Liquid storage member and wearable electric stimulation massage device
By designing a liquid reservoir and a movable puncture point in the wearable electrical stimulation massage device, the problems of dryness and hand injury at the contact points of the electrode components are solved, thus maintaining skin moisture and improving safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-23
- Publication Date
- 2026-03-20
AI Technical Summary
Existing flexible wearable massage devices are prone to dryness issues at the contact points between the electrode components and the human body, and their seepage structure poses a risk of hand injury.
A liquid reservoir is designed, comprising a liquid reservoir shell and a liquid-absorbing layer, combined with a blocking element and a movable puncture part. The puncture part moves towards the electrical stimulation massage surface under the action of external force, ensuring that the conductive liquid flows to the electrode assembly, keeping the skin moist, and the blocking element prevents the puncture part from being directly exposed.
It effectively keeps the skin moisturized, ensures rapid conduction between the electrode components and the human body, enhances the user experience, and avoids punctures to the skin or fingers, thus improving safety.
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Figure CN115120870B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electrostimulation therapy products, and in particular to a liquid reservoir and a wearable electrostimulation massage device. Background Technology
[0002] As the public pays increasing attention to health issues, various massage devices are becoming increasingly popular in the market as instruments for improving sub-health conditions. Electro-stimulation massagers are a type of massager that uses electrical stimulation. They typically consist of a wearable body and electrode pads connected to the wearable body. The massage principle of the electrode pads is mainly to provide minute electrical stimulation to the body after being electrified, thereby achieving a massage effect.
[0003] However, due to differences in individual skin conditions, the current density distribution is uneven when electrical stimulation is applied to the human body, which can easily lead to some areas not being massaged while others experience a stinging sensation. Although there are existing technologies to address these skin problems, in the case of flexible massagers that can absorb liquid, the existing perforation structures pose a risk of injuring the hands or skin. Summary of the Invention
[0004] The purpose of this invention is to solve the dryness problem of the electrode components in contact with the human body in existing flexible wearable massage devices, and the technical problem that the puncture structure in wearable electrical stimulation massage devices with seepage function is prone to injuring the hand.
[0005] To address the aforementioned technical problems, embodiments of the present invention provide a liquid storage device, employing the following technical solution:
[0006] The liquid storage device includes:
[0007] A liquid storage shell, wherein a liquid storage cavity is formed inside the liquid storage shell, and a conductive liquid is stored in the liquid storage cavity;
[0008] A first absorbent layer and / or a second absorbent layer, wherein the first absorbent layer is disposed on the outer surface of the liquid storage shell and is used to absorb the conductive liquid flowing out from the liquid storage cavity, and the second absorbent layer is disposed inside the liquid storage cavity.
[0009] Furthermore, in a preferred embodiment, a limiting connection structure is formed on the liquid storage shell, and the liquid storage component is constrained and mounted on the wearable electrical stimulation massager by the limiting connection structure; and / or,
[0010] The first absorbent layer is a sponge layer or an absorbent cloth layer, and / or, the second absorbent layer is a sponge layer or an absorbent cloth layer; and / or,
[0011] The liquid storage shell has an outer circumferential surface adjacent to the top surface for being pressed, the outer circumferential surface of the liquid storage shell is formed with a drainage groove for draining the conductive liquid, and / or the first liquid absorption layer is arranged at least on the top surface of the liquid storage shell.
[0012] Further, in some preferred embodiments of the present application, the limiting connection structure is a magnetic member arranged on the liquid storage shell; or the limiting connection structure is an adhesive layer arranged on the liquid storage shell; or the limiting connection structure is a buckle or a clamping groove arranged on the liquid storage shell.
[0013] To solve the above technical problems, the present application also provides a wearable electric stimulation massage device, which adopts the following technical scheme: the wearable electric stimulation massage device comprises:
[0014] a flexible wearable body having a skin-facing surface and a skin-opposing surface;
[0015] an electrode assembly having an electric stimulation massage surface exposed on the skin-facing surface, the electrode assembly and / or the flexible wearable body having a placement groove arranged close to or on the electric stimulation massage surface, the placement groove being used for limiting installation of the liquid storage member according to any one of claims 1-3;
[0016] a blocking member fixedly installed in the placement groove, or the blocking member forms a bottom groove wall of the placement groove, and the blocking member is provided with a first avoiding through hole;
[0017] a piercing structure comprising a piercing part located on a side of the blocking member away from the electric stimulation massage surface, the piercing part being arranged corresponding to the first avoiding through hole, the piercing part being movably arranged in a thickness direction of the flexible wearable body, the piercing part being used for moving towards the electric stimulation massage surface when subjected to an external force, so as to pierce the liquid storage member in the placement groove through the first avoiding through hole, so that the conductive liquid in the liquid storage member flows to the electric stimulation massage surface.
[0018] Further, in some preferred embodiments of the present application, when the blocking member is fixedly installed in the placement groove, the bottom groove wall of the placement groove is provided with a second avoiding through hole arranged corresponding to the first avoiding through hole, and the piercing part is arranged corresponding to the second avoiding through hole; and / or,
[0019] The piercing structure further comprises a base plate, and the piercing part is arranged on the base plate; the base plate is movably mounted on the slot wall of the placement slot, so that the piercing part is movably arranged in the thickness direction of the flexible wearing body; or the base plate is mounted on the slot wall of the placement slot, and the base plate at least partially has deformability, so that the piercing part is movably arranged in the thickness direction of the flexible wearing body.
[0020] Further, in a preferred scheme of some embodiments, the wearable electric stimulation massage device further comprises an auxiliary moving mechanism, the auxiliary moving mechanism comprises a driving part, the driving part is located on the side of the piercing part away from the electric stimulation massage surface, and the driving part is used to drive the piercing part to move towards or away from the electric stimulation massage surface.
[0021] Further, in a preferred scheme of some embodiments, the driving part is an air bag, the air bag is arranged outside the slot wall of the placement slot, and the air bag is used to drive the piercing part to move towards the liquid storage member when inflated; and / or,
[0022] The piercing structure is mounted on the driving part.
[0023] Further, in a preferred scheme of some embodiments, the driving part is an air bag, the air bag is arranged outside the slot wall of the placement slot, and the air bag is used to drive the piercing part to move towards the liquid storage member when inflated.
[0024] The electrode assembly comprises an electrode sheet with the electric stimulation massage surface, the electrode sheet is mounted on the skin-facing surface, and the projection of the air bag on the electrode sheet at least partially coincides with the electrode sheet, so that the air bag is used to drive the electrode assembly to move towards the target part when inflated.
[0025] Further, in a preferred scheme of some embodiments, the piercing structure further comprises an elastic member, one end of the elastic member acts on the blocking member, and the other end of the elastic member acts on the piercing part, so that the piercing part has a restoring tendency.
[0026] Further, in a preferred scheme of some embodiments, at the maximum position of the piercing part extending into the first avoiding through hole, the end of the piercing part is lower than the electric stimulation massage surface.
