CN213407481U - Massage head, neck massage appearance and wearable massage equipment - Google Patents

Massage head, neck massage appearance and wearable massage equipment Download PDF

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Publication number
CN213407481U
CN213407481U CN202020659885.7U CN202020659885U CN213407481U CN 213407481 U CN213407481 U CN 213407481U CN 202020659885 U CN202020659885 U CN 202020659885U CN 213407481 U CN213407481 U CN 213407481U
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China
Prior art keywords
circuit board
flexible circuit
massage head
base
electrode
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CN202020659885.7U
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Chinese (zh)
Inventor
刘杰
黄利兴
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SKG Health Technologies Co Ltd.
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SKG Health Technologies Co Ltd.
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Priority to CN202020659885.7U priority Critical patent/CN213407481U/en
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Abstract

The utility model discloses a massage head, neck massage appearance and wearable massage equipment, through setting up the circuit board between supporting disk and base, and set up the circuit board into flexible circuit board, flexible circuit board pastes and establishes in the one side of the orientation base of supporting disk, so set up and make this circuit board buckle, so that this circuit board can carry out adaptability according to the shape of supporting disk and warp, and then can be better with the supporting disk laminating, thereby the space between base and the supporting disk has been saved, direct pasting the flexible circuit board and establishing in the one side of the orientation base of supporting disk simultaneously, can realize the fixed of flexible circuit board, need not to set up extra mounting in the electrode mounting base, thereby further saved the space between base and the supporting disk, and then reduced massage head's volume, be favorable to massage head whole to frivolousization development.

