CN218305514U - Thermal moxibustion device - Google Patents
Thermal moxibustion device Download PDFInfo
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- CN218305514U CN218305514U CN202123454436.2U CN202123454436U CN218305514U CN 218305514 U CN218305514 U CN 218305514U CN 202123454436 U CN202123454436 U CN 202123454436U CN 218305514 U CN218305514 U CN 218305514U
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Abstract
The utility model mainly relates to a hot moxibustion device, this hot moxibustion device has the length direction of quadrature each other, width direction and direction of height, and including the moxibustion bed, the guide rail, and a support, first moxibustion utensil and first drive structure, the moxibustion bed includes the bedstead and sets up the bed board on the bedstead along direction of height, the bed board supplies the user to lie or lie prone, the guide rail is connected with the moxibustion bed, and extend along length direction, the support sets up on the guide rail, and move for the moxibustion bed along the guide rail, first moxibustion utensil and first drive structure set up on the support, the moxibustion material is placed to first moxibustion utensil, first moxibustion utensil of first drive structure drive is close to or is kept away from the bed board along direction of height. The moxibustion bed is internally provided with the guide rail, so that the moxibustion tool can conveniently move along the length direction relative to the moxibustion bed, and the moxibustion materials can be conveniently adjusted to correspond to moxibustion acupuncture points of a user; meanwhile, the moxibustion tool is driven to be close to or far away from the bed plate by arranging the driving structure, so that the strength of hot air received by a user is adjusted, and overheating or underheating is avoided.
Description
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, people's pressure on life is growing more and more, and people also attach more and more importance to self health, and moxa-moxibustion and relevant product also are loved by more and more consumers and trust. However, the prior art has the technical problems that the position of the moxibustion materials in the moxibustion bed is difficult to adjust, and the like.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application provides a hot moxibustion device, this hot moxibustion device has the length direction of quadrature each other, width direction and direction of height, and including the moxibustion bed, a guide rail, and a support, first moxibustion utensil and first drive structure, the moxibustion bed includes the bedstead and sets up the bed board on the bedstead along the direction of height, the bed board supplies the user to lie or lie prone, the guide rail is connected with the moxibustion bed, and extend along length direction, the support sets up on the guide rail, and move for the moxibustion bed along the guide rail, first moxibustion utensil and first drive structure set up on the support, the first moxibustion utensil of first drive structure drive is close to or keeps away from the bed board along the direction of height.
In some embodiments, the moxibustion device further comprises a shifting rod connected with the bracket, and one end of the shifting rod, which is far away from the bracket, is exposed out of the moxibustion bed.
In some embodiments, the thermal moxibustion device further comprises a second driving structure connected to the support, the second driving structure driving the support to move along the guide relative to the moxibustion bed.
In some embodiments, the rack includes a frame and a lining board, the frame is supported on the guide rail, the first driving structure is fixed on the frame and supports the lining board in the height direction, the output end of the first driving structure is connected with the lining board, and the first moxibustion tool is arranged on the lining board.
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 moxibustion bed, the slide block is in sliding fit with the slide rail and serves as an output end of the first driving structure to be connected to the lining plate, 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 thermal moxibustion device further comprises a third driving structure disposed on the lining board, wherein the third driving structure drives the first moxibustion tool to rotate relative to the moxibustion bed.
In some embodiments, the third driving structure comprises a motor, a driving wheel and a driven wheel, wherein the driven wheel is meshed with the driving wheel or connected with the driving wheel through a belt, the driving wheel is connected with the output end of the motor, and the driven wheel is connected with the first moxibustion tool.
In some embodiments, the thermal moxibustion device further comprises a second moxibustion tool arranged on the lining plate, and the second moxibustion tool is detachably connected with the lining plate; wherein the first moxibustion device corresponds to a trunk area of a human body in a use state, and the second moxibustion device corresponds to an upper limb area of the human body in the use state.
In some embodiments, the first moxibustion device comprises a central moxibustion device, a plurality of peripheral moxibustion devices and a connecting member for connecting the central moxibustion device and the peripheral moxibustion devices, the peripheral moxibustion devices are arranged at intervals around the central moxibustion device, the number of the connecting members is the same as that of the peripheral moxibustion devices, and each peripheral moxibustion device is detachably connected with one connecting member.
