A moxibustion device
By incorporating heat insulation components and a rotatable, height-adjustable structure into the moxibustion device, the problem of heat waste is solved, heat utilization is improved, the risk of burns is reduced, and the device becomes portable.
Patent Information
- Application Number
- CN202210980528.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-16
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2042-08-16
AI Technical Summary
Existing moxibustion equipment suffers from heat waste and low heat utilization.
A moxibustion device was designed. By setting heat insulation components inside the shell to avoid the treatment area, the heat is concentrated on the treatment area, preventing heat from being transferred to the outside of the shell, thus improving the heat utilization rate. The device is also easy to store and transport due to its rotatable and liftable structure.
It improves the heat utilization rate of moxibustion equipment, reduces the occurrence of burns, and facilitates the storage and transportation of the equipment.
Smart Images

Figure CN115517958B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of moxibustion physiotherapy equipment, and in particular to a moxibustion device. BACKGROUND
[0002] With people paying more and more attention to health, moxibustion has become a common way for people to maintain health and physiotherapy, and the technology of moxibustion is becoming more and more mature, and moxibustion equipment is becoming more and more common in people's homes, and people's requirements for moxibustion equipment are also getting higher and higher. However, the current moxibustion equipment has the problem of heat waste.
[0003] Therefore, how to improve the heat utilization rate of the moxibustion equipment is a technical problem that needs to be solved by those skilled in the art. SUMMARY
[0004] Therefore, the purpose of the present application is to provide a moxibustion device to improve the heat utilization rate of the moxibustion device.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0006] A moxibustion device, comprising a first shell, a combustion chamber and a heat insulation component, wherein:
[0007] The combustion chamber is arranged inside the first shell;
[0008] The first shell is provided with a physiotherapy part corresponding to the combustion chamber;
[0009] The heat insulation component is arranged between the inner wall of the first shell and the combustion chamber and avoids the physiotherapy part to block the heat transfer to the first shell.
[0010] In one possible embodiment of the present application, the combustion chamber comprises a combustion cover enclosing a combustion cavity, a moxibustion fixing device for fixing moxa and an ignition heating pipe for igniting moxa, wherein: the combustion cover is provided with a smoke guide opening in communication with the combustion cavity and a mounting opening for accommodating the moxa installation; the moxibustion fixing device is located in the combustion cavity and fixed to the combustion cover; the ignition heating pipe is arranged on the moxibustion fixing device.
[0011] In one possible embodiment of the present application, the moxibustion fixing device comprises a fixing disc and a plurality of fixing ribs in U-shaped structure, wherein: the fixing disc has an opening in the middle for accommodating moxa; the plurality of fixing ribs are arranged in cross, and both ends of each fixing rib are fixed to the fixing disc.
[0012] In one possible embodiment of the present application, the fixing disc is fixed to the combustion cover by bolts, or the fixing disc is welded to the combustion cover.
[0013] In one possible embodiment of the present application, the number of moxibustion fixing devices is multiple.
[0014] In one possible embodiment of the present invention, multiple moxibustion fixation devices are arranged in a matrix.
[0015] In one possible embodiment of the present invention, the ignition heating tube is fixed sequentially on multiple moxibustion fixation devices, and the corresponding parts of the ignition heating tube and the moxibustion fixation devices form a circular structure.
[0016] In one possible embodiment of the present invention, the ignition heating tube is arranged at the bottom of the moxibustion fixation device and fixed to the moxibustion fixation device by a metal wire.
[0017] In one possible embodiment of the present invention, the number of mounting ports is the same as the number of moxibustion fixation devices, with one mounting port corresponding to one moxibustion fixation device.
[0018] In one possible embodiment of the present invention, the mounting port is provided with a sealing cap to close the mounting port.
[0019] In one possible embodiment of the present invention, when there are multiple mounting ports, a sealing cover is provided for each mounting port, and a stepped portion is also provided at each mounting port. The stepped portion abuts against the end face of the sealing cover, and the side wall of the mounting port cooperates with the outer periphery of the sealing cover.
[0020] In one possible embodiment of the present invention, the combustion hood includes a top cover and a side cover with an enclosing structure, wherein: the top cover is disposed at the first end of the side cover, and the second end of the side cover corresponds to the physiotherapy section; the mounting port is located on the top cover, and the moxibustion fixator is fixed on the inner surface of the top cover; the smoke guide port is disposed on the side cover;
[0021] The heat insulation component includes a heat insulation sleeve fitted onto the combustion hood, the heat insulation sleeve having a first clearance opening that avoids the installation port and a second clearance opening that avoids the smoke inlet.
[0022] In one possible embodiment of the present invention, the first housing includes a fixed housing, a sliding housing, and a guide component; the heat insulation component further includes a first heat insulation sealing plate and a second heat insulation sealing plate, wherein the fixed end of the guide component is connected to the fixed housing, and the sliding end of the guide component is connected to the sliding housing; the first heat insulation sealing plate is disposed at the opening of the sliding housing and cooperates with the sliding housing to form a cavity that closes the combustion chamber; the second heat insulation sealing plate is disposed at the second end of the side cover, and the second heat insulation sealing plate has a third clearance opening that avoids the moxibustion fixation device; the physiotherapy part is disposed on the sliding housing.
