CN214105207U - Self-service electronic pot moxibustion device - Google Patents

Self-service electronic pot moxibustion device Download PDF

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Publication number
CN214105207U
CN214105207U CN202022354415.2U CN202022354415U CN214105207U CN 214105207 U CN214105207 U CN 214105207U CN 202022354415 U CN202022354415 U CN 202022354415U CN 214105207 U CN214105207 U CN 214105207U
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wall
side wall
self
moxibustion device
service electronic
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苏波
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Qingdao huangninggong Health Technology Co.,Ltd.
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Qingdao Huanggong Health Technology Co ltd
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Abstract

The utility model discloses a self-service electronic jar moxibustion device, including the body, the body has: the negative pressure cavity is defined by a side wall and a bottom wall, the side wall is arranged along the vertical direction, the first end of the side wall is connected with the bottom wall, and an adsorption opening is formed at the second end of the side wall; the inner cavity is defined by an outer wall, an end wall, a bottom wall and a side wall, the end wall extends outwards from the middle part of the side wall along the horizontal direction, and the outer wall covers the outer side of the side wall and is connected with the end wall; and the micro vacuum pump is arranged in the inner cavity, an air suction port of the micro vacuum pump is connected with the first through hole, an air exhaust port of the micro vacuum pump is connected with the second through hole, the first through hole is formed in the side wall, and the second through hole is formed in the end wall. The self-service electronic pot moxibustion device has the advantages of autonomous treatment, convenient use, digitalization and intellectualization, can effectively remove dampness in vivo, and achieves the effect of eliminating dampness.

