CN220121980U - Battery module and wearable massage device - Google Patents

Battery module and wearable massage device Download PDF

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Publication number
CN220121980U
CN220121980U CN202320441080.9U CN202320441080U CN220121980U CN 220121980 U CN220121980 U CN 220121980U CN 202320441080 U CN202320441080 U CN 202320441080U CN 220121980 U CN220121980 U CN 220121980U
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mounting
battery
heating
massage
piece
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CN202320441080.9U
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Chinese (zh)
Inventor
刘海防
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SKG Health Technologies Co Ltd.
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SKG Health Technologies Co Ltd.
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Priority to CN202320441080.9U priority Critical patent/CN220121980U/en
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Abstract

The utility model discloses a battery module and a wearable massage device, wherein the battery module comprises: a battery and a heating element; the battery is arranged on one side of the mounting piece, and the heating piece is arranged on the other side of the mounting piece; the mounting piece comprises a mounting body and a first protruding part arranged on one side of the mounting body, and the first protruding part supports the battery so that a space is formed between the battery and one side of the mounting body; and/or the mounting piece further comprises a second protruding part arranged on the other side of the mounting body, and the second protruding part supports the heating piece so that a space is formed between the heating piece and the other side of the mounting body. The technical scheme of the utility model safely and reliably increases the heating area.

Description

Battery module and wearable massage device
Technical Field
The utility model relates to the technical field of massage, in particular to a battery module and a wearable massage device.
Background
Along with the improvement of the living standard of people, the requirements of people on wearable massage equipment are also higher and higher. For example, in order for a warmer to massage better, it is necessary to increase the heating area of the warmer. Because the surface area of the uterus warmer is limited, and massage structures are arranged on the uterus warmer, the heating structure needs to be laminated with the original parts. For example, when the heating structure is stacked with the power supply, heat generated by the heating structure may affect the operation of the battery, and may easily fail, which is disadvantageous for users.
It should be noted that the foregoing is merely for convenience of technical issues, and is not representative of the prior art.
Disclosure of Invention
The utility model mainly aims to provide a battery module, which aims to increase the heating area of the battery module in a reliable manner.
In order to achieve the above object, the battery module according to the present utility model includes:
a battery and a heating element;
the battery is arranged on one side of the mounting piece, and the heating piece is arranged on the other side of the mounting piece;
the mounting piece comprises a mounting body and a first protruding part arranged on one side of the mounting body, wherein the first protruding part supports the battery so that a space is formed between the battery and one side of the mounting body; and/or the mounting piece further comprises a second protruding part arranged on the other side of the mounting body, and the second protruding part supports the heating piece so that a space is formed between the heating piece and the other side of the mounting body.
Optionally, the first protruding portion includes a plurality of first ribs, and the plurality of first ribs enclose to form a plurality of first spacing grooves.
Optionally, the battery module further includes an elastic glue layer, where the elastic glue layer is disposed between the first protruding portion and the battery and connects the first protruding portion and the battery.
Optionally, the second protruding portion includes a plurality of second ribs, and the plurality of second ribs enclose to form a plurality of second spacing grooves.
Optionally, the plurality of second ribs include a plurality of transverse ribs and a plurality of longitudinal ribs, the plurality of transverse ribs and the plurality of longitudinal ribs are staggered, and the plurality of second spacing grooves are formed by enclosing;
and/or the heating element is attached to the second rib.
Optionally, a mounting groove is formed on one side of the mounting piece facing the heating piece, and the heating piece is mounted in the mounting groove; the second protruding portion is formed at the bottom of the mounting groove.
