Water bath massage structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本申请的目的是提供一种水浴按摩结构,旨在改善相关技术中采用塑料泡脚袋导致的漏水以及穿戴体感不佳问题,提高足部按摩设备的稳定性以及使用体验
1.本申请的一种水浴按摩结构,通过在多层按摩组件设置接触组件,接触组件通过接触靴体进行支撑,接触靴体在穿戴以及按摩时不易发生塌陷;在接触靴体的上方设置上开口部可以方便使用者将足部从开口部伸入接触靴体中;接触靴体的水位传感器可以对接触靴体中的水位进行监测,水位传感器将监测到的水位信号传递至按摩结构层,按摩结构层可根据水位状态对按摩幅度的大小进行调整,从而减少热水从接触靴体中溢出的情况,增加按摩结构的穿戴以及按摩使用体验。
Smart Images

Figure CN224612888U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water bath massage equipment technology, and in particular to a water bath massage structure. Background Technology
[0002] Foot massage is a health therapy that stimulates acupoints on the feet, offering benefits such as improved blood circulation, relief of joint pain, and improved sleep. Foot massage devices provide a convenient and quick massage experience; users simply slip their feet into the boot-shaped device and activate it to relax and massage their feet.
[0003] Conventional foot massage devices require wearing plastic foot bath bags filled with hot water during foot baths. However, these plastic foot bath bags are disposable, the process of wearing them is complicated, and they can stick to the skin. Hot water can easily be squeezed out during the massage, resulting in a poor wearing experience. In addition, the plastic foot bath bags are easily torn by the massage institution or by the user's fingernails, causing water to leak into the foot bath massage device, which can easily damage the device and result in a poor user experience. Utility Model Content
[0004] The purpose of this application is to provide a water bath massage structure that aims to improve the problems of water leakage and poor wearing comfort caused by the use of plastic foot bath bags in related technologies, and to improve the stability and user experience of foot massage devices.
[0005] This application provides a water bath massage structure, including a multi-layer massage assembly and a contact assembly disposed on the multi-layer massage assembly; the multi-layer massage assembly includes a base structure layer, a massage structure layer and a temperature structure layer disposed sequentially, the base structure layer, the massage structure layer and the temperature structure layer are spliced and connected to form a massage boot body with a receiving cavity; the contact assembly includes a contact boot body that passes through and is installed in the receiving cavity, the contact boot body has an upper opening, and at least one water level sensor is disposed along its height direction, the water level sensor being electrically connected to the massage structure layer.
[0006] Furthermore, the size of the upper opening gradually increases from the end closer to the contact boot body to the end farther away from the contact boot body.
[0007] Furthermore, the contact boot body has a contact boot head, which is fitted and installed in the temperature structure layer.
[0008] Furthermore, the contact shoe head is provided with at least one positioning protrusion; the temperature structure layer includes a temperature layer, the temperature layer has a temperature shoe head, the temperature shoe head has an installation positioning hole corresponding to the positioning protrusion, and the positioning protrusion is fitted into the installation positioning hole.
[0009] Furthermore, the basic structure layer includes a base layer, which has a first set of connecting holes for connecting the massage structure layer and the temperature structure layer; the base layer is provided with a plurality of basic sewing parts for connecting the temperature layer along its circumferential direction.
[0010] Furthermore, the massage structure layer includes a massage layer and a plurality of massage airbags disposed on the massage layer. The massage layer has a second connection hole group for connecting the base layer and the temperature layer, and the second connection hole group is aligned with the first connection hole group.
[0011] Furthermore, the temperature structure layer includes a temperature control component disposed on the temperature layer; the temperature layer has a third connection hole group, which is aligned with the second connection hole group.
[0012] Furthermore, the temperature layer is provided with a plurality of temperature sewing parts along its circumferential direction; the number of basic sewing parts and the temperature sewing parts are the same and correspond one-to-one, and the basic sewing parts and the temperature sewing parts are connected and fixed by sewing.
[0013] The beneficial effects of this application are: 1. A water bath massage structure of this application includes contact components arranged in a multi-layered massage assembly. The contact components are supported by a contact boot body, which is less prone to collapse during wear and massage. An opening is provided at the top of the contact boot body to facilitate the user's insertion of their foot into the contact boot body. A water level sensor in the contact boot body can monitor the water level and transmit the monitored water level signal to the massage structure layer. The massage structure layer can adjust the massage amplitude according to the water level, thereby reducing the overflow of hot water from the contact boot body and improving the wearing and massage experience of the massage structure.