Description

Self-service electronic pot moxibustion device
Technical Field
The utility model belongs to the technical field of medical mechanical equipment, especially, relate to a self-service electronic jar moxibustion device.
Background
The warm pot moxibustion is a moxibustion apparatus which is gradually popularized and applied in clinic in the late eighties and early nineties of the 20 th century. It is developed on the basis of cylinder moxibustion and box moxibustion, and the cupping moxibustion method is characterized by that it is fixed in acupoint region or focus region for moxibustion. Compared with the warm box moxibustion, the warm box body is smaller, and is suitable for moxibustion at more parts; compared with the cylinder moxibustion, the moxibustion device can be placed in the acupoint area for moxibustion treatment, and the trouble of hand-held operation is avoided. The traditional moxibustion tool is divided into a bamboo tube temperature pot and a metal temperature pot, wherein the bamboo tube temperature pot is made by cutting outer skins of a hollow nodeless bamboo tube, the metal temperature pot is divided into two types, one type of the metal temperature pot comprises an inner pot and an outer pot, the outer pot is provided with a cover without a bottom, a plurality of small holes are reserved on the cover, the inner side is lined with an insulating material, the inner pot is provided with a bottom and no cover, the bottom of the pot is welded and fixed by a wire gauze, and dozens of small holes can be reserved around the pot. The other is a micro-smoke moxibustion device which comprises two parts, wherein one part is a moxibustion device which is cylindrical and made of metal, the lower part is a wire mesh with thinner meshes, the upper part is a ventilation opening for filtering smoke and dust substances, and the middle part of the cylinder is divided into two parts which can be opened and closed; the other is a moxibustion seat made of plastic and used for placing a moxibustion device and adjusting the position of the moxibustion device in a lifting way. In the specific operation, the moxibustion cup is placed on the part to be treated by moxibustion, and then the moxa stick is ignited and placed in the moxibustion cup.
The traditional warm pot moxibustion method needs a specially-assigned person for operation, so that the method is not suitable for common patients to use and treat at home. To solve this problem, a new cupping moxibustion device has been developed and designed in the prior art, such as the technical solution disclosed in the chinese utility model patent (CN 206120728U): the utility model provides a digital display jar, includes the host computer, and the inside of host computer sets up negative pressure device, power and controller, and negative pressure device is passing through pipe and wire and connecting the moxibustion jar, and the moxibustion jar is equipped with the imbibition pad including jar body, jar internal portion's lower extreme, and the middle part of jar body sets up the cock body, and the middle part of cock body sets up the connecting pipe, and the inside of connecting pipe sets up check valve and fixed plate, and the lower extreme of fixed plate sets up the connecting rod. The digital display tank can solve the problem that a specially-assigned person is required to operate, but the moxibustion tank is required to be connected with a host machine through a conduit and a lead, if a user carries out treatment on the back and the neck, the problem of inconvenient use caused by connection and falling due to pulling caused by activity is easy to occur.
Disclosure of Invention
The utility model discloses to moxibustion jar needs to pass through pipe, wire connection host computer among the prior art digital display jar, easy because the activity takes place to drag, causes the connection to drop when the patient oneself treats back, neck, has awkward problem, designs and provides a self-service electronic jar moxibustion device.
In order to realize the purpose of the utility model, the utility model adopts the following technical scheme to realize:
a self-service electronic jar moxibustion device, comprising a body having: the vacuum cavity is enclosed by a side wall and a bottom wall, the side wall is arranged along the vertical direction, a first end of the side wall is connected with the bottom wall, and a second end of the side wall is provided with an adsorption opening; the inner cavity is defined by an outer wall, an end wall, the bottom wall and the side wall, the end wall extends outwards from the middle part of the side wall along the horizontal direction, and the outer wall is covered outside the side wall and connected with the end wall; and the micro vacuum pump is arranged in the inner cavity, an air suction port of the micro vacuum pump is connected with the first through hole, an air exhaust port of the micro vacuum pump is connected with the second through hole, the first through hole is formed in the side wall, and the second through hole is formed in the end wall.
Further, the method also comprises the following steps: the heating chamber, the heating chamber sets up in the negative pressure chamber, the heating chamber is enclosed by baffle, diapire and lateral wall, the baffle with diapire parallel arrangement, be provided with electric heating element in the heating chamber.
Further, the negative ion module is arranged in the inner cavity.
Further, the method also comprises the following steps: the electric control box is arranged in the inner cavity and is fixedly arranged on the lower end face of the bottom wall; the electric control box is internally provided with a control chip, the control chip generates and outputs a power driving signal and a timing switch signal to the electric heating element and/or the micro vacuum pump, and the control chip generates a start-stop switch signal to the anion module.
Further, the method also comprises the following steps: the control panel is arranged on the bottom end face of the outer wall, and buttons and/or a touch screen are arranged on the control panel.
Furthermore, the first through holes are symmetrically formed in the side wall in groups.
Further, the second through holes are symmetrically formed in the end wall in groups.
Further, the method also comprises the following steps: an air-inducing device having a first air-inducing end and a second air-inducing end in communication and perpendicular to each other, the first air-inducing end being operatively embedded in the second through hole, the second air-inducing end being in contact with and extending along the upper end face of the end wall.
