CN112494303A - Neck massager - Google Patents
Neck massager Download PDFInfo
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- CN112494303A CN112494303A CN202011204428.XA CN202011204428A CN112494303A CN 112494303 A CN112494303 A CN 112494303A CN 202011204428 A CN202011204428 A CN 202011204428A CN 112494303 A CN112494303 A CN 112494303A
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H23/00—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
- A61H23/02—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F7/00—Heating or cooling appliances for medical or therapeutic treatment of the human body
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F7/00—Heating or cooling appliances for medical or therapeutic treatment of the human body
- A61F2007/0001—Body part
- A61F2007/0002—Head or parts thereof
- A61F2007/0009—Throat or neck
- A61F2007/0011—Neck only
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/02—Characteristics of apparatus not provided for in the preceding codes heated or cooled
- A61H2201/0207—Characteristics of apparatus not provided for in the preceding codes heated or cooled heated
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/10—Characteristics of apparatus not provided for in the preceding codes with further special therapeutic means, e.g. electrotherapy, magneto therapy or radiation therapy, chromo therapy, infrared or ultraviolet therapy
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/16—Physical interface with patient
- A61H2201/1602—Physical interface with patient kind of interface, e.g. head rest, knee support or lumbar support
- A61H2201/1609—Neck
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/04—Devices for specific parts of the body neck
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- Health & Medical Sciences (AREA)
- Veterinary Medicine (AREA)
- Public Health (AREA)
- General Health & Medical Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Rehabilitation Therapy (AREA)
- Physical Education & Sports Medicine (AREA)
- Pain & Pain Management (AREA)
- Epidemiology (AREA)
- Engineering & Computer Science (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Vascular Medicine (AREA)
- Percussion Or Vibration Massage (AREA)
Abstract
The application relates to a neck massager, which comprises a main body bracket, at least two first massage components and at least one second massage component; the main body support is suitable for being worn on the neck; the at least two first massage components are arranged on one side of the main body bracket close to the neck at intervals; the massage contact area of the single second massage assembly is smaller than that of the single first massage assembly, the second massage assembly is arranged between the adjacent first massage assemblies, and the second massage assembly is spaced from each first massage assembly to occupy the rest installation space of part of the main body bracket; at least a portion of the massage face of the second massage assembly bows away from the main body frame to form an avoidance structure spaced from the first massage assembly. Among the foretell neck massage appearance, through setting up the first massage subassembly and the second massage subassembly of variation in size, make full use of main part support's installation space arranges massage subassembly as far as possible, increases the massage scope to the neck, improves massage effect.
Description
Technical Field
The application relates to the technical field of massage instruments, in particular to a neck massage instrument.
Background
In daily activities such as work, study or leisure and entertainment, the neck is uncomfortable due to improper sitting posture or lack of movement for a long time, and even serious people can generate cervical spondylosis, thereby affecting the normal life of people. In order to alleviate neck discomfort, various neck massage devices are introduced on the market.
The neck massager mainly massages the back side of the neck, namely the back neck, and the neck massager is required to be attached to the back neck to achieve the massage effect. Because the area of the nape is limited, and one side of the neck massager close to the nape needs to be kept to be matched with the nape, the space for placing the massage component of the neck massager is not large, and the massage component can not cover the nape as much as possible. Therefore, the traditional neck massager has a limited massage range on the back neck, and the massage effect is influenced.
Disclosure of Invention
In view of the above, it is necessary to provide a neck massager in order to solve the problem that the conventional neck massager has a limited range of neck massage.
A neck massager comprises a main body bracket, at least two first massage components and at least one second massage component; wherein:
the main body support is suitable for neck wearing;
the at least two first massage components are arranged on one side of the main body bracket close to the neck at intervals; the massage contact area of a single second massage assembly is smaller than that of a single first massage assembly, the second massage assembly is arranged between the adjacent first massage assemblies, and the second massage assembly is spaced apart from each first massage assembly to occupy part of the rest installation space of the main body bracket;
at least part of the massage surface of the second massage component arches towards the direction far away from the main body support so as to form an avoiding structure which is separated from the first massage component.
Among the foretell neck massager, through setting up two at least first massage subassemblies and at least one second massage subassembly, through setting up the massage area of contact of first massage subassembly into the massage area of contact who is greater than the second massage subassembly, set up the first massage subassembly and the second massage subassembly of variation in size, set up the second massage subassembly between first massage subassembly, fully occupy the installation space of main part support, thereby make full use of main part support limited space, arrange more massage subassemblies as far as possible, the increase is to the massage scope of neck, improve the massage effect. Simultaneously, through keeping away from the at least partial orientation of the massage face of second massage subassembly main part support's direction arch-shaped, form and first massage subassembly looks spaced dodge the structure, make first massage subassembly and second massage subassembly set up more closely to utilize installation space more fully.
In one embodiment, at least two of the first massage assemblies each comprise an electrode for applying a massage current to the body, the total molar contact area of the electrodes being not less than 10cm2。
In one embodiment, the first massage assembly comprises a first mounting seat, the first mounting seat comprises a first connecting part and a first limiting part, one end of the first connecting part is connected to the first limiting part, and the other end of the first connecting part is connected to the main body bracket.
In one embodiment, at least two of the first massage assemblies comprise an electrode element, and one side of the first limiting part, which faces the neck part, is provided with a limiting ring groove; the electrode piece includes touch panel and flange, touch panel is used for with neck skin contact, the flange orientation first mount pad is protruding to be established, just the flange card is located spacing annular.
In one embodiment, the outer diameter of the first connecting portion increases in a direction toward the body mount.