In some embodiments, the connecting piece includes first connecting portion, second connecting portion and connects the middle transition portion of first connecting portion with the second connecting portion, first connecting portion with the second connecting portion respectively for middle transition portion buckles and reverse extension, just the second connecting portion be in the direction of height compare in first connecting portion are closer to the bed board, first connecting portion with central moxibustion instrument is connected, the second connecting portion is the ring-shaped setting, peripheral moxibustion instrument including hold the feed bin and with hold the hem that the feed bin is buckled and is connected, hold the feed bin orientation one side of bed board is uncovered setting, peripheral moxibustion instrument passes through the hem is hung and is established on the second connecting portion.
The beneficial effect of this application is: the guide rail extending along the length direction of the moxibustion bed is arranged in the moxibustion bed, so that the bracket carried on the guide rail and the moxibustion tool on the bracket move along the length direction relative to the moxibustion bed, and the moxibustion materials are convenient to adjust to correspond to moxibustion acupuncture points of a user; meanwhile, the moxibustion tool is driven to be close to or far away from the bed board along the height direction of the moxibustion bed through the driving structure arranged on the support, so that the moxibustion material is convenient to adjust to be close to or far away from a user, and then the strength of hot air received by the user is adjusted, and overheating or underheating is avoided.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the description below are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic plan view of a human body using a thermal moxibustion device according to the present application;
FIG. 2 is an exploded view of an embodiment of the thermal moxibustion device provided herein;
FIG. 3 is a schematic view of an embodiment of the moxibustion device of the present application;
FIG. 4 is a schematic view of a moxibustion device according to another embodiment of the present application;
FIG. 5 is a schematic view of an embodiment of the moxibustion device and drive mechanism provided herein;
FIG. 6 is a schematic bottom view of a portion of the structure of FIG. 5;
FIG. 7 is a schematic view of the moxibustion device and one embodiment of the guide rail provided in the present application;
FIG. 8 is a schematic diagram of a portion of the structure of FIG. 7;
FIG. 9 is a schematic view of a moxibustion device according to yet another embodiment of the present application;
FIG. 10 is a schematic structural diagram of an embodiment of the storage bin of FIG. 9;
FIG. 11 is a schematic structural view of an embodiment of the connector of FIG. 9;
fig. 12 is a schematic structural diagram of an embodiment of an adapter provided in 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, not all examples, and all other examples obtained by a person of ordinary skill in the art without making any creative effort fall within the protection 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 a person 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.
In medicine, and with reference to fig. 1, the human body can be divided into upper and lower body parts with the upper edge of the pubic symphysis as a demarcation point. Of course, in daily life, people often divide the upper and lower body with the navel as a boundary point. More specifically, the upper body half can also be divided into a trunk portion and an upper limb portion; the lower body can also be understood simply as the lower limb.
Referring to fig. 2, 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. 2 can be simply considered as the length direction as described herein, the direction indicated by the arrow Y in fig. 2 can be simply considered as the width direction as described herein, and the direction indicated by the arrow Z in fig. 2 can be simply considered as the height direction as described herein. Further, all directional indicators in the embodiments of the present application (such as up, down, left, right, front, back \8230;) are only used to explain the relative positional relationship between the components, the motion situation, etc. at a certain posture (as shown in fig. 2), and if the certain posture is changed, the directional indicators are correspondingly changed.
Referring to fig. 2 and 3, the thermal moxibustion device 10 may include a moxibustion bed 11 and a moxibustion tool 12, wherein the moxibustion tool 12 is used for placing moxibustion materials and can be placed in the thermal moxibustion device 10. The size of the moxibustion bed 11 in the length direction is larger than the size of the moxibustion bed 11 in the width direction, and the moxibustion bed 11 may include a bed frame 111 and a bed plate 112 supported on the bed frame 111 in the height direction, the bed plate 112 being used for a user to lie or lie on the stomach. Thus, the user can lie on the moxibustion bed 11 or lie on the moxibustion bed 11 for hot moxibustion, that is, the human body is located above the moxibustion bed 11 in the height direction. Of course, in other embodiments, the body may be located below the bed in the height direction. In addition, in daily use, when the thermal moxibustion device 10 is not used for thermal moxibustion, a mattress can be placed on the bed board 112 to be used as a daily bed, so that the thermal moxibustion device 10 does not need to occupy redundant space, and other values of the thermal moxibustion device 10 are exerted as much as possible.
