CN220090268U - Flexible massage instrument - Google Patents
Flexible massage instrument Download PDFInfo
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- CN220090268U CN220090268U CN202321543210.6U CN202321543210U CN220090268U CN 220090268 U CN220090268 U CN 220090268U CN 202321543210 U CN202321543210 U CN 202321543210U CN 220090268 U CN220090268 U CN 220090268U
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Abstract
The utility model discloses a flexible massage instrument which comprises a flexible connecting part, a flexible heating component and a controller, wherein the flexible heating component and the controller are arranged on the flexible connecting part, a plurality of electrode slices are arranged on the flexible connecting part, heating pieces which are in one-to-one correspondence with the electrode slices are arranged on the flexible heating component, the electrode slices and the heating pieces are electrically connected with the controller, the electrode slices protrude towards the direction deviating from the flexible heating component to form a containing groove matched with the heating piece on the flexible connecting part, and the heating pieces are embedded in the containing groove and are abutted against the inner side surfaces of the electrode slices. According to the utility model, the heating element for heating is directly arranged in an abutting manner with the electrode plate for realizing electric stimulation in the flexible massage instrument, and the heat generated by the heating element is directly transmitted to the electrode plate, so that the problem of heat loss caused by arrangement of other intermediate transition parts is solved, the heat generated by the heating element can be fully acted on the electrode plate for carrying out hot compress massage, and the heating efficiency and the hot compress effect of the flexible massage instrument are improved.
Description
Technical Field
The utility model relates to the technical field of massage equipment, in particular to a flexible massage instrument.
Background
The flexible massage instrument is common massage equipment in the market, is fixed at a position where a human body needs to be massaged through a flexible connecting belt, and provides electric stimulation massage and/or hot compress massage for a user by utilizing an electrode plate and/or a heating plate.
Chinese patent publication No. CN113209473a discloses a flexible massage assembly and an electro-stimulation massage device having the same, the electro-stimulation massage device including a flexible substrate, the flexible massage assembly including: the flexible massage component comprises a plurality of flexible electrode plates, a plurality of flexible heat conducting pads and a flexible heating component, wherein the flexible electrode plates and the flexible heat conducting pads are arranged in a one-to-one correspondence manner, the flexible massage component is laminated on a flexible substrate, at least part of the flexible electrode plates are positioned on the positive side of the flexible heating component, the flexible heat conducting pads are clamped between the flexible electrode plates and the flexible heating component, the thickness of the flexible heat conducting pads can be elastically changed in the thickness direction of the flexible substrate, the flexible heat conducting pads can conduct heat of the flexible heating component to the flexible electrode plates, and the flexible massage component can be correspondingly deformed along with the flexible deformation of the corresponding part of the flexible substrate.
In the technical scheme disclosed in the above patent, flexible heat conduction pads are arranged between the flexible electrode plates and the flexible heating components to separate the flexible electrode plates from the flexible heating components, heat of the flexible heating components is conducted to the flexible electrode plates through the flexible heat conduction pads, the flexible heat conduction pads conduct heat through a multi-layer structure composed of a graphene heat conduction layer and an insulating layer outside the graphene heat conduction layer, heat generated by the flexible heating components is conducted to the insulating layer firstly, then conducted to the insulating layer through the graphene heat conduction layer, and finally conducted to the electrode plates, heat loss can definitely exist in the indirect heat transfer process, and the heat conduction coefficient of the insulating layer is lower than that of the graphene heat conduction layer, so that the heat loss is further aggravated, and the hot compress massage effect of the massager can be affected.
Disclosure of Invention
The technical problems to be solved by the utility model are as follows: provides a flexible massage instrument with good hot compress effect.
