Foot massager with detachable face cover
Patent Information
- Application Number
- CN202522394944.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-11
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-11
AI Technical Summary
该面套直接接触用户脚部,在使用过程中极易被汗水、污渍等污染,需要频繁清洗以保持卫生
本实用新型由于面套是“可拆卸地套设在垫体外”,并且环形隔离衬套的一端与面套开口为“可拆卸连接”,用户无需借助工具或复杂操作,即可徒手将面套从足疗机的垫体上拆卸下来进行清洗或更换,实现面套的快速、便捷拆装,这彻底解决了传统一体式结构中面套无法拆卸或拆卸极其困难的痛点,有效避免了汗液、污垢残留导致的卫生问题,极大方便了日常清洁和维护。
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Figure CN224806752U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of massage instrument technology, and in particular to a foot massager with a convenient removable cover. Background Technology
[0002] With the improvement of people's living standards and the enhancement of health awareness, foot massage, as an effective way to relax and maintain health, is becoming increasingly popular. Foot massagers, as a common home massage device, are widely popular due to their convenience and comfort.
[0003] Currently, foot massagers on the market typically have their massage structures (such as airbags and rollers) fixed inside the pad, covered by a cover. This cover comes into direct contact with the user's feet and is easily contaminated by sweat and dirt during use, requiring frequent washing to maintain hygiene. However, most existing foot massager covers are fixed to the internal main structure by being sewn as a whole or through complex connection methods, making disassembly cumbersome and difficult. Utility Model Content
[0004] The purpose of this utility model is to provide a foot massager with a convenient face cover that can be easily removed and replaced, enabling quick and easy removal and installation of the face cover.
[0005] To achieve the above objectives, the solution of this utility model is as follows: A foot massager with an easily removable cover, including The mat, made of flexible material, is used to place under the feet; Inner liner, used to fit around the outer perimeter of the pad; The ring-shaped massage component is fixed to the outside of the inner liner and located on the upper side of the pad. It has a channel for the foot to be inserted. When the foot is inserted into the channel, the ring-shaped massage component can squeeze and massage the periphery of the foot. Control components are used to control the pressure massage of the foot by the ring massage component; The face cover is detachably fitted onto the outside of the inner liner and the ring-shaped massage component. The face cover has openings at both ends in the channel extension direction. An annular isolation bushing, which passes through the channel and covers the inside of the annular massage assembly, separates the foot from the inner surface of the annular massage assembly. One end of the isolation bushing is connected to the edge of the cover opening at either end of the channel, and the other end of the isolation bushing is detachably connected to the edge of the cover opening at the other end of the channel.
[0006] Furthermore, the foot is used to extend into the channel from back to front. One end of the isolation bushing is sewn or integrally connected to the edge of the opening of the cover at the rear end of the channel. The other end of the isolation bushing passes through the channel from the rear end and is detachably connected to the edge of the opening of the cover at the front end of the channel.
[0007] Specifically, the opening edges of the isolation liner and the face cover are detachably connected via a zipper.
[0008] Furthermore, there are two annular massage components, and the annular massage components are annular air bags. The two annular air bags are fixed side by side on the outside of the inner liner and located on the upper side of the pad. The inner side of the annular air bags forms the channel extending from back to front, so that the foot can be inserted from back to front. By inflating and deflating the annular air bags, the periphery of the human foot can be squeezed and massaged. The inner side of the annular air bag is equipped with a foot arch air bag corresponding to the arch of the foot. The foot arch air bag has massage bumps on the side that contacts the sole of the foot. The annular air bag and the foot arch air bag are independent of each other. The control component connects two annular air bags and a foot arch air bag. It can control the inflation and deflation of the annular air bags and the foot arch air bag. The annular air bags inflate to squeeze and massage the periphery of the foot, and the foot arch air bag inflates to drive the massage protrusions to press upward against the sole of the foot to perform acupressure massage.
