CN217339362U - Thermal moxibustion device - Google Patents

Thermal moxibustion device Download PDF

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Publication number
CN217339362U
CN217339362U CN202123454427.3U CN202123454427U CN217339362U CN 217339362 U CN217339362 U CN 217339362U CN 202123454427 U CN202123454427 U CN 202123454427U CN 217339362 U CN217339362 U CN 217339362U
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moxibustion
air pump
moxibustion device
casing
thermal
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李泽德
张世凡
孙金川
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Anhui Daai Health Management Co ltd
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Anhui Daai Health Management Co ltd
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Abstract

The application mainly relates to a thermal moxibustion device, this thermal moxibustion device has the length direction of quadrature each other, width direction and direction of height, and include the casing and hang the first moxibustion instrument in the casing, the moxa is placed to first moxibustion instrument, the casing has the profile modeling passageway that extends along length direction, the at least partial human body of profile modeling passageway holding, first moxibustion instrument is located human top on the direction of height, thermal moxibustion device still includes the air pump of being connected with the casing, the internal space of air pump intercommunication casing and the external environment at thermal moxibustion device place, and the steam that the guide moxa burning produced flows towards the human body. The application provides a hot moxibustion device sets up the air pump, the inner space of air pump intercommunication casing and the external environment at hot moxibustion device place to the steam that the guide moxa material burning produced flows towards the human body, concentrates on the inside top of casing in order to avoid the steam that the moxa material burning produced, and then improves hot moxibustion device's hot moxibustion effect.

Description

Thermal moxibustion device
Technical Field
The application relates to the technical field of medical instruments, in particular to a thermal moxibustion device.
Background
Moxibustion, the moxibustion method in acupuncture therapy of traditional Chinese medicine, is generally to stimulate the acupuncture points or specific parts of the body surface by the heat of moxa produced by burning moxibustion materials, so as to regulate the physiological and biochemical functions of human body disorder by exciting the activities of meridian qi. Along with the continuous development of society, the living pressure of people is increased more and more, people also pay more and more attention to self health, and moxa-moxibustion and relevant products thereof are loved and trusted by more and more consumers. However, the prior art has the technical problems that the hot air generated by the burning of the moxibustion materials in the shell is concentrated on the upper part of the inner part of the shell and can not effectively act on the human body, and the like.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application provides a thermal moxibustion device, this thermal moxibustion device has the length direction of quadrature each other, width direction and direction of height, and include the casing and hang the first moxibustion instrument in the casing, the moxa is placed to first moxibustion instrument, the casing has the profile modeling passageway that extends along length direction, the profile modeling passageway holding is at least partly human, first moxibustion instrument is located human top in the direction of height, thermal moxibustion device still includes the air pump of being connected with the casing, the internal space of air pump intercommunication casing and the external environment at thermal moxibustion device place, and the steam that the guide moxa-moxibustion material burning produced flows towards the human body.
In some embodiments, the housing includes a cylindrical side plate and a cover plate connected to the cylindrical side plate, the cover plate being further from the body in the height direction than the first moxibustion instrument, the contoured channel extending through the cylindrical side plate in the length direction;
the air pump comprises a first air pump close to the cover plate, an air inlet of the first air pump is communicated with the external environment, an air outlet of the first air pump is communicated with the internal space and faces the cover plate so as to allow cold air sucked by the first air pump to diffuse along the cover plate and further guide hot air generated by burning of the moxibustion materials to flow towards a human body;
and/or, the air pump is including keeping away from the second air pump of apron, the income gas port of second air pump with interior space intercommunication, the gas outlet of second air pump with external environment intercommunication, in order to guide the steam that the burning of moxa material produced flows towards the human body.
In some embodiments, the cover plate is removably attached to the barrel side plate.