Description

Massage head, neck massage appearance and wearable massage equipment
Technical Field
The utility model relates to a massage technical field especially relates to a massage head, neck massage appearance and wearable massage equipment.
Background
The neck massager mainly comprises an elastic support and a massage head arranged on the elastic support, wherein a secondary control circuit board electrically connected with a main control circuit board in the elastic support is arranged in the massage head, and the secondary control circuit board controls the massage head to massage the neck of a user under the control of the main control circuit board.
The secondary control circuit board is a hard straight circuit board arranged in the arc-shaped mounting seat, a straight mounting surface is required to be arranged in the arc-shaped mounting seat to mount the hard straight circuit board, and a fixing part is required to be specially arranged in the arc-shaped mounting seat to fix the secondary control circuit board, so that the size and the weight of the mounting seat are increased, and the whole massage head is thickened.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model discloses massage head, neck massage appearance and wearable massage equipment to realize the frivolousization of massage head.
In order to achieve the above object, in a first aspect, the present invention discloses a massage head comprising
The mounting seat comprises a base, a supporting plate and a flexible circuit board, wherein the supporting plate is arranged on the base, the flexible circuit board is positioned between the base and the supporting plate, and the flexible circuit board is attached to one surface, facing the base, of the supporting plate;
and the electrode plate assembly is arranged on one surface of the supporting plate, which deviates from the base, and is electrically connected with the flexible circuit board.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, a first engaging member is disposed on the electrode sheet assembly, and a second engaging member capable of being connected with the first engaging member in a matching manner is disposed on the supporting plate;
the electrode sheet assembly is detachably connected with the support plate through the matching of the first clamping piece and the second clamping piece.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the electrode plate assembly includes a conductive layer and an electrode layer stacked together, the conductive layer is located between the support plate and the electrode layer, the conductive layer is electrically connected to the flexible circuit board, and the electrode layer is electrically connected to the conductive layer;
the first clamping piece comprises at least one first sub-clamping piece arranged on the conductive layer, and the first sub-clamping piece extends towards the direction of the supporting plate;
the second clamping piece comprises at least one second sub-clamping piece which is arranged on the supporting plate and can be in matched connection with the first sub-clamping piece, and one first sub-clamping piece corresponds to one second sub-clamping piece.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the electrode plate assembly further includes a heating layer and an insulating layer, the heating layer is disposed between the conductive layer and the support plate, the insulating layer is disposed between the heating layer and the conductive layer, the heating layer is electrically connected to the flexible circuit board, and the insulating layer is used for insulating between the heating layer and the conductive layer;
the first clamping piece comprises at least two third clamping pieces arranged on the heating layer, and the third clamping pieces extend towards the direction of the supporting plate;
the second clamping piece comprises at least two fourth sub-clamping pieces which are arranged on the supporting plate and can be in matched connection with the third sub-clamping pieces, and one third sub-clamping piece corresponds to one fourth sub-clamping piece.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the insulating layer has a first avoidance hole for avoiding the first sub-engaging member;
the heating layer is provided with a second avoidance hole used for avoiding the first sub-clamping piece.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the first engaging member and the second engaging member are electrically conductive engaging members, the first engaging member is electrically connected to the electrode plate assembly, the second engaging member is electrically connected to the flexible circuit board, and when the first engaging member is connected to the second engaging member in a matching manner, the electrode plate assembly is electrically connected to the flexible circuit board.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the mounting base further includes a temperature measuring element electrically connected to the flexible circuit board;
the temperature measuring part is used for detecting the temperature of the electrode plate assembly and feeding the detected temperature back to the flexible circuit board.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the temperature measuring element is located between the flexible circuit board and the supporting plate;
one side of the supporting disc, facing the base, is recessed inwards to form a first groove corresponding to the temperature measuring piece, and at least the temperature collecting end of the temperature measuring piece extends into the first groove.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, one side of the supporting plate departing from the base corresponds to the position of the temperature measuring part, which is recessed inwards to form a second groove, and a heat conducting part is disposed in the second groove, and the heat conducting part contacts with the electrode plate assembly.
As an alternative, in an embodiment of the first aspect of the present invention, the outer surface of the heat-conducting member is flush with the notch of the second groove.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the second groove is not communicated with the first groove, and the heat conducting member abuts between the electrode sheet assembly and the supporting disk, is used for conducting heat between the electrode sheet assembly and the supporting disk, and conducts heat to the temperature measuring member through the supporting disk;
or the second groove is communicated with the first groove, so that the heat conducting piece is abutted between the electrode sheet assembly and the temperature measuring piece and used for conducting heat between the electrode sheet assembly and the temperature measuring piece.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, a surface of the flexible circuit board facing away from the supporting disk is provided with a light emitting component, a light emitting surface of the light emitting component faces the supporting disk, and the flexible circuit board, the supporting disk and the electrode sheet assembly at least correspond to a position of the light emitting component, which is light permeable.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the light emitting component is plural, and the plural light emitting components are disposed at intervals along a circumferential direction of the flexible circuit board.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, a positioning structure for positioning the supporting disk and the base is further disposed on the mounting seat.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the positioning structure includes: the positioning column is arranged on the supporting disc and faces the base, and the positioning hole is formed in the base and used for inserting the positioning column;