Optionally, an assembly gap is reserved between the heating element and the groove wall of the mounting groove; and/or the number of the groups of groups,
the side surface of the heating piece, which is opposite to the bottom of the mounting groove, is flush with the surface of the isolating piece; and/or the number of the groups of groups,
the groove wall of the mounting groove is provided with a connecting notch communicated with the mounting groove, the heating piece comprises a heating part and a connecting part, one end of the connecting part is connected with the heating part, and the other end of the connecting part extends out of the mounting groove through the connecting notch; and/or the number of the groups of groups,
the bottom of the mounting groove is provided with a containing groove, the battery module further comprises a temperature sensor, the temperature sensor is contained in the containing groove, and the temperature sensor is used for detecting the temperature of the heating piece.
Optionally, the battery module further comprises a shell part, the shell part is connected with the mounting piece and surrounds to form a mounting cavity, and the battery body is mounted in the mounting cavity; and/or the number of the groups of groups,
the heating element is a diaphragm heating element.
The utility model further proposes a massaging device comprising:
a housing having a working surface;
the massage piece is arranged on the working surface;
the battery module comprises a battery and a heating piece, wherein the battery and the heating piece are both installed in the shell, the heating piece is located on one side, close to the working face, of the battery, and the heating piece is at least partially located on the periphery of the massage piece.
Optionally, the battery module further comprises a mounting member, the battery is mounted on one side of the mounting member, and the heating member is mounted on the other side of the mounting member;
the mounting piece comprises a mounting body and a first protruding part arranged on one side of the mounting body, wherein the first protruding part supports the battery so that a space is formed between the battery and one side of the mounting body; and/or the mounting piece further comprises a second protruding part arranged on the other side of the mounting body, and the second protruding part supports the heating piece so that a space is formed between the heating piece and the other side of the mounting body.
Optionally, the first protruding portion includes a plurality of first ribs, and the plurality of first ribs enclose to form a plurality of first spacing grooves; and/or the number of the groups of groups,
the second protruding portion comprises a plurality of second ribs, and the second ribs enclose to form a plurality of second interval grooves.
Optionally, the housing includes a base plate and a cover;
the base plate comprises a massage part and an extension part, the extension part is positioned at one side of the massage part, the massage part and the extension part both comprise a mounting surface and a working surface which are oppositely arranged, and the working surface of the massage part is provided with the massage piece;
the cover body is located the installation face of massage portion and the installation face place one side of extension, just the cover body connect in the base plate, the cover body with be formed with first installation space between the installation face of massage portion, first installation space installs electric element, the cover body with be formed with the second installation space between the installation face of extension, the second installation space is installed battery module, battery module with electric element electricity is connected.
According to the technical scheme, the first bulge is arranged on one side of the installation body, and the first heat insulation space is formed between the installation body and the battery, so that the heat transmission efficiency between the battery and the installation body is greatly reduced, the heat transmission efficiency between the battery and the heating element is reduced, and the mutual influence of the heating element and the battery is avoided; likewise, the second bulge is arranged on the other side of the installation body, and a second heat insulation space is formed between the installation body and the heating element, so that the heat transmission efficiency between the heating element and the installation body is greatly reduced, the heat transmission efficiency between the battery and the heating element is reduced, and the mutual influence of the heating element and the battery is avoided; when set up first arch and second arch respectively in the both sides of installation body, be formed with first thermal-insulated space, second thermal-insulated space and installation body between battery and the heating piece for heat energy between battery and the heating piece can not transfer each other, so, can ensure the job stabilization nature of battery and heating piece when increasing heating area, be favorable to user's use.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to the structures shown in these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic view of a massage device according to an embodiment of the present utility model;
FIG. 2 is a schematic diagram illustrating an internal structure of the embodiment of FIG. 1;
FIG. 3 is a schematic diagram of an exploded view of the embodiment of FIG. 1;
FIG. 4 is a schematic view of the structure of FIG. 3 from another perspective;
fig. 5 is a schematic view of the battery module of fig. 3;
FIG. 6 is a schematic diagram of an exploded view of the embodiment of FIG. 5;
fig. 7 is a schematic view of an embodiment of the mounting member of fig. 6.