[0014] 2. A water bath massage structure of this application comprises a multi-layer massage component consisting of a base structure layer, a massage structure layer, and a temperature structure layer. The three structural layers are spliced and enclosed through corresponding connecting hole groups to form a massage boot body with a receiving cavity, thereby quickly completing the assembly of the massage structure. The massage structure is compact and easy to install through a multi-layer modular design, while also enabling independent manufacturing, design improvement, and performance optimization of each structural layer, facilitating maintenance and reducing production difficulty. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a multi-layer massage device provided in an embodiment of this application; Figure 2 This is a schematic diagram of the contact between a multi-layer massage device and the human body, provided in an embodiment of this application. Figure 3This is a schematic diagram showing the unfolded structure layer in an embodiment of this application; Figure 4 This is a schematic diagram showing the unfolded massage structure layer in an embodiment of this application; Figure 5 This is a schematic diagram showing the unfolded temperature structure layer in an embodiment of this application; Figure 6 This is a schematic diagram of the contact component in an embodiment of this application.
[0016] Explanation of reference numerals in the attached figures: 1. Multi-layer massage assembly; 11. Basic structure layer; 111. Basic layer; 1111. Basic sewing part; 112. First connecting hole group; 1121. First connecting hole position; 1122. First common hole position; 12. Massage structure layer; 121. Massage layer; 122. Massage airbag; 123. Second connecting hole group; 1231. Second connecting hole position; 1232. Second common hole position; 13. Temperature structure layer; 131. Temperature layer; 1311. Temperature boot head; 13111. Positioning mounting hole; 1312. Temperature sewing part; 132. Temperature control assembly; 133. Third connecting hole group; 1331. Third common hole position; 2. Contact assembly; 21. Contact boot body; 211. Contact boot head; 2111. Positioning protrusion; 22. Upper opening; 23. Water level sensor. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0018] It should be noted that although functional modules are divided in the device schematic diagram and a logical order is shown in the flowchart, in some cases, the steps shown or described may be performed in a different order than the module division in the device or the order in the flowchart. The terms "first," "second," etc., in the specification, claims, and the aforementioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing embodiments of this application only and is not intended to limit this application.
[0020] Reference Figure 1 as well as Figure 2This application provides a water bath massage structure, including a multi-layer massage component 1 and a contact component 2 disposed on the multi-layer massage component 1. The multi-layer massage component 1 is used to provide support, massage and temperature control functions, and the contact component 2 is used to provide users with convenient and quick wear functions and water level monitoring feedback functions.
[0021] Specifically, the multi-layer component includes a base structure layer 11, a massage structure layer 12, and a temperature structure layer 13 arranged sequentially. The base structure layer 11, massage structure layer 12, and temperature structure layer 13 are spliced together and enclosed to form a massage boot body with a receiving cavity. For connection, the base structure layer 11, massage structure layer 12, and temperature structure layer 13 are provided with corresponding sets of connection holes. The three structure layers are spliced and fixed together through the sets of connection holes and can be enclosed to form a massage boot body with a receiving cavity. The contact component 2 is disposed in the receiving cavity.
[0022] Reference Figure 3 The basic structural layer 11 includes a basic layer 111, which can be made of single or multiple materials such as plastic, foam, leather, and metal. In its unfolded state, the basic layer 111 has several raised basic sewing parts 1111 along its circumferential direction on one side in the height direction and a basic boot toe on one side in the width direction. The basic sewing parts 1111 are used to sew together with the temperature structural layer 13 to fix the massage structural layer 12 between the basic structural layer 11 and the temperature structural layer 13. The basic boot toe is arc-shaped and can be rolled up to form the boot shape of the basic structural layer 11.
[0023] To accommodate the massage structure layer 12, the base layer 111 is provided with a first connection hole group 112. The first connection hole group 112 includes a plurality of first connection hole positions 1121 arranged along the height direction of the base layer 111. In this embodiment, the first connection hole positions 1121 are divided into three parallel rows along the height direction of the base layer 111 to facilitate alignment and connection with the massage structure layer 12. In addition, to accommodate the temperature structure layer 13, the first connection hole position 1121 group also includes a first common hole position 1122. The first common hole position 1122 is located below the base layer 111 and is used to connect the massage structure layer 12, the temperature structure layer 13, and the contact component layer 2.
[0024] Reference Figure 4The massage structure layer 12 includes a massage layer 121 and a plurality of massage airbags 122 disposed on the massage layer 121. The massage airbags 122 are TPU airbags, and the plurality of massage airbags 122 are evenly arranged along the width direction of the massage layer 121. Each massage airbag 122 is connected to an airbag nozzle, and the plurality of airbag nozzles are arranged side by side below the massage layer 121 to facilitate the entry and exit of air. It should be noted that the massage structure layer 12 can also massage the feet through mechanical massage, electrical massage, or fluid massage structures.
