CN216091003U - Massage device - Google Patents

Massage device Download PDF

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Publication number
CN216091003U
CN216091003U CN202023252780.9U CN202023252780U CN216091003U CN 216091003 U CN216091003 U CN 216091003U CN 202023252780 U CN202023252780 U CN 202023252780U CN 216091003 U CN216091003 U CN 216091003U
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China
Prior art keywords
massage
piece
mounting
vibration
massager
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CN202023252780.9U
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Chinese (zh)
Inventor
刘杰
许燕铭
徐润荣
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SKG Health Technologies Co Ltd.
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SKG Health Technologies Co Ltd.
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Priority to CN202023252780.9U priority Critical patent/CN216091003U/en
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Abstract

The utility model discloses a massage instrument, which comprises a bracket, wherein the bracket is provided with a mounting surface, at least one part of the mounting surface is an arc surface, and the mounting surface is provided with a mounting hole; the vibration massage component is arranged in the mounting hole and is provided with a first massage surface attached to a human body, the vibration massage component stretches and deforms relative to the support when massaging the human body, and the first massage surface protrudes out of the mounting hole in the direction away from the support; the heating component is provided with a second massage surface, the first massage surface is squeezed and moves towards the second massage surface, and the first massage surface and the second massage surface can both contact with a human body. Heating element separately sets up with vibration massage subassembly, and heating element can not influence vibration massage subassembly, can prolong vibration massage subassembly life, and first massage face is close to with heating element, can reduce calorific loss, and hot compress massage effect is better, and human neck can receive vibration massage and hot compress massage simultaneously moreover, and massage effect is better.

Description

Massage device
Technical Field
The utility model relates to the technical field of massage instruments, in particular to a massage instrument.
Background
In the related art, the massage instrument has a vibration type and an electrical stimulation type, the vibration type massage instrument can carry out vibration massage on the neck of a human body, the electrical stimulation type massage instrument can carry out electrical stimulation massage on the neck of the human body, but the vibration type and the electrical stimulation type massage mode are single, a better massage effect cannot be brought, and the requirements of more people cannot be met.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to solving at least one of the problems of the prior art. To this end, it is an object of the present invention to provide a massage apparatus which can provide a better vibration massage effect with the neck of the user and also provide an effective hot compress massage effect.
According to the massage apparatus of the present invention, the massage apparatus is adapted to be worn by a human body to massage the human body, and includes: the bracket is provided with a mounting surface, at least one part of the mounting surface is an arc-shaped surface, and mounting holes are formed in the mounting surface; the vibration massage component is arranged at the mounting hole and is provided with a first massage surface which is used for being attached to a human body, the vibration massage component is used for stretching and deforming relative to the support when massaging the human body, and the first massage surface protrudes out of the mounting hole in the direction away from the support; the heating component is arranged on the mounting surface and is formed with a second massage surface, when the massager is worn on a human body, the first massage surface is squeezed and faces the second massage surface to move, so that the first massage surface and the second massage surface can be in contact with the human body.
According to the massage apparatus of the utility model, the vibration massage component and the heating component are arranged on the massage apparatus, the heating component and the vibration massage component are separately arranged, the heating of the heating component does not affect the vibration massage component, the service life of the vibration massage component can be prolonged, the first massage surface of the vibration massage component is attached to the neck of the human body, the vibration massage with the neck of a user can be better provided, the heating component is mainly used for providing hot compress massage to the human body, the vibration massage component protrudes out of the second massage surface of the heating component, the effective contact between the vibration massage component and the skin of the neck of the human body can be ensured, the vibration massage effect is ensured, the vibration massage component can be telescopically deformed, the neck of the human body is closer to or even contacts with the heating component when the first massage surface is extruded and moves towards the second massage surface, and the heat loss between the neck of the human body and the heating component can be reduced, thereby providing effective hot compress massage effect, and human neck can receive vibration massage and hot compress massage simultaneously, and massage effect is better.
In some examples of the utility model, the vibratory massage assembly comprises: fold connecting piece, installed part and vibration piece, the installed part connect in on the fold connecting piece, the fold connecting piece is used for the flexible deformation when massaging the human body, the fold connecting piece connect in the edge of mounting hole, the vibration piece set up in on the installed part.
In some examples of the present invention, the vibration member is a vibration motor, and a receiving groove is formed in the mounting member, and the vibration motor is received in the receiving groove.
In some examples of the utility model, the vibratory massage assembly further comprises: the mounting cover is arranged on the open side of the accommodating groove and connected with the mounting piece, and the first massage face is arranged on the mounting cover.
In some examples of the utility model, the wall thickness of the crimp connector is less than the thickness of the mounting cap and less than the wall thickness of the mounting member.
In some examples of the utility model, the pleat connection has a thickness d, which satisfies the relationship: d is more than or equal to 0.5mm and less than or equal to 1.0 mm.
