing water tank 210. After water is added to the heating and atomizing water tank, the second heating device and the ultrasonic atomizer are submerged in water to atomize and heat the water into water vapor. Generally, the upper side of the heating and atomizing water tank 210 is provided with a water level sensor 211, which is used to detect the water level in the heating and atomizing water tank 210 and to control the water supply to the heating and atomizing water tank 210. Figure 4The cover 240 is provided on the cover shell, and the cover shell 240 and the heating atomization water tank define a diffusion chamber. In this way, the water in the heating atomization water tank can be heated and atomized, and the diffusion chamber provides space for the heating atomization and ensures the efficiency of the heating atomization. The cover shell protrudes from the foot bath chamber, and the heating atomization water tank 210 is located below the partition disc 620. The partition disc 620 and the positioning disc 610 are provided with openings corresponding to the heating atomization water tank. The openings are in communication with the heating atomization water tank and the diffusion chamber, so as to promote the efficient heating atomization. The side wall of the diffusion chamber is provided with a suction port and a water vapor passage. The suction port 211 is preferably located on the side wall of the heating atomization water tank 210, and is not submerged in water. The suction port 211 is connected to the vapor pump 310 of the water vapor pressurizing assembly 300. The water vapor passage is provided in the cover shell. During any stage of the operation, when the pressure of the diffusion chamber is less than the pressure of the foot bath chamber, the water vapor passage supplies the water vapor in the foot bath chamber to flow back to the diffusion chamber. When the pressure of the foot bath chamber is less than the pressure of the diffusion chamber, the water vapor in the diffusion chamber can escape to the foot bath chamber through the water vapor passage.

[0061] The water vapor pressurizing assembly 300 is used to pressurize the water vapor generated by the heating atomization assembly 200 and deliver the water vapor to the massage nozzle. The water vapor pressurizing assembly 300 includes a vapor pump 310, a delivery pipe 320, a first one-way valve 330 arranged in the delivery pipe path, a storage tank 340, a control valve 350, a first heating device 360, a second one-way valve 370, and a fan 380.

[0062] The storage tank 340 is connected in the delivery pipe path between the first one-way valve 330 and the control valve 350. The first one-way valve 330 controls the flow of water vapor from the vapor pump to the control valve 350, i.e. the first one-way valve 330 prevents the flow of water vapor to the vapor pump. In this way, the control valve 350 can be closed first, the water vapor is filled into the storage tank 340, and the control valve 350 is opened after the pressure in the storage tank 340 reaches the required pressure, so that the water vapor flows to the massage nozzle 130 at a certain pressure, avoiding insufficient water vapor pressure of the spray hole.

[0063] When the water vapor generated by the heating atomization assembly 200 is less or / and the power of the pressurizing pump is insufficient, the water vapor pressurizing assembly 300 cannot continuously spray high-speed water vapor flow. Generally, the pressurizing pump such as the air bag air pump can continuously inflate, but cannot realize high-pressure air supply. If the pressurizing pump is forced to supply high-pressure air, it will cause extremely serious air extraction on the upper side of the foot bath chamber and increase the working noise of the pressurizing pump. Therefore, the storage tank accumulates and stores water vapor and assists pressurization, and intermittently releases water vapor, which can ensure that the water vapor pressurizing assembly 300 can continuously spray high-speed water vapor flow with lower working noise. In view of the role of the storage tank, the storage tank is preferably made of elastic material, so that the storage tank behaves as an elastic bag.

[0064] The first heating device 360 is used to heat the fluid flowing therethrough.

[0065] The fan 380 and the second one-way valve 370 are connected in the conveying pipe path between the control valve 350 and the first heating device 360, and the second one-way valve 370 controls the airflow generated by the fan 380 to flow to the first heating device 360, and prevents the fluid from flowing to the fan 380, which avoids the water vapor flowing to the fan when the water vapor is conveyed. Accordingly, the control valve 350 is closed, the fan 380 is opened, the airflow can be generated, the water vapor path downstream of the fan 380 is dried, and the first heating device 360 is started to heat the airflow, so that the drying efficiency is higher and the effect is better.

[0066] The steam pump has an inlet pipe 390 connected to the suction port 211 of the heating and atomizing assembly 200. One end of the conveying pipe 320 is connected to the outlet of the steam pump 310, and the other end is connected to the input interface of the water vapor dispersion flow channel. During foot bathing, the steam pump 310 sucks the water vapor from the heating and atomizing water tank 210 through the inlet pipe 390 and the suction port 211, and pressurizes the water vapor. The water vapor flows through the first one-way valve 330, the control valve 350, and the first heating device 360, and then enters the water vapor dispersion flow channel from the input interface to be distributed to each massage nozzle.