Reference numerals illustrate:
the achievement of the objects, functional features and advantages of the present utility model will be further described with reference to the accompanying drawings, in conjunction with the embodiments.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that all directional indicators (such as up, down, left, right, front, and rear … …) in the embodiments of the present utility model are merely used to explain the relative positional relationship, movement, etc. between the components in a particular posture (as shown in the drawings), and if the particular posture is changed, the directional indicator is changed accordingly.
Furthermore, the description of "first," "second," etc. in this disclosure is for descriptive purposes only and is not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, "and/or" throughout this document includes three schemes, taking a and/or B as an example, including a technical scheme, a technical scheme B, and a technical scheme that both a and B satisfy; in addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
The utility model mainly provides a battery module which is mainly applied to a wearable massage device to increase heating area. Wherein, wearing formula massage device is used for massaging the human body. The wearing massage device can be a massage waistband (waist massage instrument), a neck massage instrument, a head massage instrument, an eye massage instrument and the like. The massage device can comprise a massage component and a wearing piece, and the massage component and the wearing piece can be integrally and non-detachably connected or detachably connected. The wearing member may be a hard wearing member, or may be a flexible wearing member, or may be a wearing member combining flexibility and hardness. The wearing member may be in the form of a holder, a flexible belt (wearing belt), or the like, and is not particularly limited herein. The massage assembly may also include a massage unit and a support member, which may be a flexible support member or a rigid support member, and the utility model will be mainly described by way of example. It should be noted that in some embodiments, the support member and the wearing member may be integrally formed. The massage component is mainly used for performing physiotherapy on skin, muscle and the like of the human body part through electric stimulation, light physiotherapy, diaphragm heating, vibration and kneading and pressing. In the following embodiment of the present utility model, the massage device will be described with reference to a uterus warmer. It is noted that the massage referred to in the present utility model refers collectively to physical stimulation of non-drugs including, but not limited to, one or more of electrical stimulation, phototherapy, heating of the membrane, and vibration and compression.
The structure and function of the uterus warmer will be described in the following, and each component of the uterus warmer will be described separately, mainly referring to the shape, structure, physical characteristics (flexibility, elasticity, hardness, etc.) of each massage component, and the positional relationship and cooperation relationship between each component. The uterus warmer comprises a wearing piece (a flexible waistband) and a massage component (a main body part). The flexible waistband can be a waistband with a wearing space and only playing a wearing role, can also be a flexible waistband with a built-in circuit, and the circuit can be a power circuit, a signal circuit, a circuit connection massage component and a power supply, or a connection massage component and a control unit and the like. The flexible waistband and the massage component can be detachably connected, and the detachable connection modes of the massage component and the flexible waistband are numerous, such as adsorption through an assembled magnetic piece and adhesion through an assembled magic tape, or a containing part (for containing the massage component), a hanging part (for hanging and installing the massage component) and the like are arranged on the flexible waistband, and of course, the massage component and the massage component can also be used in various combinations in the modes. Of course, in some embodiments, the flexible waistband and the massage assembly may be integrally and non-detachably connected, and it should be noted that, in some embodiments, a portion of the flexible waistband (in the case that the flexible waistband includes a plurality of portions, such as the flexible waistband includes a first belt body and a second belt body) may be integrally formed with a portion of the massage assembly (in the case that the massage assembly includes a plurality of portions, such as the massage assembly includes a flexible base and a flexible support sheet, etc.), for example, the first belt body and the flexible base may be integrally formed.
