CN215689741U - Massage gloves to diabetes mellitus patient - Google Patents

Massage gloves to diabetes mellitus patient Download PDF

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Publication number
CN215689741U
CN215689741U CN202120696550.7U CN202120696550U CN215689741U CN 215689741 U CN215689741 U CN 215689741U CN 202120696550 U CN202120696550 U CN 202120696550U CN 215689741 U CN215689741 U CN 215689741U
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massage
glove
vibration
sliding groove
moving ball
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CN202120696550.7U
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Chinese (zh)
Inventor
王惠琴
修双玲
邵夏龙
司梅
王腾
芦尹
陶东兰
成宁宁
汝荣荣
黄云波
王欣
李爽
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Xuanwu Hospital
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Xuanwu Hospital
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Abstract

The utility model provides a pair of massage gloves for diabetics, which comprises a glove body and massage units, wherein the massage units are arranged in the glove body, each massage component comprises a vibration component and a pressure switch, and the pressure switches are connected with the vibration components in a mode of switching the working state of the vibration components when pressure changes can be sensed. This device is through being provided with the vibration subassembly, the mode of work and the operating condition's of changeable massage function pressure switch, heating element and monitoring unit can bring the alleviating to diabetic patient's health pain in-process in order to guarantee to massage the gloves safe handling, can wear gloves simultaneously and make massage personnel be applied to each health corner with multiple functions based on nimble finger to can bring the patient of the bodily pain that leads to because of vascular jam scheduling problem through modes such as temperature, vibration when making things convenient for nimble to use and relieve.