[0027] Further, in some preferred embodiments of the present application, the electrode assembly comprises an electrode sheet having the electrically stimulating massage surface, the electrode sheet is mounted on the proximal skin surface, the wearable electrically stimulating massage device further comprises a placing member, the placing member is mounted on the flexible wearing body, the placing slot is formed on the placing member, the electrically stimulating massage surface is provided with a mounting opening corresponding to the placing slot, so that the placing slot is exposed on the electrically stimulating massage surface.
[0028] Further, in some preferred embodiments of the present application, the electrode sheet comprises a bending portion provided around the mounting opening, the bending portion is connected to the side surface of the placing slot, or the bending portion is connected to the circumferential surface of the placing member.
[0029] Further, in some preferred embodiments of the present application, the wearable electrically stimulating massage device further comprises a supporting member, the supporting member is mounted on the flexible wearing body, the supporting member has a supporting slot, the placing member is mounted in the supporting slot, the supporting member has a supporting surface facing the electrode sheet, the electrode sheet is supported on the supporting surface, and the bending portion is connected between the placing member and the supporting slot.
[0030] Further, in some preferred embodiments of the present application, the placing slot is provided on the electrically stimulating massage surface, and the electrically stimulating massage surface protrudes from the proximal skin surface.
[0031] Further, in some preferred embodiments of the present application, the flexible wearing body comprises a surface layer, a bottom layer, and an elastic filling layer, the surface layer is connected to the circumferential edge of the bottom layer, the proximal skin surface is provided on the surface layer, and the distal skin surface is provided on the bottom layer; the elastic filling layer is at least partially filled between the surface layer and the bottom layer.
[0032] The electrode sheet is connected to the surface layer and / or the elastic filling layer.
[0033] Further, in some preferred embodiments of the present application, the wearable electrically stimulating massage device further comprises a placing member, the placing member is mounted on the elastic filling layer, the placing slot is formed on the placing member, and the electrically stimulating massage surface is provided with a mounting opening corresponding to the placing slot, so that the placing slot is exposed on the electrically stimulating massage surface.
[0034] Further, in some preferred embodiments of the present application, the elastic filling layer comprises a supporting layer and an inner filling layer provided between the surface layer and the bottom layer, the surface layer is provided with a connecting opening, the supporting layer is provided on the side of the inner filling layer facing the proximal skin surface, the supporting layer is provided in the connecting opening, the supporting layer protrudes from the proximal skin surface, the placing member is mounted on the supporting layer, and the electrode sheet is supported on the supporting layer, so that the electrically stimulating massage surface protrudes from the proximal skin surface; or,
[0035] The elastic filling layer is arranged between the surface layer and the bottom layer, the surface layer is provided with a connecting port, the placing part is connected to the elastic filling layer, the placing part protrudes from the near-skin surface through the connecting port, the placing groove is arranged on the side of the placing part protruding from the near-skin surface, and the electrode sheet is supported on the placing part, so that the electric stimulation massage surface protrudes from the near-skin surface.
[0036] Further, in a preferred scheme of some embodiments, the wearable electric stimulation massage device further comprises a heating assembly located outside the placing groove; the heating assembly comprises a local heating part arranged corresponding to the placing groove, for heating the conductive liquid in the liquid storage part in the placing groove.
[0037] Compared with the prior art, the liquid storage part and the wearable electric stimulation massage device provided by the embodiments of the present application have the following beneficial effects:
[0038] The wearable electric stimulation massage device is provided with a blocking part and a piercing part movably arranged in the thickness direction of the flexible wearable body, the blocking part is provided with a first avoiding hole, the piercing part is located on the side of the blocking part away from the electric stimulation massage surface, and the piercing part is arranged corresponding to the first avoiding hole. Understandably, when the piercing part is subjected to an external force, the piercing part moves towards the electric stimulation massage surface, so that the piercing part pierces the liquid storage part in the placing groove through the first avoiding hole, so that the conductive liquid in the liquid storage part flows to the electric stimulation massage surface, which helps to ensure the moisture of the skin and the rapid conduction between the electrode assembly and the human body, so that the massage stimulation received by the user is more stable, and the user's use experience is improved. At the same time, the blocking part can prevent the piercing part from being directly exposed to the placing groove, preventing the piercing part from being pierced when the skin or fingers are inserted into the placing groove, thereby ensuring the safety of the user. BRIEF DESCRIPTION OF DRAWINGS
[0039] In order to more clearly illustrate the schemes in the present application, the drawings needed in the following embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor. Among them:
[0040] Figure 1 is a perspective structural schematic view of the wearable electric stimulation massage device in an embodiment of the present application;
[0041] Figure 2 is an exploded structural schematic view of the wearable electric stimulation massage device in the embodiment of the present application; Figure 1
[0042] Figure 3 is a perspective structural schematic view of the wearable electric stimulation massage device in the embodiment of the present application; Figure 2 Perspective view of the middle electrode assembly Figure 1 ;
[0043] Figure 4 is Figure 3 Exploded view of the middle electrode assembly
[0044] Figure 5 is Figure 3 Sectional view of the middle electrode assembly
[0045] Figure 6 is the structure of the blocking member in an embodiment of the present application Figure 1 ;
[0046] Figure 7 is the structure of the blocking member in an embodiment of the present application Figure 2 ;
[0047] Figure 8 is the structure of the piercing structure in an embodiment of the present application Figure 1 , wherein the substrate is movable
[0048] Figure 9 is the structure of the piercing structure in an embodiment of the present application Figure 2 , wherein the substrate is deformable
[0049] Figure 10 is the use state of the air bag in an embodiment of the present application Figure 1 , wherein the air bag is in an inflated state
[0050] Figure 11 is the use state of the air bag in an embodiment of the present application Figure 2 , wherein the air bag is in a deflated state
[0051] Figure 12 is the structure of the placement groove in an embodiment of the present application Figure 1 ;
[0052] Figure 13 is the structure of the placement groove in an embodiment of the present application Figure 2 ;
[0053] Figure 14 is the structure of the placement groove in an embodiment of the present application Figure 3 ;
[0054] Figure 15 is the sectional structure of the liquid storage member
[0055] The reference signs in the drawings are as follows:
[0056] 100, wearable electric stimulation massage device; 200, liquid storage member
[0057] 110, flexible wearing body; 111, surface layer; 1111, connecting port; 112, bottom layer; 113, elastic filling layer; 1131, support layer; 1132, inner filling layer;
[0058] 120, electrode assembly; 121, electrode sheet; 1211, bending part;
[0059] 130, blocking piece; 131, first avoiding through hole;
[0060] 140, piercing structure; 141, piercing part; 142, base plate;
[0061] 150, placing groove; 151, second avoiding through hole;
[0062] 160, driving part / air bag;
[0063] 170, elastic piece;
[0064] 180, placing piece;
[0065] 190, support piece;
[0066] 210, liquid storage shell;
[0067] 220, liquid storage cavity. DETAILED DESCRIPTION
[0068] 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 in the description herein is for describing particular embodiments only and is not intended to be limiting of the application, for example, the terms "length", "width", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like specify relative positions according to the orientations shown in the drawings and are for convenience not for limitation of the present technical solution.