In some embodiments, referring to FIG. 4, the thermal moxibustion device 10 can further include a moxibustion device 13, and the moxibustion device 13 can be used for placing moxibustion materials and can be placed in the thermal moxibustion device 10. Specifically, the moxibustion device 13 may include a moxibustion net 133 and a frame 132 fixed to the outer periphery of the moxibustion net 133. In other embodiments, the moxibustion device 13 can further include handles 131 disposed on opposite sides of the frame 132, such that access to the moxibustion device 13 is more convenient and faster. Further, in the use state, the moxibustion tool 12 may correspond to the upper half of the human body or the lower half of the human body. Of course, in other embodiments, such as those in which the thermal moxibustion device 10 is further provided with a moxibustion device 13, one of the moxibustion device 12 and the moxibustion device 13 may correspond to the upper half of the human body and the other may correspond to the lower half of the human body in the use state. In the present embodiment, the moxibustion device 12 is exemplarily described as corresponding to the upper half of the human body, and the moxibustion device 13 is exemplarily described as corresponding to the lower half of the human body. Thus, when the user lies or lies on the moxibustion bed 11, the maximum area of the moxibustion can be received.
It should be noted that: the main component of the moxibustion material is moxa, and specifically can be moxa prepared by processing the moxa; 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. Further, with reference to the user lying or lying on the moxibustion bed 11, the length direction described in the present application may refer to the direction of the Vertical Axis (Vertical Axis) of the human body, that is, the direction of the height of the human body; the width direction of the present application can refer to the direction of the human body coronary Axis (coronary Axis), that is, the left and right directions of the human body; the height direction in the present application may refer to the Sagittal Axis (Sagittal Axis) of the human body, i.e. the front and back directions of the human body.
In other embodiments, in conjunction with fig. 2, the deck 112 may include a first deck 1121 and a second deck 1122 respectively connected to the bed frame 111, although the first deck 1121 and the second deck 1122 may be connected to each other. The first plate 1121 can cover the moxibustion device 12, and the second plate 1122 can cover the moxibustion device 13. Further, at least the second plate 1122 of the first plate 1121 and the second plate 1122 is rotated with respect to the frame 111 about an axis parallel to the width direction or the length direction. Thus, when a user needs to take or replace the moxibustion materials and clean the thermal moxibustion device 10, the user can lift or fold one of the two bed boards 112 at a time by the connection mode, and does not need to lift the whole bed board 112 at a time, so that the use is convenient and quick.
Furthermore, the bed plate 112 can be provided with a plurality of air holes to allow hot air generated by burning the moxibustion materials to directly act on the human body, which is beneficial to improving the curative effect of thermal moxibustion. The air holes may be formed in an arc shape, a strip shape, a circular shape, etc., such as an arc through hole 1123 and a strip through hole 1124, which will be described later. Preferably, at least a part of the air holes are overlapped with the moxibustion tool 12 and/or the moxibustion tool 13 along the orthographic projection of the height direction, so that the hot air generated by the moxibustion materials can better act on the human body.
It should be noted that: since the thermal moxibustion is mainly performed by the hot air generated by burning the moxibustion materials acting on the acupuncture points of the human body, the positions of the moxibustion tools 12 and 13 relative to the bed plate 112 and the specific distribution of the air holes such as the arc-shaped through holes 1123 and the strip-shaped through holes 1124 on the bed plate 112 can be reasonably arranged according to the traditional Chinese medicine theory, the human body structure and the like, without limitation, so as to improve the thermal moxibustion effect of the thermal moxibustion device 10.