The technical scheme adopted by the utility model for solving the technical problems is as follows: the flexible massage instrument comprises a flexible connecting part, a flexible heating component and a controller, wherein the flexible heating component and the controller are arranged on the flexible connecting part, a plurality of electrode plates are arranged on the flexible connecting part, heating pieces in one-to-one correspondence with the electrode plates are arranged on the flexible heating component, the electrode plates and the heating pieces are electrically connected with the controller, the electrode plates protrude towards the direction deviating from the flexible heating component to form a containing groove matched with the heating pieces on the flexible connecting part, and the heating pieces are embedded in the containing groove and are attached to the inner side faces of the electrode plates. According to the flexible massage device, the heating piece for heating is directly arranged in an abutting mode with the electrode plate for realizing electric stimulation in the flexible massage device with the electric stimulation and hot compress functions, heat generated by the heating piece is directly conducted to the electrode plate, the problem of heat loss caused by arrangement of other intermediate transition parts is solved, heat generated by the heating piece can be fully acted on the electrode plate for hot compress massage, and the heating efficiency and hot compress effect of the flexible massage device are improved; meanwhile, the shape of the electrode plate is optimized, the heating piece is installed through the accommodating groove formed by the electrode plate, the periphery of the heating piece is limited, rapid positioning and assembly of each component are convenient to achieve, the protruding structure of the electrode plate can provide stronger massage stimulation for a user when electric stimulation and hot compress massage are carried out, and better massage experience is brought for the user.
As an improvement of the scheme, the following steps are: the flexible heating component comprises a flexible heating component matrix formed by connecting a mounting part and an extending part, wherein a heating piece is arranged on the mounting part and is electrically connected with the controller through a flexible circuit board extending from the mounting part to the extending part. According to the utility model, the flexible heating component matrix in the flexible heating component is divided into areas, so that the mounting part on the flexible heating component matrix is used for mounting the heating element, the extending part is used for mounting the flexible circuit board, and the components mounted on the flexible heating component matrix are reasonably distributed; the flexible circuit board is utilized to realize the power supply work of the heating element and the electrode plate, and the flexible circuit board can ensure the close fit between the flexible massage instrument and the human body through the deformation of the flexible circuit board.
As an improvement of the scheme, the following steps are: electrode filling pieces corresponding to the heating pieces one by one are fixed on the mounting part of the flexible heating component base body, the shapes of the electrode filling pieces are matched with the accommodating grooves, the heating pieces cover the surfaces of the corresponding electrode filling pieces, the electrode filling pieces are inserted into the corresponding accommodating grooves to form jogged fit, and the heating pieces are pressed between the electrode plates and the electrode filling pieces. According to the utility model, the electrode filling piece is added to provide a mounting and supporting foundation for the heating piece, the residual space after the heating piece is mounted in the accommodating groove is filled, a stable supporting foundation is provided for the electrode plate and the heating piece, the concave of the convex structure of the electrode plate caused by stress in the massage process is avoided, and meanwhile, the electrode plate and the heating piece can be ensured to be kept flat and the phenomenon of shrinkage is avoided.
As an improvement of the scheme, the following steps are: the flexible connecting part is formed by closely connecting a front flexible component and a rear flexible component which are matched in shape, and the flexible heating component is clamped between the front flexible component and the rear flexible component. The flexible connection part is arranged to be an enclosing structure consisting of the front flexible component and the rear flexible component, the front flexible component and the rear flexible component are utilized to clamp the flexible heating component to provide comprehensive protection for the flexible heating component, the flexible heating component is prevented from being damaged in the massage process, the service life of the flexible heating component can be prolonged, and the whole appearance quality of the flexible massage instrument is improved.
As an improvement of the scheme, the following steps are: the front flexible component comprises a front flexible substrate and a front connecting layer, the shape of the front connecting layer is matched with the shape of the mounting part of the flexible heating component substrate, and the front connecting layer is provided with a through hole matched with the electrode plate; the electrode plate is fixedly connected to the front connecting layer and extends out of the corresponding through hole, and the front connecting layer is fixedly connected to the front flexible substrate. According to the utility model, the front connecting layer is used as a mounting base of the electrode plate, and the through holes on the front connecting layer are used for forming limit fit with the protruding structures of the electrode plate, so that appearance defects caused by protruding and wrinkling of the front flexible substrate are avoided.