In one embodiment, the first massage assembly comprises a heat generating member for heating the neck.
In one embodiment, both ends of the massage surface of the first massage unit are respectively protruded in a width direction of the body frame.
In one embodiment, the second massage assemblies comprise vibrating members, and at least one of the second massage assemblies corresponds to a cervical vertebra when the main body frame is worn on the neck.
In one embodiment, the main body support has a receiving cavity formed therein, the second massage assembly includes a second mounting seat, the second mounting seat has a channel and a mounting cavity, the channel communicates with the mounting cavity and the receiving cavity, respectively, and the vibrating element is disposed in the mounting cavity.
In one embodiment, the second mounting seat comprises a second limiting part and a second connecting part, one end of the second connecting part is connected to the second limiting part, and the other end of the second connecting part is connected to the main body bracket; the second limiting portion is arranged on one side close to the neck, and the mounting cavity is formed in the second limiting portion.
In one embodiment, the second mounting seat is of an elastic structure, the inner diameter of the channel of the second connecting portion is smaller than the inner diameter of the mounting cavity, and the outer diameter of the vibrating member is larger than the inner diameter of the channel.
In one embodiment, the second mounting seat further comprises an interface portion connected between the second mounting seat and the body support, and the wall thickness of the interface portion is smaller than that of the second mounting seat.
In one embodiment, the main body support comprises a connecting support and a soft rubber support, the connecting support and the soft rubber support enclose to form the accommodating cavity, the connecting support is arranged on one side far away from the neck, and the soft rubber support is arranged on one side close to the neck.
In one embodiment, the second mounting base is a soft rubber structure, and the second mounting base and the soft rubber support are of an integrally formed structure.
In one embodiment, the neck massager further comprises an adapter plate, the adapter plate is arranged in the main body support, and each first massage assembly is electrically connected with the adapter plate.
In one embodiment, the massage contact surfaces of the first massage component and the second massage component are located on the same arc surface.
In one embodiment, the number of the first massage assemblies is two, the number of the second massage assemblies is three, and the first massage assemblies and the second massage assemblies are alternately arranged on one side of the main body bracket close to the neck at intervals.
In one embodiment, the first massage assembly is spaced from the second massage assembly by a distance of 3mm to 20 mm.
Drawings
Fig. 1 is a schematic structural view of a neck massager according to an embodiment.
Fig. 2 is a schematic cross-sectional view of the neck massager shown in fig. 1.
Fig. 3 is a schematic structural view of the soft rubber bracket shown in fig. 1 from another view angle.
Fig. 4 is an exploded view of the main body frame, the first massage assembly and the second massage assembly shown in fig. 1.
Fig. 5 is a schematic structural view of the soft rubber support, the first massage assembly and the second massage assembly shown in fig. 4.
Fig. 6 is a partial structural schematic view of the soft rubber support, the first massage assembly and the second massage assembly shown in fig. 5.
Fig. 7 is a schematic structural diagram of a second mounting seat in another embodiment.
Detailed Description
In order to facilitate an understanding of the present application, the present invention will now be described more fully with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In one embodiment, as shown in fig. 1, a neck massager includes a main body frame 10, at least two first massage assemblies 20 and at least one second massage assembly 30; wherein: the body support 10 is adapted to be worn around the neck; at least two first massage assemblies 20 are arranged on one side of the main body support 10 close to the neck at intervals; the massage contact area of the single second massage assembly 30 is smaller than that of the single first massage assembly 20, the second massage assembly 30 is disposed between the adjacent first massage assemblies 30, and the second massage assembly 30 is spaced apart from each of the first massage assemblies 20 to occupy the remaining installation space of the body frame 10; at least a portion of the massage face of the second massage assembly 30 is bowed away from the main body frame 10 to form a relief spaced from the first massage assembly 20.
Among the foretell neck massager, through setting up two at least first massage subassembly 20 and one at least second massage subassembly 30, through setting up the massage area of contact of first massage subassembly 20 to be greater than the massage area of contact of second massage subassembly 30, set up the first massage subassembly 20 and the second massage subassembly 30 of variation in size, set up second massage subassembly 30 in the interval department between first massage subassembly 20, fully occupy the installation space of main part support 10, thereby make full use of main part support 10 limited space, arrange more massage subassemblies as far as possible, the increase is to the massage scope of neck, improve the massage effect. Meanwhile, at least part of the massage surface of the second massage component 30 is arched towards the direction far away from the main body support 10, so that an avoiding structure separated from the first massage component 20 is formed, the first massage component 20 and the second massage component 30 are arranged closer, and the installation space is more fully utilized.
As shown in fig. 3, in one embodiment, the massage surface of the second massage assembly 30 has an arched surface at the edge, and the middle of the massage surface is a plane, so that the edge of the massage surface is folded towards the middle, that is, the edge of the massage surface of the second massage assembly 30 forms an inverted-angle avoiding structure to avoid the edge adjacent to the second massage assembly 30, so that the first massage assembly 20 and the second massage assembly 30 do not interfere with each other due to oscillation when the set distance is short. In other embodiments, the massage surface of the second massage assembly 30 may also be a convex surface that is entirely curved away from the main body frame 10, so as to form a mushroom-head-like avoiding structure, thereby providing a better avoiding effect to avoid touching the lateral first massage assembly 20.
In one embodiment, a neck massager includes a part or all of the following embodiments; namely, the neck massager includes some or all of the following technical features.