In some embodiments, the thermal moxibustion device further comprises a first driving structure connected with the cylindrical side plate and a bracket connected with an output end of the first driving structure, the first moxibustion tool is arranged on the bracket, and the first driving structure drives the bracket to approach or separate from the cover plate along the height direction.
In some embodiments, the first driving structure includes a slide rail, a slide block, a lead screw, and a motor, the slide rail is connected to the cylindrical side plate, the slide block is in sliding fit with the slide rail and connected to the bracket as an output end of the first driving structure, the lead screw is engaged with the slide block, and an output shaft of the motor is connected to the lead screw.
In some embodiments, the first moxibustion tool comprises a handle, the thermal moxibustion device further comprises a second driving structure arranged on the support, the output end of the second driving structure is provided with a first hook, the handle is hung on the first hook, and the second driving structure drives the first moxibustion tool to rotate relative to the shell.
In some embodiments, the first moxibustion device includes a central moxibustion device, a plurality of peripheral moxibustion devices, connecting members, and an adapter, the number of the peripheral moxibustion devices is plural, the plurality of peripheral moxibustion devices are spaced around the central moxibustion device, the number of the connecting members is the same as the number of the peripheral moxibustion devices, each peripheral moxibustion device is connected to one of the connecting members, the adapter is annularly disposed and surrounds the central moxibustion device, one end of each connecting member away from the corresponding peripheral moxibustion device is connected to the adapter, and the handle is connected to the adapter.
In some embodiments, the second driving structure includes a motor, a driving wheel, and a driven wheel, the driven wheel is engaged with the driving wheel or connected with the driving wheel through a belt, the driving wheel is connected with an output end of the motor, and the driven wheel is connected with the first hook.
In some embodiments, the thermal moxibustion device further comprises a second moxibustion tool for placing moxibustion materials, the second moxibustion tool and the first moxibustion tool are arranged at intervals in the width direction, the second moxibustion tool comprises a holding bin and a second hook connected with the holding bin, and the second hook is hung on the support.
In some embodiments, the second moxibustion device further comprises a cross beam, the cross beam slides relative to the bracket, the number of the second hooks is two, and the two second hooks are hung at two ends of the cross beam respectively.
The beneficial effect of this application is: the application provides a thermal moxibustion device sets up the air pump on thermal moxibustion device, the inside space and the external environment at thermal moxibustion device place of air pump intercommunication casing to the steam that the guide moxa material burning produced flows towards the human body, concentrates on the inside top of casing with the steam that avoids the moxa material burning to produce, and then improves thermal moxibustion device's thermal moxibustion effect.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic structural view of another embodiment of a thermal moxibustion device provided herein;
FIG. 2 is a schematic top view of the thermal moxibustion device of FIG. 1;
FIG. 3 is a schematic structural view of an internal structure of the moxibustion device of FIG. 1;
FIG. 4 is a schematic view of a moxibustion device according to yet another embodiment of the present application;
FIG. 5 is a schematic structural view of yet another embodiment of an adapter provided herein;
fig. 6 is a schematic structural view of another embodiment of the moxibustion device provided by the present application.
Detailed Description
The present application will be described in further detail with reference to the following drawings and examples. It is to be noted that the following examples are only illustrative of the present application, and do not limit the scope of the present application. Likewise, the following examples are only some examples and not all examples of the present application, and all other examples obtained by a person of ordinary skill in the art without any inventive work are within the scope of the present application.
Reference in the specification to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the specification. It is explicitly and implicitly understood by one skilled in the art that the embodiments described herein can be combined with other embodiments.
In addition, if there is a description of "first", "second", etc. in the embodiments of the present application, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, technical solutions between various embodiments may be combined with each other, but must be realized by a person skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination should not be considered to exist, and is not within the protection scope of the present application.