In some embodiments, referring to fig. 3 and 5, the thermal moxibustion device 10 can further include a driving mechanism 141, wherein the driving mechanism 141 drives the moxibustion tool 12 to move toward or away from the bed plate 112 in the height direction. Thus, the thermal moxibustion device 10 can make the moxibustion tool 12 approach or keep away from the bed plate 112 according to different bearing capacities of the human body or different requirements of the thermal moxibustion process, so as to adjust the strength of the hot air received by the human body, i.e. avoid overheating or underheating, and further make the thermal moxibustion device 10 meet different requirements of different people. Further, the thermal moxibustion device 10 can further include a bracket 124 connected to the driving mechanism 141, wherein the bracket 124 is mainly used for conveniently placing the moxibustion tool 12. Wherein the drive structure 141 can be coupled to the central region of the frame 124 of the moxibustion device 12 to increase the smoothness of the drive. Of course, in other embodiments, the driving structure 141 can be connected to one end of the bracket 124, i.e. forming a cantilever structure, and the other end can be provided with a guiding structure to increase the driving smoothness. Wherein the bracket 124 may be connected to the driving structure 141 through the support 1415 when forming the cantilever structure.
Referring to fig. 6, the frame 124 can include a frame 1241 and a supporting plate 1242, the frame 1241 has a certain height in the height direction so as to provide the driving structure 141 with a travel space for lifting or lowering the moxibustion device 12, and the supporting plate 1242 carries the moxibustion device 12 and can move in the height direction relative to the frame 1241. Of course, in other embodiments, the liner 1242 may not move in the height direction relative to the frame 1241, i.e., the frame 1241 supports the liner 1242.
Illustratively, referring to fig. 8, the driving mechanism 141 is connected to a central region of the support 124 (e.g., the supporting plate 1242) of the moxibustion device 12, and may include a slide 1411, a lead screw 1412, a slide 1413, and a motor 1414, the slide 1413 is connected to the moxibustion bed 11 (e.g., the frame 1241 connected to the frame 111), the slide 1411 is slidably engaged with the slide 1413 and connected to the support 124 as an output end of the driving mechanism 141, the lead screw 1412 is engaged with the slide 1411, and the lead screw 1412 is provided with a thread, so as to convert the rotational motion of the motor 1414 into a linear motion of the slide 1411 and the moxibustion device 12 connected to the slide 1411. The output shaft of the motor 1414 is connected to the lead screw 1412. In this manner, the height of the moxibustion instrument 12 can be adjusted to be closer to or farther from the bed 112 by the drive mechanism 141. Because the moxibustion instrument 12 can be positioned on the carriage 124, the drive mechanism 141 can also drive the carriage 124 to be closer to or farther from the bed in the height direction. In this embodiment, the driving mechanism 141 may be a sliding screw lifting mechanism. Of course, in other embodiments, the driving mechanism 141 may also be a ball screw lifting mechanism or another lifting mechanism, which is not limited herein.
Similarly, referring to fig. 2, the thermal moxibustion device 10 can further include a driving mechanism 144 disposed on a side of the moxibustion tool 13 away from the bed plate 112, wherein the driving mechanism 144 is connected to a central region of the moxibustion tool 13 and drives the moxibustion tool 13 to move toward or away from the bed plate 112 along the height direction. The driving principle and the specific structure of the driving structure 144 may be the same as or similar to those of the driving structure 141, and are not described herein again.
Further, referring to fig. 7 and 8, the thermal moxibustion device 10 may further include a guide 113, the guide 113 is connected to the moxibustion bed 11 and extends along the length direction, and can be used to carry the bracket 124 (e.g. the frame 1241), that is, the bracket 124 is disposed on the guide 113, and the driving mechanism 141 is connected to the bracket 124, so that the bracket moves along the guide relative to the moxibustion bed 11. In addition, the moxibustion device 121 is disposed on the supporting board 1242, and the moxibustion device 122 is also disposed on the supporting board 1242, that is, the moxibustion device 12 can be disposed on the supporting board 1242. It will be understood that the support 124 can also be arranged on the guide 113 and can be moved along said guide relative to the bed 11. The moxibustion tool 121 and the moxibustion tool 122 are disposed on the backing 1242, and the frame 1241 and the backing 1242 are connected by the driving mechanism 141.
