CN217828367U - Massage device - Google Patents

Massage device Download PDF

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Publication number
CN217828367U
CN217828367U CN202221347057.5U CN202221347057U CN217828367U CN 217828367 U CN217828367 U CN 217828367U CN 202221347057 U CN202221347057 U CN 202221347057U CN 217828367 U CN217828367 U CN 217828367U
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vital sign
housing
massage
vibration
opening
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CN202221347057.5U
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不公告发明人
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Shenzhen H&T Intelligent Control Co Ltd
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Shenzhen H&T Intelligent Control Co Ltd
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Abstract

The utility model relates to the technical field of massage devices and provides a massage device, which comprises a shell, a vital sign sensor and a vibration component; the shell is provided with a first opening and a massage cavity extending into the shell from the first opening; the vital sign sensor is arranged on the shell and positioned outside the massage cavity, and is used for detecting vital sign information of a user; the vibration component is arranged on the shell and used for driving the shell to vibrate, and the vibration component is electrically connected with the vital sign sensor and adjusts the vibration strength according to the vital sign information; through setting up the vital sign sensor, can detect user's vital sign information, and according to the vibration intensity of vital sign information regulation vibration subassembly can be according to the intensity of user's health real-time adjustment massage, improves because of the low poor problem of result of use of massage intensity, and improves because of the massage intensity is high and excessively excitedly, and then arouse cardiovascular disease's problem, improve user's product and use experience.

Description

Massage device
Technical Field
The utility model relates to a massage device technical field especially relates to a massage device.
Background
With the acceleration of life rhythm and the increase of working pressure of people and the change of living structures and living habits, the body of many people is in a sub-health state. The massager is a new generation of health care equipment developed according to physics, bionics, bioelectricity, traditional Chinese medicine and years of clinical practice. It not only can have and possess the emulation function, lets the user experience sensation such as massage, hammering, still has some unique efficiency, for example: it has effects in relaxing muscle, relieving nerve, promoting blood circulation, and promoting cell metabolism; can relieve fatigue, various chronic pains, acute pains and muscular soreness, relax body and relieve stress.
However, the inventor finds out in the process of realizing the utility model that: when the existing massager is used, if the massage intensity is low, the use effect is poor; if the massage intensity is high, the user may be excited excessively, cardiovascular diseases may be caused, and the product use experience of the user is affected.
SUMMERY OF THE UTILITY MODEL
The utility model provides a massage device can adjust the intensity of massage in real time according to user's health state, improves because of the low poor problem of result of use of massage intensity to and be hyperexcitable because of the massage intensity height, and then arouse cardiovascular disease's problem.
In order to solve the above technical problem, the utility model discloses a technical scheme that embodiment adopted is: providing a massage device comprising a housing, a vital signs sensor, and a vibration assembly; the shell is provided with a first opening and a massage cavity extending from the first opening to the inside of the shell; the vital sign sensor is arranged on the shell and positioned outside the massage cavity, and is used for detecting vital sign information of a user; the vibration subassembly set up in the casing, the vibration subassembly is used for driving the casing vibration, the vibration subassembly with vital sign sensor electricity is connected and according to vital sign information adjusts vibration intensity.
In some embodiments, the vital signs sensor comprises a heart rate acquisition sensor for detecting a heart rate of the user.
In some embodiments, the vital signs sensor includes a blood oxygen collection sensor for detecting blood oxygen of the user.
In some embodiments, the housing comprises a first housing and a second housing, the first housing is provided with a second opening and a containing space extending from the second opening to the inside of the first housing; the second shell comprises a main body portion, the main body portion is arranged in the accommodating space, the massage cavity and the first opening are arranged in the second shell, and the first opening and the second opening are in the same direction.
In some embodiments, the second housing further comprises a rim, the rim being annular, an inner annular side of the rim abutting the first opening, and an outer annular side of the rim abutting the second opening.
In some embodiments, the rim portion is integrally formed with the body portion.
In some embodiments, the vibration assembly includes a plurality of vibration units, a plurality of mounting grooves are formed at intervals on one side of the second housing facing the first housing, and one of the vibration units is disposed in one of the mounting grooves.
In some embodiments, the massage cavity is cylindrical, and the plurality of mounting grooves are uniformly spaced along the axial direction of the massage cavity; along the circumference of the massage cavity, the installation grooves are uniformly arranged at intervals.
In some embodiments, the vibration assembly further comprises a plurality of elastic members, one of the elastic members being disposed between the first housing and one of the vibration units.
In some embodiments, the massage device further comprises a circuit board and a battery, wherein the battery, the vital sign sensor and the vibration assembly are electrically connected with the circuit board, and the circuit board is provided with a wireless communication module.