As shown in fig. 1, in one embodiment, the neck massager comprises a main body support 10, a first massage assembly 20 and a second massage assembly 30, wherein the first massage assembly 20 and the second massage assembly 30 are respectively arranged on one side of the main body support 10 close to the neck, so that the first massage assembly 20 and the second massage assembly 30 are in contact with the skin of the neck; the main body frame 10 serves to correspond to the rear side of the neck, which is a region of the nape in a natural fashion of a human body, and to support the first massage unit 20 and the second massage unit 30. In order to better fit the arc-shaped configuration of the neck, at least two first massage units 20 are spaced apart, that is, each first massage unit occupies most of the installation space of the main body frame 10, and the rest of the installation space of the main body frame 10 is a small portion of the installation space except for the first massage units 20. In one embodiment, the massage contact area of the single second massage assembly 30 is smaller than that of the single first massage assembly 20, so that the second massage assembly 30 fills the remaining massage space of the main body frame 10, and the entire installation space of the main body frame 10 is fully utilized, thereby increasing the massage range. In one embodiment, the first massage assembly 20 and the second massage assembly 30 each have a different massage function, or the first massage assembly 20 and the second massage assembly 30 each have the same massage function. In particular, the massage contact area refers to the area of the massage assembly intended to be in contact with the skin of the human body. The massage component can only exert the massage effect under the condition of keeping contact and joint with the skin of the human body. The larger the massage contact area is, the larger the massage range to the human body is. According to the different massage contact areas, the massage components are correspondingly provided with different massage functions so as to achieve the best massage effect. For example, for a low current stimulation massage or a heating massage, a larger massage contact area is relatively required. Otherwise, a smaller massage contact area may instead result in local stinging and discomfort, which is counterproductive. In one embodiment, the first massage assembly 20 is alternately spaced from the second massage assembly 30. By alternately arranging the massage assemblies with larger and smaller areas, the mounting space of the main body support 10 is fully utilized, and the massage contact area is increased, so that the massage range to the human body is enlarged, and the massage effect is improved.
As shown in Figs. 1 and 2, in one embodiment, the total massage contact area of the first massage assembly 20 is not less than 10cm2The massage contact area of the second massage assembly 30 is less than 10cm2. It is understood that it is not less than, i.e., greater than or equal to. By reducing the massage contact area of the second massage assembly 30, sufficient space is provided to house the first massage assembly 20. In one embodiment, the at least two first massage assemblies 20 comprise electrode elements 210, the electrode elements 210 being adapted to apply a massage current to the body, the total massage contact area of the electrode elements 210 being not less than 10cm2. It will be appreciated that the total massage area of the pole elements 210 comprises the sum of the massage areas of the pole elements of each first massage assembly. Such a design, on the one hand, allows a low current stimulating massage to be performed on the human body by using the electrode member 210. On the other hand, the contact area of the electrode member 210 with the skin is set to not less than 10cm2The massage range of the neck is enlarged, and the problem of stabbing pain caused by too small contact area between the electrode element 210 and the skin is avoidedAnd (6) properly mixing. In one embodiment, the electrode member 210 is a metal electrode sheet or a conductive silicone sheet. By using the conductor with a sheet structure as the electrode element 210, weak current is transmitted to the skin of the human body, so that the effect of stimulating and massaging is achieved. Meanwhile, the plate structure is adopted to reduce the structural volume of the electrode element 210, so that the overall structure of the first massage assembly 20 is compact. In one embodiment, the second massage units 30 include a vibrator 310, and at least one of the second massage units 30 corresponds to the cervical vertebrae when the main body frame 10 is worn on the neck. By placing the second massage assembly 30 with a massage contact area of less than 10cm, based on the greater mass and greater inertia properties2Thereby miniaturizing the second massage assembly 30 and facilitating the vibration of the vibrator 310 to secure the vibration effect.
In order to meet the requirement that the total molar contact area of the electrode elements is not less than 10cm2In one embodiment, both ends of the electrode member 210 protrude in the width direction of the main body support, respectively. That is, both ends of the electrode member 210 protrude from both sides of the main body frame in the width direction, and the width of the electrode member 210 is greater than that of the main body frame. In order to facilitate the position specification, the length direction of the main body frame 10 is a direction perpendicular to the cervical vertebrae, and the width direction of the main body frame 10 is a direction parallel to the cervical vertebrae. The width direction of the electrode member 210 coincides with the width direction of the main body frame 10, and the length direction of the electrode member 210 coincides with the length direction of the main body frame 10. In one embodiment, the width of the pole element 210 is greater than its length. By reducing the length of the pole element 210, sufficient space is reserved for the second massage assembly 30; meanwhile, by extending the width of the pole element 210, the massage contact area of the pole element 210 is increased.