In some examples of the present invention, the mounting part is spaced apart from an edge of the mounting hole, and the heat generating component is formed with an avoidance hole corresponding to the mounting hole to avoid the vibration massage component.
In some examples of the utility model, the vibratory massage assembly comprises: the electric massager comprises a mounting piece, a vibrating piece and an electric stimulating piece, wherein the vibrating piece is located in the mounting piece, the mounting piece is mounted at the mounting hole, the electric stimulating piece is arranged on one side, facing the neck of a human body, of the vibrating piece, and the electric stimulating piece is provided with a first massage surface.
In some examples of the utility model, the vibratory massage assembly further comprises: and the conductive piece is arranged on one side of the vibrating piece facing the electric stimulation piece, and the electric stimulation piece is electrically connected with the conductive piece so as to send an electric stimulation signal to a human body.
In some examples of the present invention, the conductive member includes: the electric stimulation piece is an electroplating plastic piece, and the electric conduction salient point is in contact with the electroplating plastic piece.
In some examples of the present invention, one of a first annular groove and a first annular protrusion is formed at an edge of the mounting part, and the other of the first annular groove and the first annular protrusion is formed at an edge of the electric stimulation member, and the first annular protrusion is fitted into the first annular groove so that the electric stimulation member is a mounting cover covering the vibration member.
In some examples of the utility model, the heat generating component comprises: the heating film is arranged on the mounting surface, and the heat conduction contact film is arranged on one side of the support, which deviates from the heating film.
In some examples of the present invention, an edge of the thermal conductive contact film is provided with one of a second annular projection and a second annular groove, and the holder is provided with the other of the second annular projection and the second annular groove, the second annular projection being fitted in the second annular groove.
In some examples of the utility model, the heat generating component further comprises: the heating film is arranged on the reinforcing part, the reinforcing part is used for supporting the appearance shape of the second massage surface, and the reinforcing part is suitable for elastic deformation.
In some examples of the present invention, the vibrating massage assembly is provided in plurality, the reinforcing member is a closed loop structure and surrounds the outer sides of the plurality of vibrating massage assemblies, and the edge of the heat generating film is attached to the reinforcing member.
In some examples of the utility model, the reinforcing part is provided with a positioning column, and the bracket is provided with a positioning hole in inserted fit with the positioning column.
In some examples of the utility model, the massage apparatus further comprises: the vibration massage device comprises a transfer plate, a connecting wire and a circuit board, wherein the transfer plate is connected with the circuit board through the connecting wire, the vibration massage assemblies are multiple, and the transfer plate is arranged in the support and is multiple, and the vibration massage assemblies are all electrically connected with the transfer plate.
In some examples of the utility model, the stent comprises: the inner shell is arranged on one side, facing the vibration massage component, of the outer shell, the adapter plate is fixed on the outer shell, and the inner shell is a flexible or elastic inner shell.
In some examples of the utility model, the vibrating massage assembly is a plurality of vibrating massage assemblies, the plurality of vibrating massage assemblies being arranged along a line; or a plurality of the vibration massage components are arranged in an array.
In some examples of the utility model, the massage apparatus further comprises: the handle is connected to the end of the support, and the width of the support is larger than the end of the handle, so that at least two rows of the vibration massage assemblies are distributed in the width direction.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the utility model.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic view of the overall structure of a massage apparatus according to an embodiment of the present invention;
FIG. 2 is an exploded view of the vibratory massage assembly;
FIG. 3 is a partial exploded view of the vibratory massage assembly;
figure 4 is a schematic view of the electro-stimulation member in cooperation with the mounting member;
fig. 5 is an exploded view of a heat generating component.
Reference numerals:
1-a massage instrument;
10-a scaffold; 11-a mounting surface; 12-mounting holes; 13-positioning holes; 14-a housing; 15-inner shell;
20-a vibrating massage component; 21-first massage face; 22-crimped connections;
23-a mounting member; 230-a receiving groove; 24-a vibrating member; 25-an electrical stimulator; 26-a conductive member;
30-a heat generating component; 31-second massage face; 32-avoiding holes;
33-a heating film; 34-a thermally conductive contact film; 35-a reinforcement; 350-positioning columns;
40-a first annular groove; 41-a first annular projection; 42-a second annular groove; 43-a second annular projection;
60-an adapter plate; 70-connecting lines; 80-a handle.
Detailed Description
Embodiments of the present invention will be described in detail below, the embodiments described with reference to the drawings being illustrative, and the embodiments of the present invention will be described in detail below.
A massage machine 1 according to an embodiment of the present invention is described below with reference to fig. 1 to 5.