Description

Massage gloves to diabetes mellitus patient
Technical Field
The utility model relates to the field of medical machinery, in particular to a pair of massage gloves for diabetics.
Background
Diabetes is a group of metabolic diseases characterized by hyperglycemia. Hyperglycemia is caused by a defect in insulin secretion or an impaired biological action, or both. The chronic hyperglycemia results in chronic damage and dysfunction of various tissues, particularly eyes, kidneys, heart, blood vessels and nerves. Prolonged hyperglycemia may cause the patient to experience symptoms of limpness, stinging and swelling of the extremities and body, requiring targeted massage to relieve the sensation of pain and weakness. The effective auxiliary instrument for the targeted massage is a massage glove, and a patient or other users can massage the pain part in modes of vibration, kneading, electrode stimulation and the like by wearing the glove, so that the effect of relieving is achieved.
Chinese patent publication No. CN205268530U discloses an intelligent massage glove, which comprises a glove body, a massage device and a control device, wherein the massage device and the control device are arranged in the glove body, and wherein: the massage device is arranged on the inner surface of the glove body, and massage beads and a transmission unit for driving the massage beads are arranged in the massage device; the control device is connected with the massage device and is used for controlling the massage beads and the transmission unit; the transmission unit is used for driving the massage beads to move to acupuncture points of the hand of the user in the intelligent massage glove. The device realizes the massage effect through the movement of the massage salient points, but the massage effect generated by the movement of the massage balls is insufficient. In view of this, chinese patent publication No. CN2917333 discloses an electronic massage glove which is woven from a conductive material, and on which a waveform generator is mounted, and both output electrodes of the waveform generator are connected to both gloves through wires, respectively. This device performs massage by electrode stimulation, but since the non-physical massage means has little effect for the purpose of dredging blood vessels, the action massage of vibration massage in combination with kneading is indispensable as a means for relieving pain for diabetics.
The massage gloves comprise a front face part and a back face part, wherein the front face part is used for facing the palm center of a hand when the massage gloves are sleeved on the hand, the back face part is used for facing the back of the hand when the massage gloves are sleeved on the hand, the front face part comprises an inner layer, an outer layer and an interlayer, the inner layer, the interlayer and the outer layer are sequentially arranged from inside to outside, the inner layer is a heat insulation layer, a vibrator and a heater are arranged in the interlayer, the vibrator and the heater are used for being connected with a power supply in a pluggable mode, a mesh-shaped bag is arranged in the outer layer, and a medicinal oil adsorbing body and/or a medicinal bag adsorbing medicinal oil are detachably arranged in the mesh-shaped bag. The device has a plurality of limitations in the using process, the switch is required to be adjusted in the using process, the liquid medicine has the liquid leakage risk, and the weight of the gloves with complicated functions is too heavy for users.
Based on the demand for lightweight and convenient-to-operate massage gloves, there is a need to design a massage glove for diabetic patients to solve the above problems.
Furthermore, on the one hand, due to the differences in understanding to the person skilled in the art; on the other hand, since the inventor has studied a lot of documents and patents when making the present invention, but the space is not limited to the details and contents listed in the above, however, the present invention is by no means free of the features of the prior art, but the present invention has been provided with all the features of the prior art, and the applicant reserves the right to increase the related prior art in the background.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the utility model designs a pair of massage gloves for diabetics, which comprises a glove body and massage units, wherein the massage units are arranged in the glove body, each massage component comprises a vibration component and a pressure switch, and the pressure switches are connected with the vibration components in a mode of switching the working state of the vibration components when the pressure changes.
According to a preferred embodiment, the vibration assembly is provided with a plurality of vibration modes of operation, including short, long and combinations thereof.
According to a preferred embodiment, the pressure switch is provided with a switch capable of switching different working modes of the vibration component in a mode of switching the working modes of the vibration component according to different pressure change laws.
According to a preferred embodiment, the surface of the glove body for massaging the human body is provided with massage particles having a massage effect.
According to a preferred embodiment, the sliding groove encloses a portion of the moving ball in a manner that exposes an area of the portion of the moving ball to ensure that the moving ball contacts the skin for a massaging effect.
According to a preferred embodiment, the sliding grooves are arranged in a ring shape ending in the end in such a way that they ensure at least one rotation of the moving ball when moving in the same direction along the sliding grooves.
According to a preferred embodiment, the at least one vibration unit is evenly distributed at the finger and palm positions of the glove body in such a way that the massage glove can generate a plurality of vibration sources during massage to increase the massage effect.
According to a preferred embodiment, the vibration unit is provided with a rechargeable battery and a charging interface for charging the rechargeable battery in a manner enabling independent use.
According to a preferred embodiment, the massage particles comprise a base, a sliding groove and a moving ball, wherein the sliding groove of the moving ball is arranged in the base fixed connection groove, and the moving ball is arranged in the groove of the sliding groove in such a way that it can move in the direction in which the sliding groove extends.
According to a preferred embodiment, the glove body is provided with a heating element which covers the glove in a sheet-like manner for massaging one side of the human body in such a way that it can share a power supply with the vibration element and is controlled by the pressure switch together with the vibration element.
According to a preferred embodiment, the gloves body can also be provided with the guardianship unit that is used for monitoring the human sign of being massaged, the guardianship unit can be based on infrared sensor and pressure sensor's setting and guards physical signs such as human body temperature, heartbeat.