[0069] The terms "include", "comprise" and "have" in the specification and claims of the present application and the above description of the drawings are intended to cover non-exclusive inclusion; the terms "first", "second" and the like in the specification and claims of the present application or the above description of the drawings are used to distinguish different objects, not to describe a specific order. The meaning of "a plurality of" is two or more, unless otherwise explicitly specified.
[0070] The description and drawings of the present application and the above-described figure description, when an element is referred to as being "fixed" or "mounted" or "set" or "connected" on another element, it can be directly or indirectly connected on the other element. For example, when an element is referred to as being "connected" on another element, it can be directly or indirectly connected to the other element.
[0071] In addition, the reference herein to "embodiments" means that a particular feature, structure, or characteristic described in connection with an embodiment can be included in at least one embodiment of the application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor does it necessarily refer to a particular embodiment in an exclusive sense. It is expressly understood that the embodiments described herein can be combined with each other in various combinations.
[0072] The embodiment of the present application provides a wearable electric stimulation massage device 100 for electric stimulation massage of human body. The wearable electric stimulation massage device 100 can include, but is not limited to, a neck-hung massage instrument, a shoulder-hung massage instrument, a ring-arm massage instrument, a ring-leg massage instrument, a waist massage instrument, and the like. Such a wearable electric stimulation massage device 100 generally includes a wearable main body adapted to be worn or worn on the human body, and an electrode assembly 120 mounted on the wearable main body, which is used for massage of the human body when the wearable main body is worn on the human body (corresponding parts).
[0073] Specifically, when the wearable electric stimulation massage device 100 is a neck-hung massage instrument, the wearable main body is a wearing support which defines a neck-wrapped space for being hung on the neck, so that the electrode assembly 120 is used for electric stimulation massage of the neck; when the wearable electric stimulation massage device 100 is a shoulder-hung massage instrument, the wearable main body is a shoulder-hung main body for being hung on the shoulder, so that the electrode assembly 120 is used for electric stimulation massage of the shoulder (such as trapezius muscle and the like); when the wearable electric stimulation massage device 100 is a ring-arm massage instrument, the wearable main body defines a ring-arm space for being worn on the forearm or the upper arm, so that the electrode assembly 120 is used for electric stimulation massage of the arm; when the wearable electric stimulation massage device 100 is a ring-leg massage instrument, the wearable main body defines a ring-leg space for being worn on the leg (lower leg or upper leg), so that the electrode assembly 120 is used for electric stimulation massage of the leg; when the wearable electric stimulation massage device 100 is a waist massage instrument, the wearable main body defines a waist-wrapped space for being wrapped and worn on the waist, so that the electrode assembly 120 is used for electric stimulation massage of the waist, and the like.
[0074] In order to facilitate the explanation of the present application, the following mainly takes the wearable electric stimulation massage device 100 as a waist massage instrument as an example for description, but this does not limit the present application.
[0075] AsFigures 1 to 4 As shown, the wearable electric stimulation massage device 100 comprises a flexible wearing body 110, an electrode assembly 120, a blocking piece 130, and a piercing structure 140. The flexible wearing body 110 has a skin-close side and a skin-away side, wherein the skin-close side is the side of the flexible wearing body 110 close to the human body skin, and the skin-away side is the side of the flexible wearing body 110 away from the human body skin. It should be noted that the flexible wearing body 110 has flexible deformation, and can be worn around the waist of the human body to adapt to the waist contours and sizes of different users, expand the user range, and thus meet the needs of users of different body types.
[0076] The electrode assembly 120 is installed on the flexible wearing body 110, and the electrode assembly 120 has an electric stimulation massage surface (not shown in the figure) exposed on the skin-close side, which is used to output an electric pulse signal to enable electric stimulation massage on the human body. It can be understood that after the flexible wearing body 110 is worn around the waist of the human body, a tightening force is generated on the surface of the flexible wearing body 110, so that the electric stimulation massage surface of the electrode assembly 120 is tightly pressed against the massage site. After being electrified, the electrode assembly 120 can form a current loop with the human body at the massage site, thereby achieving the effect of electric stimulation massage.
[0077] In the embodiment, as shown in the figure, the number of the electrode assembly 120 is two. Of course, in other embodiments, in order to better massage the massage site, more than two electrode assemblies 120 can be provided, so that the wearable electric stimulation massage device 100 can massage multiple sites at a time, or realize multiple massage modes, thereby improving the massage effect. Figure 1
[0078] In addition, the electrode assembly 120 and / or the flexible wearing body 110 has a placement groove 150 arranged close to the electric stimulation massage surface, and the placement groove 150 is used to limit the installation of a liquid storage member 200. Specifically, in one optional embodiment, the electrode assembly 120 has a placement groove 150 arranged close to the electric stimulation massage surface; or, in another optional embodiment, the flexible wearing body 110 has a placement groove 150 arranged close to the electric stimulation massage surface; or, in yet another optional embodiment, both the electrode assembly 120 and the flexible wearing body 110 have a placement groove 150 arranged close to the electric stimulation massage surface.
[0079] In addition, in one optional embodiment, as shown in the figures, Figure 6 and Figure 7 As shown, the blocking piece 130 is fixedly installed in the placement groove 150. Alternatively, in another optional embodiment, the blocking piece 130 forms a bottom groove wall of the placement groove 150. The blocking piece 130 is provided with a first avoiding through hole 131, and the piercing structure 140 includes a piercing part 141 located on a side of the blocking piece 130 away from the electric stimulation massage surface. The piercing part 141 is arranged corresponding to the first avoiding through hole 131 and is movably arranged in the thickness direction of the flexible wearable body 110.
[0080] Understandably, when the piercing part 141 is subjected to an external force, the piercing part 141 moves towards the electric stimulation massage surface to pierce the storage liquid piece 200 in the placement groove 150 through the first avoiding through hole 131, so that the conductive liquid in the storage liquid piece 200 flows to the electric stimulation massage surface, thereby ensuring the moisture of the skin and the rapid conduction between the auxiliary electrode assembly 120 and the human body.
[0081] It should be noted that, on the one hand, when the storage liquid piece 200 is not limitedly installed in the placement groove 150, the blocking piece 130 can prevent the user's fingers or skin from extending into the placement groove 150 and being pricked by the piercing part 141; on the other hand, when the user replaces the storage liquid piece 200, the blocking piece 130 can also prevent the user's fingers or skin from extending into the placement groove 150 and being pricked by the piercing part 141. Thus, the safety of the wearable electric stimulation massage device 100 is improved, and the user's experience is improved.