It should be understood that the neck includes the cervical vertebrae and the muscles based on the structure of the neck, wherein most of the muscles are located at both sides of the cervical vertebrae, i.e., the left and right sides of the cervical vertebrae, and a very small portion of the muscles are located at the cervical vertebrae. Because the cervical vertebra has less muscles and is formed by connecting a plurality of smaller centrums, the skin surface corresponding to the cervical vertebra is uneven and irregular in shape, and the massage component is not easy to be attached to the neck skin corresponding to the part; in addition, the area of the cervical vertebrae is small, if the electric current is used for puncturingOn one hand, the massage in an exciting way can generate acupuncture feeling under the condition of non-lamination; on the other hand, the small contact area locally stimulates the skin, which increases the pain of the needle stick feeling and finally affects the massage effect. In one embodiment, the first massage assembly 20 is used to correspond to muscles on both sides of the cervical vertebrae, the at least one second massage assembly 30 corresponds to the cervical vertebrae, and the massage contact area of the first massage assembly 20 is greater than 10cm2The massage contact area of the second massage assembly 30 is less than 10cm2(ii) a Wherein the first massage assembly 20 includes the pole element 210 and the second massage assembly 30 includes the vibrating element 310. It can be understood that the corresponding positions of the cervical vertebrae are massaged by selecting a vibration mode, and the corresponding positions of muscles on the two sides of the cervical vertebrae are massaged by adopting a weak current stimulation mode. Due to the design, a proper massage mode is selected according to the structure of the neck, so that the optimal massage effect is achieved. Meanwhile, in the limited installation space of the main body support 10, the first massage component 20 and the second massage component 30 are reasonably distributed to reach the positions and massage contact areas, the second massage component 30 with a smaller area is arranged between the first massage components 20 with a larger area, the installation space of the main body support 10 is fully utilized, the massage range is enlarged, meanwhile, a proper massage mode is configured, and the massage effect is greatly improved. In order to increase the contact area of the first massage unit 20 with the skin of the neck and reduce the occupation of the installation space of the main body frame 10, as shown in fig. 3, in one embodiment, both sides of the electrode member 210 extend in the width direction of the main body frame 10. The design increases the massage contact area of the electrode element 210, increases the massage range, and reduces the occupied space of the main body support 10, so as to leave enough space for installing the second massage assembly 30, make the whole position arrangement of all the massage assemblies compact and orderly, and increase the massage range of the neck.
In order to further enrich the massaging function of the neck massager, as shown in fig. 4, in one embodiment, the first massage assembly 20 comprises a heat generating member (not shown) for heating the neck. In one embodiment, the heat generating member is attached to the electrode member 210 on a side facing away from the neck portion. Generate heat through the setting, and heat conduction to neck through electrode component 210 to reach the effect of heating the neck, richened first massage assembly 20's massage function, satisfy user's demand.
In order to facilitate the assembly of the first massage assembly 20 and the second massage assembly 30, as shown in fig. 2 to 4, in one embodiment, the main body frame 10 includes a connecting frame 110 and a soft rubber frame 120, the connecting frame 110 and the soft rubber frame 120 enclose to form an accommodating cavity 130, the connecting frame 110 is disposed at a side away from the neck, and the soft rubber frame 120 is disposed at a side close to the neck. In one embodiment, each of the first massage assembly 20 and the second massage assembly 30 is disposed on a side of the body frame 10 adjacent to the neck. Specifically, each first massage assembly 20 and each second massage assembly 30 are disposed on one side of the soft glue bracket 120 near the neck. Through setting up to soft glue support 120 near one side of neck, soft glue support 120 can take place elasticity expansion or shrink according to the thickness of neck to keep more laminating with the neck. In one embodiment, the soft glue bracket 120 has an arc-shaped structure. The soft rubber support 120 with the arc-shaped structure is close to the neck, so that the neck massager is more attached to the neck. In one embodiment, the connecting bracket 110 is also of an arcuate configuration. The connecting support 110 and the soft rubber support 120 which are of the arc-shaped structures are relatively spliced and enclosed, so that the whole main body support 10 is also of the arc-shaped structure, and the neck massager is more attached to the neck when in use. In one embodiment, the receiving cavity 130 is used for mounting and placing components, including electronic components and the like. In one embodiment, the soft rubber bracket 120 is integrally formed by silicone. Through adopting the silica gel material that has elasticity and close skin as flexible glue support 120 in order to laminate neck skin, flexible glue support 120 can be according to the corresponding elastic deformation that takes place of thickness of neck, and flexible glue support 120 can expand according to the size girth of neck promptly to adapt to the demand of the neck of not unidimensional. In one embodiment, the hardness of the connecting bracket 110 is greater than that of the soft rubber bracket 120, so that the connecting bracket 110 has a certain supporting strength, thereby defining the main configuration of the main body bracket 10, preventing the main body bracket 10 from being distorted and protecting the components in the accommodating cavity 130.
In order to mount and fix the first massage assembly 20 to the main body frame 10, as shown in fig. 3 to 6, in one embodiment, the first massage assembly 20 includes a first mounting base 220, the first mounting base 220 includes a first connecting portion 221 and a first limiting portion 222, one end of the first connecting portion 221 is connected to the first limiting portion 222, and the other end of the first connecting portion 221 is connected to the main body frame 10. Further, the electrode element 210 is disposed on the first position-limiting portion 222. The electrode member 210 is fixedly mounted to the main body frame 10 by providing the first mounting seat 220. Specifically, the other end of the first connection portion 221 is connected to the soft rubber bracket 120. In one embodiment, the side of the first position-limiting portion 222 facing the neck is open so as to dispose and expose the electrode element 210, so that the electrode element 210 can be directly attached to the skin of the neck. In one embodiment, each of the at least two first massage assemblies 20 includes an electrode element 210, and a first position-limiting portion 222 has a position-limiting ring groove 2221 formed on a side facing the neck; the electrode member 210 comprises a contact panel 211 and a flange 212, the contact panel 211 is used for contacting with the skin of the neck, the flange 212 is protruded towards the first mounting seat 220, and the flange 212 is clamped in the limiting ring groove 2221. The electrode member 210 is fixed by providing the limiting ring groove 2221. In order to prevent the electrode member 210 from falling off, in one embodiment, the electrode member 210 is glued to the first position-limiting portion 222. In one embodiment, the flange 212 of the electrode member 210 is glued to the retainer ring groove 2221. Specifically, the flange 212 of the electrode element 210 is inserted into the limiting ring groove 2221 by coating the limiting ring groove 2221 with adhesive. After the adhesive is cured, the electrode member 210 can be stably disposed in the limiting ring groove 2221. In order to prevent the electrode element 210 from extruding the adhesive in the limiting ring groove 2221 when being inserted into the limiting ring groove 2221, in one embodiment, the first limiting portion 222 is further provided with an adhesive overflow groove 2222, and the adhesive overflow grooves 2222 are adjacently and circumferentially arranged along the inner side of the limiting ring groove 2221. When the electrode element 210 is inserted into the limiting ring groove 2221, the adhesive in the limiting ring groove 2221 flows to the adjacent excessive adhesive groove 2222. The overflowing glue is received by the glue overflowing groove 2222, so that the first mounting seat 220 is prevented from being polluted by flowing glue. In one embodiment, the first connection portion 221 is a hollow structure, and the first connection portion 221 is respectively communicated with the accommodating cavity 130 and the first limiting portion 222, so that the electrode element 210 and the electronic component in the accommodating cavity 130 are electrically connected through a connection wire. In order to improve the supporting force of the first connection part 221, in one embodiment, the outer diameter of the first connection part 221 is increased in a direction toward the body frame 10. By increasing the outer diameter of the first connection portion 221, the support strength of the first connection portion 221 is increased, the support stability of the electrode member 210 is enhanced, and the first connection portion 221 is prevented from being deformed by the weight of the electrode member 210.