As an improvement of the scheme, the following steps are: the back flexible assembly comprises a back flexible matrix and elastic filling pieces, the elastic filling pieces are in one-to-one correspondence with the mounting parts of the flexible heating assembly matrix and are matched with each other in shape, and the back flexible matrix is provided with mounting grooves which are matched with the elastic filling pieces in a jogged mode. According to the utility model, the elastic filling piece is arranged to provide a rear supporting foundation for the installation part of the flexible heating component matrix in the flexible heating component, the elastic filling piece can have a comprehensive supporting effect on the whole installation part, the installation groove matched with the elastic filling piece on the rear flexible matrix can have an installation limiting effect on the elastic filling piece, and the installation groove forms a protrusion on the back surface of the rear flexible matrix, so that the flexible massage instrument can be more comfortable in fit with a massage part and has a layered appearance.
As an improvement of the scheme, the following steps are: the front flexible substrate and the rear flexible substrate are made of cloth, and the front connecting layer and the flexible heating component substrate are made of nylon cloth; the electrode filling piece is made of neoprene, and the elastic filling piece is made of foam; the front flexible matrix and the rear flexible matrix, the electrode plate and the front connecting layer, the front connecting layer and the front flexible matrix, and the electrode filling piece and the flexible heating component matrix are connected and fixed in a hot-pressing mode. According to the utility model, the cloth and nylon cloth are adopted to prepare each base part, so that better flexibility can be provided for the flexible massage instrument, more comfortable contact experience can be brought to a user when the flexible massage instrument is clung to a massage part of the user, and meanwhile, the connection between the parts can be carried out in a hot-pressing mode, thereby being beneficial to reducing the production cost and improving the production efficiency; the mounting groove can be directly formed on the rear flexible substrate through the hot-pressing connection process, and independent machining and forming are not needed.
As an improvement of the scheme, the following steps are: the heating element is connected with the electrode filling element through the conductive adhesive tape in an adhesive mode, and the plane area of the heating element is smaller than that of the conductive adhesive tape so that the edge part of the conductive adhesive tape extends out of the periphery of the heating element; the controller is electrically connected with the conductive adhesive tape through the conductive element, and the edge part of the conductive adhesive tape positioned at the outer side of the heating element is in contact with the electrode plate to form electrical connection. According to the utility model, the conductive adhesive tape is adopted to realize the bonding and fixing of the heating element on the electrode filling element, the conductive adhesive tape is matched with the conductive element on the heating element to realize the conduction, and meanwhile, the edge part of the conductive adhesive tape is directly bonded to the electrode plate to form electrical connection through limiting the area of the conductive adhesive tape; the flexible circuit board and the electrode plate do not need to be connected and fixed independently, the flexible circuit board is fixed on the mounting part through the conductive adhesive tape by adopting a simple structure, and meanwhile, the electric connection between the flexible circuit board, the heating piece and the electrode plate is realized, so that the connection structure is simplified, and the electrode plate can be stretched circumferentially through the adhesive connection between the edge of the conductive adhesive tape and the electrode plate to improve the wrinkling problem of the electrode plate; the conductive adhesive tape is beneficial to the distribution of resistance and current and reduces the stinging feeling in the electric stimulation massage process.
As an improvement of the scheme, the following steps are: the flexible connection part is a waist strap, a shoulder strap, a leg strap, a knee strap or an arm strap.
As an improvement of the scheme, the following steps are: the two ends of the flexible connecting part are detachably connected through the adhesive piece, the clamping hook piece or the clamping buckle piece.