The massage component comprises a supporting piece (a shell) and a functional piece arranged on the supporting piece, wherein the functional piece is a massage unit, a power supply component, an electric control component and the like. The massage unit may be an optical massage unit (optical physiotherapy unit), an electro-stimulation massage unit, a heating massage unit, a vibration, kneading or pressing massage unit, etc., and of course, in some embodiments, the actual massage unit may combine the functions of the above-mentioned massage units. When the massage assembly works, the power supply assembly provides electric energy for the electric control assembly and the massage unit, and the massage unit outputs any one or more of electric stimulation, heat energy, light energy, mechanical vibration, mechanical extrusion and the like outwards under the control of the electric control assembly. When the skin, the muscles and the like of the human body receive any one or more of electric stimulation, heat energy, light energy, mechanical vibration and mechanical extrusion, the blood circulation is accelerated, related substances at the positions of ache and the like are timely conveyed and discharged out of the body through the blood circulation, and meanwhile, the muscles are stretched and moved under the action of external stimulation, so that the massage device can massage the human body. The support may be in a variety of forms, and may be a hard support or a flexible support, and in some embodiments may even be a support with a combination of soft and hard, where specific physical characteristics may be set according to actual operating conditions, product positioning, and the like.
The specific structure of the battery module 300 will be mainly described below.
Referring to fig. 1 to 7, in an embodiment of the present utility model, the battery module 300 includes:
a battery 360 and a heating member 310;
a mounting member 320, the battery 360 being mounted on one side of the mounting member 320, the heating member 310 being mounted on the other side of the mounting member 320;
the mount 320 includes a mount body 370 and a first protrusion 321 provided at one side of the mount body 370, the first protrusion 321 supporting the battery 360 such that a first interval space is formed between the battery 360 and one side of the mount body 370; and/or, the mounting member 320 further includes a second protrusion 323 disposed at the other side of the mounting body 370, and the second protrusion 323 supports the heating member 310 such that a second interval space is formed between the heating member 310 and the other side of the mounting body 370.
Specifically, in the present embodiment, the battery 360 is exemplified by a plurality of types of batteries 360, and may be a rechargeable battery 360. The overall shape of the battery 360 may be various, such as cuboid, cube, etc., and the overall shape of the battery 360 may be set according to actual working condition requirements. The heating element 310 may take various forms, and may be an electric heating element 310, such as a heating wire, a heating block, a heating rod, etc., in this embodiment, a heating film is taken as an example, that is, the heating element 310 is a membrane heating element 310. The mounting member 320 may be used to mount the battery 360 as well as the heating member 310. It should be noted that in some embodiments, the mounting member 320 may be configured to independently mount the battery 360, and in other embodiments, the mounting member 320 may be configured to cooperate with other components to mount the battery 360. For example, the mount 320 may cooperate with the housing portion 330 to effect the mounting of the battery 360. Specifically, the battery module 300 further includes a housing portion 330, the housing portion 330 is connected to the mounting member 320 and encloses and forms a mounting cavity, and the battery 360 is mounted in the mounting cavity, so that the battery 360 can be effectively protected.
The overall shape of the mounting member 320 may be varied, such as plate-like, half-shell-like, etc., and the overall shape may be similar to the battery 360 due to the need to mount the battery 360, in this embodiment, the mounting member 320 includes a substrate for illustration purposes. The first protrusion 321 provided at one side of the mounting body 370 may have many forms, such as a rib, a post, a protrusion, etc. The first protrusion may be mounted on the mounting body 370, or may be integrally formed with the mounting body 370. Since the shape and form of the first protrusion may be different, the shape and form of the first interval space formed between the mounting body 370 and the battery 360 may also have various forms. The first compartment may be used for direct transfer of thermal insulation and may also be used for heat dissipation from the battery 360. Likewise, the second protrusion 323 provided at the other side of the mounting body 370 may have various forms, such as ribs, posts, protrusions, and the like. The second protruding portion 323 may be mounted on the mounting body 370, or may be integrally formed with the mounting body 370. Since the shape and form of the second protrusion 323 may be different, the shape and form of the second interval space formed between the mounting body 370 and the heating member 310 may be variously changed. The second compartment may be used for direct transfer of insulation heat, and may also be used for heat dissipation of the mounting body 370.