Referring to fig. 1, the thermal moxibustion device 10 according to the present application may have a length direction, a width direction, and a height direction that are orthogonal to each other. Wherein the direction indicated by the arrow X in fig. 1 may be simply considered as the longitudinal direction described herein, the direction indicated by the arrow Y in fig. 1 may be simply considered as the width direction described herein, and the direction indicated by the arrow Z in fig. 1 may be simply considered as the height direction described herein. Further, all directional indicators such as up, down, left, right, front, and rear … … in the embodiment of the present application are only used to explain the relative position relationship between the components, the movement situation, and the like in a specific posture (as shown in fig. 1), and if the specific posture is changed, the directional indicator is changed accordingly.
It should be noted that: the main component of the moxibustion material is folium artemisiae argyi, and the moxibustion material can be specifically moxa prepared by processing the folium artemisiae argyi; of course, in addition to moxa, other herbs suitable for hot moxibustion, such as gan song, Bai Zhi, xi Xin, Qiang Huo, Xiong and so on, can be added into moxa. For hot moxibustion, the moxibustion materials can be processed into moxa sticks, moxa cones, moxa cakes, etc.
Referring to fig. 1 and 2 together, fig. 1 is a schematic structural view of an embodiment of a thermal moxibustion device 10 provided by the present application; fig. 2 is a schematic top view of the thermal moxibustion device 10 of fig. 1.
Referring to fig. 1 and 2, by way of example, the thermal moxibustion device 10 may include a housing 15 and a moxibustion tool 16. Wherein the moxibustion tool 16 is used for placing moxibustion materials and is suspended in the shell 15. The dimension of the housing 15 in the longitudinal direction may be equivalent to the dimension of the housing 15 in the width direction. In addition, the housing 15 has a contour channel 151 extending in the longitudinal direction, the contour channel 151 accommodating at least a part of the human body, and the moxibustion tool 16 being positioned above the human body in the height direction. In this way, the user can place the thermal moxibustion device 10 above the portion of the human body requiring thermal moxibustion, i.e., the human body is located below the housing 15 in the height direction.
In some embodiments, the thermal moxibustion device 10 may further include an air pump connected to the housing 15, the air pump communicating the inner space of the housing 15 with the external environment of the thermal moxibustion device 10 and guiding hot air generated by the combustion of the moxibustion materials toward the human body. In this way, the air pump guides the air flow in the housing 15 to prevent the hot air from concentrating on the upper part of the inside of the housing 15, thereby improving the moxibustion effect of the moxibustion device 10.
In some embodiments, referring to fig. 1, the housing 15 may include a cylindrical side plate 152 and a cover plate 153 connected to the cylindrical side plate 152, the cover plate 153 is further away from the body than the moxibustion device 16, the cylindrical side plate 152 and the cover plate 153 are arranged to concentrate the hot air generated by the burning of the moxibustion material in the housing 15, and then the housing 15 is placed on the portion of the body requiring thermal moxibustion, so that the thermal moxibustion is more targeted. Further, the copying passage 151 penetrates the cylindrical side plate 152 in the longitudinal direction. So, can place the hot moxibustion position in profile modeling passageway 151, let the steam that the moxa material produced can contact the hot moxibustion position by maximum area for hot moxibustion effect is better.
Further, with reference to fig. 1-6, the cover plate 153 of the housing 15 is removably attached to the barrel side plate 152. Thus, when the moxibustion material is to be cleaned or placed, the cover plate 153 is removed, and the moxibustion material is placed or the thermal moxibustion device 10 is cleaned. The use is convenient and fast. In addition, the cover plate 153 may further include two handles 154 on a side thereof away from the housing 15, so that the cover plate 153 can be removed more quickly and conveniently.