and a third avoidance hole used for avoiding the positioning column is formed in the position, corresponding to the positioning column, of the flexible circuit board.
As an optional implementation manner, in an embodiment of the first aspect of the present invention, the electrode sheet assembly includes an electrode layer electrically connected to the flexible circuit board, and the electrode layer is a gel sheet.
In a second aspect, the utility model discloses a neck massager, including elastic support and as above massage head, massage head connect in elastic support, be equipped with the master control circuit board in the elastic support, the flexible circuit board with the master control circuit board electricity is connected.
In a third aspect, the utility model discloses a wearable massage device, including wearing the piece and as above the massage head, the massage head is located wear on the piece, it is used for supplying the human body to dress to wear the piece.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the embodiment of the utility model provides a massage head, neck massage appearance and wearable massage equipment, the mount pad of this massage head includes base, supporting disk and circuit board, through setting up the circuit board between supporting disk and base, and set up the circuit board into flexible circuit board, flexible circuit board pastes and sets up on the one side of supporting disk towards the base, so set up and make this circuit board can buckle, so that this circuit board can carry out the adaptability according to the shape of supporting disk and warp, and then can better laminate with the supporting disk, thereby space between base and the supporting disk is saved, simultaneously directly paste flexible circuit board and set up on the one side of supporting disk towards the base, can realize the fixing of flexible circuit board, need not to set up extra mounting in the electrode mounting base, thereby further save the space between base and the supporting disk, and then reduced the volume of massage head, is beneficial to the development of the whole massage head towards lightness and thinness.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of a massage head disclosed in an embodiment of the present invention;
fig. 2 is a first exploded schematic view of a massage head disclosed in a first embodiment of the present invention;
FIG. 3 is a schematic exploded view of a massage head according to a first embodiment of the present invention;
fig. 4 is a third schematic exploded view of the massage head disclosed in the first embodiment of the present invention;
fig. 5 is a schematic structural view of a neck massager disclosed in the second embodiment of the present invention.
10-massage head; 1-mounting a base; 11-a base; 12-a support disk; 121-a second snap member; 1211 — a second sub-card assembly; 1212-fourth daughter card assembly; 122 — a first groove; 123-a second groove; 124-a heat conducting member; 13-a flexible circuit board; 131-a through hole; 132-electrical connection points; 133-a light emitting component; 134-a third avoidance hole; 14-temperature measuring parts; 151-positioning columns; 152-positioning holes; 2-an electrode pad assembly; 21-a conductive layer; 23-a heating layer; 231-a second avoidance hole; 24-an insulating layer; 241-a first avoidance hole; 25-a first snap member; 251-a first sub-assembly; 252-a third daughter card assembly; 20-elastic support.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the present invention, the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. These terms are used primarily to better describe the invention and its embodiments, and are not intended to limit the indicated devices, elements or components to a particular orientation or to be constructed and operated in a particular orientation.
Moreover, some of the above terms may be used to indicate other meanings besides the orientation or positional relationship, for example, the term "on" may also be used to indicate some kind of attachment or connection relationship in some cases. The specific meaning of these terms in the present invention can be understood by those of ordinary skill in the art as appropriate.
Furthermore, the terms "mounted," "disposed," "provided," "connected," and "connected" are to be construed broadly. For example, it may be a fixed connection, a removable connection, or a unitary construction; can be a mechanical connection, or an electrical connection; may be directly connected, or indirectly connected through intervening media, or may be in internal communication between two devices, elements or components. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Furthermore, the terms "first," "second," and the like, are used primarily to distinguish one device, element, or component from another (the specific nature and configuration may be the same or different), and are not used to indicate or imply the relative importance or number of the indicated devices, elements, or components. "plurality" means two or more unless otherwise specified.
The embodiment of the utility model discloses massage head, neck massage appearance and wearable massage equipment to realize the frivolousization of massage head.
The technical solution of the present invention will be further described with reference to the following embodiments and the accompanying drawings.
Example one
Referring to fig. 1, the embodiment of the present invention discloses a massage head 10, and the massage head 10 of the present embodiment can be used as an independent massage device, that is, when a power supply and a circuit board are disposed inside the massage head 10, it can be used as an independent massage apparatus. In this way, the user can massage by holding the massage head 10, and the massage head 10 can massage the head, eyes, feet, shoulders, legs, waist or neck when used as a massage apparatus without being limited by a wearing structure or a holding structure, so that the application range is wide. In addition, the massage head 10 can be used with a wearable device, and when the massage head 10 is used with a wearable device, the massage head can be mounted on the wearable device, and the wearable massage device can be, but not limited to, a head massager, a neck massager, an eye massager, a shoulder massager, a waist massager, a foot massager, a massage headgear, a massage eyeshade, and other massage instruments. By adopting the mode, the user does not need to hold the wearable device by hand at the moment, and can realize massage by wearing the wearable device on the corresponding part of the human body.
The massage head 10 of the present embodiment is particularly applicable to a wearable massage apparatus. The present embodiment does not limit it. The present embodiment will be described by way of example with the massage head 10 applied to a neck massage apparatus.
As shown in fig. 2, the massage head 10 of the present scheme includes a mounting seat 1 and an electrode plate assembly 2, the mounting seat 1 includes a base 11, a supporting plate 12 and a flexible circuit board 13, the supporting plate 12 is disposed on the base 11, the flexible circuit board 13 is located between the base 11 and the supporting plate 12, the flexible circuit board 13 is attached to one side of the supporting plate 12 facing the base 11, and the electrode plate assembly 2 is disposed on one side of the supporting plate 12 departing from the base 11 and electrically connected to the flexible circuit board 13.