According to a preferred embodiment, the glove body is provided with a function display screen for displaying the use condition and the monitoring result of each function.
The utility model has the beneficial technical effects that: the massage glove for the diabetic is provided with the vibration component, the pressure switch capable of switching the working state, the heating component and the massage particles, so that the massage glove can relieve the body pain of the diabetic in the safe use process, and the massage glove is convenient and flexible to use and can relieve the body pain of the diabetic caused by the problems of blood vessel blockage and the like in the modes of temperature, vibration and the like;
(1) the full-coverage vibration component is arranged, so that the massage area is increased, when the palm moves on a human body, the whole palm can massage the human body, and the massage efficiency is increased;
(2) the pressure switch is arranged to reduce the operation without massage, and the massage mode can be started when the gloves are pressed against the human body and generate pressure, so that the operation is convenient and fast;
(3) the heating component capable of providing the temperature of the massage gloves is added, so that the massage gloves can be used in a cold environment without causing discomfort of a massaged person, and meanwhile, the high temperature in a range without damaging a human body can greatly promote blood circulation and relieve pain;
(4) the monitoring unit is added, so that the massaged person can have regional damage caused by overhigh temperature of a massage area or overhigh vibration speed in the process of being massaged, and the monitoring result is displayed to the massaged person in real time aiming at monitoring of physical signs of human heartbeat, the temperature of the massage area and the like so as to avoid the injury of the human body caused by excessive massage.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic structural view of a cross-sectional view of the present invention;
fig. 3 is a structural view of the massage particles of the present invention.
List of reference numerals
100: glove body 200: massage assembly
210: the pressure switch 220: vibration assembly
230: thermal insulation layer 240: heating assembly
300: the massage particles 310: substrate
320: the slide groove 330: moving ball
Detailed Description
The following detailed description is made with reference to the accompanying drawings.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like, indicate orientations and positional relationships based on those shown in the drawings, and are used only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be considered as limiting the present invention.
The utility model designs a pair of massage gloves for diabetics, which comprises a glove body 100 and massage units, wherein the massage units are arranged in the glove body 100, the massage components 200 comprise vibration components 220 and pressure switches 210, and the pressure switches 210 are connected with the vibration components 220 in a mode of switching the working states of the vibration components 220 when the pressure changes can be sensed. The pressure switch 210 can be a point-contact switch. The pressure switch 210 powers the massage assembly 200 on when pressure is applied and powers the massage assembly 200 off when pressure is lost. The pressure switch 210 can also be a controller that receives pressure change generating commands. The pressure switch 210 turns on the power when the pressure switch 210 receives pressure, causing the massage assembly 200 to be energized and remain energized. The pressure switch 210 turns off the power when the pressure switch 210 receives pressure again, causing the massage assembly 200 to be powered off and the operating state to be off.
According to a preferred embodiment, the vibration assembly 220 is provided with a plurality of vibration modes of operation, including short, long, and combinations thereof. Since the variable vibration massage modes have a promoting effect on the massage effect during a long-time massage, the vibration time of the vibration assembly 220 should be divided into three modes, i.e., short vibration, slightly long vibration, and various vibration massage modes are generated based on any combination of the three modes in different amounts. The specific work switching principle of the massage assembly refers to an EMS waist massager with the product model YF-P1.
According to a preferred embodiment, the massage gloves can be configured to match a single one of the left or right hands based on the difference between the left and right hands, which can also be two to match a single hand.
According to a preferred embodiment, the pressure switch 210 is provided with a switch capable of switching different operation modes of the vibration component 220 in a manner of sensing different pressure change rules to switch the operation modes of the vibration component 220. Based on the above-mentioned various vibration massage modes, switching by external control is required when making a change. Based on the fact that additional operation areas need to be arranged and additional hand operation is needed in the massage process due to the arrangement of the button switching mode, the pressure switch 210 with the switcher is adopted for mode switching, and different from the switching of the working state of the massage assembly 200, the mode switching of the working mode senses the rule of pressure change through the pressure switch 210, namely the working state of the massage assembly 200 is changed from the pressure change, and the working mode of the massage assembly 200 is changed according to the rule of the pressure change times or time intervals.
According to a preferred embodiment, in addition to the sensor for sensing the pressure change and the massage component 200 for generating the function, which are disposed inside the glove body 100, other components such as a control component or a power supply can be disposed outside the massage glove based on the burden reduction of the massage glove. The components arranged outside the massage gloves can be placed on a plane or bound on a massage human body in a mode of not occupying the space of the massage gloves, and are connected with the components inside the massage gloves through power lines.
According to a preferred embodiment, the surface of the glove body 100 for massaging a human body is provided with massage particles 300 having a massage effect. The smooth flat massage glove has a negative effect on the massage effect, and the arrangement of the flexible massage particles 300 makes the massage glove have a more significant effect on the squeezing of the acupuncture points or the blood vessels of the human body. The massage particles 300 can be at least one spherical flexible particle distributed in an aggregated or dispersed manner on the side of the massage glove near the massage area.