[0025] To accommodate the base structure layer 11, the massage layer 121 has a second connecting hole group 123. The second connecting hole group 123 includes a plurality of second connecting hole positions 1231 arranged along the height direction of the massage layer 121. The number of second connecting hole positions 1231 is the same as the number of first connecting hole positions 1121 and they correspond one-to-one. A connector (not shown in the figure) connects the second connecting hole positions 1231 and the first connecting hole positions 1121. In this embodiment, the connector is specifically a metal eyelet buckle, also known as a metal grommets. It includes a female buckle and a female buckle. The female buckle passes through the second connecting hole position 1231 and the first connecting hole and connects with the female buckle to achieve installation and fixation. Metal eyelet buckles can be purchased and will not be described further. It is understood that the connector can also be a mechanical snap, sewing thread, button, or Velcro, or can be implemented through heat pressing or high-frequency voltage fusion.
[0026] Correspondingly, the second connecting hole 1231 also includes a second common hole 1232. After being closed, the positions of the first common hole 1122 and the second common hole 1232 correspond to each other for connection. Similarly, the massage layer 121 has a massage boot head, which is arc-shaped. By rolling up the massage boot head, it can be closed to form the boot shape of the massage structure layer 12.
[0027] Reference Figure 5 The temperature structure layer 13 includes a temperature layer 131 and a temperature control component 132 disposed on the temperature layer 131. The temperature control component 132 is used to provide temperature and heat preservation conditions for massage. In this embodiment, the temperature control component 132 is a resistance heating wire, which extends along the contour and internal direction of the temperature layer 131 to have a large heat exchange area, thereby achieving a better temperature control effect. The temperature control component 132 can also be a semiconductor refrigeration component, a fluid heat exchange component, a water bladder, or a paraffin layer, etc., depending on actual needs.
[0028] To accommodate the installation of the base structure layer 11 and the massage structure layer 12, the temperature layer 131 is provided with a third connecting hole group 133. The third connecting hole group 133 includes a third common hole position 1331, and the positions of the first common hole position 1122, the second common hole position 1232, and the third common hole position 1331 correspond one-to-one. A connector (not shown in the figure) connects the first common hole position 1122, the second common hole position 1232, and the third common hole position 1331. In this embodiment, the connector is a metal eyelet buckle.
[0029] To accommodate the basic sewing part 1111, the temperature layer 131 has a plurality of raised temperature sewing parts 1312 along its circumferential direction. The number of basic sewing parts 1111 and temperature sewing parts 1312 are the same and correspond one-to-one. The basic sewing parts 1111 and temperature sewing parts 1312 are connected and fixed by sewing. This arrangement allows the basic sewing parts 1111 and temperature sewing parts 1312 to be fixed by sewing, thereby stably placing the massage structure layer 12 between the basic sewing parts 1111 and temperature sewing parts 1312, ensuring the efficiency of massage force and temperature transmission and the structural stability of the massage device. Similarly, the temperature layer 131 has a temperature boot toe 1311. By rolling up the temperature boot toe 1311, it can be gathered to form the boot shape of the temperature structure layer 13, so that the basic boot toe, massage boot toe, and temperature boot toe 1311 work together to form a boot toe shape.
[0030] Reference Figure 6 The contact component 2 includes a contact boot body 21 that is inserted into and installed within the receiving cavity of the massage boot body. The contact boot body 21 is inserted into the receiving cavity of the massage boot body and is in direct contact with the human body to transmit massage force and temperature. The wall thickness of the contact boot body 21 is at least 0.6 mm. In this embodiment, the contact boot body 21 is made of silicone. Specifically, the contact boot body 21 can be made of TPU, TPE, TPV, TPR, diving material (synthetic rubber foam), etc., so as to achieve recyclability.
[0031] To facilitate the positioning and installation of the contact shoe body 21, the contact shoe body 21 has a contact shoe head 211, which is fitted into the temperature structure layer 13. The contact shoe head 211 has at least one positioning protrusion 2111. In this embodiment, there are two positioning protrusions 2111: one located at the contact shoe head 211 and the other at one end along the length of the contact shoe body 21. Correspondingly, the temperature shoe head 1311 has positioning mounting holes 13111 that mate with the positioning protrusions 2111. The number and position of the positioning mounting holes 13111 correspond one-to-one with the positioning protrusions 2111, and the positioning protrusions 2111 engage or disengage from the positioning mounting holes 13111. With this configuration, the installation of the contact assembly 2 can be quickly completed simply by aligning the positioning protrusions 2111 with the positioning mounting holes 13111, making the installation of the contact assembly 2 and the temperature structure layer 13 convenient and efficient.