By adopting the scheme, the circuit board 13 is arranged between the supporting disk 12 and the base 11, the circuit board 13 is arranged into the flexible circuit board 13, the flexible circuit board 13 is attached to one surface of the supporting disk 12 facing the base 11, and the flexible circuit board 13 can be bent, so that the flexible circuit board 13 can be adaptively deformed according to the shape of the supporting tray 12, and can be better attached to the supporting disk 12, thereby saving the space between the base 11 and the supporting disk 12, meanwhile, the flexible circuit board 13 is directly attached to one surface of the supporting plate 12 facing the base 11, the fixation of the flexible circuit board 13 can be realized without arranging an additional fixing member in the installation base, thereby further saving the space between the base 11 and the supporting plate 12, further, the volume of the massage head 10 is reduced, which is beneficial to the development of the whole massage head 10 to be light and thin.
In this embodiment, the flexible circuit board 13 may be attached to the supporting plate 12 by an adhesive or a double-sided tape, so as to fix the flexible circuit board 13. By adopting the mode, the flexible circuit board 13 is simple and convenient to mount and fix, and the mounting efficiency is high.
In the present embodiment, the electrode sheet assembly 2 includes a conductive layer 21 and an electrode layer (not shown) stacked on each other, and the conductive layer 21 is located between the support plate 12 and the conductive layer 21. The conducting layer 21 is electrically connected with the flexible circuit board 13, the conducting layer 21 is electrically connected with the electrode layer, the flexible circuit board 13 is used for applying pulse current to the conducting layer 21, the conducting layer 21 guides the pulse current to the electrode layer, and the electrode layer is used for applying the pulse current to the neck of a user to accelerate blood circulation at the neck muscles, so that the neck muscles can be effectively relieved.
In this embodiment, the electrode layer may be a gel sheet, and since the skin surface of the human body is covered with a scaly stratum corneum which is a poor conductor of electricity, and the metal electrode sheet is directly attached to the stratum corneum surface, the current is not easily conducted with the skin of the human body through the metal electrode sheet, and energy concentration is easily generated locally, which causes stabbing pain. Therefore, the utility model discloses an electrode layer can utilize the gel piece to fill into the clearance of scale stratum corneum for the design of gel piece to make the gel piece can be direct and the real corium layer direct contact under the human stratum corneum, and then make the gel piece can fully communicate with real corium layer electric conductance with the attached part in human skin surface, strengthened electric conductance and led to the effect area, reduced local energy and concentrated, produced the stabbing pain when having avoided using, promoted user's use experience nature. In addition, the gel sheet can generate water vapor so that the electrode layer and the skin form good fit,
it is understood that, in other implementations, the electrode layer may also be a silicon conductive sheet or the like, which is not limited herein.
Further, in order that the massage head 10 can realize the thermotherapy function, the electrode plate assembly 2 may further include a heating layer 23, the heating layer 23 is disposed between the support plate 12 and the conductive layer 21, the heating layer 23 is electrically connected with the flexible circuit board 13, and is used for heating when being powered on, and transferring heat to the whole electrode plate assembly 2, so that the electrode layer heats the neck of the user, thereby further accelerating the blood circulation at the neck muscle, and effectively relieving the neck muscle of the user.
As is apparent from the above, both the conductive layer 21 and the heating layer 23 are electrically connected to the flexible circuit board 13 and energized. Specifically, the electrode layer is used to apply unidirectional pulsed current to the neck of the user to achieve massage, i.e., the flexible circuit board 13 provides unidirectional current to the conductive layer 21. The heating layer 23 needs to form a loop current to achieve heating, i.e., the flexible circuit board 13 supplies the loop current to the heating layer 23. In order to avoid the conductive layer 21 electrically connecting with the heating layer 23 and thus failing to provide unidirectional pulse current to the electrode layer, the electrode plate assembly 2 further includes an insulating layer 24, and the insulating layer 24 is disposed between the heating layer 23 and the conductive layer 21 for insulating the heating layer 23 and the conductive layer 21.
Referring to fig. 3 and 4, in the present embodiment, the electrode sheet assembly 2 is detachably connected to the support plate 12, and when the electrode sheet assembly 2 is detached from the support plate 12, the electrode layer, the conductive layer 21, the insulating layer 24, and the heating layer 23 are sequentially stacked. In this way, when the electrode plate assembly 2 is damaged or dirty, the electrode plate assembly 2 can be detached from the support plate 12 and replaced with a new electrode plate assembly 2, so that the neck massager can be continuously used, and the service life of the neck massager is prolonged.
Further, a first engaging member 25 is disposed on the electrode plate assembly 2, a second engaging member 121 capable of being connected with the first engaging member 25 in a matching manner is disposed on the support plate 12, and the electrode plate assembly 2 is detachably connected with the support plate 12 through the matching of the first engaging member 25 and the second engaging member 121.
In some embodiments, as shown in fig. 4 and 5, in order to detachably connect conductive layer 21 to supporting plate 12, first engaging member 25 includes at least one first sub-engaging member 251 disposed on conductive layer 21, first sub-engaging member 251 extends toward supporting plate 12, second engaging member 121 includes at least one second sub-engaging member 1211 disposed on supporting plate 12 and mateably connected to first sub-engaging member 251, and one first sub-engaging member 251 corresponds to one second sub-engaging member 1211, and first sub-engaging member 251 is engaged with second sub-engaging member 1211, so that conductive layer 21 can be connected to supporting plate 12.
Further, because the insulating layer 24 and the heating layer 23 are further disposed between the conductive layer 21 and the supporting plate 21, for example, the insulating layer 24 and the heating layer 23 are prevented from affecting the first sub-card assembly 251 and the second sub-card assembly 1211 on the supporting plate 12, the insulating layer 24 is provided with a first avoidance hole 241 for avoiding the first sub-card assembly 251, the heating layer 23 is provided with a second avoidance hole 231 for avoiding the first sub-card assembly 251, and the first avoidance hole 241 and the second avoidance hole 231 are penetrated through and penetrated out by the second avoidance hole 231 in the process that the first sub-card assembly 251 extends toward the supporting plate 12, and are finally connected to the second sub-card assembly 1211.
It is understood that, when the areas of the insulating layer 24 and the heating layer 23 are smaller than the area of the heat conducting layer 21, so that the projection of the first sub-assembly 251 on the insulating layer 24 and/or the heating layer 23 is located outside the insulating layer 24 and/or the heating layer 23, the arrangement of the first avoidance hole 241 and/or the second avoidance hole 231 may be correspondingly omitted, and is not limited herein.