As shown in fig. 1 to 5, according to a massage apparatus 1 of an embodiment of the present invention, the massage apparatus 1 is adapted to be worn by a human body to massage the human body, and the massage apparatus 1 includes: a support 10, a vibratory massage assembly 20, and a heat generating assembly 30. The massager 1 is suitable for being worn on the neck, the massager 1 is approximately C-shaped, and the massager 1 can be sleeved on the neck from an opening of the C-shaped. Specifically, when the massage apparatus 1 is worn on the neck, as shown in fig. 4, the bracket 10 has a mounting surface 11, at least a portion of the mounting surface 11 is an arc surface, so that the mounting surface 11 can be more attached to the neck of the human body, a mounting hole 12 is formed in the mounting surface 11, and the vibration massage assembly 20 is disposed at the mounting hole 12, and mainly provides the vibration massage for the user, as shown in fig. 2, and the vibration massage assembly 20 has a first massage surface 21 for being attached to the human body, the first massage surface 21 is used for being attached to the neck of the human body, so as to provide the vibration massage for the neck of the user better, for example, the vibration massage assembly 20 is generally cylindrical, the vibration massage assembly 20 can be deformed in an axial direction relative to the bracket 10 during the massage of the human body, when the neck of the user abuts against the first massage surface 21, the neck of the user can provide the vibration massage assembly 20 with an axial pressure, thereby making the vibrating massage assembly 20 telescopically deformable in the axial direction, the first massage face 21 protrudes out of the mounting hole 12 in a direction away from the support frame 10, so that the neck of the user preferentially contacts the first massage face 21, thereby making it possible to make the massage apparatus 1 effectively provide a vibrating massage.
As shown in fig. 3, the heating element 30 is disposed on the mounting surface 11, the heating element 30 can be attached to the mounting surface 11, the heating element 30 is mainly used for providing hot compress massage to the human body, the second massage surface 31 is formed on the heating element 30, the second massage surface 31 can be a silica gel massage surface, and when the first massage surface 21 is pressed by the neck of the human body, the second massage surface 31 contacts with the neck of the human body. Wherein, vibration massage subassembly 20 protrusion in second massage face 31, can guarantee the effective contact of vibration massage subassembly 20 with human neck skin like this, guarantee vibration massage effect, because vibration massage subassembly 20 is scalable deformation in the axial, vibration massage subassembly 20 can also adjust flexible range according to the size of human neck, adapt to the crowd of different neck sizes, and when massager 1 was worn in the human body, first massage face 21 received the extrusion and moved towards second massage face 31, so that first massage face 21 and second massage face 31 all contact with the human body.
That is to say, when the massage apparatus 1 is worn on the neck, the first massage surface 21 of the vibration massage component 20 is squeezed by the neck to compress the vibration massage component 20 along the axial direction, namely, towards the inside of the mounting hole 12, so that the first massage surface 21 and the second massage surface 31 can be attached to the skin of the neck, thereby enabling the neck of the human body to be closer to or even contact with the heating component 30, thus reducing the heat loss between the neck of the human body and the heating component 30 and providing an effective hot compress massage effect. It should be noted that, when the massage apparatus 1 is worn on the neck, the second massage surface 31 can be attached to the neck, and also can have a certain gap with the neck, so that the second massage surface 31 has a better heat conduction effect when attached to the neck, and even if the second massage surface has a gap, the hot compress effect can be realized by heat radiation.
In addition, when the heating element 30 generates heat, the second massage surface 31 can be softened, when the neck of the human body is extruded on the first massage surface 21, the neck of the human body can be close to the second massage surface 31 until the neck of the human body is contacted with the second massage surface 31, at the moment, the neck of the human body can be subjected to vibration massage of the vibration massage element 20, and meanwhile, the neck of the human body can also be subjected to hot compress massage of the second massage surface 31 on the neck of the human body, so that the neck of the human body can enjoy double massage, and the massage effect can be better. In addition, the heating component 30 and the vibration massage component 20 are separately arranged, when the heating component 30 generates heat, the heat generation does not affect the vibration massage component 20, so that the service life of the vibration massage component 20 can be prolonged, and the vibration massage component 20 can stably work for a long time.
Therefore, the vibration massage component 20 and the heating component 30 are arranged on the massage instrument 1, the heating component 30 and the vibration massage component 20 are arranged separately, when the heating component 30 generates heat, the heat generation does not affect the vibration massage component 20, and therefore the service life of the vibration massage component 20 can be prolonged. And the first massage face 21 of vibration massage subassembly 20 is laminated with human neck mutually, can give better for with the vibration massage of user's neck, the heating element 30 mainly used provides the hot compress massage to the human body, vibration massage subassembly 20 protrusion in the second massage face 31 of heating element 30 can guarantee the effective contact of vibration massage subassembly 20 with human neck skin, the guarantee vibration massage effect. And vibration massage subassembly 20 is scalable to be out of shape, and human neck extrusion is when first massage face 21, and human neck is close to even contacts with heating element 30 more, can reduce the calorific loss between human neck and the heating element 30 like this to provide effectual hot compress massage effect, human neck can receive vibration massage and hot compress massage simultaneously like this, and massage effect is better.