Further, still be provided with the storage chamber in the negative pressure chamber, the storage chamber is fixed to be set up on the diapire.
Further, an arc-shaped handheld part is integrally formed on the outer wall.
Further, a battery is arranged in the inner cavity.
Compared with the prior art, the utility model discloses an advantage is with positive effect:
the utility model provides a self-service electron jar moxibustion device because negative pressure wind channel is whole integrated in electron jar moxibustion device, consequently need not wire, pipe or the outside host computer that is independent of jar moxibustion device, and the user uses jar moxibustion device's in-process can not take place to drag, and electron jar moxibustion device is small, makes things convenient for the patient to treat at home by oneself, especially executes the moxibustion at back or neck. Because the adsorption opening of the negative pressure cavity is positioned above the end wall and the second through hole surrounds the side wall, weak airflow is blown to the position near the moxibustion application part in the moxibustion application process, and certain auxiliary effects of cooling and relieving pain are achieved. The self-service electronic pot moxibustion device has the advantages of autonomous treatment, convenient use, digitalization and intellectualization.
Other features and advantages of the present invention will become more apparent from the following detailed description of the invention when read in conjunction with the accompanying drawings.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic structural view of a first embodiment of a self-service electronic jar moxibustion device provided by the present invention;
FIG. 2 is a cross-sectional view of FIG. 1;
FIG. 3 is a schematic structural view of a second embodiment of the self-service electronic pot moxibustion device provided by the present invention;
FIG. 4 is a cross-sectional view of FIG. 3;
fig. 5 is a schematic structural view of the self-service electronic pot moxibustion device when an air inducing device is used.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail with reference to the accompanying drawings and embodiments.
It should be noted that in the description of the present invention, the terms of direction or positional relationship indicated by the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, which are merely for convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Aiming at the problems that in the prior art, a moxibustion cup in a digital display cup needs to be connected with a host machine through a conduit and a lead, and when a patient treats the back and the neck, the moxibustion cup is easy to pull due to activity, cause connection and drop, and have inconvenient use, a brand-new designed self-service electronic cup moxibustion device is shown in figures 1 and 2. The self-service electronic cupping device as shown in the figure does not need any catheter or lead, and particularly, the self-service electronic cupping device is provided with a body 1. The body 1 has two mutually independent chambers: a negative pressure chamber 10 and an inner chamber 20. Wherein the negative pressure chamber 10 is enclosed by the inner surface of the side wall 11 and the upper end surface of the bottom wall 12. Wherein the side wall 11 is preferably ring-shaped and arranged in a vertical direction, a first end of the side wall 11 is connected with the bottom wall 12, and a second end of the side wall 11 is formed with a suction opening 13. Taking the orientation in the non-use state shown in fig. 1 and 2 as an example, the inner cavity 20 is located below the negative pressure chamber 10, and the inner cavity 20 is defined by the inner surface of the outer wall 15, the lower end surface of the end wall 14, the lower end surface of the bottom wall 12, and the outer surface of the side wall 11. The end wall 14 extends horizontally outward from the middle of the outer surface of the side wall 11, so that the suction opening 13 is located above the end wall 14, and the two are designed in a stepped manner, and the outer wall 15 covers the outer side of the side wall 11 and is connected with the end wall 14 to form a sealed storage space of the inner cavity 20 as a whole. The outer wall 15 is preferably of streamlined design, and the outer wall 15 is integrally formed with an arcuate hand grip 28.
The negative pressure source of the self-service electronic cupping device shown in fig. 1 and 2 is a micro vacuum pump 18, the micro vacuum pump 18 is arranged in the inner cavity 20, the air inlet of the micro vacuum pump 18 is connected with the first through hole 16 through a hose 30 or an air duct (not shown) fixedly formed in the inner cavity 20, and the air outlet of the micro vacuum pump 18 is connected with the second through hole 17 through a hose 31 or an air duct (not shown) fixedly formed in the inner cavity 20. Wherein the first through holes 16 are provided in the side wall 11 and the second through holes 17 are provided in the end wall 14, preferably, the first through holes 16 are symmetrically provided in groups in the side wall 11 and the second through holes 17 are symmetrically provided in groups in the end wall 14, for example, both are provided. When the micro vacuum pump 18 operates, an air flow channel is formed from the first through hole 16 in the negative pressure cavity 10 to the second through hole 17 on the end wall 14, so that a negative pressure space in the negative pressure cavity 10 is formed, the electronic pot moxibustion device is adsorbed at the position of a patient needing moxibustion, and the negative pressure air channel is integrally integrated in the electronic pot moxibustion device, so that a conducting wire, a conducting pipe or an external host machine which is independent of the pot moxibustion device is not needed, the user cannot pull the pot moxibustion device in the process of using the pot moxibustion device, the electronic pot moxibustion device is small in size, the patient can conveniently perform treatment at home, and especially moxibustion on the back or the neck. Because the adsorption opening 13 of the negative pressure cavity 10 is positioned above the end wall 14 and the second through hole 17 surrounds the side wall 11, a weak airflow is blown to the vicinity of the moxibustion application part in the moxibustion application process, and certain auxiliary effects of cooling and relieving pain are achieved.