[0009] Furthermore, the control components include a housing, a control circuit board, an air pump, a first air valve, a second air valve, and a button; the control circuit board, air pump, first air valve, and second air valve are disposed inside the housing; the control circuit board is electrically connected to the air pump, the first air valve, and the second air valve; the button is disposed outside the inner liner and on the left side of the left annular air bag, and the button is electrically connected to the control circuit board. The air pump is connected to the first air valve and the second air valve respectively. The first air valve is connected to the left and right annular air bags respectively through two first air pipes. The second air valve is connected to the two foot air bags inside the left and right annular air bags respectively through two second air pipes.
[0010] Furthermore, a first heating element is provided on the outer surface of the annular air bag. The first heating element is used to heat the feet and is electrically connected to the control circuit board.
[0011] Furthermore, the foot is inserted into the annular air bag from the rear end of the channel. The pad on the rear side of the annular air bag has a leg-resting area for placing the lower leg. A second heating element is provided within the leg-resting area. The second heating element is fixed to the outside of the inner liner of the leg-resting area and is electrically connected to the control circuit board. It is used to heat the lower leg.
[0012] After adopting the above solution, the beneficial effects of this utility model are as follows: Because the cover is "detachably fitted onto the pad body" and one end of the annular isolation bushing is "detachably connected" to the opening of the cover, users can easily remove the cover from the foot massager pad body by hand for cleaning or replacement without the need for tools or complicated operations. This achieves quick and convenient removal and installation of the cover, which completely solves the pain point of traditional one-piece structures where the cover cannot be removed or is extremely difficult to remove. It effectively avoids hygiene problems caused by sweat and dirt residue, and greatly facilitates daily cleaning and maintenance. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall appearance of this utility model; Figure 2 This is a schematic diagram showing the connection between the opening of the faceplate and one end of the isolation bushing of this utility model; Figure 3 This is a schematic diagram showing that the other end of the isolation bushing of this utility model passes through the channel and is detachably connected to the opening of the cover sleeve; Figure 4 This is a schematic diagram of the internal structure of the face mask of this utility model; Figure 5 This is an exploded view of the internal structure of the face mask of this utility model; Figure 6 This is a structural schematic diagram of the annular air bag, foot arch air bag, and massage bumps of this utility model; Figures 7-8 This is a simplified diagram of the posture of the foot massager when in use; Figure 9 This is a schematic diagram of the disassembly port at the bottom of the face cover of this utility model.
[0014] Label Explanation: 1. Foot massager; 10. Pad; 11. Leg resting area; 111. Second heating element; 12. Bottom sponge; 13. Leg pad sponge; 20. Inner liner; 30. Circular massage component; 31. Circular air bag; 311. First heating element; 32. Massage bumps; 33. Foot arch air bag; 40. Control component; 41. Housing; 42. Control circuit board; 43. Air pump; 44. First air valve; 45. Second air valve; 46. Button; 50. Face cover; 51. Opening; 52. Disassembly / removal port; 60. Isolation liner. Detailed Implementation
[0015] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments.
[0016] like Figures 1 to 9 As shown, this embodiment provides a foot massager 1 with a conveniently replaceable face mask 50, including... The mat 10, made of flexible material, is used as a footrest; Inner liner 20, used to fit around the outer periphery of pad 10; The ring massage component 30 is fixed to the outside of the inner liner 20 and located on the upper side of the pad 10. It has a channel for the foot to be inserted. When the foot is inserted into the channel, the ring massage component 30 can squeeze and massage the periphery of the foot. Control component 40 is used to control the ring massage component 30 to squeeze and massage the feet; The face cover 50 is detachably fitted on the outside of the inner liner 20 and the annular massage component 30. The face cover 50 has openings 51 at both ends in the channel extension direction. An annular insulating sleeve 60 passes through the channel and covers the inside of the annular massage assembly 30 to separate the foot from the inner surface of the annular massage assembly 30. One end of the insulating sleeve 60 is connected to the edge of the opening 51 of the faceplate 50 corresponding to either end of the channel, and the other end of the insulating sleeve 60 is detachably connected to the edge of the opening 51 of the faceplate 50 corresponding to the other end of the channel. Specifically, the insulating sleeve 60 is made of a flexible material and is in contact with the skin of the foot, making it more comfortable.