In some embodiments, referring to fig. 7, the thermal moxibustion device 10 can further include a driving mechanism 142, wherein the driving mechanism 142 can include a slide block, a screw rod, a slide rail and a motor, the slide rail is connected to the moxibustion bed 11 (e.g., the guide rail 113), the slide block is slidably engaged with the slide rail and serves as an output end of the driving mechanism 142 and is connected to the moxibustion tool 12, the screw rod is engaged with the slide block, and the screw rod is provided with a thread to convert the rotational motion of the motor into the linear motion of the slide block and the moxibustion tool 12 connected to the slide block. Wherein the slider of the driving mechanism 142 can be connected to the moxibustion device 12 via the bracket 124. Therefore, the position of the moxibustion tool 12 in the length direction can be changed by the driving structure 142 without lifting the bed plate 112, and the use is convenient and fast. In addition, the position of the moxibustion device 12 in the length direction of the thermal moxibustion device 10 can be changed according to the height of the human body, so that the thermal moxibustion device 10 can meet different requirements of different people, and hot air generated by the thermal moxibustion device 10 can be better concentrated on the acupuncture points of the human body.
Illustratively, the number of the moxibustion tools 12 can be multiple, for example, three moxibustion tools 12, a plurality of moxibustion tools 12 can be driven by one driving structure 142, and the user can drive the moxibustion tools 12 according to the theory of traditional Chinese medicine and the self condition so as to select different main thermal moxibustion sites. Thus, not only different requirements of different people are met, but also the total weight of the thermal moxibustion device 10 is reduced. Of course, a plurality of moxibustion devices 12 may be disposed at intervals, and the plurality of moxibustion devices 12 are fixed with respect to the longitudinal direction of the moxibustion bed 11, so that the number of thermal moxibustion modes that can be selected by the user becomes larger. Wherein the moxibustion device 12 can include a frame 124 connected to the driving mechanism 141, and a moxibustion device 121 and a moxibustion device 122 disposed on the frame 124.
In other embodiments, the thermal moxibustion device 10 may further include a lever (not shown) connected to the bracket 124, and an end of the lever, which is away from the bracket 124, is exposed from the moxibustion bed 11. Thus, the user can also achieve the effect of changing the position of the moxibustion tool 12 in the length direction of the thermal moxibustion device 10 by toggling the toggle rod outside the moxibustion bed 11, and the operation is simple and fast.
Illustratively, in conjunction with fig. 3, the number of the moxibustion tools 122 can be two, and the moxibustion tools 121 are located between the two moxibustion tools 122 in the width direction. Therefore, in the using state, the hot air generated by burning the moxibustion tools 122 positioned at the two sides of the moxibustion tool 121 can supplement the hot air of the middle moxibustion tool 121, so that the heat received by the hot moxibustion part of the human body is more balanced and stable, and the hot moxibustion effect is remarkable. In addition, referring to fig. 1 and 3, in general, the moxibustion device 121 can correspond to the trunk of the human body and the moxibustion device 122 can correspond to the upper limbs of the human body in the use state, so that the important parts of the human body can be subjected to the thermal moxibustion, and the thermal moxibustion effect is remarkable.
In some embodiments, referring to fig. 9, the moxibustion device 121 includes a central moxibustion device 1211 and a peripheral moxibustion device 1212, wherein the peripheral moxibustion device 1212 surrounds the central moxibustion device 1211. The number of the peripheral moxibustion tools 1212 can be a plurality, such as 8, and 8 peripheral moxibustion tools 1212 are spaced around the central moxibustion tool 1211. Wherein, the moxibustion device 121 can further comprise connecting members 1213 of the central moxibustion device 1211, the number of the connecting members 1213 is the same as that of the peripheral moxibustion devices 1212, and each peripheral moxibustion device 1212 is detachably connected to one of the connecting members 1213. Thus, the overall weight of the moxibustion device 121 can be reduced, and the user can selectively place the moxibustion materials according to the needs.
In other embodiments, the peripheral tool 1212 may be formed as a single piece rather than a plurality of pieces, i.e., the peripheral tool 1212 may be a continuous ring-like structure. Further, the peripheral moxibustion device 1212 can be detachably connected to the connecting member 1213 at an end thereof remote from the central moxibustion device 1211. Thus, the user can clean the peripheral moxibustion tool 1212 conveniently. In one embodiment, referring to fig. 2, the bed plate 112 can be provided with air holes such as an arc-shaped through hole 1123 and a strip-shaped through hole 1124 for respectively matching with the moxibustion tool 121 and the moxibustion tool 122. As described above, in the use state, the moxibustion device 121 can correspond to the trunk of the human body, and the moxibustion device 122 can correspond to the upper limb of the human body, so that important parts of the human body can be subjected to thermal moxibustion, and the thermal moxibustion effect is remarkable.