In this embodiment, by providing the first protrusion on one side of the mounting body 370 and forming the first heat insulation space 322 between the mounting body 370 and the battery 360, the heat transmission efficiency between the battery 360 and the mounting body 370 is greatly reduced, so that the heat transfer efficiency between the battery 360 and the heating element 310 is reduced, and the interaction between the heating element 310 and the battery 360 is avoided; also, by providing the second protrusion 323 at the other side of the mounting body 370 and forming the second insulation space between the mounting body 370 and the heating member 310, the heat transmission efficiency between the heating member 310 and the mounting body 370 is greatly reduced, so that the heat transfer efficiency between the battery 360 and the heating member 310 is reduced, and the interaction between the heating member 310 and the battery 360 is avoided; when the first protrusion and the second protrusion 323 are respectively provided at both sides of the mounting body 370, the first heat insulation space 322, the second heat insulation space and the mounting body 370 are formed between the battery 360 and the heating member 310, so that heat energy between the battery 360 and the heating member 310 cannot be transferred to each other, thus, the working stability of the battery 360 and the heating member 310 can be ensured while increasing the heating area, and the use of a user is facilitated.
There are many forms of the first protrusion and the second protrusion 323, and the following examples will be described.
The first protruding portion 321 includes a plurality of first ribs, where the plurality of first ribs enclose to form a plurality of first spacing grooves, and the plurality of first spacing grooves combine to form the first spacing space. The first rib may be in a variety of forms including, for example, linear ribs, arcuate ribs, annular ribs, and the like. The plurality of first ribs may be formed to enclose the plurality of first spaced grooves, for example, a portion of the first ribs may extend along the length of the mounting member 320, a portion of the first ribs may extend along the width of the mounting member 320, and the transverse and longitudinal first ribs may be staggered. In other embodiments, the annular ribs are sleeved with each other, and may also enclose to form the first spacing groove. In some embodiments, in order to improve the stability of the installation of the battery 360, the battery module 300 further includes an elastic glue layer 350, and the elastic glue layer 350 is disposed between the first protrusion 321 and the battery 360 and connects the first protrusion 321 and the battery 360. The elastic glue layer 350 has adhesive properties and certain elasticity, such as foam glue, sponge glue, and the like. Connect mounting 320 and battery 360 through elastic glue layer 350 for can extrude elastic glue layer 350 when battery 360 work inflation, the deformation of elastic glue layer 350 can provide the space for the inflation swell of battery 360 this moment, avoids battery 360 to be extruded to bad because the inflation when guaranteeing battery 360 connection stability.
The second protruding portion 323 includes a plurality of second ribs, the plurality of second ribs enclose to form a plurality of second spacing grooves, and the plurality of second spacing grooves combine to form the second spacing space. The second rib may be in the form of a plurality of ribs including, for example, linear ribs, arcuate ribs, annular ribs, etc. As will be described by way of example, the plurality of second ribs includes a plurality of transverse ribs 325 and a plurality of longitudinal ribs 326, and the plurality of transverse ribs 325 and the plurality of longitudinal ribs 326 are staggered to form the plurality of second spaced apart grooves. The heating element 310 is attached to the second rib.