[0082] Specifically, the piercing part 141 can be at least one of a needle, a bayonet or a cone. For example, the piercing part 141 is a needle, which is relatively sharp and small, and only a small force is needed to pierce the storage liquid piece 200 to make the conductive liquid inside flow out. Alternatively, the piercing part 141 is a bayonet, which leaves a large hole after piercing the storage liquid piece 200, so that the conductive liquid in the storage liquid piece 200 can quickly flow out to wet the electric stimulation massage surface and the human skin. Preferably, the piercing part 141 is a cone, which is relatively sharp and leaves a large hole after piercing the storage liquid piece 200, so that the conductive liquid flows out quickly.
[0083] In summary, compared with the prior art, the wearable electric stimulation massage device 100 has at least the following beneficial effects: the wearable electric stimulation massage device 100 is provided with a blocking piece 130 and a puncture part 141 movably arranged in the thickness direction of the flexible wearable body 110, wherein the first avoiding hole is arranged on the blocking piece 130, the puncture part 141 is located on the side of the blocking piece 130 away from the electric stimulation massage surface, and the puncture part 141 is arranged corresponding to the first avoiding through hole 131. It can be understood that when the puncture part 141 is subjected to an external force, the puncture part 141 moves towards the electric stimulation massage surface to make the puncture part 141 pierce the storage liquid piece 200 in the placement groove 150 through the first avoiding through hole 131, so that the conductive liquid inside the storage liquid piece 200 flows to the electric stimulation massage surface, which is beneficial to ensure the moisture of the skin and the rapid conduction between the auxiliary electrode assembly 120 and the human body, and then the massage stimulation received by the user is more stable, which is beneficial to improve the user experience.
[0084] In order for those skilled in the art to better understand the present application, the following will combine the drawings of the present application to further describe the technical solutions in the embodiments of the present application. Figures 1 to 15 The technical solutions in the embodiments of the present application are clearly and completely described.
[0085] Further, as a specific embodiment in some embodiments of the present application, as shown in Figure 6 When the blocking piece 130 is fixedly installed in the placement groove 150, the second avoiding through hole 151 corresponding to the first avoiding through hole 131 is arranged on the bottom groove wall of the placement groove 150, and the puncture part 141 is arranged corresponding to the second avoiding through hole 151, so that the puncture part 141 can pierce the storage liquid piece 200 in the placement groove 150 through the blocking piece 130. It should be noted that the puncture part 141 is arranged corresponding to the second avoiding through hole 151, which includes being arranged on the side of the bottom groove wall of the placement groove 150 towards the electric stimulation massage surface, and also includes being arranged in the second avoiding through hole 151.
[0086] It can be understood that when the puncture part 141 is subjected to an external force, the puncture part 141 moves towards the electric stimulation massage surface, and the puncture part 141 sequentially passes through the second avoiding through hole 151 and the first avoiding through hole 131, so as to pierce the storage liquid piece 200 in the placement groove 150, so that the conductive liquid inside the storage liquid piece 200 flows to the electric stimulation massage surface.
[0087] Further, as a specific embodiment in some embodiments of the present application, as shown in Figure 7 and Figure 8As shown, the piercing structure 140 further comprises a substrate 142, which is movably mounted on the slot wall of the placement slot 150, and the piercing portion 141 is arranged on the substrate 142, so that the piercing portion 141 is movably arranged in the thickness direction of the flexible wearing body 110.
[0088] As can be understood, when the substrate 142 is subjected to an external force in the direction towards the blocking member 130, the substrate 142 can move in the direction towards the blocking member 130, so that the piercing portion 141 passes through the first avoiding through hole 131 to pierce the liquid storage member 200; when the substrate 142 is subjected to an external force in the direction away from the blocking member 130, the substrate 142 can move in the direction away from the blocking member 130, so that the piercing portion 141 returns to the initial position, thereby avoiding the piercing portion 141 being exposed in the placement slot 150 to scratch the fingers or skin of the user.
[0089] Alternatively, in another optional embodiment, as shown in Figure 9 the substrate 142 is mounted on the slot wall of the placement slot 150, and the substrate 142 at least partially has deformability, so that the piercing portion 141 is movably arranged in the thickness direction of the flexible wearing body 110. As can be understood, when the substrate 142 is subjected to an external force, the substrate 142 elastically deforms under the force, and the elastic portion of the substrate 142 moves in the direction towards the blocking member 130 until the piercing portion 141 passes through the first avoiding through hole 131 to pierce the liquid storage member 200. When the external force on the substrate 142 is removed, the substrate 142 moves in the direction away from the piercing portion 141 due to the counterforce generated by the elastic deformation, and returns to the initial position, i.e., the piercing portion 141 returns to the initial position, thereby avoiding the piercing portion 141 being exposed in the placement slot 150 to scratch the fingers or skin of the user.
[0090] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, as shown in Figure 10 and Figure 11 the wearable electric stimulation massage device 100 further comprises an auxiliary moving mechanism, which comprises a driving portion 160 located on the side of the piercing portion 141 away from the electric stimulation massage surface, and the driving portion 160 is used to drive the piercing portion 141 to move in the direction towards or away from the electric stimulation massage surface.
[0091] In the embodiment, the driving part 160 is an air bag, the air bag 160 is arranged outside the slot wall of the placing slot 150, and the air bag 160 is used to drive the piercing part 141 to move towards the liquid storage 200 when the air bag 160 is inflated. It can be understood that when the air bag 160 is inflated, the outer surface of the air bag 160 acts on the piercing part 141, and as the volume of the air bag 160 increases, the piercing part 141 gradually moves towards the liquid storage 200, so that the piercing part 141 pierces the liquid storage 200 in the placing slot 150 through the first avoiding through hole 131, and the conductive liquid in the liquid storage 200 flows to the electric stimulation massage surface;
[0092] When the air bag 160 is deflated, as the volume of the air bag 160 gradually decreases, the piercing part 141 gradually moves away from the liquid storage 200, so that the piercing part 141 returns to the initial position, thereby avoiding the piercing part 141 exposed in the placing slot 150, causing scratches on the fingers or skin of the user.
[0093] It should be noted that the above-mentioned acting on can be direct action, for example, the piercing part 141 is fixedly connected to the air bag 160, or can be indirect action, for example, the piercing part 141 abuts against the air bag 160. As long as the piercing part 141 can be driven to move towards or away from the electric stimulation massage surface.
[0094] For example, the piercing structure 140 is installed on the driving part 160, so that the driving part 160 directly acts on the piercing part 141. Specifically, the piercing part 141 is fixedly connected to the outer surface of the air bag 160, wherein the fixed connection can be adhesive bonding, of course, in other embodiments, other suitable fixed connection methods can also be used, the present application does not limit this, and those skilled in the art can adaptively adjust it.
[0095] It should be noted that the wearable electric stimulation massage device 100 can also not be provided with an auxiliary moving mechanism, and the piercing part 141 can be directly squeezed by the tightening force generated when the flexible wearable body 110 is worn on the human body, so that the piercing part 141 moves towards the liquid storage 200, thereby piercing the liquid storage 200 in the placing slot 150, so that the conductive liquid in the liquid storage 200 flows to the electric stimulation massage surface.