In some embodiments, to achieve the detachable connection of the heater layer 23 and the support plate 12, the first engaging member 25 includes at least two third engaging members 252 disposed on the heater layer 23, the third engaging members 252 extend toward the support plate 12, the second engaging member 121 includes at least two fourth engaging members 1212 disposed on the support plate 12 and capable of being connected with the third engaging members 252 in a matching manner, one third engaging member 252 corresponds to one fourth engaging member 1212, and the heater layer 23 can be connected to the support plate 12 by engaging the third engaging member 252 with the fourth engaging member 1212.
In the present embodiment, the first engaging member 25 and the second engaging member 121 may be both conductive engaging members, the first engaging member 25 is electrically connected to the electrode sheet assembly 2, the second engaging member 121 is electrically connected to the flexible circuit board 13, and when the first engaging member 25 is mated with the second engaging member 121, the electrode sheet assembly 2 is electrically connected to the flexible circuit board 13. In this way, the first engaging member 25 and the second engaging member 121 are engaged to mechanically fix the electrode sheet assembly 2 and the supporting plate 12, and the electrode sheet assembly 2 is electrically connected to the flexible circuit board 13, so as to simplify the structural design of the massage head 10 and increase the integration of the massage head 10.
It is understood that the electrode sheet assembly 2 and the flexible circuit board 13 may also be electrically connected through a wire or other conductive component, which is not limited herein, and in this embodiment, the first engaging member 25 and the second engaging member 121 may be both electrically conductive engaging members, and the electrode sheet assembly 2 and the flexible circuit board 13 are electrically connected through the engaging connection of the first engaging member 25 and the second engaging member 121.
In this embodiment, when first daughter card assembly 251 and second daughter card assembly 1211 are snap-fit connected, electrical connection between first daughter card assembly 251 and second daughter card assembly 1211 may be achieved, thereby achieving electrical connection between conductive layer 21 and flexible circuit board 13.
Since flexible circuit board 13 needs to deliver unidirectional current to conductive layer 21, i.e., conductive layer 21 needs to deliver unidirectional current to the electrode layers to enable the electrode layers to apply a pulsed current to the user's neck, preferably, there are one each of second daughter card assembly 1211 and first daughter card assembly 251. It will be appreciated that the number of second daughter card assemblies 1211 and first daughter card assemblies 251 may also be two, three, etc., and are not limited thereto.
In this embodiment, when the third daughter card assembly 252 and the fourth daughter card assembly 1212 are snapped together, the third daughter card assembly 252 and the fourth daughter card assembly 1212, and thus the heater layer 23 and the flexible circuit board 13, may be electrically connected.
Since the flexible electrode plate needs to deliver a loop current to the heating layer 23 to achieve heating of the heating layer 23. Preferably, the number of fourth daughter card assemblies 1212 and third daughter card assemblies 252 are both two. It will be appreciated that the number of fourth daughter card assemblies 1212 and third daughter card assemblies 252 may also be three, four, etc., and are not limited thereto.
As can be seen from the foregoing, in this embodiment, the number of second daughter card assemblies 1211 and first daughter card assemblies 251 is one, and the number of fourth daughter card assemblies 1212 and third daughter card assemblies 252 is two. Preferably, the second sub-card assembly 1211 is disposed in the middle of the supporting plate 12, the fourth sub-card assemblies 1212 are disposed at two ends of the supporting plate 12, and correspondingly, the first sub-card assembly 251 is disposed in the middle of the electrode sheet assembly 2, and the third sub-card assemblies 252 are disposed at two ends of the electrode sheet assembly 2, so that when the electrode sheet assembly 2 is connected to the supporting plate 12, the two ends and the middle of the electrode sheet assembly 2 are respectively fixed at two ends and the middle of the supporting plate 12, so that the electrode sheet assembly 2 has good stability when connected to the supporting plate 12.
In this embodiment, the second engaging member 121 extends toward the flexible circuit board 13, a through hole 131 is formed in the flexible circuit board 13 for the second engaging member 121 to pass through, an electrical connection point 132 is formed on the flexible circuit board 13, the electrical connection point 132 is located on a surface of the flexible circuit board 13 away from the supporting plate 12, and the second engaging member 121 is electrically connected to the electrical connection point 132, so as to electrically connect the second engaging member 121 and the flexible circuit board 13.
Specifically, the electrical connection point 132 is a welding point, and the second engaging member 121 is electrically connected to the electrical connection point 132 by welding via a wire. In the installation process, the second engaging member 121 may be fixed on the supporting plate 12, the flexible circuit board 13 is bonded on the supporting plate 12, so that a portion of the second engaging member 121 penetrates through the through hole 131 of the flexible circuit board 13, and finally, a wire (not shown) is welded to the solder joint and the second engaging member 121, so as to electrically connect the second engaging member 121 and the flexible circuit board 13. By adopting the design mode, the end surface of the second clamping piece 121 facing the outside of the through hole 131 and the electric connection point 132 are on the same working surface, so that the welding is convenient.
It can be known that the electrical connection point 132 may also be a connection point in other forms, for example, the electrical connection point 132 may also be an electrical interface disposed on the flexible circuit board 13, in this case, the second engaging member 121 is also correspondingly provided with an electrical interface, two ends of the wire are correspondingly provided with connection terminals, and the connection terminals at the two ends of the wire are respectively connected to the electrical interface on the flexible circuit board 13 and the interface of the second engaging member 121, so as to achieve electrical connection between the second engaging member 121 and the flexible circuit board 13. In actual design, an appropriate design manner may be selected according to actual conditions, and is not limited herein.
The first engaging member 25 and the second engaging member 121 in this embodiment may be engaging members such as rivet members or male and female fasteners that are matched with each other, which are not limited in this embodiment, and the design mode that the first engaging member 25 and the second engaging member 121 are male and female fasteners is preferably adopted in this embodiment.