[0017] Specifically, the face cover 50 is made of a flexible material, which is relatively soft and comfortable to contact with human skin. Its shape has a unique design to enhance its aesthetics. The pad 10 fits the shape of the face cover 50. The face cover 50 can be designed into a three-dimensional shape with a cartoon pattern, such as a cloud shape. There are no restrictions on this. After being inserted into the pad 10, it can be used by the user as a pillow when the foot massage function is not in use.
[0018] In a preferred embodiment, the foot is used to extend into the channel from back to front. One end of the isolation bushing 60 is sewn or integrally connected to the edge of the opening 51 of the cover 50 at the rear end of the channel. The other end of the isolation bushing 60 passes through the channel from the rear end and is detachably connected to the edge of the opening 51 of the cover 50 at the front end of the channel.
[0019] In another embodiment, the foot is used to extend into the channel from back to front. One end of the isolation bushing 60 is sewn or integrally connected to the edge of the opening 51 of the faceplate 50 at the front end of the channel. The other end of the isolation bushing 60 passes through the channel from the front end and is detachably connected to the edge of the opening 51 of the faceplate 50 at the rear end of the channel.
[0020] Preferably, the edges of the opening 51 of the isolation bushing 60 and the cover 50 are detachably connected by a zipper.
[0021] Preferably, there are two annular massage components 30, and the annular massage components 30 are annular air bags 31. The two annular air bags 31 are fixed side by side on the outside of the inner liner 20 and located on the upper side of the pad 10. The inner side of the annular air bags 31 forms the channel extending from back to front, so that the foot can be inserted from back to front. By inflating and deflating the annular air bags 31, the periphery of the human foot can be squeezed and massaged. An annular air bag 31 has a foot air bag 33 on the inner side corresponding to the sole of the foot. The foot air bag 33 has massage bumps 32 on the side that contacts the sole of the foot. The annular air bag 31 and the foot air bag 33 are independent of each other. The control component 40 connects two annular air bags 31 and a foot arch air bag 33. It can control the inflation and deflation of the annular air bags 31 and the foot arch air bag 33. The annular air bags 31 inflate to squeeze and massage the periphery of the foot, and the foot arch air bag 33 inflates to drive the massage protrusions 32 to press upward against the sole of the foot to perform acupressure massage. The massage protrusions 32 work in conjunction with the annular air bags 31 to massage the feet, which can improve the massage effect and enhance the massage experience.
[0022] Specifically, the control component 40 includes a housing 41, a control circuit board 42, an air pump 43, a first air valve 44, a second air valve 45, and a button 46. The control circuit board 42, the air pump 43, the first air valve 44, and the second air valve 45 are disposed inside the housing 41. The control circuit board 42 is electrically connected to the air pump 43, the first air valve 44, and the second air valve 45. The button 46 is disposed outside the inner liner 20 and on the left side of the left annular air bag 31, and the button 46 is electrically connected to the control circuit board 42. Preferably, the first air valve 44 and the second air valve 45 are both solenoid valves. The air pump 43 is connected to the first air valve 44 and the second air valve 45 respectively. The first air valve 44 is connected to the left and right annular air bags 31 respectively through two first air pipes. The second air valve 45 is connected to the two foot air bags 33 inside the left and right annular air bags 31 respectively through two second air pipes. The first air valve 44 is controlled by the control circuit board 42, which can independently control the opening and closing of the two first air pipes. The second air valve 45 is controlled by the control circuit board 42, which can independently control the opening and closing of the two second air pipes. Therefore, this embodiment can control the annular air bags 31 and the foot air bags 33 inside them to inflate and deflate separately. The two annular air bags 31 and the two foot air bags 33 can be controlled independently. Therefore, the two annular air bags 31 and the foot air bags 33 can be alternately inflated and deflated, or they can be inflated and deflated and contracted simultaneously. This changes different massage modes and improves the massage effect. Of course, the massage modes are not limited to the above two and can be set according to the actual situation.