[0096] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the electrode assembly 120 includes an electrode sheet 121 having an electric stimulation massage surface, the electrode sheet 121 is installed on the skin surface, and the projection of the air bag 160 on the electrode sheet 121 at least partially overlaps the electrode sheet 121, so that the air bag 160 is used to drive the electrode assembly 120 to move towards the target part when the air bag 160 is inflated.
[0097] It can be understood that when the air bag 160 is inflated, as the volume of the air bag 160 increases, the outer surface of the air bag 160 at least partially acts on the electrode sheet 121 to drive the electrode sheet 121 to gradually move towards the massage site, that is, to drive the electrode assembly 120 to gradually move towards the massage site, thereby avoiding a gap between the electric stimulation massage surface and the massage site, ensuring close contact between the electric stimulation massage surface and the massage site, and achieving better massage effect.
[0098] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, as shown in Figure 7 The piercing structure 140 further includes an elastic member 170, one end of the elastic member 170 acting on the blocking member 130, and the other end acting on the piercing portion 141, so that the piercing portion 141 has a restoring tendency. It should be noted that the above-mentioned acting on can be direct action (such as being connected to the blocking member 130, being connected to the piercing portion 141), or can also be indirect action (such as abutting against the blocking member 130, abutting against the piercing portion 141).
[0099] It can be understood that when an external force acts on the piercing portion 141, the piercing portion 141 moves towards the blocking member 130, at this time, the piercing portion 141 is pressed to compress the elastic member 170, and the elastic member 170 is compressed under force until the piercing portion 141 pierces the liquid storage member 200. When the external force acting on the piercing portion 141 is removed, the piercing portion 141 moves away from the blocking member 130 due to the reaction force of the elastic member 170, and returns to the initial position, thereby avoiding the direct exposure of the piercing portion 141 in the placement groove 150, and causing scratches on the user's fingers or skin.
[0100] In addition, when the external force acting on the piercing portion 141 is removed, the elastic member 170 can ensure that the piercing portion 141 is always kept in the position of the blocking member 130, avoiding the direct exposure of the piercing portion 141 in the placement groove 150, and preventing the piercing portion 141 from causing scratches on the user's fingers or skin.
[0101] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the piercing portion 141 is at the maximum position of extending into the first avoiding through hole 131, and the end of the piercing portion 141 is lower than the electric stimulation massage surface, so as to avoid that the piercing portion 141 extends too deep into the placement groove 150 and protrudes from the electric stimulation massage surface to scratch the surface of the human skin.
[0102] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, as shown in Figure 5 and Figure 12As shown, the electrode assembly 120 includes an electrode sheet 121 having an electric stimulation massage surface, the electrode sheet 121 is installed on the near-skin surface so that the electric stimulation massage surface of the electrode sheet 121 is in close contact with the human skin. It should be noted that the electrode sheet 121 is a flexible electrode sheet 121 which can be deformed along with the flexible wearable body 110. For example, the electrode sheet 121 can be a conductive film (such as a PET film), a PU conductive sheet, a conductive rubber, a conductive silicone, a conductive cloth, or a conductive sponge, etc.
[0103] In this way, the flexible electrode sheet 121 has good conformability, that is, the flexible electrode sheet 121 can be deformed along with the deformation of the flexible wearable body 110, can better fit the human skin, and improve the massage comfort. Moreover, the flexible electrode sheet 121 will not have a stress concentration problem with the flexible wearable body 110, so as to ensure the connection strength of the flexible electrode sheet 121 and the flexible wearable body 110.
[0104] Among them, in order to be able to shape the liquid storage piece 200, the wearable electric stimulation massage device 100 further includes a placing piece 180, the placing piece 180 is installed on the flexible wearable body 110, and the placing groove 150 is formed in the placing piece 180. Specifically, the groove type of the placing groove 150 is irregular or conical, and the shape of the liquid storage piece 200 is adapted to the placing groove 150, so that the liquid storage piece 200 can be accommodated in the placing groove 150 in a fixed posture.
[0105] In addition, the electric stimulation massage surface is provided with a mounting port (not shown in the figure) corresponding to the placing groove 150, so that the placing groove 150 is exposed on the electric stimulation massage surface. It can be understood that after the liquid storage piece 200 is limitedly installed in the placing groove 150, the liquid storage piece 200 can be exposed on the electric stimulation massage surface through the mounting port. That is, after the flexible wearable body 110 is worn around the waist of the human body, the electric stimulation massage surface is tightly pressed on the massage part, and the liquid storage piece 200 can also be tightly pressed on the massage part, so that after the liquid storage piece 200 is pierced by the piercing part 141, the conductive liquid in the liquid storage piece 200 can flow to the electric stimulation massage surface and the massage part, thereby wetting the skin in contact with the electric stimulation massage surface.
[0106] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, in order to improve the stability of the installation of the electrode sheet 121, the electrode sheet 121 includes a bending part 1211 provided on the periphery of the mounting port, and the bending part 1211 is connected to the side surface of the placing groove 150. For example, the bending part is bonded to the side surface of the placing groove 150 by glue, so as to improve the stability of the installation of the electrode sheet 121. Of course, in other embodiments, welding, or snap connection, etc. can also be used, and the present application does not limit this, and those skilled in the art can adaptively adjust it.
[0107] It can be understood that after the flexible wearing body 110 is worn around the waist of a human body, the electrode sheet 121 will be flexibly deformed together with the flexible wearing body 110, at this time, the electrode sheet 121 generates an elastic force due to the flexible deformation, so that the electrode sheet 121 has a tendency to move. However, through the fixed connection of the bending part 1211 and the side surface of the placement groove 150, the movement of the electrode sheet 121 can be avoided, thereby reducing the risk of the electrode sheet 121 falling off due to excessive flexible deformation, and strengthening the stability of the installation of the electrode sheet 121.
[0108] Alternatively, in another optional embodiment, the bending part 1211 is connected to the circumferential side surface of the placement piece 180, and the specific arrangement mode can refer to the above-mentioned embodiments, which will not be described one by one here.
[0109] Further, as shown in Figures 12 to 14 as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the wearable electric stimulation massage device 100 further comprises a support piece 190, the support piece 190 is installed on the flexible wearing body 110, the support piece 190 has a support groove (not shown in the figure), the placement piece 180 is installed in the support groove, the support piece 190 has a support surface (not shown in the figure) facing the electrode sheet 121, the electrode sheet 121 is supported on the support surface, and the bending part 1211 is connected between the placement piece 180 and the support groove.
[0110] In this way, on the one hand, the part where the support piece 190, the placement piece 180 and the bending part 1211 are connected together forms the above-mentioned placement groove 150, which improves the structural stability of the placement groove 150; on the other hand, the bending part 1211 is connected between the support groove and the placement piece 180, which can reduce the probability of the electrode sheet 121 gradually separating from the support piece 190, thereby improving the installation stability of the electrode sheet 121.