In some embodiments, in order to improve the operation stability of the heating member 310 while improving the space utilization rate and reducing the thickness of the battery module 300, the mounting member 320 is formed with a mounting groove 327 at a side facing the heating member 310, and the heating member 310 is mounted to the mounting groove 327; the second protrusion 323 is formed at the bottom of the installation groove 327. The mounting groove 327 is formed by recessing from the surface of the mounting member 320, so that excessive extrusion of other parts to the heating member 310 can be reduced or even avoided when the heating member 310 is mounted in the mounting groove 327, the working reliability of the heating member 310 is improved, and the stability of the heating member 310 is improved. Meanwhile, the heating member 310 is disposed at the mounting groove 327 such that the overall thickness of the battery module 300 is reduced, and when the heating member 310 is completely mounted in the mounting groove 327, the reduced thickness may be the thickness of the heating member 310. In some embodiments, to improve the ease of installation of the heating element 310, an assembly gap is left between the heating element 310 and the walls of the mounting groove 327. In some embodiments, to avoid collapse of the surface of the electrical device using the battery module 300, the side of the heating element 310 facing away from the bottom of the mounting groove 327 is flush with the surface of the spacer. The groove wall of the installation groove 327 is provided with a connection gap 328 communicated with the installation groove 327, the heating element 310 comprises a heating part 311 and a connecting part 312, one end of the connecting part 312 is connected with the heating part 311, and the other end extends out of the installation groove 327 through the connection gap 328. The connection portion 312 is used for being electrically connected with the main control board 500 of the electronic device (directly connected, or indirectly connected through the flexible main control board 500, a wire and the like), and the connection portion 312 extends out of the mounting groove 327 through the connection notch 328, so that a part of the connection portion 312 is stored in the connection notch 328, extrusion of an external environment and the like are avoided, and the stability of the operation of the connection portion 312 is improved. In some embodiments, in order to better control the operation of the heating element 310, the battery module 300 further includes a temperature sensor, where the bottom of the mounting groove 327 is provided with a receiving groove 329, and the temperature sensor is received in the receiving groove 329 and is used for detecting the temperature of the heating element 310.
The utility model further provides a massage device, comprising: a housing 10, the housing 10 having a working surface 230; a massage member 100 provided on the working surface 230; the battery module 300, the battery module 300 includes a battery 360 and a heating member 310, the battery 360 and the heating member 310 are both installed in the housing 10, the heating member 310 is located at one side of the battery 360 near the working surface 230, and the heating member 310 is at least partially located at the periphery of the massage member 100.
The battery module 300 in this embodiment includes the battery 360 and the heating member 310 which are stacked, so that the heating area of the massage device is greatly increased. Meanwhile, the heating member 310 is at least partially located at the circumferential side of the massage member 100, so that the massage position can be effectively heated for massage, which is advantageous for improving the massage effect (heating is advantageous for the skin and muscles to be more relaxed and for the blood circulation to be accelerated) while improving the user's comfort.
In order to avoid the mutual influence between the heating element 310 and the battery 360, the heating module in this embodiment may adopt the technical solutions in the above embodiments, and the technical effects produced by each embodiment are the same as those of the above embodiments, and are not described in detail.
The battery module 300 further includes a mounting member 320, the battery 360 is mounted to one side of the mounting member 320, and the heating member 310 is mounted to the other side of the mounting member 320; the mount 320 includes a mount body 370 and a first protrusion 321 provided at one side of the mount body 370, the first protrusion 321 supporting the battery 360 such that a first interval space is formed between the battery 360 and one side of the mount 320; and/or, the mounting member 320 further includes a second protrusion 323 provided at the other side of the mounting body 370, the second protrusion 323 supporting the heating member 310 such that a second interval space is formed between the heating member 310 and the other side of the mounting member 320.
The first protruding portion 321 includes a plurality of first ribs, where the plurality of first ribs enclose to form a plurality of first spacing grooves, and the plurality of first spacing grooves combine to form the first spacing space; and/or, the second protruding portion 323 includes a plurality of second ribs, where the plurality of second ribs enclose to form a plurality of second spacing grooves, and the plurality of second spacing grooves combine to form the second spacing space.
The battery module 300 further includes an elastic glue layer 350, where the elastic glue layer 350 is disposed between the first protruding portion 321 and the battery 360 and connects the first protruding portion 321 and the battery 360.
The plurality of second ribs include a plurality of transverse ribs 325 and a plurality of longitudinal ribs 326, the plurality of transverse ribs 325 and the plurality of longitudinal ribs 326 are staggered, and the plurality of second spacing grooves are formed by enclosing; and/or, the heating element 310 is attached to the second rib.