[0023] Specifically, it also includes a remote control, a remote control unit, and a control circuit board 42 for communication connection, thereby controlling the expansion and contraction of the annular air bag 31 and the foot arch air bag 33. On this basis, it can be connected to a mobile phone via Bluetooth, and the expansion and contraction of the annular air bag 31 and the foot arch air bag 33 can be controlled through a mobile phone APP.
[0024] Furthermore, a first heating element 311 is provided on the outer surface of the annular air bag 31. The first heating element 311 is used to heat the feet. The first heating element 311 is electrically connected to the control circuit board 42. By heating and massaging the feet, comfort is improved and the user experience is enhanced.
[0025] Furthermore, the foot is inserted into the annular air bag 31 from the rear end of the channel. The pad 10 on the rear side of the annular air bag 31 has a leg resting area 11 for placing the calf. A second heating element 111 is provided within the leg resting area 11. The second heating element 111 is fixed to the outside of the inner liner 20 of the leg resting area 11, and the second heating element 111 is electrically connected to the control circuit board 42. It is used to heat the calf. Specifically, there are two second heating elements 111, which are respectively set at the two calf resting positions. By heating the calf, the user experience is further enhanced.
[0026] like Figure 7 As shown, during use, the user can sit on a chair and insert their feet directly into the channel; their legs do not need to contact the leg rest area 11. Alternatively, as... Figure 8 As shown, the user lies flat with their legs resting on the leg rest area 11 and their feet inserted into the channel. The foot causes the area where the annular air bag 31 is located to swing towards the leg rest area 11, so that the entire pad 10 is in a bent posture, thus fitting the angle between the user's calf and foot, making it convenient for the user to use while lying flat.
[0027] Specifically, the pad 10 includes two layers: a bottom sponge 12 and a leg pad sponge 13. The leg pad sponge 13 is attached to the back side of the upper surface of the bottom sponge 12, corresponding to the leg rest area 11 of the pad 10, thereby raising the leg rest area 11. This creates a height difference between the leg rest area 11 of the pad 10 and the area where the annular air bag 31 is located, with the leg rest area 11 being higher than the area where the annular air bag 31 is located. The inner liner 20 is fitted over the pad 10 composed of the two layers of sponge. The second heating element 111 is located outside the inner liner 20, while the annular air bag 31 is specifically fixed to the outside of the inner liner 20 in the front area of the leg pad sponge 13.
[0028] like Figure 9As shown, specifically, the face cover 50 has a horizontally extending disassembly port 52 at the bottom of the pad 10. This disassembly port 52 can be closed and opened via a zipper. When the face cover 50 is placed over the inner liner 20 and the annular massage component 30, the pad 10 and the inner liner 20 surrounding the pad 10 are inserted into the face cover 50 through the disassembly port 52. The positions of the pad 10 and the inner liner 20 are then aligned with the face cover 50. The annular isolation liner 60 is then pulled to pass through the channel and connect with the face cover 50 via a zipper. The disassembly port 52 at the bottom of the pad 10 is then closed via a zipper. When the face cover 50 needs to be replaced, the disassembly port 52 at the bottom of the pad 10 is opened via a zipper. The zipper is then pulled to disconnect the connection between the isolation liner 60 and the face cover 50. The pad 10 can then be removed.
[0029] The directional terms used in this specification are defined relative to the structures shown in the accompanying drawings. They are relative concepts and may therefore vary depending on their location and usage. Therefore, these or other directional terms should not be interpreted as restrictive.