[0067] The positioning disc 610 and the partition disc 620 keep the foot bathing cavity in a relatively sealed space, and under the action of the water vapor pressurizing assembly 300, the water vapor circulates between the heating and atomizing water tank 210, the water vapor pressurizing assembly 300, the water vapor dispersion flow channel, the massage nozzle 130, the foot bathing cavity, and the diffusion cavity.

[0068] The water vapor pressurizing assembly 300 is fixed to the lower side of the partition disc 620 and is shielded by the lower shell 700, and is isolated from the foot bathing cavity by the positioning disc 610 and the partition disc 620.

[0069] Especially, as shown in Figure 1 , Figure 4 , Figure 6 The conveying pipe 320 of the water vapor pressurizing assembly 300 is positioned and installed by the positioning and installing member 400, and the positioning and installing member 400 is fixed to the partition disc 620 by the upper cross part 411 thereof, and the fixing mode can be fastener fixing, binding, etc., as shown in Figure 5 The upper cross part 411 is provided with a through hole 4111 for the fastener such as a screw, a rivet, and a bandage to be passed through to fix the upper cross part 411. The conveying pipe 320 is suspended and positioned, the vibration is weakened, and the collision noise between the components is avoided.

[0070] As shown in Figure 2 , Figure 3As shown, the positioning mounting component 400 includes a main body 410, which includes an upper horizontal portion 411, a lower horizontal portion 412, and a vertical portion 413 connected together. The upper horizontal portion is configured to fix the main body, such as with fasteners, and the lower horizontal portion is configured to position and install the conveying pipe. The vertical portion keeps the lower horizontal portion and the conveying pipe at a distance from the upper horizontal portion. The positioning mounting component suspends and positions the conveying pipe, reducing vibration and preventing collision noise between components. In other embodiments, the positioning mounting component can be used independently to position and fix the conveying pipe, such as... Figure 5 As shown in the structure, the lower horizontal section 412 can be coiled and wound around the conveying tube, and can be further secured by rubber pins 450 inserted into the through holes of the two lower horizontal sections 412. The rubber pins have a small diameter in the middle and a large diameter at both ends to prevent them from coming apart.

[0071] like Figure 2 As shown, in one embodiment, the positioning mounting member 400 includes a mating portion 420, which mates with the lower horizontal portion 412 for positioning and mounting the conveying pipe. The mating portion allows for better positioning and fixing of the conveying pipe to the lower horizontal portion. Furthermore, the mating portion 420 and the lower horizontal portion 412 are connected together by fasteners 430 for positioning and mounting the conveying pipe. This ensures reliable assembly and positioning of the mating portion and the lower horizontal portion, preventing loosening and displacement of the conveying pipe. The mating portion 420 and the lower horizontal portion 412 are provided with positioning grooves 4121 for positioning the conveying pipe. This not only positions and fixes the conveying pipe but also prevents it from being squeezed and deformed, thus affecting the flow of water vapor. In other embodiments, the positioning groove may be provided only on the mating portion or the lower horizontal portion.

[0072] like Figure 3 As shown, in another embodiment, the positioning mounting component 400 includes a bending component 440. The bending component 440 has a bending groove 441 along its length for positioning and fixing the conveying pipe. The bending component 440 is connected and installed to at least one lower horizontal portion 412 of the main body portion 410, such as by fasteners. Accordingly, the conveying pipe can be laid in the bending groove, and a longer pipe section rather than a shorter section can be positioned and fixed, which can more reliably position and fix the conveying pipe and avoid deformation, displacement, and reduction of flow area when the conveying pipe turns or changes direction. The bending component 440 includes a first fastening portion 442 and a second fastening portion 443, which are fastened together. Accordingly, after the conveying pipe is placed in the bending groove, the first fastening portion and the second fastening portion are fastened together to complete the assembly, which is convenient and easy to install. The first fastening portion and the second fastening portion can be fastened by a structure such as bolts. The bending part 440 can also be fixed to the lower horizontal part using plastic bolts. Figure 5 The rubber pins shown are an example of such methods. In addition to the methods shown in the figure, the first fastening part, the second fastening part, and the lower horizontal part can also be fixed by passing through each other.

[0073] In any embodiment, the positioning mount is made of elastic material such as rubber. It can buffer vibration.