In order to mount and fix the second massage assembly 30 on the main body frame 10, as shown in fig. 3 to 6, in one embodiment, the accommodating cavity 130 is formed in the main body frame 10, the second massage assembly 30 includes a second mounting seat 320, the second mounting seat 320 is formed with a channel 3231 and a mounting cavity 321, the channel 3231 is respectively communicated with the mounting cavity 321 and the accommodating cavity 130, and the vibrating element 310 is disposed in the mounting cavity 321. The vibrating member 310 is fixed by providing the second mount 320. In one embodiment, the second mounting base 320 includes a second position-limiting portion 322 and a second connecting portion 323, one end of the second connecting portion 323 is connected to the second position-limiting portion 322, and the other end of the second connecting portion 323 is connected to the main body bracket 10; the second limiting portion 322 is disposed at one side close to the neck, and the mounting cavity 321 is opened at the second limiting portion 322. Specifically, the other end of the second connecting portion 323 is connected to the soft rubber bracket 120. By opening the mounting cavity 321 in the second stopper portion 322, thereby placing and defining the position of the vibrating member 310, the vibrating member 310 is prevented from being displaced during vibration; meanwhile, such a position brings the vibrating member 310 closer to the neck and away from the main body frame 10, thereby enhancing the vibration sensation to the neck and reducing the influence of the vibration amplitude on the components inside the main body frame 10. In one embodiment, a side of the second limiting portion 322 close to the neck is a closed structure, and a side of the second limiting portion 322 close to the neck is provided with a closed panel 324. By closing the second stopper 322, on the one hand, the vibrating member 310 is prevented from coming off the second stopper 322; on the other hand, the second massage component 30 directly contacts with the neck skin through the closed panel 324, and when the vibration member 310 vibrates in the second position-limiting portion 322, the vibration amplitude is transmitted to the closed panel 324 and then transmitted to the neck skin through the closed panel 324. It will be appreciated that the area of the closure panel 324 in contact with the skin of the neck is the massage contact area. In one embodiment, the second position-limiting portion 322 is arched toward an end away from the body frame 10. For example, the second position-limiting portion 322 is shaped like a mushroom head or a rounded corner, so as to form an avoiding structure, so that the second position-limiting portion 322 is spaced from the adjacent first massage assembly 20 to avoid mutual contact, and the distance between the first massage assembly and the second massage assembly is reduced as much as possible, so as to fully utilize the installation space of the main body frame 10 and increase the massage contact area.
In one embodiment, the second connecting portion 323 defines a channel 3231, and the channel 3231 communicates with the mounting cavity 321 and the receiving cavity 130, respectively. The vibrating element 310 is disposed in the mounting cavity 321, and the electrical connection wires of the vibrating element 310 enter the accommodating cavity 130 of the main body bracket 10 through the channel 3231, so as to electrically connect with other electronic components in the accommodating cavity 130. In one embodiment, the connection terminal of the vibration motor is disposed on the end surface of the vibration motor facing away from the neck, and the end surface corresponds to the channel 3231, so that the connection is facilitated, and the connection wire directly passes through the channel 3231 and enters the accommodating cavity 130, thereby avoiding winding.
In one embodiment, as shown in fig. 5 to 6, the second mounting base 320 is of an elastic structure, the inner diameter of the channel 3231 of the second connecting portion 323 is smaller than the inner diameter of the mounting cavity 321, and the outer diameter of the vibrator 310 is larger than the inner diameter of the channel 3231. Specifically, the second mounting base 320 is an elastic structure, the second mounting base 320 has a certain tensile strength, and the second connecting portion 323 of the second mounting base 320 is stretched to elastically deform and expand the second connecting portion 323, so that the vibrating element 310 passes through the channel 3231 of the second connecting portion 323 and further enters the mounting cavity 321 of the second limiting portion 322. After the second connection part 323 is released, the second connection part 323 is restored to the original state, and the inner diameter of the passage 3231 is smaller than that of the mounting cavity 321, thereby preventing the vibration member 310 from being released from the second connection part 323. The design simplifies the structure, reduces the assembly of parts and improves the production efficiency; meanwhile, through the design of the elastic structure, the vibration amplitude of the vibration member 310 is relieved, and the vibration member 310 can be ensured to have enough elastic space to vibrate, so that the resistance is reduced, and the noise is reduced. In one embodiment, the outer diameter of the vibrating member 310 is adapted to the inner diameter of the mounting cavity 321. Due to the design, the moving range of the vibrating element 310 is further limited, and the vibrating element 310 is prevented from swinging in the mounting cavity 321 to influence the structural stability and the reliability of the circuit.