A mounting groove 327 is formed at a side of the mounting member 320 facing the heating member 310, and the heating member 310 is mounted in the mounting groove 327; the second protrusion 323 is formed at the bottom of the installation groove 327.
An assembly gap is reserved between the heating element 310 and the groove wall of the mounting groove 327; and/or, the side of the heating element 310 facing away from the bottom of the mounting groove 327 is flush with the surface of the spacer; and/or, a connecting gap 328 is formed on the wall of the mounting groove 327 and is communicated with the mounting groove 327, the heating element 310 includes a heating portion 311 and a connecting portion 312, one end of the connecting portion 312 is connected with the heating portion 311, and the other end extends out of the mounting groove 327 through the connecting gap 328; and/or, the bottom of the mounting groove 327 is provided with a receiving groove 329, and the battery module 300 further includes a temperature sensor, where the temperature sensor is received in the receiving groove 329, and the temperature sensor is used to detect the temperature of the heating element 310.
The battery module 300 further includes a case 330, the case 330 is connected to the mounting member 320 and encloses a mounting cavity, and the battery 360 is mounted in the mounting cavity; and/or, the heating element 310 is a diaphragm heating element 310.
The massage device may take many forms, and is exemplified below, and the housing 10 includes a base 200 and a cover 600; the base plate 200 includes a massage part 210 and an extension part 220, the extension part 220 is located at one side of the massage part 210, the massage part 210 and the extension part 220 each include a mounting surface and a working surface 230 which are oppositely disposed, and the working surface 230 of the massage part 210 is provided with the massage member 100; the cover 600 is located on one side of the mounting surface of the massage part 210 and the mounting surface of the extension part 220, and the cover 600 is connected to the base 200, a first mounting space 610 is formed between the cover 600 and the mounting surface of the massage part 210, an electrical component is mounted in the first mounting space 610, a second mounting space 620 is formed between the cover 600 and the mounting surface of the extension part 220, the battery module 300 is mounted in the second mounting space 620, and the battery module 300 is electrically connected with the electrical component. In this way, the battery module 300 is mounted in the second mounting space 620 between the base plate 200 and the cover 600, and thus, the massage device can be ensured to be thinner. In addition, since the extension part 220 and the massage part 210 are integrally fixed in the wiring position between the electric elements during the use of the massage device, the movement is not easy, the use effect can be improved, and the massage comfort is ensured. In addition, an installation space (in the case of being not limited, the installation space refers to at least one of the first installation space 610 and the second installation space 620) is formed between the cover body 600 and the substrate 200, and is used for placing an electrical component, the electrical component is placed between the substrate 200 and the cover body 600, so that the integrity of the electrical component between the massage devices is stronger, the installation space limits the electrical component, the electrical component is prevented from being translocated in the use process of the massage devices, potential safety hazards are avoided, and the user wears the massage devices more safely.
The foregoing description is only of the preferred embodiments of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structural changes made by the description of the present utility model and the accompanying drawings or direct/indirect application in other related technical fields are included in the scope of the utility model.

Claims (12)

1. A battery module, characterized in that the battery module comprises:
a battery and a heating element;
the battery is arranged on one side of the mounting piece, and the heating piece is arranged on the other side of the mounting piece; the mounting member includes a mounting body;
the mounting piece further comprises a mounting body and a first protruding portion arranged on one side of the mounting body, and the first protruding portion supports the battery so that a space is formed between the battery and one side of the mounting body; and/or the mounting piece further comprises a second protruding part arranged on the other side of the mounting body, and the second protruding part supports the heating piece so that a space is formed between the heating piece and the other side of the mounting body.
2. The battery module of claim 1, wherein the first protrusion includes a plurality of first ribs that enclose to form a plurality of first spaced apart slots.
3. The battery module of claim 1, further comprising an elastomeric layer disposed between and connecting the first boss and the battery.
4. The battery module of claim 1, wherein the second protrusion includes a plurality of second ribs that enclose a plurality of second spaced apart slots.