Different from the situation of the related technology, the massage device of the utility model is provided with the vital sign sensor and the vibration component, the vital sign sensor can detect the vital sign information of the user, the vibration component can adjust the vibration intensity according to the vital sign information, namely, the massage intensity can be adjusted in real time according to the body state of the user, the use is convenient, and the use effect is enhanced; the problem that the patient is overexcited due to high massage strength so as to cause cardiovascular diseases can be solved, and the product use experience of the user is improved.
Drawings
Fig. 1 is a schematic structural view of a massage device according to an embodiment of the present invention;
fig. 2 is an exploded view of the massage device of the embodiment of the present invention;
FIG. 3 is a schematic view of the first housing of FIG. 2;
fig. 4 is a schematic structural view of the second housing in fig. 2.
The reference numbers in the detailed description are as follows:
100. a massage device; 1. a housing;
11. a first housing; 111. a second opening; 112. an accommodating space; 113. a half shell;
12. a second housing; 121. a main body part; 1211. a first opening; 1212. a massage cavity; 122. a rim portion; 123. mounting grooves;
2. a vital sign sensor;
3. a vibrating assembly; 31. a vibration unit; 32. an elastic member;
4. a circuit board; 5. a battery.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described in more detail with reference to the accompanying drawings and specific embodiments. 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 be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
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 invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In order to solve the above technical problem, as shown in fig. 1 and 2, an embodiment of the present invention provides a massage device 100, where the massage device 100 includes a housing 1, a vital sign sensor 2, a vibration component 3, a circuit board 4 and a battery 5, and the housing 1 is used for providing support and providing a massage contact portion, and is a skeleton of the whole massage device 100; the vital sign sensor 2 is used for detecting vital sign information of the user, such as detecting heart rate, blood oxygen concentration, respiratory rate and the like; the vibration component 3 is used for driving the shell 1 to vibrate, so that a human body is massaged, the vibration component 3 can adjust the vibration intensity according to the vital sign information of the user detected by the vital sign sensor 2 in real time, the use is convenient, and when the vital sign information of the user is relatively flat and slow, the vibration component 3 can increase the vibration intensity, for example, the frequency and/or amplitude of vibration is increased, and the use effect is enhanced; when the vital sign information of the user is urgent, the vibration component 3 can reduce the vibration intensity, for example, reduce the frequency and/or amplitude of the vibration, so as to improve the problem of cardiovascular diseases caused by overexcitation of the user, and further improve the product use experience of the user; the circuit board 4 is used for electrically connecting the vital sign sensor 2 and the vibration component 3 and controlling the vital sign sensor 2 and the vibration component 3; the battery 5 is used to provide power support.
Next, the specific structure of the above-described housing 1, vital signs sensor 2, vibration assembly 3, circuit board 4, and battery 5 will be explained in order.
With respect to the above-mentioned housing 1, as shown in fig. 2, the housing 1 includes a first housing 11 and a second housing 12, the first housing 11 is used for providing a fixed support for being held by hand or hand; the second shell 12 is used for contacting with a human body, and the second shell 12 is made of soft materials, so that the contact area can be increased due to the soft characteristic of the second shell, and the use comfort level is improved. Optionally, the first housing 11 is made of plastic, and the second housing 12 is made of silica gel.
As shown in fig. 3, the first housing 11 is provided with a second opening 111 and an accommodating space 112 extending from the second opening 111 into the first housing 11, and the accommodating space 112 is used for accommodating the second housing 12 and electronic components, that is, the first housing 11 is in a barrel shape with an opening at one end. Optionally, the first housing 11 is in the shape of a barrel.
As shown in fig. 2 and 3, the first housing 11 includes two half shells 113 that are separated along the axial direction thereof, and the first housing 11 is divided into two separable half shells 113, so that the massage device 100 can be easily assembled.
As shown in fig. 4, the second housing 12 includes a main body 121 and a rim 122, the main body 121 is disposed in the accommodating space 112, the main body 121 defines a first opening 1211 and a massage cavity 1212 extending from the first opening 1211 into the housing 1, that is, the main body 121 of the second housing 12 is in a barrel shape with an opening at one end. The main body portion 121 is accommodated in the accommodating space 112, and the first shell 11 is sleeved on the main body portion 121. Optionally, the body portion 121 of the second housing 12 is cylindrical.
Specifically, when the main body 121 is disposed in the accommodating space 112, the first opening 1211 and the second opening 111 are oriented in the same direction, so that the first housing 11 and the second housing 12 are nested together, and the housing 1 retains the massage cavity 1212 and the first opening 1211 of the second housing 12 after being nested, that is, the assembled housing 1 has the first opening 1211 and the massage cavity 1212 extending from the first opening 1211 into the housing 1.