As shown in fig. 2 and 3, the vibration massage assembly 20 includes: fold connecting piece 22, installed part 23 and vibrating piece 24, installed part 23 are connected on fold connecting piece 22, and fold connecting piece 22 is used for the flexible deformation when massaging the human body, and fold connecting piece 22 connects in the edge of mounting hole 12, and vibrating piece 24 sets up on installed part 23, and first massage face sets up in vibrating piece 24 one side towards the human neck. The flexible deformation can take place for fold connecting piece 22, can guarantee the laminating nature of vibration massage subassembly 20 and human skin like this, installed part 23 is connected on fold connecting piece 22, vibrating piece 24 sets up on installed part 23, can make installed part 23 like this, vibrating piece 24 and fold connecting piece 22 form integratively, can make vibration massage subassembly 20 whole take place flexible deformation along the axial better, and fold connecting piece 22 connects in the edge of mounting hole 12, it is more reasonable to set up like this, avoid fold connecting piece 22 to take place to interfere with support 10, make fold connecting piece 22 follow the axial flexible deformation more conveniently.
In addition, the corrugated connecting piece 22 can also reduce the vibration transmitted to the bracket 10 by the vibration piece 24, thereby reducing the vibration of the bracket 10. From the viewpoint of energy conservation, if the vibration output from the vibrating member 24 is constant, if a part of the vibration is transmitted to the bracket 10, the vibration transmitted to the mounting member 23 is caused to be small. The mounting member 23 is a component for enhancing the vibration massage, so that the mounting member 23 needs to be ensured to obtain more vibration, and targeted and concentrated vibration massage is realized. And the wrinkle connection part 22 may extend a path of the vibration member 24 transmitting the vibration to the supporter 10, reducing the amount of vibration.
Specifically, as shown in fig. 2, 4 and 5, the vibration member 24 may be a vibration motor, and the mounting member 23 has a receiving groove 230 formed therein, and the vibration motor is received in the receiving groove 230. The vibrating piece 24 is a vibrating motor, the vibrating massage effect of the vibrating motor is good, the accommodating groove 230 is formed in the mounting piece 23, the vibrating motor is accommodated in the accommodating groove 230, a better working environment can be provided for the vibrating motor, the vibrating motor is prevented from being interfered by external factors, the vibrating motor can be protected, and the vibrating motor is prevented from being damaged.
According to an alternative embodiment of the present invention, the vibrating massage assembly 20 further comprises: a mounting cover, one side of the accommodating groove 230 departing from the bracket 10 is opened, the mounting cover is arranged at the opened side of the accommodating groove 230 and is connected with the mounting part 23, and the mounting cover is provided with the first massage face 21. Be provided with the installation lid, and the installation lid sets up the open side at storage tank 230, can form relative confined structure like this, set up vibrating motor in this structure, can avoid vibrating motor to receive external factor's interference, also can protect vibrating motor, avoid vibrating motor to receive the damage, the installation lid is connected with installed part 23, can play the effect of fixed mounting lid, and the installation lid still is provided with first massage face 21, the installation lid both can play the sealing effect like this, also can play the massage effect, thereby can simplify the overall structure of vibration massage subassembly 20, make the structure of massager 1 simpler.
Alternatively, as shown in fig. 2, the wall thickness of the crimp connection 22 is less than the thickness of the mounting cap, and the wall thickness of the crimp connection 22 is less than the wall thickness of the mounting member 23. The wall thickness of fold connecting piece 22 is less than the thickness of installation lid, and the wall thickness of fold connecting piece 22 is less than the wall thickness of installed part 23 moreover, through the thickness of each part of reasonable restriction, can do benefit to the flexible deformation of vibration massage subassembly 20, but also can guarantee the structural reliability of vibration massage subassembly 20.
Further, the thickness d of the corrugated connector 22 satisfies the relation: d is more than or equal to 0.5mm and less than or equal to 1.0 mm. The thickness range of the crimp connection 22 is set as: d is more than or equal to 0.5mm and less than or equal to 1.0mm, so that the thickness of the fold connecting piece 22 is not too thin, and if the thickness is too thin, the elastic recovery capability is weak, so that the axial expansion and contraction effect cannot be achieved, and the thickness of the fold connecting piece 22 is too thick, so that the volume of the whole vibration massage assembly 20 is too large and occupies more space, and the axial expansion and contraction stability of the fold connecting piece 22 is reduced due to the too thick thickness of the fold connecting piece 22, so that the axial expansion and contraction effect of the fold connecting piece 22 is influenced.