In order to adapt to necks with different girth sizes and to alleviate dynamic influence caused by vibration, as shown in fig. 6 and 7, in one embodiment, the second connecting portion 323 further includes an elastic stretching portion 3232, and the elastic stretching portion 3232 is disposed at a side close to the soft rubber support 120, or the elastic stretching portion 3232 is disposed at a side close to the second limiting portion 322. That is, the elastic expansion part 3232 is at least a part of the second connection part 323, and the elastic expansion part 3232 is connected to the soft rubber support 120, or the elastic expansion part 3232 is connected to the second position-limiting part 322. Through setting up elasticity pars contractilis 3232 to make second mount pad 320 and neck elastic contact, alleviate the vibration influence of vibrating piece 310 on the one hand, on the other hand makes second mount pad 320 and neck skin more laminate through the neck of elastic deformation with the adaptation different girth sizes. Meanwhile, the amplitude of the vibration element 310 transmitted to the main body support 10 can be relieved through the elastic extension portion 3232, so that the structural stability in the main body support 10, that is, the stability of the components in the accommodating cavity 130 is prevented from being affected. It can be understood that the channel 3231 of the second connecting portion 323 passes through the elastic telescopic portion 3232, so that the second position-limiting portion 322 is communicated with the receiving cavity 130.
As shown in fig. 1 and 7, in one embodiment, the resilient bellows 3232 is pleated. Such a design is simple in structure while ensuring smooth compression or expansion of the elastically stretchable portion 3232. For example, when the neck is thick, the elastic extension portion 3232 is compressed to provide enough space to ensure the comfort of wearing the main body support 10 on the neck, and prevent the second mounting seat 320 from protruding and pressing against the skin of the neck, so as to prevent the main body support 10 from moving away from the neck, thereby ensuring that the adjacent first massage assembly 20 is in close contact with the skin of the neck. For example, when the vibrator 310 vibrates, the entire mount is inevitably vibrated to generate a fluctuation, and the elastic expansion portion 3232 is compressed or expanded in accordance with the fluctuation. The design of the fold structure can enable the mounting seat to respond to the amplitude change of the vibrating piece 310 in time, so that the whole structure of the second massage assembly 30 is harmonious and uniform, the consistency of actions is ensured, and the comfort level of massage is improved.
As shown in fig. 3 and 7, in one embodiment, the second mounting base 320 is a soft glue structure. In one embodiment, the second mounting seat 320 is integrally formed of silicone. That is, the second connecting portion 323 includes the elastic expansion portion 3232 and the second stopper 322 is integrally formed. The second mounting seat 320 is integrally formed by selecting elastic silica gel, so that the second mounting seat 320 is soft and elastic, the comfort in contact is improved, and the elastic telescopic part 3232 is convenient to deform; meanwhile, the integral structure can prevent the second mounting seat 320 from being displaced or loosened due to long-term influence of the vibrating member 310, ensure stability and reliability of the second massage assembly 30, and improve assembly efficiency.
In order to adapt the second massage unit 30 to the rugged structure of the cervical vertebrae to ensure good contact between the second massage unit 30 and the skin of the neck as much as possible, as shown in fig. 3 and 5, in one embodiment, the second mounting base 320 further includes an interface portion 325 connected between the second connecting portion 323 of the second mounting base 320 and the body frame 10, and the wall thickness of the interface portion 325 is smaller than that of the second connecting portion 323. Specifically, the interface portion 325 is located at the end of the second connecting portion 323 close to the soft rubber support 120, and the wall thickness of the end of the second connecting portion 323 is locally reduced by the interface portion 325, so that the local support strength is reduced. It can be understood that by reducing the wall thickness of the junction between the second connecting portion 323 and the soft rubber support 120, i.e., the intersection 325, the local supporting strength at the junction is reduced, so that the second mounting base 320 cannot be stably and vertically fixed to the soft rubber support 120 during vibration, and the second mounting base 320 swings and swings with the vibration of the vibrating element 310. Due to the design, on one hand, the second mounting seat 320 is prevented from being fixed at the same fixed point for massaging for a long time, the massaging range is expanded, and the massaging effect is improved; on the other hand, the second massage unit 30 can be smoothly displaced according to the shape of the cervical vertebrae due to the structure of the cervical vertebrae itself.
Since the second massage unit 30 is affected by the vibrating member 310 and is in a dynamic situation during operation, in order to adapt to the dynamic changes of the neck, for example, the cervical vertebrae are in different situations of lowering, raising or rotating, especially the cervical vertebrae themselves are changed, and the skin of the neck corresponding to the cervical vertebrae is also changed. As shown in fig. 3, 4 and 7, in one embodiment, the second mounting base 320 includes an interface 325 connected between the second connecting portion 323 and the soft rubber bracket 120, and the wall thickness of the interface 325 is smaller than that of the second connecting portion 323; the second connection portion 323 has an elastic expansion portion 3232. With such a design, on the one hand, the second position-limiting portion 322 cannot be stably and vertically fixed to the elastic expansion portion 3232 and the connection portion 325 during vibration, so that the second mounting seat 320 swings and swings with the vibration of the vibrating element 310, and the sealing panel 324 of the second position-limiting portion 322 is kept attached to the skin of the neck. On the other hand, combine elasticity pars contractilis 3232 can compress or stretch to can adapt to the unevenness that the cervical vertebra corresponds, second massage subassembly 30 both can be through elasticity pars contractilis 3232 from the direction adaptation unevenness skin surface of perpendicular to neck, can adapt to unevenness skin surface from the direction that is on a parallel with the neck through swinging the whipping again, thereby make the closure panel 324 of spacing portion 322 of second remain all the time with the laminating of neck skin.