[0111] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the placement groove 150 is arranged on the electric stimulation massage surface, on the one hand, after the liquid storage piece 200 is limitedly installed in the placement groove 150, the liquid storage piece 200 can face the massage part, and on the other hand, after the puncture part 141 punctures the liquid storage piece 200, the conductive liquid in the liquid storage piece 200 can flow to the electric stimulation massage surface, thereby wetting the skin attached to the electric stimulation massage surface.
[0112] The electric stimulation massage surface protrudes towards the skin surface. When the flexible wearing body 110 is wrapped around the waist of the human body, the electric stimulation massage surface first contacts the massage part, and then compensates the concave part of the massage part by the tension force generated on the surface of the flexible wearing body 110, avoids the gap between the electric stimulation massage surface and the massage part, and ensures the fit of the electric stimulation massage surface and the massage part. In addition, the protruding electric stimulation massage surface can deform the skin when it is in contact with the skin, thereby generating a pressure fit with the skin, ensuring that the electric stimulation massage surface is closely attached to the skin, and achieving a better massage effect.
[0113] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, as shown in Figures 12 to 14 The flexible wearing body 110 includes a surface layer 111, a bottom layer 112, and an elastic filling layer 113. The surface layer 111 and the bottom layer 112 are connected at the periphery, the skin surface is provided on the surface layer 111, and the skin surface is provided on the bottom layer 112. The surface layer 111 and the bottom layer 112 are both layer structures made of flexible or elastic materials, and the surface layer 111 and the bottom layer 112 can be stacked. When the user uses the wearable electric stimulation massage device 100, the surface layer 111 and the bottom layer 112 can deform together, so that the wearable electric stimulation massage device 100 can be closely attached to the waist of different users, which can improve the applicability of the wearable electric stimulation massage device 100 and improve the user experience.
[0114] Specifically, the periphery of the surface layer 111 and the bottom layer 112 is connected by at least one of pressing, sewing and bonding. For example, the edge of the surface layer 111 is provided with an outward turned edge (not shown), and the edge of the bottom layer 112 is provided with an inward turned edge (not shown). By pressing the outward turned edge of the surface layer 111 and the inward turned edge of the bottom layer 112, the surface layer 111 and the bottom layer 112 can be connected and fixed, which can improve the stability and firmness of the connection between the surface layer 111 and the bottom layer 112.
[0115] The elastic filling layer 113 is at least partially filled between the surface layer 111 and the bottom layer 112. Specifically, the elastic filling layer 113 is made of flexible or elastic material, such as heat-conducting sponge, heat-conducting silica gel, etc. Thus, under the premise of ensuring the softness of the wearable electric stimulation massage device 100, the shapeability of the wearable electric stimulation massage device 100 can be improved to some extent. When the flexible wearing body 110 is wrapped around the waist, the flexible wearing body 110 is less likely to curl, stack or wrinkle, and can be relatively flat, ensuring stable wearing.
[0116] In addition, in an alternative embodiment, the electrode sheet 121 is connected to the surface layer 111. Alternatively, in another alternative embodiment, the electrode sheet 121 is connected to the elastic filling layer 113. Alternatively, in yet another alternative embodiment, the electrode sheet 121 is partially connected to the surface layer 111 and partially connected to the elastic filling layer 113.
[0117] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the wearable electric stimulation massage device 100 further comprises a placement piece 180, the placement piece 180 is installed on the elastic filling layer 113, a placement groove 150 is formed on the placement piece 180, and the electric stimulation massage surface is provided with a mounting opening corresponding to the placement groove 150, so that the placement groove 150 is exposed on the electric stimulation massage surface.
[0118] In an alternative embodiment, the elastic filling layer 113 comprises a support layer 1131 and an inner filling layer 1132 arranged between the surface layer 111 and the bottom layer 112, the surface layer 111 is provided with a connecting opening 1111, the support layer 1131 is arranged on the side of the inner filling layer 1132 facing the near-skin surface, the support layer 1131 is arranged in the connecting opening 1111, the support layer 1131 protrudes from the near-skin surface, the placement piece 180 is installed on the support layer 1131, and the electrode sheet 121 is supported on the support layer 1131, so that the electric stimulation massage surface protrudes from the near-skin surface.
[0119] Alternatively, in another alternative embodiment, the elastic filling layer 113 is arranged between the surface layer 111 and the bottom layer 112, the surface layer 111 is provided with a connecting opening 1111, the placement piece 180 is connected to the elastic filling layer 113, the placement piece 180 protrudes from the near-skin surface through the connecting opening 1111, the placement groove 150 is arranged on the side of the placement piece 180 protruding from the near-skin surface, and the electrode sheet 121 is supported on the placement piece 180, so that the electric stimulation massage surface protrudes from the near-skin surface.
[0120] Further, as a specific embodiment of the wearable electric stimulation massage device 100 provided by the present application, the wearable electric stimulation massage device 100 further comprises a heating assembly (not shown in the figure), the heating assembly is located outside the placement groove 150, and the heating assembly comprises a local heating part corresponding to the placement groove 150, which is used to heat the conductive liquid of the storage liquid piece 200 in the placement groove 150. It can be understood that when the ambient temperature is low (such as in winter), the heating assembly can first heat the groove wall of the placement groove 150, and then the groove wall of the placement groove 150 transmits heat to the storage liquid piece 200, so that the temperature of the conductive liquid in the storage liquid piece 200 rises, thereby avoiding that the too cold conductive liquid stimulates the user and affects the user's massage experience.
[0121] Based on the wearable electric stimulation massage device 100 described above, the present application further provides a storage liquid piece 200, wherein, as shown in Figure 3 ,Figure 12 and Figure 15 As shown in FIG. 2, the liquid storage member 200 comprises a liquid storage shell 210, and the inside of the liquid storage shell 210 is formed with a liquid storage cavity 220, and the conductive liquid is stored in the liquid storage cavity 220. Specifically, the conductive liquid can be water, physiological saline or medicinal liquid, and the like, which is relatively mild and harmless to the human body.
[0122] It should be noted that after the liquid storage member 200 is pierced, the conductive liquid flows to the electric stimulation massage surface, thereby wetting the skin in contact with the electric stimulation massage surface, so that the resistance distribution between the electric stimulation massage surface and the skin is relatively uniform, so that the massage current distribution between the electric stimulation massage surface and the skin is relatively uniform, which is beneficial to ensure the moisture of the skin and the rapid conduction between the auxiliary electrode assembly 120 and the human body, and the massage stimulation received by the user is more stable, which is beneficial to improve the user experience.
[0123] The liquid storage member 200 further comprises a first liquid absorption layer (not shown in the figure) and / or a second liquid absorption layer (not shown in the figure), the first liquid absorption layer is arranged on the outer surface of the liquid storage shell 210, and the first liquid absorption layer is used to absorb the conductive liquid flowing out of the liquid storage cavity 220, and the second liquid absorption layer is arranged in the liquid storage cavity 220.