The beneficial effects of the utility model are as follows: according to the utility model, the heating element for heating is directly arranged in an abutting manner with the electrode plate for realizing electric stimulation in the flexible massage instrument with the electric stimulation and hot compress functions, and the heat generated by the heating element is directly conducted to the electrode plate, so that the problem of heat loss caused by arrangement of other intermediate transition parts is avoided, the heat generated by the heating element can be fully acted on the electrode plate for hot compress massage, and the heating efficiency and hot compress effect of the flexible massage instrument are improved; meanwhile, the shape of the electrode plate is optimized, the heating piece is installed through the accommodating groove formed by the electrode plate, the periphery of the heating piece is limited, rapid positioning and assembly of each component are convenient to achieve, the protruding structure of the electrode plate can provide stronger massage stimulation for a user when electric stimulation and hot compress massage are carried out, and better massage experience is brought for the user.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is an exploded view of the structure of the present utility model;
FIG. 3 is an exploded view of the structure of the flexible heat generating component of the present utility model;
FIG. 4 is a partial side cross-sectional view of a flexible heat generating component;
fig. 5 is a schematic diagram of a matching structure of the heat generating element and the conductive adhesive tape.
Marked in the figure as: 100-flexible connection part, 200-flexible heating component, 210-heating element, 220-flexible heating component base, 230-flexible circuit board, 240-electrode filler, 250-conductive adhesive tape, 260-conductive element, 300-controller, 400-electrode sheet, 500-front flexible component, 510-front flexible base, 520-front connection layer, 600-rear flexible component, 610-rear flexible base, 611-mounting groove, 620-elastic filler.
Detailed Description
In order to facilitate an understanding of the utility model, the utility model is further described below with reference to the accompanying drawings.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "front", "rear", "left", "right", "upper", "lower", "inner", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of description, and do not indicate or imply that the apparatus or components referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
As shown in fig. 1 and 2, the disclosed flexible massage machine is composed of a flexible connection part 100, a flexible heating component 200, and a controller 300. The flexible connection part 100 is used for realizing the fixation of the flexible massage instrument on the human body and electrically stimulating the massage part of the human body through the electrode sheet 400 arranged on the flexible connection part 100; the flexible heating assembly 200 is used for generating heat through the heating element 210 and transmitting the heat to the electrode sheet 400, so that the electrode sheet 400 can perform hot compress massage on the massage part while performing electric stimulation massage; the controller 300 is configured to receive a control instruction and send a working instruction to the heat generating element 210 and the electrode sheet 400, and the controller 300 further includes a power supply for supplying power to the heat generating element 210 and the electrode sheet 400. In order to improve the heat transfer effect between the heat generating element 210 and the electrode plate 400, the electrode plate 400 is directly and closely arranged with the corresponding electrode plate 400, so that the heat generated by the heat generating element 210 is directly transmitted to the corresponding electrode plate 400, and the heat loss in the middle transmission process is avoided as much as possible; specifically, the structure of the electrode sheet 400 is improved in the present utility model, and the surface of the electrode sheet 400 facing the outer side of the flexible massage device is protruded outwards by a stamping and stretching process to form a concave accommodating groove on the inner side surface of the electrode sheet 400, and the shape of the accommodating groove is adapted to the shape of the heating element 210, for example, the shapes of the electrode sheet 400, the heating element 210 and the accommodating groove in the present utility model are all elliptical. The heating element 210 is embedded into the corresponding accommodating groove and is pressed tightly to enable the heating element 210 to be abutted against the inner side surface of the electrode plate 400, so that heat generated by the heating element 210 can be directly conducted to the electrode plate 400, and heat loss caused by the arrangement of the intermediate transition part is avoided. In addition, the protruding structure of the outer side surface of the electrode plate 400 can strengthen the stimulation to the massage part when performing electric stimulation massage, the massage experience of a user can be improved, the concave accommodating groove of the inner side surface of the electrode plate 400 can facilitate the assembly of the heating element 210, other fixing measures are not required to be independently arranged for the heating element 210, and the heating element 210 can be prevented from deflecting after being installed only by limiting the periphery of the heating element 210.