As shown in fig. 3, in one embodiment, the second mounting base 320 is a soft rubber structure, and the second mounting base 320 and the soft rubber bracket 120 are an integrally formed structure. In one embodiment, not shown, the second mounting base includes an elastic expansion portion and an interface portion, and is integrally formed with the soft rubber support. Through the integrally formed structure, the assembly process is reduced, and the production efficiency is improved; while preventing the second mounting seat 320 from being displaced or released due to the long-term influence of the vibration member 310, and ensuring the stability and reliability of the second massage assembly 30. In order to further increase the massage range and to distribute the massage assemblies reasonably, as shown in fig. 1 and 2, in one embodiment, there are two first massage assemblies 20 and three second massage assemblies 30, the first massage assemblies 20 and the second massage assemblies 30 are alternately arranged on one side of the main body frame 10 close to the neck, and one of the second massage assemblies 30 corresponds to the middle portion of the nape, i.e. corresponds to massage the cervical vertebrae. Specifically, one of the second massage assemblies 30 corresponds to the middle of the back neck, and the first massage assemblies 20 are respectively arranged at intervals at both sides of the second massage assembly 30 to correspond to muscles at both sides of the cervical vertebra; the remaining two second massage assemblies 30 are then disposed on the side of the first massage assembly 20 away from the cervical vertebrae to ensure the massage of the edge of the nape. With the design, the first massage assembly 20 and the second massage assembly 30 with different sizes are alternately arranged, so that the installation position of the main body bracket 10 is fully utilized, and the massage range is enlarged; the massage components with different massage functions are alternately arranged at proper positions corresponding to the neck, and are reasonably distributed according to the neck structure, so that the optimal massage effect according with the neck structure is achieved. In order to keep the first massage assembly 20 and the second massage assembly 30 attached to the skin, in one embodiment, the massage contact surfaces of the first massage assembly 20 and the second massage assembly 30 are located on the same arc. Specifically, according to the radian of the neck, the length of the first connecting column and the length of the second connecting column are controlled, so that the end surface of the first limiting portion 222 and the end surface of the second limiting portion 322 are located on the same arc surface. The end surfaces of the first and second position-limiting parts 222 and 322 are both surfaces close to the neck, i.e. massage contact surfaces. It will be appreciated that the surface area of the massage contact surface is the massage contact area. In order to avoid the mutual interference between the first massage component and the second massage component, in one embodiment, the first massage component and the second massage component are spaced at a distance of 3mm to 20 mm. Specifically, the distance between the outer periphery of the first position-limiting portion 222 and the outer periphery of the adjacent second position-limiting portion is 3mm to 20 mm. By setting the spacing distance, the first massage component and the second massage component are prevented from being too close to each other, and mutual interference is prevented; meanwhile, the problem that the installation space is wasted due to the fact that the distance between the two is too far is avoided.
With the increase of the number of the massage assemblies, in order to improve the supporting strength, in one embodiment, the local wall thickness of the soft rubber bracket between the adjacent first massage assembly and the second massage assembly is larger than the wall thickness of other parts of the soft rubber bracket. By the design, the local supporting strength of the soft rubber support is improved, and the deformation of the soft rubber support due to the weight is avoided. Particularly, when the first massage component and the second massage component work simultaneously, the first massage component and the second massage component are influenced by the vibration of the second massage component, and the fitting degree of the electrode element of the first massage component and the skin is possibly influenced. Through the local wall thickness that increases the flexible glue support to improve the local support intensity of flexible glue support, reduce first massage subassembly and receive adjacent vibration influence, make first massage subassembly keep with the laminating degree of skin, improve the massage and experience.
When each massage subassembly of this application is more, when the function is abundant, inevitably adopted more connecting wires. In order to regulate the circuit, as shown in fig. 4, in one embodiment, each first massage assembly 20 includes a flexible circuit board 230, the flexible circuit board 230 integrates an electric pulse massage circuit and a heating circuit, and the electric pulse massage circuit is electrically connected to the electrode elements 210 and is used for controlling the electrode elements 210 to generate weak current to stimulate the neck; the heating circuit is electrically connected with the heating element and is used for controlling the heating element to generate heat. In one embodiment, the neck massager further includes an adapter plate 240, the adapter plate 240 is disposed in the receiving cavity 130 of the main body frame 10, and each of the first massage assemblies 20 is electrically connected to the adapter plate 240. Further, the adaptor plate 240 is disposed on the connection bracket 110. The connection bracket 110 has a high rigidity, so that the fixed adaptor plate 240 can be supported. The adaptor plate 240 has terminals, and the flexible circuit board 230 of each first massage assembly 20 is respectively inserted into the terminals of the adaptor plate 240, so as to electrically connect the flexible circuit board 230 and the adaptor plate 240. In this embodiment, the adapter plate 240 is used to assemble each first massage assembly 20, so as to conveniently and centrally control the first massage assemblies 20 to work. Meanwhile, by arranging the adapter plate 240, lines can be shortened and regulated, and line chaos is avoided. In one embodiment, the electric pulse massage circuit and the heating circuit can be directly implemented by electronic components in the prior art, which is not described herein again.