In some embodiments, referring to fig. 1 to 2, the air pump includes a first air pump 181 adjacent to the cover plate 153, the cover plate 153 is detachably connected to the cylindrical side plate 152, an air inlet of the first air pump 181 is communicated with the external environment, an air outlet of the first air pump 181 is communicated with the internal space and faces the cover plate 153, so as to allow the cold air sucked by the first air pump 181 to diffuse along the cover plate 153, thereby guiding the hot air generated by the burning of the moxibustion materials to flow toward the human body. At this time, the hot air gathered above the inside of the casing 15 can flow toward the human body by the pressing action of the cold air introduced from the first air pump 181, but the original hot air is more likely to "descend" due to the increased weight after being mixed with the cold air, and further, other hot air is prevented from continuing to gather above the inside of the casing 15. In this way, the first air pump 181 guides the air flowing inside the housing 15 to prevent the hot air from concentrating on the upper portion of the inside of the housing 15, thereby improving the moxibustion effect of the moxibustion device 10.
In other embodiments, the air pump may include a second air pump (not shown) away from the cover 153, the air inlet of the second air pump is connected to the inner space, and the air outlet of the second air pump is connected to the external environment to guide the hot air generated by the burning of the moxibustion materials to flow toward the human body, such that the hot air generated by the burning of the moxibustion materials is drawn from the upper part of the inside of the housing 15 to the vicinity of the human body. In this way, the flow of air in the housing 15 can be guided by the second air pump, so as to avoid the hot air from concentrating on the upper part of the inside of the housing 15, and further improve the thermal moxibustion effect of the thermal moxibustion device 10.
It should be noted that the thermal moxibustion device 10 may be provided with only one of the first air pump 181 and the second air pump for guiding the hot air generated by the burning of the moxibustion materials to flow toward the human body; the first air pump 181 and the second air pump can be provided at the same time, and can guide the hot air generated by the burning of the moxibustion materials to flow towards the human body in a matching way. Wherein, in the height direction of the thermal moxibustion device 10, the second air pump is farther away from the cover plate 153 of the housing 15 than the first air pump 181.
In some embodiments, referring to fig. 2 and 3, the thermal moxibustion device 10 may further include a driving structure 141 connected to the cylindrical side plate 152 and a bracket 124 connected to an output end of the driving structure 141, and the bracket 124 may be connected to the driving structure 141 through a support 1415. The driving structure 141 can include a slide 1411, a lead screw 1412, a slide 1413 and a motor 1414, the slide 1413 is connected to the housing 15, the slide 1411 is slidably engaged with the slide 1413 and connected to the bracket 124 as an output end of the driving structure 141, the lead screw 1412 is engaged with the slide 1411, the lead screw 1412 is provided with threads to convert the rotational motion of the motor 1414 into the linear motion of the slide 1411 and the moxibustion tool 16 connected to the slide 1411, and an output shaft of the motor 1414 is connected to the lead screw 1412. The moxibustion tool 16 is mounted on the bracket 124, the driving mechanism 141 can drive the bracket 124 to move toward or away from the cover plate 153 in the height direction, and the slide rail 1413 is connected to the cylindrical side plate 152. Thus, the moxibustion device 10 can make the moxibustion tool 16 and the moxibustion tool 17 approach or leave the moxibustion part according to different bearing capacities of the human body or different requirements of the moxibustion process, so as to adjust the strength of the hot moxibustion hot air received by the human body. Thus, the thermal moxibustion device 10 can meet different requirements of different people.
In some embodiments, in conjunction with fig. 2 and 3, the thermal moxibustion device 10 may further include a drive structure 143 disposed on the support 124. The drive structure 143 can include a motor 1431, a drive wheel 1432, and a driven wheel 1433, the driven wheel 1433 being engaged with the drive wheel 1432, the drive wheel 1432 being connected to an output of the motor 1431. The output end of the driving structure 143 is provided with a first hook 166, the handle 165 of the moxibustion tool 16 is hung on the first hook 166, the driving structure 143 drives the moxibustion tool 16 to rotate relative to the casing 15, and the driven wheel 1433 is connected with the first hook 166. In a use state, the motor 1431 is powered on to rotate to drive the driving wheel 1432 to rotate, the driving wheel 1432 drives the driven wheel 1433 to rotate, the driven wheel 1433 is connected with the handle 165 of the moxibustion device 16 through the first hook 166 to drive the moxibustion device 16 to rotate together, and at this time, the moxibustion device 16 generates spirally-rising hot air. Thus, the hot air on the corresponding moxibustion tool 16 part of the human body is not concentrated too much to cause burning sensation.