Specifically, the flexible heat generating component 200 of the present utility model, as shown in fig. 2 and 3, includes a flexible heat generating component base 220, a flexible circuit board 230, an electrode packing 240, and a conductive tape 250. The flexible heating component base 220 is used as a mounting base of the flexible circuit board 230 and the electrode filling piece 240, the flexible heating component base 220 is partitioned to form mounting parts and extending parts which are connected, the mounting parts are in one-to-one correspondence with the heating pieces 210, and the number of the mounting parts is consistent with that of the heating pieces 210 so that each mounting part is provided with one heating piece 210; the extending portion is used for installing the flexible circuit board 230, the flexible circuit board 230 and the heating element 210 may be an integrated structure, the heating element 210 is used as an extending portion of the flexible circuit board 230, and the flexible circuit board 230 extends from the installing portion to the extending portion and is electrically connected with the controller 300. The electrode filling pieces 240 and the heating pieces 210 are also in one-to-one correspondence, the electrode filling pieces 240 are used for filling the empty space of the accommodating cavity for installing the heating pieces 210, the heating pieces 210 are covered on the surfaces of the corresponding electrode filling pieces 240, and the shape of the electrode filling pieces 240 is matched with the shape of the accommodating groove so that the electrode filling pieces 240 can be embedded into the accommodating groove. The electrode filling member 240 is embedded into the corresponding accommodating groove to fill the space of the accommodating groove and compress the heating member 210 tightly to be closely attached to the inner side surface of the corresponding electrode plate 400, the electrode filling member 240 can also improve the strength of the protruding structure of the integrated electrode plate 400 by filling the inner space of the accommodating groove so as to avoid collapse of the protruding structure of the electrode plate 400 due to stress in the massaging process, and meanwhile, the electrode filling member 240 can also avoid shrinkage of the electrode plate 400 caused by deformation, so that the surface of the electrode plate 400 is kept flat.
The conductive adhesive tape 250 used in the flexible heat generating component 200 of the present utility model can realize the adhesion and fixation of the heat generating element 210 on the electrode filling element 240 on the one hand, and can realize the conductive work of the electrode sheet 400 on the other hand. As shown in fig. 2 to 5, the heat generating member 210 is adhered to the surface of the corresponding electrode filling member 240 by the conductive tape 250; a conductive piece 260 is arranged on one surface of the heating piece 210, which is adhered to the conductive adhesive tape 250, the outer layer of the heating piece 210 is an insulating layer, and a heating device in the heating piece 210 is electrically connected with the conductive piece 260; the conductive member 260 may be a copper foil or other metal member capable of conducting electricity, and the conductive member 260 is in contact with the conductive adhesive tape 250 to form an electrical connection; meanwhile, the area of the heating element 210 is limited to be smaller than that of the conductive adhesive tape 250, so that the edge part of the conductive adhesive tape 250 is exposed and not blocked by the outer insulating layer of the heating element 210, and the exposed edge part of the conductive adhesive tape 250 is adhered to the electrode plate 400 to form electrical connection. The width of the exposed portion of the edge of the conductive tape 250 is 3 to 8mm, and preferably 5 mm. The edge of the conductive adhesive tape 250 is adhered to the electrode plate 400 to form contact conduction, and simultaneously, the periphery of the electrode plate 400 can be stretched, so that the electrode plate 400 is prevented from shrinking.
As shown in fig. 1 and 2, the flexible connection part 100 in the present utility model is formed by abutting and connecting a front flexible component 500 and a rear flexible component 600 with the shape being adapted, the flexible heat generating component 200 is clamped between the front flexible component 500 and the rear flexible component 600, the front flexible component 500 and the rear flexible component 600 form protection for the flexible heat generating component 200 from both front and rear sides, and the shapes of the front flexible component 500 and the rear flexible component 600 are adapted to the shape of the flexible heat generating component substrate 220.
Specifically, as shown in fig. 2, the front flexible component 500 includes a front flexible substrate 510 and a front connection layer 520, the shape of the front connection layer 520 is adapted to the shape of the mounting portion of the flexible heating component substrate 220, through holes adapted to the electrode pads 400 are formed in the front connection layer 520, the through holes are in one-to-one correspondence with the electrode pads 400, the electrode pads 400 are fixedly connected to the front connection layer 520 and extend from the corresponding through holes, and the front connection layer 520 is fixedly connected to the front flexible substrate 510; through setting up preceding tie layer 520 as the installation basis of electrode slice 400 on preceding flexible substrate 510, the through-hole of preceding tie layer 520 forms the spacing cooperation of one-to-one with electrode slice 400, can avoid appearing the outward appearance defect that leads to because of uneven protruding and fold on the preceding flexible substrate 510.