Of course, as shown in fig. 5, the mounting member 23 is spaced apart from the edge of the mounting hole 12, and the heat generating component 30 is formed with an avoiding hole 32 corresponding to the mounting hole 12 to avoid the vibration massage component 20. The mounting member 23 is spaced from the edge of the mounting hole 12, so that the mounting member 23 is prevented from colliding with or rubbing against the support frame 10 when the bellows connecting member 22 is deformed in an axial direction in a telescopic manner, thereby easily damaging the vibration massage assembly 20 and the support frame 10. The heat generating component 30 is formed with a relief hole 32 corresponding to the mounting hole 12, that is, the heat generating component 30 is spaced apart from the vibration massage component 20, so that the influence of the heat generated by the heat generating component 30 on the vibration massage component 20 can be reduced, the service life of the vibration massage component 20 can be prolonged, and the vibration massage component 20 can work normally.
According to an alternative embodiment of the present invention, as shown in fig. 2-5, the vibratory massage assembly 20 may further comprise: the electric stimulation piece 25, the vibrating piece 24 is located in the mounting piece 23, the mounting piece 23 is mounted in the mounting hole 12, the electric stimulation piece 25 is arranged on one side, facing the neck of the human body, of the vibrating piece 24, and the electric stimulation piece 25 is provided with the first massage surface 21. The electric stimulation member 25 may generate an electric stimulation signal, which may effectively stimulate the skin and muscles of the neck of the user, so that the fatigue of the neck of the user may be relieved. Through setting up the electro photoluminescence piece 25 in the one side of vibrating piece 24 towards human neck, electro photoluminescence piece 25 can be sealed the setting in installed part 23 with vibrating piece 24 like this, avoid vibrating motor to receive external factor's interference, also can protect vibrating motor, avoid vibrating motor to receive the damage, and electro photoluminescence piece 25 still is provided with first massage face 21, electro photoluminescence piece 25 both can play sealed effect like this, also can play the effect of electro photoluminescence massage, thereby can simplify the overall structure of vibration massage subassembly 20, make the structure of massager 1 simpler. The electrical stimulation member 25 may be electrically connected to a circuit board of the massage machine 1, which may control the operation mode of the electrical stimulation member 25.
Therefore, by adding the electrical stimulation member 25, the massage mode of the massage apparatus 1 can be further enriched, and the user may need to select any of the above modes, for example, a vibration massage mode in which only the vibration motor works, a heating massage mode in which only the heating component 30 works, or an electrical stimulation massage mode in which only the electrical stimulation member 25 works. Of course, the massage device 1 can also adopt a combined massage mode, so that various choices can be provided for users, and the use experience of the users can be improved.
Optionally, as shown in fig. 2 and 3, the vibratory massage assembly 20 further comprises: a conductive member 26, wherein the conductive member 26 is disposed on a side of the vibrating member 24 facing the electrical stimulation member 25, the electrical stimulation member 25 is electrically connected to the conductive member 26 to send an electrical stimulation signal to a human body, and the conductive member 26 may be electrically connected to the circuit board by a wire. The conductive member 26 is disposed at a side of the vibration member 24 facing the electric stimulation member 25, and the electric stimulation member 25 is electrically connected to the conductive member 26, so that the electric stimulation member 25 can perform an electric stimulation function to emit an electric stimulation signal to the human body, thereby providing the electric stimulation massage function to the vibration massage assembly 20.
Specifically, the conductive member 26 includes: the conductive bumps and the electrical stimulation component 25 are plated plastic components, and the conductive bumps are in contact with the plated plastic components. The conductive part 26 is a conductive bump, and the electrical stimulation part 25 is an electroplating plastic part, so that the conductive bump is electrically connected with the electroplating plastic part when contacting with the electroplating plastic part, and the condition of poor contact between the conductive part 26 and the electrical stimulation part 25 is avoided.
In addition, as shown in fig. 4, one of a first annular groove 40 and a first annular protrusion 41 is formed at the edge of the mounting part 23, the other of the first annular groove 40 and the first annular protrusion 41 is formed at the edge of the electric stimulation member 25, and the first annular protrusion 41 is fitted in the first annular groove 40, so that the electric stimulation member 25 is a mounting cover covering the vibration member 24. One of the first annular groove 40 and the first annular protrusion 41 is formed at the edge of the mounting part 23, the other of the first annular groove 40 and the first annular protrusion 41 is formed at the edge of the conductive part 26, and the first annular protrusion 41 can be fitted into the first annular groove 40, so that the electric stimulation part 25 can be a mounting cover for covering the vibration part 24, and the first annular groove 40 and the first annular protrusion 41 can be fitted to increase the connection contact area between the mounting part 23 and the electric stimulation part 25, thereby improving the connection stability.
According to an alternative embodiment of the present invention, as shown in fig. 5, the heat generating component 30 includes: the heating film 33 is arranged on the mounting surface 11, and the heat conduction contact film 34 is arranged on one side of the heating film 33, which is far away from the bracket 10. The heating film 33 mainly provides a heat source, gives off heat, sets up the heating film 33 in installation face 11, and heat conduction contact film 34 sets up in one side that the heating film 33 deviates from support 10, sets up more rationally like this, and heat conduction contact film 34 can be spaced apart heating film 33 and human neck skin, avoids because direct contact leads to scalding the electric shock condition appearance that electric leakage produced even. The heating film 33 may be a carbon fiber heating film or a graphene heating film, and the heat conductive contact film 34 may be a silicone film.