[0032] To facilitate wearing by the user, an upper opening 22 is provided on the upper part of the contact boot body 21. The size of the upper opening 22 gradually increases from the end closer to the contact boot body 21 to the end farther away from the contact boot body 21. The upper opening 22 is coated with a nano silicone coating to achieve both a smooth surface feel and the effect of reducing dirt adhesion. The coating can also be made using other materials or processes, such as spraying rubber paint or using UV surface modification processes.
[0033] By providing an upper opening 22, the user can simply align their foot with the opening 22 and insert it to complete the wearing process. Simultaneously, at least one water level sensor 23 is provided along the height direction of the contact boot body 21. The water level sensor 23 is electrically connected to the massage structure layer 12. In this embodiment, there are two water level sensors 23, which can specifically be photoelectric sensors, capacitive sensors, pressure sensors, resistance sensors, and ultrasonic sensors, etc. By providing the water level sensor 23, when hot water is filled into the contact boot body 21 for massage, the water level sensor 23 will monitor the water level in real time and feed it back to the massage structure layer 12. The massage structure layer 12 will adjust and control the massage force according to the water level, which can reduce the leakage of hot water from the contact component 2 and improve the user experience. Exemplary embodiments of this disclosure have been specifically shown and described above. It should be understood that this disclosure is not limited to the detailed structures, arrangements, or implementation methods described herein; rather, this disclosure is intended to cover various modifications and equivalent arrangements contained within the spirit and scope of the appended claims.
Claims
1. A water bath massage structure, characterized in that, The device includes a multi-layer massage assembly (1) and a contact assembly (2) disposed on the multi-layer massage assembly (1); the multi-layer massage assembly (1) includes a base structure layer (11), a massage structure layer (12) and a temperature structure layer (13) disposed sequentially, the base structure layer (11), the massage structure layer (12) and the temperature structure layer (13) are spliced and connected to form a massage boot body with a receiving cavity; the contact assembly (2) includes a contact boot body (21) installed in the receiving cavity, the contact boot body (21) has an upper opening (22) above it, and the contact boot body (21) has at least one water level sensor (23) disposed along its height direction, the water level sensor (23) being electrically connected to the massage structure layer (12).
2. The water bath massage structure according to claim 1, characterized in that, The size of the upper opening (22) gradually increases from the end closer to the contact boot body (21) to the end farther away from the contact boot body (21).
3. The water bath massage structure according to claim 1, characterized in that, The contact boot body (21) has a contact boot head (211), which is fitted and installed in the temperature structure layer (13).
4. The water bath massage structure according to claim 3, characterized in that, The contact shoe head (211) is provided with at least one positioning protrusion (2111); the temperature structure layer (13) includes a temperature layer (131), the temperature layer (131) has a temperature shoe head (1311), the temperature shoe head (1311) is provided with a mounting positioning hole corresponding to the positioning protrusion (2111), and the positioning protrusion (2111) is fitted into the mounting positioning hole.
5. The water bath massage structure according to claim 4, characterized in that, The basic structure layer (11) includes a base layer (111), which has a first connecting hole group (112) for connecting the massage structure layer (12) and the temperature structure layer (13); the base layer (111) has a plurality of basic sewing parts (1111) for connecting the temperature layer (131) along its circumferential direction.
6. The water bath massage structure according to claim 5, characterized in that, The massage structure layer (12) includes a massage layer (121) and a plurality of massage airbags (122) disposed on the massage layer (121). The massage layer (121) has a second connection hole group (123) for connecting the base layer (111) and the temperature layer (131). The second connection hole group (123) is aligned with the first connection hole group (112).
7. The water bath massage structure according to claim 6, characterized in that, The temperature structure layer (13) includes a temperature control component (132) disposed on the temperature layer (131); the temperature layer (131) has a third connection hole group (133) which is aligned with the second connection hole group (123).
8. The water bath massage structure according to claim 5, characterized in that, The temperature layer (131) is provided with a plurality of temperature sewing parts (1312) along its circumferential direction; the number of the basic sewing parts (1111) and the temperature sewing parts (1312) are the same and correspond one-to-one, and the basic sewing parts (1111) and the temperature sewing parts (1312) are connected and fixed by sewing.