Specifically, as shown in fig. 2, the rear flexible component 600 includes a rear flexible substrate 610 and an elastic filling member 620, the elastic filling member 620 corresponds to the mounting portion of the flexible heat generating component substrate 220 one by one and is adapted to the shape, and the rear flexible substrate 610 is provided with a mounting groove 611 that forms a fitting fit with the elastic filling member 620. The back flexible substrate 610 is connected with the front flexible substrate 510 of the front flexible assembly 500, the elastic filling member 620 provides a supporting foundation for the installation part of the flexible heating assembly substrate 220 at the rear, the elastic filling member 620 can play a full supporting role for the whole installation part, the installation groove 611 matched with the elastic filling member 620 on the back flexible substrate 610 can play a mounting limiting role for the elastic filling member 620, the installation groove 611 forms a protrusion on the back of the back flexible substrate 610, so that the flexible massager can be more comfortable to attach to the massage part, and the appearance is more layering.
In the present utility model, the electrode sheet 400 is made of polyurethane or silica gel, and polyurethane is preferably made of polyurethane, which can provide better electric and thermal conductivity. The front flexible substrate 510 and the rear flexible substrate 610 are made of lycra fabric, and the front connection layer 520 and the flexible heating element substrate 220 are made of nylon fabric. The electrode filling member 240 is made of neoprene, the Shore hardness range is 30-70 degrees, and the preferable scheme is 52 degrees; the elastic filling member 620 is made of foam material, and has a shore hardness ranging from 20 to 50 degrees, preferably 30 degrees. The front flexible matrix 510 and the rear flexible matrix 610, the electrode sheet 400 and the front connecting layer 520, the front connecting layer 520 and the front flexible matrix 510, and the electrode filling member 240 and the flexible heating component matrix 220 are connected and fixed in a hot-pressing mode, so that the whole processing technology of the flexible massage device is simpler, and the connection between all the components is firmer.
The flexible massage device disclosed by the utility model can be used for massaging different parts of a human body, and the flexible massage device is fixed at the corresponding massaging part through the flexible connecting part 100 in the form of a strap, so the flexible connecting part 100 can be a waist strap, a shoulder strap, a leg strap, a knee strap or an arm strap. Adhesive pieces, clamping hook pieces or clamping buckle pieces are arranged at the two ends of the flexible connecting part 100 to connect the two ends of the flexible connecting part 100 together to form surrounding fixation of the massage part; the adhesive piece can be a magic tape, the clamping hook piece can be a hook, and the clamping hook piece can be a male buckle and a female buckle.
Claims (10)
1. The utility model provides a flexible massage appearance, includes flexible coupling portion (100) and sets up flexible heating element (200) and controller (300) on flexible coupling portion (100), is equipped with a plurality of electrode slices (400) on flexible coupling portion (100), is equipped with on flexible heating element (200) with electrode slice (400) one-to-one's piece (210) that generates heat, electrode slice (400) and piece (210) all are connected with controller (300) electricity, its characterized in that: the electrode plate (400) protrudes towards the direction deviating from the flexible heating component (200) to form a containing groove matched with the heating piece (210) on the flexible connecting part (100), and the heating piece (210) is embedded in the containing groove and is abutted against the inner side surface of the electrode plate (400).
2. The flexible massage apparatus of claim 1, wherein: the flexible heating component (200) comprises a flexible heating component base body (220) formed by connecting a mounting part and an extending part, a heating element (210) is arranged on the mounting part, and the heating element (210) is electrically connected with the controller (300) through a flexible circuit board (230) extending from the mounting part to the extending part.