In order to achieve the same thermal therapeutic effect as the conventional moxibustion, as shown in fig. 1 and 2, the self-service electronic pot moxibustion device provided in this embodiment further includes a heating chamber 19. Wherein a heating chamber 19 is arranged in the negative pressure chamber 10, the heating chamber 19 being enclosed by the partition 22, the upper end surface of the bottom wall 12 and the inner surface of the side wall 11. Wherein the partition 22 is arranged parallel to the bottom wall 12 and the heating cavity 19 is provided with an electric heating element 21, such as a PTC electric heating element 21 or the like. The partition 22 may be made of various materials, such as resin, plastic, ceramic, stone needle, etc., to achieve various auxiliary effects according to the user's needs. The diameter of the self-service electronic jar moxibustion device provided by the present embodiment is preferably designed to be 20-30cm, so that the heating cavity 19 has a large enough space to install a plurality of electric heating elements 21 to meet the heating power requirement. In the process of carrying out jar moxibustion, jar moxibustion device passes through negative pressure absorption on human surface, heats simultaneously, can pass through sweat with internal unnecessary moisture and discharge in vitro, clears away the material that arouses health immunoreaction, gets rid of internal damp evil, reaches the efficiency of dispelling the damp.
In addition to the electric heating element, a negative ion module 35 is provided in the inner cavity 20. While the user performs cupping, the negative ion module 35 may emit negative ions toward the user at the same time. The artificial anion technology is used for improving the anion concentration level in the surrounding environment, and the purposes of purifying air, removing dust and sterilizing are achieved. The negative ion module 35 is provided with a negative ion generating circuit, which can adopt a common high-voltage circuit module in the prior art, specifically, the high-voltage circuit module steps down, rectifies and filters the mains supply to obtain a direct-current voltage, generates a sine wave voltage through oscillation, further obtains positive and negative high voltages through a transformer and voltage-doubling rectification, and adds the positive voltage or the negative voltage to the negative ion emitting head to obtain high-concentration negative ions.
The micro vacuum pump 18 and the electric heating element 21 are driven by the control chip 24, and the control chip 24 is preferably a single chip microcomputer chip, or other integrated circuits capable of achieving the same technical effect. In terms of structure, the control chip 24 is arranged in the electric control box 23, and shaking and collision during use are avoided. An electrical control box 23 is arranged in the inner cavity 20 and is fixedly arranged on the lower end surface of the bottom wall 12. The control chip 24 can generate and output multi-gear output power driving signals to the micro vacuum pump 18 and/or the electric heating element 21 according to the setting of the user, so as to drive the micro vacuum pump 18 to act to enable the self-service electronic cupping device to work at different negative pressure gears, and/or drive the electric heating element 21 to act to enable the self-service electronic cupping device to work at different temperature gears. The control chip 24 further generates a start/stop switch signal to the negative ion module 35, and controls the negative ion module 35 to start or stop working. Meanwhile, the control chip 24 can also generate and output a timing switch signal to the micro vacuum pump 18 and/or the electric heating element 21 according to the timing setting of the user, so that the micro vacuum pump 18 is driven to start or stop according to the timing period or the electric heating element 21 is driven to start or stop according to the timing period, and the user can conveniently use the self-help moxibustion application. A pressure sensor and a temperature sensor (not shown in the figure) are arranged in the negative pressure cavity 10 to collect feedback signals. The self-service electronic pot moxibustion device can be powered by a battery 29, the battery 29 is preferably charged by a USB serial interface, and the self-service electronic pot moxibustion device can also be directly powered by commercial power. For example by direct connection to the mains via a USB cable.
The bottom end face of the outer wall 15 of the self-service electronic moxibustion applying device is provided with a control panel 26, so that when the pot moxibustion device is arranged at a moxibustion applying position, a user can conveniently perform pressing, clicking and touch control operations. Buttons 25 and/or a touch screen are provided on the control panel 26. The user can select the negative pressure gear, the temperature gear or set the timing length through the button 25 or the touch screen setting.
In a preferred embodiment, as shown in fig. 3 and 4, a storage chamber 27 is provided in the negative pressure chamber 10. The storage chamber 27 is fixedly arranged in the bottom wall 12 and has an air hole of small diameter. The storage cavity 27 can store volatile substances such as essential oil, and the volatile essential oil can play a role in sterilization, anti-inflammation, deodorization, sedation and softening and smoothing skin during moxibustion application. The storage chamber 27 is preferably provided in plurality and equally spaced on the bottom wall 12.
In order to meet the special requirements of users who are particularly sensitive to airflow, such as patients who are afraid of cold, an air inducing device 32 is particularly arranged in the self-service electronic pot moxibustion device, as shown in fig. 5. The air inducing device 32 has a first air inducing end 34 and a second air inducing end 33 which are communicated and perpendicular to each other. Wherein the first wind-inducing end 34 is operatively inserted into the second through hole 17 and the second wind-inducing end 33 is in contact with and extends along the upper end face of the end wall 14, thereby directing the direct blow from the air flow onto the skin surface of the user to the circumferential blow, reducing the discomfort of the user. The first induced draft end 34 and the second through hole 17 can be connected by screw threads or can be connected by clamping.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or that equivalents may be substituted for elements thereof; such modifications and substitutions do not depart from the spirit and scope of the present invention, which is claimed.