Of course, as shown in fig. 5, the edge of the thermal contact film 34 is provided with one of the second annular projection 43 and the second annular groove 42, the holder 10 is provided with the other of the second annular projection 43 and the second annular groove 42, and the second annular projection 43 is fitted in the second annular groove 42. The edge of the heat-conducting contact film 34 is provided with one of the second annular protrusion 43 and the second annular groove 42, the support 10 is provided with the other one of the second annular protrusion 43 and the second annular groove 42, the second annular protrusion 43 can be matched in the second annular groove 42, and the second annular groove 42 and the second annular protrusion 43 can be matched to increase the connection contact area between the heat-conducting contact film 34 and the support 10, so that the connection stability is improved, and the heat-conducting contact film 34 is better fixedly installed on the support 10.
Further, as shown in fig. 5, the heat generating component 30 further includes: the reinforcing member 35 is arranged on the mounting surface 11, the heating film 33 is arranged on the reinforcing member 35, the reinforcing member 35 is used for supporting the appearance shape of the second massage surface 31, and the reinforcing member 35 is suitable for elastic deformation. Set up the reinforcement 35 in installation face 11, heating film 33 sets up in reinforcement 35, reinforcement 35 is plastic or metal construction, elastic deformation can take place, mainly used supports the outward appearance shape of second massage face 31, strengthen the structural strength of second massage face 31, make second massage face 31 be unlikely to too soft, lead to vibration massage subassembly 20 can arouse the great deformation of second massage face 31 when flexible the deformation in the axial, thereby can influence the hot compress massage effect of second massage face 31.
As shown in fig. 5, there are a plurality of vibration massage assemblies 20, the reinforcing member 35 is a closed loop structure, the reinforcing member 35 surrounds the outer sides of the plurality of vibration massage assemblies 20, and the edge of the heating film 33 is attached to the reinforcing member 35. The plurality of vibration massage assemblies 20 can act on the neck skin of the human body, so that the massage range on the neck skin of the human body is wider, and the massage effect of the massage instrument 1 is better. The reinforcing member 35 is of a closed loop structure, the reinforcing member 35 surrounds the outer sides of the plurality of vibration massage components 20, the edges of the heating film 33 are attached to the reinforcing member 35, that is, the reinforcing member 35 is formed into a closed loop structure and penetrates through the middle of the second massage surface 31 to cross the left side and the right side of the second massage surface 31, and thus the overall structural strength of the second massage surface 31 can be more comprehensively enhanced, and the second massage surface 31 is not too soft.
Alternatively, as shown in fig. 4 and 5, the reinforcing member 35 is provided with a positioning column 350, and the bracket 10 is provided with a plurality of positioning holes 13 which are in inserted fit with the positioning column 350. Be provided with a plurality of reference columns 350 on reinforcement 35, support 10 is provided with a plurality of locating holes 13, a plurality of reference columns 350 can be pegged graft the cooperation with a plurality of locating holes 13 to a plurality of reference columns 350 and a plurality of locating holes 13 one-to-one cooperation can make things convenient for being connected of reinforcement 35 and support 10 like this, and reference column 350 is a plurality ofly with locating hole 13, can make reinforcement 35 be connected with support 10 more firmly, avoid reinforcement 35 to drop from support 10. The plurality of positioning posts 350 and the stiffener 35 may be an integral structure.
According to an alternative embodiment of the present invention, as shown in fig. 2, the massage apparatus 1 further comprises: the vibration massage device comprises an adapter plate 60, a connecting wire 70 and a circuit board, wherein the adapter plate 60 is electrically connected with the circuit board through the connecting wire 70, a plurality of vibration massage assemblies 20 are arranged in the support 10, the plurality of vibration massage assemblies 20 are electrically connected with the adapter plate 60, and the circuit board is generally arranged in a handle 80.
The adapter plate 60 is arranged in the support 10, the adapter plate 60 is electrically connected with the circuit board through the connecting wire 70, and the plurality of vibration massage assemblies 20 are electrically connected with the adapter plate 60, it can be understood that n vibration massage assemblies 20 need to be provided with n conducting wires, 2n conducting wires, at least two conducting wires electrically connected with the heating assembly 30, if ntc (thermistor) is further arranged, two conducting wires electrically connected with ntc are also needed, it can be seen that the number of the conducting wires is more, the condition of disorder of flat cables is easy to occur, the space of the joint of the support 10 and the handle 80 is limited, so many conducting wires can not be accommodated, and the technical problems can be solved well through the adapter plate 60 and the connecting wire 70. The connection line 70 may be an FPC (flexible circuit board) flex cable.