According to a preferred embodiment, the at least one vibration unit is uniformly distributed at the finger and palm positions of the glove body 100 in such a manner that the massage glove can generate a plurality of vibration sources to increase a massage effect when massaging. The vibration unit 220 is disposed inside the glove body 100 in a sheet shape, and the vibration radiation of the vibration unit 220 has a distance limit. Based on the vibration effect of a single vibration component 220 in a certain range, in order to ensure that part or all of the regions of the massage glove have the vibration effect, the vibration components 220 should be uniformly distributed on one side of the massage glove close to the human body, namely, the whole palm surface, so that the whole area of the palm surface has the vibration effect.
According to a preferred embodiment, the vibration unit is provided with a rechargeable battery and a charging interface for charging the rechargeable battery in a manner enabling independent use. The charging interface can be a universal charging interface and comprises a Micro USB, a Type-C USB, a Mini USB and a circular interface.
According to a preferred embodiment, the massage particles 300 comprise a base 310, a sliding groove 320 and a moving ball 330, wherein the base 310 is fixedly connected with the sliding groove 320 in which the moving ball 330 is arranged, and the moving ball 330 is arranged in the groove of the sliding groove 320 in a manner of being capable of moving in the extending direction of the sliding groove 320. Preferably, the sliding groove 320 can be ring-shaped such that the moving ball 330 can move back and forth in a circular trajectory within the sliding groove 320. When the massage glove is used for massage, the moving ball 330 can be rolled and pressed on the skin surface by moving in the sliding groove 320. The base 310 is used to connect the individual vibration assemblies 220 such that each massage particle 300 can correspond to one vibration assembly 220. The vibrating massage particles 300 enhance the massage effect during the massage process, while the moving ball 330 generates the movement in the groove of the sliding groove 320 based on the vibration of the massage particles 300 by the vibration assembly 220 when the masseur's hand is not moving. The sliding groove 320 wraps a portion of the moving ball 330 in such a manner that a partial area of the moving ball 330 can be exposed to ensure that the moving ball 330 can contact the skin to achieve a massage effect. The moving ball 330 can be rotated and moved along the sliding groove in a wrapped state. The above states can be achieved in one or both. The exposed area of the moving ball 330 is used to contact and apply pressure to the skin, causing the muscles to be squeezed to produce a massage effect.
According to a preferred embodiment, the sliding grooves 320 are arranged in a ring shape ending up in a tail in such a way as to ensure that the moving balls 330 rotate at least one turn when moving in the same direction along the sliding grooves 320. When the massage apparatus moves in one direction, the moving ball 330 can generate a rotation effect to generate different squeezing force degrees, and can also generate a squeezing force degree which moves along the sliding groove 320 to slightly change the position, so that the massage range is enlarged. When the massage device dips in the essential oil, the rotation of the movable ball 330 makes the essential oil be evenly applied.
According to a preferred embodiment, the glove body 100 is provided with a heating element 240, said heating element 240 sheet-like covering the glove for massaging one side of the human body in such a way that it can share the power supply with said vibration element 220 and is controlled by the pressure switch 210 in common with said vibration element 220. Since the heating unit 240 is disposed inside the glove body 100, it generates a heating effect on the whole massage glove in a working state. In order to avoid the possibility of scalding the massager wearing the gloves, the side of the heating component 240 close to the inner cavity formed by the glove body 100 and used for accommodating the hands is provided with the heat insulation layer 230, so that the influence of the temperature on the massager wearing the gloves is reduced. The insulation layer 230 can be a cortex or cotton layer. Based on the effect of the temperature increase on the operation of the vibration assembly 220, the heating assembly 240 should be disposed on the side closest to the massage direction, and then the thermal insulation layer 230 is disposed between the heating assembly 240 and the vibration assembly 220.
According to a preferred embodiment, the glove body 100 can be further provided with a monitoring unit for monitoring the physical signs of the massaged human body, and the monitoring unit can monitor the physical signs of the human body, such as the body temperature and the heartbeat, based on the settings of the infrared sensor and the pressure sensor. Preferably, a herborida 60GHz PCR radar sensor is arranged inside the glove body 100, and non-contact monitoring of respiration heartbeat and temperature is realized through continuous scanning in a close range.
According to a preferred embodiment, the glove body 100 is provided with a function display screen for displaying various function use conditions and monitoring results. Based on the monitoring result of the massaged person and the understanding requirement of the current state of the massage gloves by the massaged person, the glove body 100 can be provided with a functional display screen or the glove body 100 can be connected with an external display instrument through a charging interface or an additional data interface to display and report the current working state and the monitoring result. The working state includes the electric quantity, whether the device is in the on state, whether the vibration component 220, the heating component 240 and the monitoring component are turned on or not, the working mode of the vibration component 220, the temperature gear of the heating component 240 and the monitoring result. The functional display screen can be an LED screen with backlighting. Preferably, the functional display screen can be a PH10 LED clear film screen.
When the electric massager is used, the massager is taken out, the massager is sleeved on the hand, the power of the massager is ensured to be supplied to the massager, and the electric massager is started through a switch. The glove is placed in the pain area, a certain pressure is applied to the glove body 100 by pressing and kneading, and the vibration unit 220 or the heating unit 240 is energized to perform massage. When the functional mode needs to be switched, the massage mode is switched by continuously pressing the region of glove body 100 where pressure switch 210 is provided at least twice or more. After the electric quantity of the massage gloves is exhausted, the massage gloves are charged through the connection of the charging interface of the general charging wire.
It should be noted that the above-mentioned embodiments are exemplary, and that those skilled in the art, having benefit of the present disclosure, may devise various arrangements that are within the scope of the present disclosure and that fall within the scope of the utility model. It should be understood by those skilled in the art that the present specification and figures are illustrative only and are not limiting upon the claims. The scope of the utility model is defined by the claims and their equivalents.