[0124] Specifically, in an optional embodiment, the liquid absorption layer is arranged on the outer surface of the liquid storage shell 210. In another optional embodiment, the liquid absorption layer is arranged in the liquid storage cavity 220. In yet another optional embodiment, the liquid absorption layer is arranged on the outer surface of the liquid storage shell 210 and in the liquid storage cavity 220.
[0125] It can be understood that no matter whether the liquid absorption layer is arranged on the outer surface of the liquid storage shell 210, in the liquid storage cavity 220, or on the outer surface of the liquid storage shell 210 and in the liquid storage cavity 220. When the liquid storage member 200 is pierced, the conductive liquid flows out of the liquid storage cavity 220 and flows to the electric stimulation massage surface to wet the skin. At the same time, firstly, the liquid absorption layer can absorb excess conductive liquid to prevent too much conductive liquid from flowing out and sliding down the human skin; secondly, it can also slow down the flow rate of the conductive liquid to avoid waste of the conductive liquid, increase the use time of the conductive liquid, and save costs.
[0126] In summary, compared with the prior art, the liquid storage member 200 has at least the following beneficial effects: on the one hand, after the liquid storage member 200 is pierced, the conductive liquid flows to the electric stimulation massage surface, which can wet the skin in contact with the electric stimulation massage surface, so that the resistance distribution between the electric stimulation massage surface and the skin is relatively uniform, so that the massage current distribution between the electric stimulation massage surface and the skin is relatively uniform, which is beneficial to ensure the moisture of the skin and the rapid conduction between the auxiliary electrode assembly 120 and the human body, and the massage stimulation received by the user is more stable, which is beneficial to improve the user experience;
[0127] On the other hand, the liquid storage member 200 can absorb the excess conductive liquid by providing the liquid absorption layer, thereby avoiding the conductive liquid from flowing out too much and sliding down along the human skin, and slowing down the flow rate of the conductive liquid, thereby avoiding the waste of the conductive liquid and increasing the use time of the conductive liquid to save the cost.
[0128] Further, as a specific embodiment of some embodiments of the present application, the first liquid absorption layer is arranged on the top surface of the liquid storage shell 210, so as to ensure that the liquid storage member 200 can absorb the conductive liquid flowing out from the liquid storage cavity 220.
[0129] Specifically, the first liquid absorption layer is a sponge layer or a liquid absorption cloth layer, and / or the second liquid absorption layer is a sponge layer or a liquid absorption cloth layer. Preferably, the first liquid absorption layer and the second liquid absorption layer are both sponge layers. It should be noted that, on the one hand, the sponge layer has strong liquid absorption capacity and can well absorb the conductive liquid flowing out from the liquid storage shell 210; on the other hand, the sponge layer is soft and occupies small space after compression, which can save space and quickly extrude the absorbed conductive liquid after the sponge layer is extruded, thereby realizing the rapid liquid supplement of the electric stimulation massage surface.
[0130] Of course, in other embodiments, the liquid absorption layer can also be made of other materials with liquid absorption properties, and the present application does not limit this, and those skilled in the art can make adaptive adjustments.
[0131] Further, as a specific embodiment of some embodiments of the present application, in order to make the flow of the conductive liquid more smooth and avoid the accumulation of the conductive liquid in the placement groove 150, which damages the electronic components, the liquid storage shell 210 has a top surface for being pressed and an outer peripheral surface adjacent to the top surface, and the outer peripheral surface of the liquid storage shell 210 is formed with a drainage groove (not shown in the figure) for draining the conductive liquid. It can be understood that when the liquid storage member 200 is pierced, the conductive liquid in the liquid storage cavity 220 begins to flow out, and the conductive liquid can flow along the drainage groove to the electric stimulation massage surface to wet the human skin.
[0132] Further, as a specific embodiment of some embodiments of the present application, the liquid storage shell 210 is formed with a limiting connection structure (not shown in the figure), and the liquid storage member 200 is limited to be installed on the wearable electric stimulation massage instrument through the limiting connection structure.
[0133] Specifically, the limiting connection structure is at least one of a magnetic attraction assembly, an adhesive layer and a buckle assembly, so as to limit the installation of the liquid storage member 200 in the placement groove 150 through the magnetic force of the magnetic attraction assembly and / or the adhesion and clamping of the adhesive layer and the buckle assembly.
[0134] In an alternative embodiment, the limiting connection structure is a magnetic member arranged on the liquid storage shell 210. Specifically, the limiting connection structure comprises a first magnetic member (not shown in the figure) and a second magnetic member (not shown in the figure). The first magnetic member is arranged on the liquid storage shell 210, and the second magnetic member is arranged on the inner wall or outer wall of the placement groove 150 and corresponds to the position of the first magnetic member. The first magnetic member and the second magnetic member attract each other, so that the liquid storage member 200 is limitedly arranged in the placement groove 150.
[0135] It can be understood that at least one of the first magnetic member and the second magnetic member is a permanent magnet or an electromagnet, and when one of the first magnetic member and the second magnetic member is a permanent magnet or an electromagnet, the other can be a magnetizable member such as iron.
[0136] Alternatively, in another alternative embodiment, the limiting connection structure is an adhesive layer (not shown in the figure) arranged on the liquid storage shell 210. Specifically, the liquid storage shell 210 is adhered to the inner wall of the placement groove 150 by the adhesive layer, so as to achieve the limited arrangement of the liquid storage member 200. It should be noted that the inner wall of the placement groove 150 can also be provided with an adhesive layer, which is not limited in the present application, and those skilled in the art can make appropriate adjustments. Exemplarily, the adhesive layer can be double-sided tape, glue, etc.
[0137] Alternatively, in yet another alternative embodiment, the limiting connection structure is a buckle (not shown in the figure) or a clamping groove (not shown in the figure) arranged on the liquid storage shell 210. Specifically, the liquid storage shell 210 is provided with a buckle, and the inner wall of the placement groove 150 is provided with a clamping groove. The buckle and the clamping groove are connected, so that the liquid storage member 200 is limitedly arranged in the placement groove 150; or the liquid storage shell 210 is provided with a clamping groove, and the inner wall of the placement groove 150 is provided with a buckle. The buckle and the clamping groove are connected, so that the liquid storage member 200 is limitedly arranged in the placement groove 150.
[0138] It should be noted that after the above technical solutions, the liquid storage member 200 can be stably and limitedly arranged in the placement groove 150, and the subsequent replacement of the liquid storage member 200 is also facilitated. That is, the connection of the limiting connection part is directly released, so that the liquid storage member 200 can be detached from the placement groove 150, and other parts are not damaged.
[0139] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Those skilled in the art can make various changes and modifications to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the scope of the claims of the present application.