As shown in fig. 2, the bracket 10 includes: an outer shell 14 and an inner shell 15, wherein the inner shell 15 is disposed on a side of the outer shell 14 facing the vibrating massage assembly 20, the adapter plate 60 is fixed on the outer shell 14, and the inner shell 15 is a flexible or elastic inner shell. Fix the keyset 60 on the one side of shell 14 towards inner shell 15, can avoid keyset 60 to set up the outside at support 10 like this to can occupy more spaces, also be convenient for the use of massager 1, keyset 60 need be connected through connecting wire 70 and circuit board electricity moreover, fixes keyset 60 on shell 14 also more rationally, is convenient for arrange and walk the line. The adapter plate 60 may be secured to the housing 14 by screws. The inner shell 15 is a flexible or elastic inner shell, so that the stent 10 is convenient to bend and can be better clamped on the neck skin of a human body.
Alternatively, as shown in fig. 1-5, the vibratory massage assembly 20 may be multiple, multiple vibratory massage assemblies 20 may be arranged along a line, or multiple vibratory massage assemblies 20 may be arranged in an array. The vibration massage components 20 are arranged in a plurality of linear or array mode, so that when the vibration massage components 20 act on the neck skin of a human body, the massage range of the neck skin of the human body can be wider, and the massage effect of the massage instrument 1 is better. The plurality of vibratory massage assemblies 20 may be in two rows arranged side-by-side, with each row of vibratory massage assemblies 20 including at least two spaced apart rows. For example, as shown in fig. 2, eight vibration massage assemblies 20 are provided, and the vibration massage assemblies 20 are arranged in two rows and four columns, so that the vibration massage assemblies 20 are arranged reasonably and the massage effect is good.
Specifically, the vibrating member 24 is placed in the accommodating groove 230 of the mounting member 23, and then the electrical stimulation member 25 is fixed to the mounting member 23, and the mounting member 23 and the wrinkle connecting member 22 on the vibration massage component 20 are driven to shake by the vibration of the vibrating member 24, so that the vibration massage is realized. The electric stimulation part 25 is assembled on the mounting part 23, and the current is regulated and controlled by a program and then is transmitted to the electric stimulation part 25 through the conductive part 26, so that the massage instrument 1 has the electric stimulation massage function. On the installation face 11 of support 10, increase heating element 30, heating element 30 includes heating film 33 and heat conduction contact film 34, and reinforcement 35 sets up in heating film 33, then heat conduction contact film 34 wraps up reinforcement 35, and reinforcement 35 is fixed through the mode of location, is connected with the locating hole 13 of support 10, and heat conduction contact film 34 can the independent control generate heat or do not generate heat. Through the cooperation of electric stimulation massage and vibration massage to be provided with a plurality of vibration massage subassembly 20, can realize the massage mode of multiple different modes and function combination, increase user's selection.
In addition, as shown in fig. 1, the massage apparatus 1 further includes: two handles 80, the number of the handles 80 may be two, the two handles 80 are connected to the ends of the frame 10, and the width of the frame 10 is larger than the ends of the handles 80 to distribute at least two rows of the vibratory massage assemblies 20 in the width direction. The width that sets up support 10 is greater than the tip of handle 80, can distribute at least two rows of vibration massage subassembly 20 in support 10 width direction, and when vibration massage subassembly 20 acted on human neck skin like this, the scope of massage on the human neck skin can be more extensive, and the massage effect of massager 1 is better.
In the description of the present invention, it is to be understood that the terms "central," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the utility model and to simplify the description, and are not intended to indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and are not to be considered limiting of the utility model.
In the description of the present invention, "the first feature" and "the second feature" may include one or more of the features. In the description of the present invention, "a plurality" means two or more. In the description of the present invention, the first feature being "on" or "under" the second feature may include the first and second features being in direct contact, and may also include the first and second features being in contact with each other not directly but through another feature therebetween. In the description of the utility model, "above", "over" and "above" a first feature in a second feature includes the first feature being directly above and obliquely above the second feature, or simply means that the first feature is higher in level than the second feature.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example.
While embodiments of the utility model have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the utility model, the scope of which is defined by the claims and their equivalents.

Claims (20)

1. A massage apparatus, characterized in that, the massage apparatus is suitable for human body to wear in order to massage the human body, the massage apparatus includes:
the bracket is provided with a mounting surface, at least one part of the mounting surface is an arc-shaped surface, and mounting holes are formed in the mounting surface;
the vibration massage component is arranged at the mounting hole and is provided with a first massage surface which is used for being attached to a human body, the vibration massage component is used for stretching and deforming relative to the support when massaging the human body, and the first massage surface protrudes out of the mounting hole in the direction away from the support;
the heating component is arranged on the mounting surface and is formed with a second massage surface, when the massager is worn on a human body, the first massage surface is squeezed and faces the second massage surface to move, so that the first massage surface and the second massage surface can be in contact with the human body.