As shown in fig. 1, in one embodiment, when the number of the first massage assemblies 20 is plural, each of the first massage assemblies 20 is independent of each other. The plurality of first massage assemblies 20 may be operated simultaneously, or independently at a single point, or in a jumping mode, i.e., sequentially like a horse race lamp. Similarly, when the number of the second massage units 30 is plural, each of the second massage units 30 is independent of each other. The plurality of second massage assemblies 30 may be operated simultaneously, or alternately, or in a jumping type, i.e., sequentially like a horse race light. Due to the design, the neck massager can realize the simulation of various manipulations, and the massage effect is improved.
In one embodiment, the functions of the electrode element 210, the heating element and the vibrating element 310 can be directly implemented by using electronic components in the prior art, which are not described herein again.
In order to fix the main body frame 10 to the neck when in use, as shown in fig. 1, in one embodiment, the neck massage apparatus further includes two clamping arms 40, and each clamping arm 40 is correspondingly connected to one end of the main body frame 10. The clip arms 40 are for the sides of the corresponding neck, i.e., the left and right sides of the neck. Form the arc structure after two arm lock 40 and main part support 10 assemble, the whole outline of the neck massage appearance of this application is the arc structure promptly, and the neck massage appearance of this application encircles the setting along the neck when using, and two arm lock 40 stabilize the centre gripping in the both sides of neck, make main part support 10 laminate with the neck better.
In one embodiment, the neck massager of the present application is not limited to be used for neck massage, but also for massaging the curved parts of the legs or arms, etc., i.e., the subject name of the present application does not limit the application scope of the present invention.
Other embodiments of the present application further include a neck massage apparatus that is formed by combining technical features of the above embodiments.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only express several embodiments of the present application, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present application. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the concept of the present application, which falls within the scope of protection of the present application. Therefore, the protection scope of the present patent shall be subject to the appended claims.
Claims (18)
1. A neck massager is characterized by comprising a main body bracket, at least two first massage components and at least one second massage component; wherein:
the main body support is suitable for neck wearing;
the at least two first massage components are arranged on one side of the main body bracket close to the neck at intervals; the massage contact area of a single second massage assembly is smaller than that of a single first massage assembly, the second massage assembly is arranged between the adjacent first massage assemblies, and the second massage assembly is spaced apart from each first massage assembly to occupy part of the rest installation space of the main body bracket;
at least part of the massage surface of the second massage component arches towards the direction far away from the main body support so as to form an avoiding structure which is separated from the first massage component.
2. The neck massager of claim 1 wherein at least two of the first massage assemblies each comprise an electrode for applying a massage current to the human body, the electrodes having a total molar contact area of not less than 10cm2。
3. The neck massager of claim 1 wherein the first massage assembly comprises a first mounting base, the first mounting base comprises a first connecting portion and a first limiting portion, one end of the first connecting portion is connected to the first limiting portion, and the other end of the first connecting portion is connected to the main body bracket.
4. The neck massager of claim 3 wherein at least two of the first massage assemblies each comprise an electrode member, and a first limiting portion having a limiting ring groove formed on a side thereof facing the neck; the electrode piece includes touch panel and flange, touch panel is used for with neck skin contact, the flange orientation first mount pad is protruding to be established, just the flange card is located spacing annular.
5. The neck massager of claim 3 wherein the first coupling portion has an outer diameter that increases in a direction toward the body support.
6. The neck massager of claim 1 wherein the first massage assembly includes a heat generating member for heating the neck.
7. The neck massager of claim 1 wherein the massage surface of the first massage assembly has opposite ends projecting in a width direction of the main body support.
8. The neck massager of claim 1 wherein the second massage assemblies comprise vibrating members, and wherein at least one of the second massage assemblies corresponds to a cervical spine when the main body support is worn on the neck.
9. The neck massager of claim 8 wherein the main body support has a receiving cavity formed therein, the second massage assembly includes a second mounting seat having a channel and a mounting cavity, the channel communicates with the mounting cavity and the receiving cavity, respectively, and the vibrating member is disposed in the mounting cavity.
10. The neck massager of claim 9 wherein the second mounting base comprises a second limiting portion and a second connecting portion, one end of the second connecting portion is connected to the second limiting portion, and the other end of the second connecting portion is connected to the main body bracket; the second limiting portion is arranged on one side close to the neck, and the mounting cavity is formed in the second limiting portion.
11. The neck massager of claim 9 wherein the second mounting base is of a resilient construction, the second connecting portion has an inner diameter of the passage smaller than an inner diameter of the mounting cavity, and the vibrator has an outer diameter larger than the inner diameter of the passage.
12. The neck massager of claim 9 wherein the second mount further comprises an interface connected between the second mount and the body support, the interface having a wall thickness less than a wall thickness of the second mount.
13. The neck massager of claim 9 wherein the main body support comprises a connecting support and a soft rubber support, the connecting support and the soft rubber support enclose the accommodating cavity, the connecting support is arranged on one side far away from the neck, and the soft rubber support is arranged on one side near the neck.
14. The neck massager of claim 13 wherein the second mounting base is of a soft rubber structure, and the second mounting base and the soft rubber support are of an integrally formed structure.
15. The neck massager of claim 1 further comprising an adapter plate disposed within the main body support, each first massage assembly electrically connected to the adapter plate.
16. The neck massager of claim 1 wherein the massage interface surfaces of the first massage assembly and the second massage assembly are all on the same arc.
17. The neck massager of any one of claims 1 to 16 wherein the number of the first massage assemblies is two and the number of the second massage assemblies is three, the first massage assemblies and the second massage assemblies being alternately spaced apart from each other on a side of the main body support adjacent to the neck.
18. The neck massager of any one of claims 1 to 16 wherein the first massage assembly is spaced from the second massage assembly by a distance of 3mm to 20 mm.
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