Further, referring to fig. 5 to 8, the thermal moxibustion device 10 further includes a driving structure 143 disposed on the bracket 124 (e.g., the supporting plate 1242), the driving structure 143 drives the moxibustion tool 121 to rotate relative to the moxibustion bed 11, the driving structure 143 is fixed on the frame 1241 and supports the supporting plate 1242 in the height direction, the output end of the driving structure 143 is connected to the central area of the supporting plate 1242, and the moxibustion tool 121 is disposed on the supporting plate 1242. Therefore, the hot air on the part of the human body corresponding to the moxibustion tool 121 in the height direction is not too concentrated, so as to avoid burning.
In some embodiments, and with reference to fig. 6, the drive mechanism 143 includes 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 coupled to an output of the motor 1431, and the driven wheel 1433 being coupled to the moxibustion instrument 121. 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 moxibustion tool 121 to drive the moxibustion tool 121 to rotate together, and at this time, the moxibustion tool 121, particularly the peripheral moxibustion tool 1212, generates spirally rising hot air. Thus, the hot air applied to the moxibustion device 121 will not cause burning.
In other embodiments, referring to fig. 8, the driving mechanism 143 includes a motor 1431, a driving wheel 1432 and a driven wheel 1433, the driven wheel 1433 is connected to the driving wheel 1432 through 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 121. In a use state, the motor 1431 is energized 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 121 to drive the moxibustion tool 121 to rotate together, and at this time, the moxibustion tool 121, especially the peripheral moxibustion tool 1212 portion generates spirally-ascending hot air. In this way, similar or analogous effects can also be obtained.
In other embodiments, referring to fig. 12, the driving mechanism 143 can further include an adapter 1434 connecting the driven wheel 1433 with the central moxibustion device 1211, the adapter 1434 is provided with a plurality of avoiding notches 1435 spaced along the rotation direction of the moxibustion device 121, and one end of each connecting member 1213 away from the peripheral moxibustion device 1212 is fixed in one of the avoiding notches 1435. The provision of the relief notch 1435 limits the movement of the connection 1213, on the one hand, and makes the thermal moxibustion device 10 more compact in construction, on the other hand.
With reference to fig. 9-11, based on the above description, the connecting member 1213 may include a first connecting portion 12131, a second connecting portion 12132, and an intermediate transition portion 12133 connecting the first connecting portion 12131 and the second connecting portion 12132, wherein the first connecting portion 12131 and the second connecting portion 12132 are respectively bent and extend in opposite directions relative to the intermediate transition portion 12133, the second connecting portion 12132 is closer to the base plate 112 than the first connecting portion 12131 in the height direction, the first connecting portion 12131 is connected to the central moxibustion instrument 1211, and the second connecting portion 12132 may be disposed annularly. In addition, the peripheral moxibustion tool 1212 includes a storage bin 12121 and a folding edge 12122 connected to the storage bin 12121 in a bending manner, the storage bin 12121 is open towards the side of the bed plate 112, and the peripheral moxibustion tool 1212 is hung on the second connecting portion 12132 via the folding edge 12122, so as to be conveniently detached. Thus, the central moxibustion tool 1211 and the peripheral moxibustion tool 1212 are located on the same plane, so that the temperature of hot air reaching the human body is more balanced, and the thermal moxibustion effect is remarkable.
Further, the second connection portions 12132 may have a continuous ring shape such as a circular shape, a triangular shape, or a rectangular shape, or a discontinuous ring shape such as a C-shape or a U-shape. The peripheral moxibustion device 1212 can be connected to the central moxibustion device 1211 through the connecting member 1213 without limitation. In addition, a handle 12124 extending toward the moxibustion bed 11 may be provided on a bent edge 12122 of the storage chamber 12121. The handle 12124 is bent relative to the compartment 12121 and extends in a direction away from the central moxibustion tool 1211, and can be tilted in a direction away from the peripheral moxibustion tool 1212. Therefore, the peripheral moxibustion tool 1212 is convenient for a user to take and place, and can not be scalded by hot air generated by burning of the moxibustion materials.