Claims (10)

1. A pair of massage gloves for diabetics comprises a glove body (100) and massage units, wherein the massage units are arranged inside the glove body (100),
the massage assembly (200) comprises a vibration assembly (220) and a pressure switch (210), wherein the pressure switch (210) is connected with the vibration assembly (220) in a mode of switching the working state of the vibration assembly (220) when the pressure change can be sensed.
2. The massage glove as claimed in claim 1, wherein the surface of the glove body (100) for massaging a human body is provided with massage particles (300) having a massage effect.
3. The massage glove as claimed in claim 2, wherein the massage particles (300) comprise a base (310), a sliding groove (320), and a moving ball (330), wherein the base (310) is fixedly connected with the groove in which the sliding groove (320) of the moving ball (330) is disposed, and the moving ball (330) is disposed in the groove of the sliding groove (320) in such a manner as to be movable in the extending direction of the sliding groove (320).
4. The massage glove as claimed in claim 3, wherein the sliding groove (320) wraps a portion of the moving ball (330) in such a manner that a portion of the area of the moving ball (330) is exposed to ensure that the moving ball (330) can contact the skin to achieve a massage effect.
5. The massage glove as claimed in claim 4, wherein the sliding groove (320) is formed in a shape of a ring ending in a rear end in such a manner as to ensure at least one rotation of the moving ball (330) while moving in the same direction along the sliding groove (320).
6. The massage glove as claimed in claim 5, wherein the vibration unit is provided with a rechargeable battery and a charging interface for charging the rechargeable battery in a manner to be used independently.
7. The massage glove as claimed in claim 6, wherein at least one of the vibration units is uniformly distributed at the finger and palm positions of the glove body (100) in such a manner that the massage glove can generate a plurality of vibration sources to increase a massage effect when massaging.
8. The massage glove as claimed in claim 7, wherein the glove body (100) is provided with a heating member (240), and the heating member (240) sheet-covers one side of the glove for massaging the human body in such a manner that it can share a power source with the vibration member (220) and is controlled by the pressure switch (210) in common with the vibration member (220).
9. The massage glove as claimed in claim 8, wherein the glove body (100) can be further provided with a monitoring unit for monitoring the physical signs of the massaged human body, and the monitoring unit can monitor the physical signs of the human body such as the body temperature and the heartbeat based on the arrangement of the infrared sensor and the pressure sensor.
10. The massage glove as claimed in claim 9, wherein the glove body (100) is provided with a function display screen for displaying various function use conditions and monitoring results.
CN202120696550.7U 2021-04-06 2021-04-06 Massage gloves to diabetes mellitus patient Active CN215689741U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120696550.7U CN215689741U (en) 2021-04-06 2021-04-06 Massage gloves to diabetes mellitus patient

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120696550.7U CN215689741U (en) 2021-04-06 2021-04-06 Massage gloves to diabetes mellitus patient

Publications (1)

Publication Number Publication Date
CN215689741U true CN215689741U (en) 2022-02-01

Family

ID=80028735

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120696550.7U Active CN215689741U (en) 2021-04-06 2021-04-06 Massage gloves to diabetes mellitus patient

Country Status (1)

Country Link
CN (1) CN215689741U (en)

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