As shown in fig. 4, the edge portion 122 is annular, the inner ring side of the edge portion 122 abuts against the first opening 1211, and the outer ring side of the edge portion 122 abuts against the second opening 111, so that the second housing 12 closes the second opening 111 of the first housing 11, thereby reducing intrusion of dust or liquid into the receiving space 112 and protecting components in the receiving space 112. Optionally, the edge portion 122 is integrally formed with the main body portion 121. Optionally, the outer ring side of the rim portion 122 extends towards the side of the main body portion 121 facing away from the first opening 1211, so as to enhance the sealing effect between the rim portion 122 and the first housing 11.
As shown in fig. 4, a plurality of mounting grooves 123 are spaced apart from one side of the second housing 12 facing the first housing 11, and the mounting grooves 123 are used for mounting the vibration assembly 3. The mounting grooves 123 are uniformly arranged on the surface of the second housing 12, and the vibration component 3 is uniformly covered on the surface of the second housing 12, so that the vibration intensity in the massage cavity 1212 is uniform, and the product use experience of a user is improved. For example, when the massage cavity 1212 is cylindrical, the plurality of mounting grooves 123 are uniformly spaced along the axial direction of the massage cavity 1212, and the plurality of mounting grooves 123 arranged along the axial direction of the massage cavity 1212 are arranged in a row; the plurality of mounting grooves 123 are uniformly spaced around the circumference of the massage cavity 1212, that is, a plurality of rows of the mounting grooves 123 are spaced around the circumference of the massage cavity 1212.
As for the vital signs sensor 2, as shown in fig. 1 and 2, the vital signs sensor 2 is disposed on the housing 1 and located outside the massage cavity 1212, and then the vital signs sensor 2 is disposed on the outer side of the housing 1. Optionally, the vital sign sensor 2 is disposed on a side of the first housing 11 away from the second housing 12, and when the user holds the housing 1, the hand covers the vital sign sensor 2, so as to detect the vital sign information of the user. Optionally, the vital sign sensor 2 is electrically connected to the circuit board 4 through a wire harness.
Specifically, the vital sign sensor 2 includes at least one of a heart rate acquisition sensor for detecting the heart rate of the user and a blood oxygen acquisition sensor for detecting the blood oxygen of the user, i.e., the concentration of oxygen in blood. When the vital sign sensor 2 is in operation, the vital sign sensor 2 emits light beams, such as a red light beam and a green light beam, to a human body contacting the vital sign sensor 2, the light beams pass through the skin and are reflected, and the blood oxygen and the heart rate can be calculated by detecting the absorption spectrum of the reflected light.
The state of the current vital sign information of the user, such as an excited state, a semi-excited state and a slow state, can be indirectly judged through the heart rate and/or the blood oxygen value; then, by establishing the corresponding relationship between the vibration intensity of the vibration component 3 and the state of the current vital sign information of the user, the vibration intensity of the vibration component 3 can be adjusted according to the state of the vital sign information, namely, the massage intensity can be adjusted in real time according to the body state of the user. Optionally, the vital sign sensor 2 includes a flexible printed circuit 4 (FPC), and an Integrated Circuit (IC) for collecting heart rate and an Integrated Circuit (IC) for collecting blood oxygen are disposed on the flexible printed circuit 4.
For the above-mentioned vibration subassembly 3, as shown in fig. 2, the vibration subassembly 3 set up in casing 1, thus the vibration subassembly 3 can drive when vibrating casing 1 vibrates, vibration subassembly 3 still with vital sign sensor 2 electricity is connected to can be according to the vital sign information regulation comes the vibration intensity that vital sign sensor 2 detected.
As shown in fig. 2, the vibration assembly 3 includes a plurality of vibration units 31 and a plurality of elastic members 32, one of the vibration units 31 is disposed in one of the mounting grooves 123, the mounting grooves 123 are uniformly arranged on the surface of the second housing 12, and then the vibration units 31 are also uniformly arranged on the surface of the second housing 12, so as to provide uniform multi-point vibration and enhance the vibration effect. The vibration unit 31 is in interference fit with the mounting groove 123, so that the rotation unit can be tightly mounted in the mounting groove 123. One the elastic component 32 is disposed between the first casing 11 and the vibration unit 31, the elastic component 32 is supported between the first casing 11 and the vibration unit 31, so as to enable the vibration unit 31 to be tightly attached to the mounting groove 123, enhance the vibration transmission effect between the vibration unit 31 and the second casing 12, reduce energy loss, and improve the use experience. Optionally, the elastic member 32 is a silica gel elastic sheet.
Optionally, the vibration unit 31 is a Z-axis motor, and the vibration direction of the Z-axis motor faces the bottom of the mounting groove 123, and the rotor of the Z-axis motor reciprocates along the inner wall of the stator to strike the second housing 12 to drive the second housing 12 to vibrate. Optionally, a row of the elastic members 32 are connected together to facilitate installation and removal. Optionally, the vibration units 31 are connected to the circuit board 4 through a wire harness, a row of the vibration units 31 is connected to the circuit board 4 through a wire harness, or each vibration unit 31 is independently connected to the circuit board 4 through a wire harness, so that the single vibration unit 31 can be independently controlled, and the vibration effect is further improved.