In some embodiments, and with reference to fig. 5, the bracket 124 (e.g., the liner 1242) can include a slot (not shown), and the moxibustion tool 122 can include a receptacle 1221 and a card 1222 coupled to the receptacle 1221, wherein the card 1222 can be inserted into the slot and allows the moxibustion tool 122 to be removably coupled to the bracket 124. Thus, the moxibustion tool 122 can be conveniently taken and placed.
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 (9)
1. The utility model provides a hot moxibustion device, its characterized in that, hot moxibustion device has length direction, width direction and the direction of height of quadrature each other to including moxibustion bed, guide rail, support, first moxibustion utensil and first drive structure, the moxibustion bed includes the bedstead and follows the direction of height sets up bed board on the bedstead, the bed board supplies the user to lie or lie prone, the guide rail with the moxibustion bed is connected, and follows length direction extends, the support sets up on the guide rail, and follows the guide rail for the moxibustion bed motion, first moxibustion utensil with first drive structure sets up on the support, first drive structure drive first moxibustion utensil is followed the direction of height is close to or keeps away from the bed board, hot moxibustion device is still including setting up third drive structure on the support, third drive structure drive first moxibustion utensil for the moxibustion bed rotates.
2. The apparatus of claim 1, further comprising a lever connected to the support, wherein an end of the lever away from the support is exposed from the moxibustion bed.
3. The apparatus of claim 1, further comprising a second drive mechanism coupled to the carriage, the second drive mechanism driving the carriage along the track relative to the bed.
4. The apparatus according to claim 1, wherein the frame comprises a frame and a plate, the frame is supported on the rail, the first driving structure is fixed to the frame and supports the plate in the height direction, an output end of the first driving structure is connected to the plate, and the first moxibustion device and the third driving structure are disposed on the plate.
5. The apparatus according to claim 4, wherein the first driving mechanism comprises a slide rail, a slider, a lead screw and a motor, the slide rail is connected to the moxibustion bed, the slider is in sliding fit with the slide rail and serves as an output end of the first driving mechanism to be connected to the lining plate, the lead screw is engaged with the slider, and an output shaft of the motor is connected to the lead screw.
6. The apparatus of claim 1, wherein the third driving mechanism 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 moxibustion tool.
7. The thermal moxibustion device of claim 4, further comprising a second moxibustion tool disposed on the lining plate, wherein the second moxibustion tool is detachably connected to the lining plate; wherein the first moxibustion device corresponds to a trunk of a human body in a use state, and the second moxibustion device corresponds to an upper limb of the human body in the use state.
8. The apparatus of claim 1, wherein the first moxibustion device comprises a central moxibustion device, a plurality of peripheral moxibustion devices spaced around the central moxibustion device, and a plurality of connecting members connecting the central moxibustion device and the peripheral moxibustion devices, the number of the connecting members being the same as the number of the peripheral moxibustion devices, each peripheral moxibustion device being detachably connected to one of the connecting members.
9. The thermal moxibustion device of claim 8, wherein the connecting member comprises a first connecting portion, a second connecting portion and a middle transition portion connecting the first connecting portion and the second connecting portion, the first connecting portion and the second connecting portion are respectively bent and reversely extended relative to the middle transition portion, the second connecting portion is located in the height direction, compared with the first connecting portion, closer to the bed plate, the first connecting portion is connected with the central moxibustion tool, the second connecting portion is annularly arranged, the peripheral moxibustion tool comprises a holding bin and a folding edge connected with the holding bin in a bent manner, the holding bin faces one side of the bed plate and is open, and the peripheral moxibustion tool is hung on the second connecting portion through the folding edge.
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CN202123454436.2U CN218305514U (en) | 2021-12-31 | 2021-12-31 | Thermal moxibustion device |
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CN202123454436.2U CN218305514U (en) | 2021-12-31 | 2021-12-31 | Thermal moxibustion device |
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