[0030] The above description is only a preferred embodiment of this utility model and is not intended to limit the design of this case. All equivalent changes made based on the key design of this case shall fall within the protection scope of this case.
Claims
1. A foot massager with a conveniently replaceable face mask, characterized in that: include The mat, made of flexible material, is used to place under the feet; Inner liner, used to fit around the outer perimeter of the pad; The ring-shaped massage component is fixed to the outside of the inner liner and located on the upper side of the pad. It has a channel for the foot to be inserted. When the foot is inserted into the channel, the ring-shaped massage component can squeeze and massage the periphery of the foot. Control components are used to control the pressure massage of the foot by the ring massage component; The face cover is detachably fitted onto the outside of the inner liner and the ring-shaped massage component. The face cover has openings at both ends in the channel extension direction. An annular isolation bushing, which passes through the channel and covers the inside of the annular massage assembly, separates the foot from the inner surface of the annular massage assembly. One end of the isolation bushing is connected to the edge of the cover opening at either end of the channel, and the other end of the isolation bushing is detachably connected to the edge of the cover opening at the other end of the channel.
2. The foot massager with a conveniently replaceable face cover as described in claim 1, characterized in that: The foot is used to extend into the channel from back to front. One end of the isolation bushing is sewn or integrally connected to the edge of the opening of the cover at the rear end of the channel. The other end of the isolation bushing passes through the channel from the rear end and is detachably connected to the edge of the opening of the cover at the front end of the channel.
3. A foot massager with a conveniently replaceable face cover as described in claim 1 or 2, characterized in that: The opening edges of the isolation liner and faceplate are detachably connected by a zipper.
4. A foot massager with a conveniently replaceable face mask as described in claim 1, characterized in that: There are two ring-shaped massage components, and the ring-shaped massage components are ring-shaped air bags. The two ring-shaped air bags are fixed side by side on the outside of the inner liner and located on the upper side of the pad. The inner side of the ring-shaped air bags forms the channel extending from back to front, so that the foot can be inserted from back to front. By inflating and deflating the ring-shaped air bags, the periphery of the human foot can be squeezed and massaged. The inner side of the annular air bag is equipped with a foot arch air bag corresponding to the arch of the foot. The foot arch air bag has massage bumps on the side that contacts the sole of the foot. The annular air bag and the foot arch air bag are independent of each other. The control component connects two annular air bags and a foot arch air bag. It can control the inflation and deflation of the annular air bags and the foot arch air bag. The annular air bags inflate to squeeze and massage the periphery of the foot, and the foot arch air bag inflates to drive the massage protrusions to press upward against the sole of the foot to perform acupressure massage.
5. A foot massager with a conveniently replaceable face mask as described in claim 4, characterized in that: The control assembly includes a housing, a control circuit board, an air pump, a first air valve, a second air valve, and a button; the control circuit board, air pump, first air valve, and second air valve are disposed inside the housing; the control circuit board is electrically connected to the air pump, the first air valve, and the second air valve; the button is disposed outside the inner liner and on the left side of the left annular air bag, and the button is electrically connected to the control circuit board. The air pump is connected to the first air valve and the second air valve respectively. The first air valve is connected to the left and right annular air bags respectively through two first air pipes. The second air valve is connected to the two foot air bags inside the left and right annular air bags respectively through two second air pipes.
6. A foot massager with a conveniently replaceable face mask as described in claim 5, characterized in that: A first heating element is provided on the outer surface of the annular air bag. The first heating element is used to heat the feet. The first heating element is electrically connected to the control circuit board.
7. A foot massager with a conveniently replaceable face mask as described in claim 5, characterized in that: The foot is inserted into the annular air bag from the rear end of the channel. The pad on the rear side of the annular air bag has a leg resting area for placing the lower leg. A second heating element is provided within the leg resting area. The second heating element is fixed to the outside of the inner liner of the leg resting area and is electrically connected to the control circuit board. It is used to heat the lower leg.