Claims (10)

1. A self-service electronic jar moxibustion device, includes the body, its characterized in that, the body has:
the vacuum cavity is enclosed by a side wall and a bottom wall, the side wall is arranged along the vertical direction, a first end of the side wall is connected with the bottom wall, and a second end of the side wall is provided with an adsorption opening;
the inner cavity is defined by an outer wall, an end wall, the bottom wall and the side wall, the end wall extends outwards from the middle part of the side wall along the horizontal direction, and the outer wall is covered outside the side wall and connected with the end wall; and
the micro vacuum pump is arranged in the inner cavity, an air suction port of the micro vacuum pump is connected with a first through hole, an air exhaust port of the micro vacuum pump is connected with a second through hole, the first through hole is formed in the side wall, and the second through hole is formed in the end wall.
2. The self-service electronic jar moxibustion device of claim 1, further comprising:
the heating chamber, the heating chamber sets up in the negative pressure chamber, the heating chamber is enclosed by baffle, diapire and lateral wall, the baffle with diapire parallel arrangement, be provided with electric heating element in the heating chamber.
3. The self-service electronic jar moxibustion device of claim 2, further comprising:
an anion module disposed in the inner chamber.
4. The self-service electronic jar moxibustion device of claim 3, further comprising:
the electric control box is arranged in the inner cavity and is fixedly arranged on the lower end face of the bottom wall; the electric control box is internally provided with a control chip, the control chip generates and outputs a power driving signal and a timing switch signal to the electric heating element and/or the micro vacuum pump, and the control chip generates a start-stop switch signal to the anion module.
5. The self-service electronic jar moxibustion device of claim 4, further comprising:
the control panel is arranged on the bottom end face of the outer wall, and buttons and/or a touch screen are arranged on the control panel.
6. The self-service electronic jar moxibustion device of any one of claims 1 to 5,
the first through holes are symmetrically arranged on the side wall in groups.
7. The self-service electronic jar moxibustion device of any one of claims 1 to 5,
the second through holes are symmetrically arranged on the end wall in groups.
8. The self-service electronic jar moxibustion device of claim 7, further comprising:
an air-inducing device having a first air-inducing end and a second air-inducing end in communication and perpendicular to each other, the first air-inducing end being operatively embedded in the second through hole, the second air-inducing end being in contact with and extending along the upper end face of the end wall.
9. The self-service electronic jar moxibustion device of claim 1,
still be provided with the storage chamber in the negative pressure chamber, the storage chamber is fixed to be set up on the diapire.
10. The self-service electronic jar moxibustion device of claim 1,
an arc-shaped handheld part is integrally formed on the outer wall.
CN202022354415.2U 2020-10-21 2020-10-21 Self-service electronic pot moxibustion device Active CN214105207U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022354415.2U CN214105207U (en) 2020-10-21 2020-10-21 Self-service electronic pot moxibustion device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022354415.2U CN214105207U (en) 2020-10-21 2020-10-21 Self-service electronic pot moxibustion device

Publications (1)

Publication Number Publication Date
CN214105207U true CN214105207U (en) 2021-09-03

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022354415.2U Active CN214105207U (en) 2020-10-21 2020-10-21 Self-service electronic pot moxibustion device

Country Status (1)

Country Link
CN (1) CN214105207U (en)

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Address after: 266000 Room 302, unit 3, building 30, No. 9, qingdayi Road, Laoshan District, Qingdao, Shandong

Patentee after: Qingdao huangninggong Health Technology Co.,Ltd.

Address before: 266000 Room 302, unit 3, building 30, No. 9, qingdayi Road, Laoshan District, Qingdao, Shandong

Patentee before: Qingdao Huanggong Health Technology Co.,Ltd.