In this embodiment, the mounting base 1 further includes a temperature measuring component 14 electrically connected to the flexible circuit board 13, and the temperature measuring component 14 is used for detecting the temperature of the electrode plate assembly 2 and sending the detected temperature to the flexible circuit board 13, so that the flexible circuit board 13 can know the temperature condition of the electrode plate assembly 2, and the flexible circuit board 13 can conveniently control the electrode plate assembly 2. Optionally, the Temperature measuring element 14 is a Negative Temperature Coefficient thermistor NTC (NTC for short). It should be understood that the temperature measuring element 14 may be other temperature measuring elements such as a thermocouple temperature measuring element, and may be reasonably arranged according to actual conditions, and the embodiment is exemplified by the negative temperature coefficient thermistor NTC without limitation.
Furthermore, the temperature measuring element 14 is located between the flexible circuit board 13 and the supporting plate 12, a first groove 122 is formed by inwards recessing a position, corresponding to the temperature measuring element 14, of one surface of the supporting plate 12 facing the base 11, and at least a temperature collecting end of the temperature measuring element 14 extends into the first groove 122. In such a way, the temperature measuring part 14 is hidden in the first groove 122 of the supporting plate 12, so that the temperature measuring part 14 can be prevented from being influenced by the environment or other parts in the mounting base 1 during temperature measurement. In addition, the temperature collecting end of the temperature measuring element 14 extends into the first groove 122, so that the interference of the flexible circuit board 13 on the supporting plate 12 can be avoided.
Furthermore, the surface of the supporting plate 12 facing away from the base 11, corresponding to the position of the temperature measuring part 14, is recessed inwards to form a second groove 123, a heat conducting part 124 is arranged in the second groove 123, and the heat conducting part 124 is in contact with the electrode plate assembly 2 and is used for collecting the temperature of the electrode plate assembly 2 and transmitting the temperature to the flexible circuit board 13. Optionally, the outer surface of the heat conducting member 124 is flush with the notch of the second groove 123, so that the adhesion of the electrode plate assembly 2 to the side of the supporting disc 12 away from the base 11 can be prevented from being affected.
As a first alternative embodiment, the second groove 123 is not communicated with the first groove 122, and the heat conducting member 124 abuts between the electrode sheet assembly 2 and the supporting plate 12, for conducting heat between the electrode sheet assembly 2 and the supporting plate 12, and conducting heat to the temperature measuring member 14 through the supporting plate 12. In this way, since the first groove 122 is not communicated with the second groove 123, the communication between the supporting disc 12 and the base 11 and the external environment can be avoided, so that dust or water from the external environment can be prevented from entering between the supporting disc 12 and the base 11, and the mounting seat 1 can be protected.
As a second alternative embodiment, the second groove 123 is communicated with the first groove 122, so that the heat conducting member 124 abuts between the electrode sheet assembly 2 and the temperature measuring member 14 for conducting heat between the electrode sheet assembly 2 and the temperature measuring member 124. The mode that the heat conducting piece 124 is abutted between the electrode plate component 2 and the temperature measuring piece 14 is adopted, so that the temperature measuring accuracy of the temperature measuring piece 14 can be effectively ensured. In addition, the heat conducting member 124 is disposed in the second groove 123, so as to perform the functions of sealing, dust-proof and water-proof of the second groove 123, so that dust or water from the external environment can be prevented from entering between the supporting disc 12 and the base 11, thereby protecting the mounting seat 1.
The present solution preferably employs the second alternative embodiment.
The heat conducting member 124 of the present embodiment may be a heat conducting member 124 with a good heat conducting effect, such as a graphite sheet or a metal sheet. In this embodiment, a metal sheet is preferably used as the heat conducting member 124, and it is understood that the heat conducting member 124 may also be a heat conducting member 124 made of other materials or shapes, which is not limited in this embodiment.
In this embodiment, in order to massage the effect that the head 10 can play the phototherapy, the one side that flexible circuit board 13 deviates from supporting disk 12 is equipped with luminous component 133, luminous component 133's plain noodles is towards supporting disk 12, flexible circuit board 13, supporting disk 12 and electrode slice subassembly 2 correspond the position light-permeable of luminous component 133 at least, the light that luminous component 133 sent sees through flexible circuit board 13, supporting disk 12 and electrode slice subassembly 2 and shines to user's neck to the realization is to the phototherapy of user's neck.
Moreover, the design mode that the light emitting component 133 is arranged on one surface of the flexible circuit board 13 deviating from the supporting disc 12 is adopted, no avoidance hole needs to be formed in the supporting disc 12, the structural design of the supporting disc 12 can be simplified, and the thickness and the strength of the supporting disc 12 can be guaranteed.
In addition, the light emitting part 133 may also be provided to illuminate, for example, when the massage head is used at night, the light emitted by the light emitting part 133 helps the user to quickly find the position of the massage head 10, so that the user can use the massage head conveniently. In addition, the light emitting part 133 is provided with a light decoration effect, so that the aesthetic feeling is improved, and the user experience is better.
The light emitting unit 133 may be a light emitting diode LED, an infrared lamp, or the like, and the light emitting unit 133 of the present embodiment is preferably a light emitting diode LED.
Preferably, the flexible circuit board 13, the support disc 12 and the electrode sheet assembly 2 are made of light-transmitting materials, that is, all light emitted by the light emitting component 133 can be irradiated to the neck of a user through the flexible circuit board 13, the support disc 12 and the electrode sheet assembly 2, so that the light utilization rate of the light emitting component 133 is higher. The flexible circuit board 13 is made of a flexible material, which may be a flexible material such as Polyimide pi (pi), polyvinyl chloride pvc (pvc), Polyethylene pe (pe), or resin, and in this embodiment, pi is preferably used as the material of the flexible circuit board 13, because pi has a high temperature resistant characteristic, the flexible circuit board 13 may not deform, and is stable and reliable in the process of curing the printed circuit board at a high temperature. The support plate 12 and the electrode sheet assembly 2 may be made of pvc, Polypropylene pp (Polypropylene), acrylonitrile butadiene styrene abs (acrylonitrile butadiene styrene), resin, or the like. In this embodiment, the materials of the flexible circuit board 13, the supporting plate 12 and the electrode plate assembly 2 are not limited, and in actual design, suitable materials may be selected according to actual conditions.