[0074] The controller (circuit control board) is fixed to the lower side of the partition disc 620 and is shielded by the lower shell 700, and is isolated from the foot bath cavity by the positioning disc 610 and the partition disc 620. The controller is electrically connected to the control screen 503 and the electrical devices of the foot bath, such as the steam pump 310, the first one-way valve 330, the control valve 350, the first heating device 360, the second one-way valve 370, the fan 380, etc. The controller is connected to the external power supply through the power supply line to supply power to the entire foot bath cavity and control the operation of the foot bath.

[0075] According to the above structure of the massage assembly, the warm water vapor is transported to each massage nozzle through the water vapor dispersion channel, and the warm water vapor is sprayed from the massage nozzle to stimulate the foot. The power and transmission mechanism drives each massage nozzle to rotate, which can further improve the foot bath experience.

[0076] The above-mentioned foot bath, when working, starts the second heating device 220, the ultrasonic atomizer 230, and the water vapor pressurizing assembly 300 by operating the control screen 503. Then the water vapor is heated and sprayed from the spray hole of the massage nozzle 130. The foot is placed on the corresponding massage nozzle, which can obtain the stimulating massage of water vapor spraying. In the process, the delivery pipe of the water vapor pressurizing assembly is suspended and weakened in vibration.

[0077] Especially, the delivery pipe at the end of the water vapor pressurizing assembly is fixed by the mounting member, which can effectively reduce the flow resistance of the delivery pipe. Since the steam pump is prone to produce high-frequency vibration during operation, the delivery pipe at the outlet end and the inlet end of the steam pump is suspended and installed by the positioning mounting member, which achieves the technical effect of effectively reducing vibration noise.

Claims

1. A positioning mount characterized by The positioning and installing member comprises a fitting part (420) which is fitted with the lower horizontal part (412) for positioning and installing the conveying pipe. The fitting part (420) and the lower horizontal part (412) are connected together by a fastener (430) and position and install the conveying pipe. The fitting part (420) or / and the lower horizontal part (412) is provided with a positioning groove for positioning the conveying pipe.

2. The positioning mount of claim 1, wherein: The positioning and installing member comprises a bending part (440) which is provided with a bending groove (441) along its length direction for positioning and fixing the conveying pipe, and the bending part (440) is installed on the lower horizontal part of at least one main body part (410).

3. A positioning mount according to claim 1 or 2, characterized in that: The bending part (440) comprises a first clamping part (442) and a second clamping part (443) which are clamped and assembled together.

4. The positioning mount of claim 1, wherein: The positioning and installing member is made of elastic material.

5. The positioning mount of claim 4, wherein: The foot bath cavity; 6. The positioning mount of any of claims 1-2, 4-5, wherein: The massage assembly (100) comprises a plurality of massage nozzles (130) protruding from the foot bath cavity, and the massage nozzles are provided with spray holes; 7. A footbath characterised in that The dividing disc (620) defines a lower space below it; The heating and atomizing assembly (200) for heating and atomizing water; The water vapor pressurizing assembly (300) for pressurizing the water vapor generated by the heating and atomizing assembly and delivering the water vapor to the massage nozzles, which comprises a vapor pump (310) located in the lower space, a conveying pipe (320), a first one-way valve (330) arranged in the conveying pipe path, a control valve (350), a storage tank (340), and a first heating device (360), the first one-way valve (330) and the control valve (350) are connected in series in the conveying pipe path between the vapor pump (310) and the first heating device (360), the storage tank (340) is connected in the conveying pipe path between the first one-way valve (330) and the control valve (350), and the first one-way valve (330) controls the flow of water vapor from the vapor pump to the control valve (350); at least part of the pipe section of the conveying pipe is positioned and installed by the positioning and installing member (400) according to any one of claims 1-6, and the positioning and installing member is fixed to the dividing disc (620) by its upper horizontal part (411). The water vapor pressurizing assembly (300) further comprises a fan (380) and a second one-way valve (370), and the fan (380) and the second one-way valve (370) are connected in the conveying pipe path between the control valve (350) and the first heating device (360), and the second one-way valve (370) controls the flow of air current generated by the fan (380) to the first heating device (360). ​ ​ 8. A footbath according to claim 7, characterised in that: ​ 9. Foot bath according to claim 7 or 8, characterized in that The heating and atomizing assembly (200) comprises a heating and atomizing water tank (210), a second heating device (220) and an ultrasonic atomizer (230), the second heating device (220) and the ultrasonic atomizer (230) are arranged at the bottom of the heating and atomizing water tank (210), and the sidewall of the heating and atomizing water tank (210) is provided with a suction port (211), the suction port (211) is connected with a steam pump (310) of the water vapor pressurizing assembly (300).