3. The flexible massage apparatus of claim 2, wherein: electrode filling pieces (240) corresponding to the heating pieces (210) one by one are fixed on the mounting part of the flexible heating component base body (220), the shape of each electrode filling piece (240) is matched with the corresponding accommodating groove, the heating pieces (210) are covered on the surfaces of the corresponding electrode filling pieces (240), the electrode filling pieces (240) are inserted into the corresponding accommodating grooves to form jogged fit, and the heating pieces (210) are pressed between the electrode plates (400) and the electrode filling pieces (240).
4. A flexible massaging apparatus as defined in claim 3, wherein: the flexible connection part (100) is formed by abutting and connecting a front flexible component (500) and a rear flexible component (600) which are matched in shape, and the flexible heating component (200) is clamped between the front flexible component (500) and the rear flexible component (600).
5. The flexible massaging apparatus as defined in claim 4, wherein: the front flexible component (500) comprises a front flexible substrate (510) and a front connecting layer (520), the shape of the front connecting layer (520) is matched with the shape of the mounting part of the flexible heating component substrate (220), and the front connecting layer (520) is provided with a through hole matched with the electrode plate (400); the electrode plate (400) is fixedly connected to the front connecting layer (520) and extends out of the corresponding through hole, and the front connecting layer (520) is fixedly connected to the front flexible substrate (510).
6. The flexible massaging apparatus as defined in claim 5, wherein: the rear flexible component (600) comprises a rear flexible substrate (610) and elastic filling pieces (620), the elastic filling pieces (620) are in one-to-one correspondence with the mounting parts of the flexible heating component substrate (220) and are matched in shape, and mounting grooves (611) which are in embedded fit with the elastic filling pieces (620) are formed in the rear flexible substrate (610).
7. The flexible massaging apparatus as defined in claim 6, wherein: the front flexible substrate (510) and the rear flexible substrate (610) are made of cloth, and the front connecting layer (520) and the flexible heating component substrate (220) are made of nylon cloth; the electrode filling piece (240) is made of neoprene, and the elastic filling piece (620) is made of foam; the front flexible matrix (510) and the rear flexible matrix (610), the electrode plate (400) and the front connecting layer (520), the front connecting layer (520) and the front flexible matrix (510) and the electrode filling piece (240) and the flexible heating component matrix (220) are connected and fixed in a hot-pressing mode.
8. The flexible massage apparatus of claim 2, wherein: the heating element (210) is in adhesive connection with the electrode filling element (240) through the conductive adhesive tape (250), and the plane area of the heating element (210) is smaller than that of the conductive adhesive tape (250) so that the edge part of the conductive adhesive tape (250) extends to the outer side of the periphery of the heating element (210); one surface of the heating piece (210) contacted with the conductive adhesive tape (250) is provided with a conductive piece (260), the controller (300) is electrically connected with the conductive adhesive tape (250) through the conductive piece (260), and the edge part of the conductive adhesive tape (250) positioned at the outer side of the heating piece (210) is contacted with the electrode plate (400) to form electrical connection.
9. The flexible massage apparatus as set forth in any one of claims 1 to 8, wherein: the flexible connection (100) is a waist strap, shoulder strap, leg strap, knee strap or arm strap.
10. The flexible massage apparatus of claim 9, wherein: two ends of the flexible connecting part (100) are detachably connected through an adhesive piece, a clamping hook piece or a clamping buckle piece.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321543210.6U CN220090268U (en) | 2023-06-16 | 2023-06-16 | Flexible massage instrument |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321543210.6U CN220090268U (en) | 2023-06-16 | 2023-06-16 | Flexible massage instrument |
Publications (1)
Publication Number | Publication Date |
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CN220090268U true CN220090268U (en) | 2023-11-28 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202321543210.6U Active CN220090268U (en) | 2023-06-16 | 2023-06-16 | Flexible massage instrument |
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CN (1) | CN220090268U (en) |
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2023
- 2023-06-16 CN CN202321543210.6U patent/CN220090268U/en active Active
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