2. The massager of claim 1, wherein said vibratory massage assembly comprises: fold connecting piece, installed part and vibration piece, the installed part connect in on the fold connecting piece, the fold connecting piece is used for the flexible deformation when massaging the human body, the fold connecting piece connect in the edge of mounting hole, the vibration piece set up in on the installed part.
3. The massager of claim 2, wherein said vibrator member is a vibration motor, and wherein said mounting member has a receiving slot formed therein, said vibration motor being received in said receiving slot.
4. The massager of claim 3, wherein said vibratory massage assembly further comprises: the mounting cover is arranged on the open side of the accommodating groove and connected with the mounting piece, and the first massage face is arranged on the mounting cover.
5. The massager of claim 4, wherein the wall thickness of said corrugated connector is less than the thickness of said mounting cap and less than the wall thickness of said mounting member.
6. The massager of claim 5, wherein the thickness of the corrugated connecting member is d, and d satisfies the relation: d is more than or equal to 0.5mm and less than or equal to 1.0 mm.
7. The massager of claim 2, wherein the mounting member is spaced apart from an edge of the mounting hole, and the heating element is formed with an avoiding hole corresponding to the mounting hole to avoid the vibration massage element.
8. The massager of claim 1, wherein said vibratory massage assembly comprises: the electric massager comprises a mounting piece, a vibrating piece and an electric stimulating piece, wherein the vibrating piece is located in the mounting piece, the mounting piece is mounted at the mounting hole, the electric stimulating piece is arranged on one side, facing the neck of a human body, of the vibrating piece, and the electric stimulating piece is provided with a first massage surface.
9. The massager of claim 8, wherein said vibratory massage assembly further comprises: and the conductive piece is arranged on one side of the vibrating piece facing the electric stimulation piece, and the electric stimulation piece is electrically connected with the conductive piece so as to send an electric stimulation signal to a human body.
10. The massager of claim 9, wherein said conductive member comprises: the electric stimulation piece is an electroplating plastic piece, and the electric conduction salient point is in contact with the electroplating plastic piece.
11. The massager of claim 8, wherein one of a first annular groove and a first annular protrusion is formed at an edge of the mounting member, and the other of the first annular groove and the first annular protrusion is formed at an edge of the electro-stimulation member, and the first annular protrusion is fitted in the first annular groove so that the electro-stimulation member is a mounting cover covering the vibrating member.
12. The massager of claim 1, wherein said heating assembly comprises: the heating film is arranged on the mounting surface, and the heat conduction contact film is arranged on one side of the support, which deviates from the heating film.
13. The massager of claim 12, wherein the edge of the heat conductive contact membrane is provided with one of a second annular protrusion and a second annular groove, and the bracket is provided with the other of the second annular protrusion and the second annular groove, the second annular protrusion fitting within the second annular groove.
14. The massager of claim 1, wherein said heating assembly further comprises: the heating film is arranged on the reinforcing part, the reinforcing part is used for supporting the appearance shape of the second massage surface, and the reinforcing part is suitable for elastic deformation.
15. The massager of claim 14, wherein the plurality of vibrating massage assemblies are provided, the reinforcing member is of a closed loop structure and surrounds the outer sides of the plurality of vibrating massage assemblies, and the edge of the heating film is attached to the reinforcing member.
16. The massager of claim 14, wherein the reinforcing member is provided with a positioning post, and the support is provided with a positioning hole for inserting and matching with the positioning post.
17. The massage apparatus of claim 1, further comprising: the vibration massage device comprises a transfer plate, a connecting wire and a circuit board, wherein the transfer plate is connected with the circuit board through the connecting wire, the vibration massage assemblies are multiple, and the transfer plate is arranged in the support and is multiple, and the vibration massage assemblies are all electrically connected with the transfer plate.
18. The massager of claim 17, wherein said support comprises: the inner shell is arranged on one side, facing the vibration massage component, of the outer shell, the adapter plate is fixed on the outer shell, and the inner shell is a flexible or elastic inner shell.
19. The massage apparatus as recited in claim 1, wherein the plurality of vibratory massage assemblies are arranged linearly; or
The plurality of vibration massage components are arranged in an array.
20. The massager of claim 19, further comprising: the handle is connected to the end of the support, and the width of the support is larger than the end of the handle, so that at least two rows of the vibration massage assemblies are distributed in the width direction.
CN202023252780.9U 2020-12-29 2020-12-29 Massage device Active CN216091003U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023252780.9U CN216091003U (en) 2020-12-29 2020-12-29 Massage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023252780.9U CN216091003U (en) 2020-12-29 2020-12-29 Massage device

Publications (1)

Publication Number Publication Date
CN216091003U true CN216091003U (en) 2022-03-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023252780.9U Active CN216091003U (en) 2020-12-29 2020-12-29 Massage device

Country Status (1)

Country Link
CN (1) CN216091003U (en)

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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.

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 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.