In other embodiments, the driving mechanism 143 can include a motor 1431, a driving wheel 1432 and a driven wheel 1433, wherein the driven wheel 1433 is connected to the driving wheel 1432 via a belt (not shown), the driving wheel 1432 is connected to the output end of the motor 1431, and the driven wheel 1433 is connected to the moxibustion device 16. In a use state, the motor 1431 is powered on to rotate to drive the driving wheel 1432 to rotate, the driving wheel 1432 drives the driven wheel 1433 to rotate through the belt, the driven wheel 1433 is connected with the moxibustion tool 16 to drive the moxibustion tool 16 to rotate together, and at this time, the moxibustion tool 16 generates spirally-rising hot air. In this way, similar or analogous effects can also be obtained.
In some embodiments, referring to fig. 4, the moxibustion device 16 can include a central moxibustion device 161, peripheral moxibustion devices 162, connecting members 163 and adapters 164, the number of the peripheral moxibustion devices 162 can be multiple, for example, 8 peripheral moxibustion devices 162 are spaced around the central moxibustion device 161, the number of the connecting members 163 is the same as the number of the peripheral moxibustion devices 162, each peripheral moxibustion device 162 is connected to one connecting member 163, the adapters 164 can be a continuous ring structure and surround the central moxibustion device 161, one end of each connecting member 163 away from the corresponding peripheral moxibustion device 162 is connected to the adapter 164, and the handle 165 is connected to the adapter 164. Thus, the overall weight of the moxibustion device 121 can be reduced, and the user can selectively place the moxibustion materials as desired. Similarly, in other embodiments, the peripheral implement 162 may not be formed of multiple pieces, but rather may be unitary, i.e., the peripheral implement 162 is a continuous ring-like structure. Further, the peripheral moxibustion device 162 can be detachably connected to an end of the connecting member 163 away from the central moxibustion device 161. Thus, the user can clean the peripheral moxibustion tool 162 conveniently.
In other embodiments, referring to fig. 4, two limiting portions 167 may be disposed on two sides of the handle 165, so as to stabilize the moxibustion device 16 hung under the first hook 166, and prevent the moxibustion device 16 from swaying or falling.
Referring to fig. 5, the central moxibustion device 161 is disposed at the center of the adapter 164, and the adapter 164 may be provided with a plurality of evacuation notches 168 spaced apart along the rotation direction of the moxibustion device 16, and one end of each connector 163 away from the peripheral moxibustion device 162 is fixed in one of the evacuation notches 168. The relief notch 168 is provided to limit movement of the connector 163 and to reduce the overall height of the moxibustion device 16.
In some embodiments, referring to fig. 2, 3 and 6, the thermal moxibustion device 10 can further include a moxibustion tool 17 for placing moxibustion materials, the moxibustion tool 17 and the moxibustion tool 16 are spaced apart in the width direction, and include a storage bin 171 and a second hook 172 connected to the storage bin 171, and the second hook 172 is hung on the bracket 124. The moxibustion tool 17 further comprises a cross beam 173, the cross beam 173 slides relative to the bracket 124, the number of the second hooks 172 is two, and the two second hooks 172 are respectively hung at two ends of the cross beam 173. Thus, the user can freely select the position of the moxibustion tool 17 according to personal needs and the traditional Chinese medicine theory, so that the thermal moxibustion device 10 can meet different needs of different people.
The above embodiments are only examples of the present application, and not intended to limit the scope of the present application, and all equivalent devices or equivalent processes that are used in the present specification and drawings, or that are directly or indirectly applied to other related technical fields are also included in the scope of the present application.