Claims
1. A wearable electrical stimulation massage device, characterized in that, The wearable electrical stimulation massage device includes: A flexible wearable body having a skin-friendly surface and a skin-backed surface; An electrode assembly having an electrical stimulation massage surface exposed near the skin, the electrode assembly and / or the flexible wearable body having a placement groove disposed near or located on the electrical stimulation massage surface, the placement groove being used to limit the installation of a liquid storage component, a liquid storage cavity being formed inside the liquid storage shell, the liquid storage cavity storing conductive liquid, and a first liquid-absorbing layer and / or a second liquid-absorbing layer being provided, the first liquid-absorbing layer being disposed on the outer surface of the liquid storage shell, the first liquid-absorbing layer being used to absorb conductive liquid flowing out from the liquid storage cavity, and the second liquid-absorbing layer being disposed inside the liquid storage cavity; A blocking member is fixedly installed in the placement groove, or the blocking member forms the bottom wall of the placement groove, and the blocking member is provided with a first clearance through hole; The puncture structure includes a puncture portion located on the side of the blocking member away from the electrostimulation massage surface. The puncture portion is disposed corresponding to the first clearance through hole and is movable in the thickness direction of the flexible wearable body. The puncture portion is used to move towards the electrostimulation massage surface when subjected to external force, so that the puncture portion passes through the first clearance through hole and punctures the liquid storage member in the placement groove, so that the conductive liquid inside the liquid storage member flows to the electrostimulation massage surface.
2. The wearable electrical stimulation massage device according to claim 1, characterized in that, A limiting connection structure is formed on the liquid storage shell, and the liquid storage component is restricted to being installed on the wearable electrical stimulation massager through the limiting connection structure; and / or The first absorbent layer is a sponge layer or an absorbent cloth layer, and / or, the second absorbent layer is a sponge layer or an absorbent cloth layer; and / or, The liquid storage shell has a top surface for being pressed and an outer peripheral surface adjacent to the top surface. The outer peripheral surface of the liquid storage shell is formed with a drainage groove for draining conductive liquid, and / or, the first liquid absorption layer is provided at least on the top surface of the liquid storage shell.
3. The wearable electrical stimulation massage device according to claim 2, characterized in that, The limiting connection structure is a magnetic suction element disposed on the liquid storage shell; or, the limiting connection structure is an adhesive layer disposed on the liquid storage shell; or, the limiting connection structure is a buckle or slot disposed on the liquid storage shell.
4. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, When the blocking member is fixedly installed in the placement groove, the bottom wall of the placement groove is provided with a second clearance through hole corresponding to the first clearance through hole, and the piercing part is provided corresponding to the second clearance through hole; and / or, The puncture structure further includes a substrate, and the puncture portion is disposed on the substrate; the substrate is movably mounted on the wall of the placement groove so that the puncture portion is movable in the thickness direction of the flexible wearable body; or, the substrate is mounted on the wall of the placement groove, and the substrate is at least partially deformable so that the puncture portion is movable in the thickness direction of the flexible wearable body.
5. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The wearable electrostimulation massage device further includes an auxiliary movement mechanism, which includes a drive unit located on the side of the puncture portion away from the electrostimulation massage surface. The drive unit is used to drive the puncture portion to move towards or away from the electrostimulation massage surface.
6. The wearable electrical stimulation massage device according to claim 5, characterized in that, The driving unit is an airbag, which is disposed on the outer side of the placement groove wall. The airbag is used to drive the puncture part towards the liquid storage component when it expands; and / or, The puncture structure is mounted on the drive unit.
7. The wearable electrical stimulation massage device according to claim 5, characterized in that, The driving unit is an airbag, which is disposed on the outside of the groove wall of the placement groove. The airbag is used to drive the puncture part to move closer to the liquid storage component when it expands. The electrode assembly includes an electrode pad having the electrostimulation massage surface, the electrode pad being mounted on the proximal skin surface, and the projection of the airbag onto the electrode pad at least partially coinciding with the electrode pad, so that the airbag is used to move the electrode assembly toward the target area when inflated.
8. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The puncture structure also includes an elastic element, one end of which acts on the blocking element and the other end of which acts on the puncture portion, so that the puncture portion has a tendency to return to its original position.
9. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The puncture portion is at its maximum position when it extends into the first clearance through hole, and the end of the puncture portion is lower than the electrostimulation massage surface.
10. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The electrode assembly includes an electrode sheet having the electrostimulation massage surface, the electrode sheet being mounted on the skin-like surface. The wearable electrostimulation massager also includes a placement member, the placement member being mounted on the flexible wearable body, the placement groove being formed in the placement member, and the electrostimulation massage surface having an installation opening corresponding to the placement groove, so that the placement groove is exposed on the electrostimulation massage surface.
11. The wearable electrical stimulation massage device according to claim 10, characterized in that, The electrode sheet includes a bent portion disposed around the periphery of the mounting opening, the bent portion being connected to the side of the placement groove, or the bent portion being connected to the peripheral side of the placement component.
12. The wearable electrical stimulation massage device according to claim 11, characterized in that, The wearable electrical stimulation massager also includes a support member, which is installed on the flexible wearable body. The support member has a support groove, and the placement member is installed in the support groove. The support member has a support surface facing the electrode sheet, and the electrode sheet is supported on the support surface. The bent portion is connected between the placement member and the support groove.
13. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The placement groove is located on the electrical stimulation massage surface, which protrudes from the skin surface.
14. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The flexible wearable body includes a surface layer, a bottom layer, and an elastic filling layer. The surface layer and the bottom layer are connected at their peripheries. The skin-friendly surface is disposed on the surface layer, and the skin-friendly back surface is disposed on the bottom layer. The elastic filling layer at least partially fills the space between the surface layer and the bottom layer. The electrode sheet is connected to the surface layer and / or the elastic filler layer.
15. The wearable electrical stimulation massage device according to claim 14, characterized in that, The wearable electrostimulation massager also includes a placement member, which is installed on the elastic filling layer. The placement groove is formed in the placement member, and the electrostimulation massage surface is provided with an installation opening corresponding to the placement groove, so that the placement groove is exposed on the electrostimulation massage surface.
16. The wearable electrical stimulation massage device according to claim 15, characterized in that, The elastic filling layer includes a support layer and an inner filling layer disposed between the surface layer and the bottom layer. The surface layer has a connection port. The support layer is disposed on the side of the inner filling layer facing the skin surface and at the connection port. The support layer protrudes from the skin surface. The placement member is mounted on the support layer, and the electrode sheet is supported on the support layer so that the electrical stimulation massage surface protrudes from the skin surface; or... The elastic filling layer is disposed between the top layer and the bottom layer. The top layer has a connection port. The placement member is connected to the elastic filling layer. The placement member protrudes from the skin surface through the connection port. The placement groove is disposed on the side of the placement member that protrudes from the skin surface. The electrode sheet is supported on the placement member so that the electrical stimulation massage surface protrudes from the skin surface.
17. The wearable electrical stimulation massage device according to any one of claims 1 to 3, characterized in that, The wearable electrical stimulation massage device further includes a heating component located outside the placement slot; the heating component includes a local heating part corresponding to the placement slot for heating the conductive liquid in the liquid storage component in the placement slot.
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