For the above circuit board 4 and battery 5, as shown in fig. 2, the battery 5, the vital sign sensor 2 and the vibration component 3 are all electrically connected to the circuit board 4, the circuit board 4 is provided with a wireless communication module, the wireless communication module includes a bluetooth module and a WIFI module, and the wireless communication module is used for being in communication connection with an external device, for example, communicating with a mobile phone through bluetooth and WIFI. Optionally, the battery 5 is a lithium battery 5. Optionally, the circuit board 4 is a printed circuit board 4 (PCBA).
The utility model discloses a massage device 100 is provided with vital sign sensor 2 and vibration subassembly 3, vital sign sensor 2 can detect user's vital sign information, vibration subassembly 3 can be according to vital sign information adjusts the vibration intensity, can adjust the intensity of massage in real time according to user's health state promptly, convenient to use to improve the poor problem of result of use because of massage intensity is low, can also improve and excessively excite because of massage intensity is high, and then arouse the problem of cardiovascular disease, improve user's product and use experience; and be provided with a plurality of the vibration unit 31, a plurality of the vibration unit 31 evenly distributed makes the vibration in the massage chamber 1212 is even, further promotes the use experience of product.
It should be noted that the preferred embodiments of the present invention are described in the specification and the drawings, but the present invention can be realized in many different forms, and is not limited to the embodiments described in the specification, and these embodiments are not provided as additional limitations to the present invention, and are provided for the purpose of making the understanding of the disclosure of the present invention more thorough and complete. Moreover, the above technical features are combined with each other to form various embodiments which are not listed above, and all the embodiments are regarded as the scope of the present invention; further, modifications and variations will occur to those skilled in the art in light of the foregoing description, and it is intended to cover all such modifications and variations as fall within the true spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. A massage apparatus, comprising:
the massage device comprises a shell, a first handle and a massage device, wherein the shell is provided with a first opening and a massage cavity extending from the first opening to the inside of the shell;
the vital sign sensor is arranged on the shell and positioned outside the massage cavity, and is used for detecting vital sign information of a user; and
the vibration subassembly, the vibration subassembly set up in the casing, the vibration subassembly is used for driving the casing vibration, the vibration subassembly with the vital sign sensor electricity is connected and is according to vital sign information adjusts vibration intensity.
2. The massaging device of claim 1, wherein the vital sign sensor comprises a heart rate acquisition sensor for detecting a heart rate of the user.
3. The massage device as recited in claim 1, wherein the vital sign sensor comprises a blood oxygen collection sensor for detecting blood oxygen of the user.
4. The massaging device of claim 1, wherein the housing comprises a first housing and a second housing, the first housing is provided with a second opening and a receiving space extending from the second opening into the first housing; the second shell comprises a main body portion, the main body portion is arranged in the accommodating space, the massage cavity and the first opening are arranged in the second shell, and the first opening and the second opening are in the same direction.
5. The massage device of claim 4 wherein the second housing further includes a rim, the rim being annular, an inner annular side of the rim abutting the first opening and an outer annular side of the rim abutting the second opening.
6. The massaging device of claim 5, wherein the rim portion is integrally formed with the body portion.
7. The massaging device of claim 4, wherein the vibrating assembly comprises a plurality of vibrating units, a plurality of mounting slots are spaced on a side of the second housing facing the first housing, and one of the vibrating units is disposed in one of the mounting slots.
8. The massaging device of claim 7, wherein the massaging chamber is cylindrical, and the plurality of mounting grooves are uniformly spaced along the axial direction of the massaging chamber; along the circumference of the massage cavity, the installation grooves are uniformly arranged at intervals.
9. The massaging device of claim 7, wherein the vibratory assembly further comprises a plurality of resilient members, one of the resilient members being disposed between the first housing and one of the vibratory units.
10. The massaging device of any one of claims 1 to 9, further comprising a circuit board and a battery, the battery, vital sign sensor and vibration assembly all being electrically connected to the circuit board, the circuit board being provided with a wireless communication module.
CN202221347057.5U 2022-05-31 2022-05-31 Massage device Active CN217828367U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117647373A (en) * 2024-01-29 2024-03-05 珠海云麦科技有限公司 Detection method and device for damping effect of fascia gun, electronic equipment and storage medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117647373A (en) * 2024-01-29 2024-03-05 珠海云麦科技有限公司 Detection method and device for damping effect of fascia gun, electronic equipment and storage medium
CN117647373B (en) * 2024-01-29 2024-04-30 珠海云麦科技有限公司 Detection method and device for damping effect of fascia gun, electronic equipment and storage medium

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