It is understood that the flexible circuit board 13, the supporting plate 12 and the electrode sheet assembly 2 may be provided with light holes at positions corresponding to the light emitting components 133, and may also perform a light transmitting function. When the light holes are formed in the positions corresponding to the light emitting components 133 of the flexible circuit board 13, the supporting disc 12 and the electrode plate assembly 2, in order to prevent dust from entering between the supporting disc 12 and the base 11 from the holes, a light transmitting sheet can be arranged on the light holes of the supporting disc 11, and the light transmitting sheet can be a light diffusing sheet so as to diffuse light and avoid forming local light spots.
In the present embodiment, the light emitting part 133 is plural, and the plural light emitting parts 133 are arranged at intervals along the circumferential direction of the flexible circuit board 13, so that the light emitted from the light emitting parts 133 is more uniform.
The light emitted by the different light emitting components 133 may be the same or different. For example, the light emitting component 133 may emit all red light or all green light or other uniform color light, or may emit a part of red light, a part of green light, and a part of blue light, and the like, which are not limited in this embodiment.
In this embodiment, other electronic components are further disposed between the supporting tray 12 and the base 11, and the other electronic components are electrically connected to the flexible circuit board 13 through wires or other methods. In order to prevent the supporting disc 12 from moving relative to the base 11, which may cause the flexible circuit board 13 to tear from the conductive wires, which may cause unstable electrical connection, the mounting base 1 is further provided with a positioning structure for positioning the supporting disc 12 and the base 11.
Specifically, in this embodiment, the positioning structure may specifically include: the positioning post 151 facing the base 11 and the positioning hole 152 provided on the base 11 and used for inserting the positioning post 151 are disposed on the supporting plate 12, and the third avoiding hole 134 for avoiding the positioning post 151 is disposed at a position of the flexible circuit board 13 corresponding to the positioning post 151. The positioning posts 151 are connected with the positioning holes 152 in a matching manner, and function to position the supporting plate 12 and the base 11, so as to ensure that the supporting plate 12 can maintain a stable state relative to the base 11.
In other implementations, the positioning column 151 may also be disposed on the base 11, in which case, a positioning hole 152 for inserting the positioning column 151 is disposed on the supporting tray 12, and the positioning column 151 is in fit connection with the positioning hole 152 to achieve the positioning function of the supporting tray 12 and the base 11, which is not limited herein.
The embodiment of the utility model provides a massage head disclosed, through setting up the circuit board between supporting disk and base, and set up the circuit board into flexible circuit board, flexible circuit board pastes and establishes in the one side of supporting disk towards the base, so set up and make this flexible circuit board can buckle, so that this flexible circuit board can carry out adaptability according to the shape of supporting disk and warp, and then can be better with the supporting disk laminating, thereby the space between base and the supporting disk has been saved, direct pasting the flexible circuit board simultaneously establishes in the one side of supporting disk towards the base, can realize flexible circuit board's fixed, need not to set up extra mounting in electrode installation base, thereby further saved the space between base and the supporting disk, and then reduced massage head's volume, be favorable to massage head whole to frivolousization development.
In addition, the second clamping piece and the first clamping piece are used as connecting pieces of the supporting disc and the electrode plate assembly, so that the electrode plate assembly and the supporting disc can be mechanically fixed, the electrode plate assembly can be electrically connected with the flexible circuit board, the structural design of the massage head can be simplified, and the structural integration degree of the massage head is higher.
Example two
Referring to fig. 5, a second embodiment of the present invention discloses a neck massager, which includes an elastic support 20 and a massage head 10 according to the first embodiment, wherein the massage head 10 is connected to the elastic support 20, a main control circuit board is disposed in the elastic support 20, and the flexible circuit board is electrically connected to the main control circuit board.
Specifically, the elastic support 20 is approximately C-shaped, and the massage head 10 is protrudingly provided on the inner side surface of the elastic support 20 and extends toward the neck portion side. Usually, materials with elastic properties can be selected, for example, materials such as silica gel and rubber can be selected, so that the neck-protecting band is convenient to wear on the neck of a human body and has certain skin-friendly property. When the user uses the neck massage apparatus, the elastic support 20 can be arranged on the neck in a straddling manner, so that the massage head 10 can be aligned with the part to be massaged on the neck and attached to the skin of the neck, thereby realizing massage.
The specific design of the massage head can refer to the first embodiment, and the detailed description thereof is omitted here.
The embodiment of the utility model provides a second discloses neck massage appearance adopts the massage head of frivolous design to realize neck massage appearance's frivolousization.
EXAMPLE III
The third embodiment of the utility model discloses a wearable massage equipment, wearable massage equipment including dress the piece and like the massage head of embodiment one, on the piece was dressed to the massage head, dressed the piece and was used for supplying the human body to dress. The wearable massage apparatus of the present embodiment may be, but is not limited to, a neck massager, an eye massager, a shoulder massager, a leg massager, a waist massager, a head massager, a massage headgear, or a massage eye shield. Taking the eye massager as an example, the wearing piece can be a belt body or a frame for wearing on the ears or the head of a human body, and the belt body can be an adjustable connecting belt. Taking the waist massager as an example, the wearing piece can be a waistband or an abdominal belt which can be worn on the waist of the human body.
The specific design of the massage head can refer to the first embodiment, and the detailed description thereof is omitted here.
The embodiment of the utility model provides a three wearable massage equipment that disclose adopts the massage head of frivolous design to realize the frivolousization of neck massage appearance.
The massage head, the neck massage instrument and the wearable massage device disclosed by the embodiment of the utility model are introduced in detail, the principle and the implementation mode of the utility model are explained by applying specific examples, and the explanation of the above embodiments is only used for helping to understand the massage head, the neck massage instrument and the wearable massage device and the core idea thereof; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the specific implementation and application scope, and in summary, the content of the present specification should not be understood as the limitation of the present invention.