5. The battery module of claim 4, wherein the plurality of second ribs comprises a plurality of transverse ribs and a plurality of longitudinal ribs, the plurality of transverse ribs and the plurality of longitudinal ribs are staggered and bound to form the plurality of second spacer grooves;
and/or the heating element is attached to the second rib.
6. The battery module according to claim 1, wherein a mounting groove is formed at a side of the mounting member facing the heating member, the heating member being mounted to the mounting groove; the second protruding portion is formed at the bottom of the mounting groove.
7. The battery module according to claim 6, wherein an assembly gap is left between the heating member and a wall of the mounting groove; and/or the number of the groups of groups,
the side surface of the heating piece, which is opposite to the bottom of the mounting groove, is flush with the surface of the mounting piece; and/or the number of the groups of groups,
the groove wall of the mounting groove is provided with a connecting notch communicated with the mounting groove, the heating piece comprises a heating part and a connecting part, one end of the connecting part is connected with the heating part, and the other end of the connecting part extends out of the mounting groove through the connecting notch; and/or the number of the groups of groups,
the bottom of the mounting groove is provided with a containing groove, the battery module further comprises a temperature sensor, the temperature sensor is contained in the containing groove, and the temperature sensor is used for detecting the temperature of the heating piece.
8. The battery module according to claim 1, further comprising a case portion connected to the mounting member and enclosing a mounting cavity, the battery body being mounted in the mounting cavity; and/or the number of the groups of groups,
the heating element is a diaphragm heating element.
9. A wearable massage device, comprising:
a housing having a working surface;
the massage piece is arranged on the working surface;
the battery module according to any one of claims 1 to 8, comprising a battery and a heating member, both of which are mounted in the housing, the heating member being located at a side of the battery adjacent to the working surface, the heating member being located at least partially at an outer periphery of the massage member.
10. The wearable massage apparatus of claim 9, wherein the battery module further comprises a mounting member, the battery being mounted on one side of the mounting member, the heating member being mounted on the other side of the mounting member;
the mounting piece comprises a mounting body and a first protruding part arranged on one side of the mounting body, wherein the first protruding part supports the battery so that a space is formed between the battery and one side of the mounting body; and/or the mounting piece further comprises a second protruding part arranged on the other side of the mounting body, and the second protruding part supports the heating piece so that a space is formed between the heating piece and the other side of the mounting body.
11. The wearable massage apparatus of claim 10, wherein the first protrusion comprises a plurality of first ribs circumscribing to form a plurality of first spaced apart slots; and/or the number of the groups of groups,
the second protruding portion comprises a plurality of second ribs, and the second ribs enclose to form a plurality of second interval grooves.
12. The wearable massage apparatus of any of claims 9 to 11, wherein the housing comprises a base plate and a cover;
the base plate comprises a massage part and an extension part, the extension part is positioned at one side of the massage part, the massage part and the extension part both comprise a mounting surface and a working surface which are oppositely arranged, and the working surface of the massage part is provided with the massage piece;
the cover body is located the installation face of massage portion and the installation face place one side of extension, just the cover body connect in the base plate, the cover body with be formed with first installation space between the installation face of massage portion, first installation space installs electric element, the cover body with be formed with the second installation space between the installation face of extension, the second installation space is installed battery module, battery module with electric element electricity is connected.
CN202320441080.9U 2023-02-28 2023-02-28 Battery module and wearable massage device Active CN220121980U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320441080.9U CN220121980U (en) 2023-02-28 2023-02-28 Battery module and wearable massage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320441080.9U CN220121980U (en) 2023-02-28 2023-02-28 Battery module and wearable massage device

Publications (1)

Publication Number Publication Date
CN220121980U true CN220121980U (en) 2023-12-01

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320441080.9U Active CN220121980U (en) 2023-02-28 2023-02-28 Battery module and wearable massage device

Country Status (1)

Country Link
CN (1) CN220121980U (en)

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