Claims (10)

1. The utility model provides a thermal moxibustion device, its characterized in that thermal moxibustion device has length direction, width direction and the direction of height of quadrature each other to include the casing and hang first moxibustion instrument in the casing, the moxa is placed to first moxibustion instrument, the casing has the edge the profile modeling passageway that length direction extends, the profile modeling passageway holding is at least partly human, first moxibustion instrument is in lie in human top on the direction of height, thermal moxibustion device still include with the air pump that the casing is connected, the air pump intercommunication the inner space of casing with the external environment at thermal moxibustion device place, and the guide the steam that the moxa combustion produced flows towards the human body.
2. The apparatus of claim 1, wherein the housing comprises a cylindrical side plate and a cover plate connected to the cylindrical side plate, the cover plate being further from the body than the first moxibustion instrument in the height direction, the contoured channel extending through the cylindrical side plate in the length direction;
the air pump comprises a first air pump close to the cover plate, an air inlet of the first air pump is communicated with the external environment, an air outlet of the first air pump is communicated with the internal space and faces the cover plate so as to allow cold air sucked by the first air pump to diffuse along the cover plate and further guide hot air generated by burning of the moxibustion materials to flow towards a human body;
and/or, the air pump is including keeping away from the second air pump of apron, the income gas port of second air pump with interior space intercommunication, the gas outlet of second air pump with external environment intercommunication, in order to guide the steam that the burning of moxa material produced flows towards the human body.
3. The apparatus of claim 2, wherein the cover plate is removably attached to the barrel side plate.
4. The apparatus of claim 3, further comprising a first driving structure connected to the cylindrical side plate and a support connected to an output end of the first driving structure, wherein the first moxibustion tool is disposed on the support, and the first driving structure drives the support to move toward or away from the cover plate along the height direction.
5. The apparatus according to claim 4, wherein the first driving mechanism comprises a slide rail, a slide block, a lead screw and a motor, the slide rail is connected to the cylindrical side plate, the slide block is in sliding fit with the slide rail and serves as an output end of the first driving mechanism to be connected to the bracket, the lead screw is engaged with the slide block, and an output shaft of the motor is connected to the lead screw.
6. The apparatus of claim 4, wherein the first moxibustion device comprises a handle, the apparatus further comprises a second driving mechanism disposed on the support, the second driving mechanism has a first hook at an output end thereof, the handle is hung on the first hook, and the second driving mechanism drives the first moxibustion device to rotate relative to the housing.
7. The apparatus according to claim 6, wherein the first moxibustion device comprises a plurality of central moxibustion devices, a plurality of peripheral moxibustion devices spaced around the central moxibustion device, a plurality of connecting members having the same number as the peripheral moxibustion devices, and a plurality of adapter members, each of the peripheral moxibustion devices being connected to one of the connecting members, the adapter members being annularly disposed around the central moxibustion device, one end of each connecting member away from the corresponding peripheral moxibustion device being connected to the adapter member, and the handle being connected to the adapter member.
8. The apparatus of claim 6, wherein the second driving structure comprises a motor, a driving wheel and a driven wheel, the driven wheel is engaged with the driving wheel or connected with the driving wheel through a belt, the driving wheel is connected with an output end of the motor, and the driven wheel is connected with the first hook.
9. The thermal moxibustion device according to claim 4, further comprising a second moxibustion tool for placing moxibustion materials, wherein the second moxibustion tool and the first moxibustion tool are arranged at intervals in the width direction and comprise a storage bin and a second hook connected with the storage bin, and the second hook is hung on the support.
10. The apparatus according to claim 9, wherein the second moxibustion device further comprises a beam, the beam slides relative to the bracket, the number of the second hooks is two, and the two second hooks are respectively hung at two ends of the beam.
CN202123454427.3U 2021-12-31 2021-12-31 Thermal moxibustion device Active CN217339362U (en)

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