Claims (18)

1. A massage head, characterized in that the massage head comprises:
the mounting seat comprises a base, a supporting plate and a flexible circuit board, wherein the supporting plate is arranged on the base, the flexible circuit board is positioned between the base and the supporting plate, and the flexible circuit board is attached to one surface, facing the base, of the supporting plate;
and the electrode plate assembly is arranged on one surface of the supporting plate, which deviates from the base, and is electrically connected with the flexible circuit board.
2. The massage head as recited in claim 1, wherein the electrode plate assembly is provided with a first engaging member, and the support plate is provided with a second engaging member that is fittingly connected to the first engaging member;
the electrode sheet assembly is detachably connected with the support plate through the matching of the first clamping piece and the second clamping piece.
3. The massage head of claim 2 wherein the electrode pad assembly comprises a stack of electrically conductive layers and electrode layers, the electrically conductive layers being disposed between the support plate and the electrode layers, the electrically conductive layers being electrically connected to the flexible circuit board, the electrode layers being electrically connected to the electrically conductive layers;
the first clamping piece comprises at least one first sub-clamping piece arranged on the conductive layer, and the first sub-clamping piece extends towards the direction of the supporting plate;
the second clamping piece comprises at least one second sub-clamping piece which is arranged on the supporting plate and can be in matched connection with the first sub-clamping piece, and one first sub-clamping piece corresponds to one second sub-clamping piece.
4. The massage head as claimed in claim 3, wherein the electrode sheet assembly further comprises a heating layer provided between the conductive layer and the support plate, and an insulating layer provided between the heating layer and the conductive layer, the heating layer being electrically connected to the flexible circuit board, the insulating layer serving for insulation between the heating layer and the conductive layer;
the first clamping piece comprises at least two third clamping pieces arranged on the heating layer, and the third clamping pieces extend towards the direction of the supporting plate;
the second clamping piece comprises at least two fourth sub-clamping pieces which are arranged on the supporting plate and can be in matched connection with the third sub-clamping pieces, and one third sub-clamping piece corresponds to one fourth sub-clamping piece.
5. The massage head as claimed in claim 4, wherein the insulating layer has a first avoidance hole for avoiding the first sub-fastener;
the heating layer is provided with a second avoidance hole used for avoiding the first sub-clamping piece.
6. The massage head as recited in claim 2, wherein the first engaging member and the second engaging member are electrically conductive engaging members, the first engaging member is electrically connected to the electrode sheet assembly, the second engaging member is electrically connected to the flexible circuit board, and when the first engaging member is mated with the second engaging member, the electrode sheet assembly and the flexible circuit board are electrically connected.
7. The massage head as claimed in any one of claims 1 to 6, wherein the mounting base further comprises a temperature measuring member electrically connected to the flexible circuit board;
the temperature measuring part is used for detecting the temperature of the electrode plate assembly and feeding the detected temperature back to the flexible circuit board.
8. The massage head as claimed in claim 7, wherein the temperature measuring member is located between the flexible circuit board and the supporting plate;
one side of the supporting disc, facing the base, is recessed inwards to form a first groove corresponding to the temperature measuring piece, and at least the temperature collecting end of the temperature measuring piece extends into the first groove.
9. The massage head as recited in claim 8, wherein a surface of the supporting plate facing away from the base is recessed to form a second recess corresponding to the temperature measuring member, and a heat conducting member is disposed in the second recess and contacts with the electrode plate assembly.
10. The massage head of claim 9 wherein an outer surface of the thermal conductor member is flush with the notch of the second recess.
11. The massage head as claimed in claim 9, wherein the second groove is not in communication with the first groove, and the heat conducting member abuts between the electrode sheet assembly and the support plate for conducting heat between the electrode sheet assembly and the support plate and to the temperature measuring member through the support plate;
or the second groove is communicated with the first groove, so that the heat conducting piece is abutted between the electrode sheet assembly and the temperature measuring piece and used for conducting heat between the electrode sheet assembly and the temperature measuring piece.
12. The massage head as claimed in any one of claims 1 to 6, wherein a light emitting member is disposed on a surface of the flexible circuit board facing away from the support plate, a light emitting surface of the light emitting member faces the support plate, and the flexible circuit board, the support plate and the electrode sheet assembly are light-permeable at least at a position corresponding to the light emitting member.
13. The massage head as recited in claim 12, wherein the light emitting member is plural, and plural light emitting members are provided at intervals along a circumferential direction of the flexible circuit board.
14. The massage head as claimed in any one of claims 1 to 6, wherein the mounting base is further provided with a positioning structure for positioning the support plate and the base.
15. The massage head of claim 14 wherein the positioning structure comprises: the positioning column is arranged on the supporting plate and faces the base, and the positioning hole is formed in the base and used for inserting the positioning column;
and a third avoidance hole used for avoiding the positioning column is formed in the position, corresponding to the positioning column, of the flexible circuit board.
16. The massage head as claimed in any one of claims 1 to 6, wherein the electrode sheet assembly comprises an electrode layer electrically connected to the flexible circuit board, the electrode layer being a gel sheet.
17. A neck massager, comprising an elastic support and the massage head as claimed in any one of claims 1 to 16, wherein the massage head is connected to the elastic support, a main control circuit board is arranged in the elastic support, and the flexible circuit board is electrically connected with the main control circuit board.
18. A wearable massage apparatus, comprising a wearing member and the massage head according to any one of claims 1 to 16, wherein the massage head is provided on the wearing member, and the wearing member is worn by a human body.
CN202020659885.7U 2020-04-26 2020-04-26 Massage head, neck massage appearance and wearable massage equipment Active CN213407481U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113546310A (en) * 2020-04-26 2021-10-26 未来穿戴技术有限公司 Massage head, neck massage appearance and wearable massage equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113546310A (en) * 2020-04-26 2021-10-26 未来穿戴技术有限公司 Massage head, neck massage appearance and wearable massage equipment

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Patentee after: Future wear Health Technology Co.,Ltd.

Address before: 23af, building 3, zhongkekefa Park, 009 Gaoxin South 1st Road, high tech Zone community, Yuehai street, Nanshan District, Shenzhen, Guangdong 518000

Patentee before: Future wearable technology Co.,Ltd.

Address after: 23af, building 3, zhongkekefa Park, 009 Gaoxin South 1st Road, high tech Zone community, Yuehai street, Nanshan District, Shenzhen, Guangdong 518000

Patentee after: Future wearable technology Co.,Ltd.

Address before: 23af, building 3, zhongkekefa Park, 009 Gaoxin South 1st Road, high tech Zone community, Yuehai street, Nanshan District, Shenzhen, Guangdong 518000

Patentee before: Future wearable technology Co.,Ltd.

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