[0023] In one possible embodiment of the present invention, the sliding shell is further provided with an air inlet, which can communicate with the combustion chamber.
[0024] In one possible embodiment of the present invention, the first housing further includes a partition, wherein: the partition is fixed on the fixed housing and divides the interior of the first housing into an installation cavity and a flue cavity, the combustion chamber being installed in the installation cavity; the flue cavity is connected to the flue outlet.
[0025] In one possible embodiment of the invention, the physiotherapy unit is detachably fixed to the bottom of the sliding shell.
[0026] In one possible embodiment of the present invention, the heat insulation component is an aerosol heat insulation layer.
[0027] In one possible embodiment of the present invention, the moxibustion device further includes a second housing and a connector, wherein:
[0028] The first housing is configured with a stowed state and an unfolded state;
[0029] The bottom of the second housing has a supporting component;
[0030] The connector is connected between the first housing and the second housing, and is rotatably connected to the first housing so that the first housing can switch between a stowed state and an unfolded state.
[0031] In one possible embodiment of the present invention, the side of the second housing has an inwardly recessed storage groove, and when the first housing is in the storage state, the end face of the second housing where the physiotherapy part is disposed fits against the bottom of the storage groove.
[0032] In one possible embodiment of the present invention, the connector is slidably connected to the second housing, and a lifting component is provided inside the second housing. The fixed end of the lifting component is connected to the second housing, and the lifting end of the lifting component is connected to the connector to adjust the vertical height of the connector.
[0033] In one possible embodiment of the present invention, the second housing has a flue gas treatment chamber inside, and the connector is provided with a flue gas guide channel connecting the combustion chamber and the flue gas treatment chamber.
[0034] In one possible embodiment of the present invention, a cooling component for cooling high-temperature flue gas in the flue gas treatment chamber is provided inside the second housing.
[0035] In one possible embodiment of the present invention, the support components are casters located at the four corners of the bottom of the second housing.
[0036] In one possible embodiment of the present invention, a recess is provided at the bottom of the second housing where the caster wheel is located, so that the lower edge of the second housing is less than 4 mm from the ground.
[0037] As can be seen from the above technical solution, the moxibustion device provided by the present invention, compared with the prior art, has a heat insulation component that avoids the physiotherapy part. On the one hand, most of the heat generated is concentrated in the physiotherapy part, thereby improving the heat utilization rate of the moxibustion device; on the other hand, since most of the heat in the combustion chamber is kept inside the heat insulation component, it effectively prevents the heat from being transferred to the first shell, reducing the occurrence of burns. BRIEF DESCRIPTION OF DRAWINGS
[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0039] Figure 1 A perspective structural schematic view of a moxibustion device provided by the embodiment of the present application;
[0040] Figure 2 A perspective structural schematic view of a moxibustion device provided by the embodiment of the present application, in which the combustion chamber and the heat insulation component are installed together;
[0041] Figure 3 A perspective structural schematic view of a moxibustion device provided by the embodiment of the present application, in which the combustion chamber and the heat insulation component are installed together;
[0042] Figure 4 A perspective structural schematic view of a moxibustion device provided by the embodiment of the present application;
[0043] Figure 5 A sectional view of A-A section in the moxibustion device provided by the embodiment of the present application; Figure 4
[0044] A sectional view of B-B section in the moxibustion device provided by the embodiment of the present application; Figure 6
[0045] A sectional view of B-B section in the moxibustion device provided by the embodiment of the present application; Figure 7 Figure 6 A perspective structural schematic view of a moxibustion device provided by the embodiment of the present application, in which the fixed shell is hidden;
[0046] Figure 8 A perspective structural schematic view of another moxibustion device provided by the embodiment of the present application, in which the fixed shell is hidden;
[0047] Figure 9 A perspective structural schematic view of another moxibustion device provided by the embodiment of the present application, in which the second shell is hidden;
[0048] Figure 10 A perspective structural schematic view of the second shell in another moxibustion device provided by the embodiment of the present application;
[0049] Figure 11 A perspective structural schematic view of another moxibustion device provided by the embodiment of the present application, in different states;
[0050] Figures 12 to 15 A perspective structural schematic view of another moxibustion device provided by the embodiment of the present application, in different states;
[0051] Wherein, 100 is a first shell, 200 is a combustion chamber, 300 is a heat insulation part, 400 is a connecting piece, and 500 is a second shell;
[0052] 101 is a physiotherapy part, 102 is a fixed shell, 103 is a sliding shell, 104 is a guide part, 105 is a partition plate, 106 is a flue cavity, 107 is a mounting cavity; 201 is a combustion cover, 202 is a moxa fixation device, 203 is an ignition heating tube; 301 is a heat insulation sleeve, 302 is a first heat insulation sealing plate, 303 is a second heat insulation sealing plate; 401 is a flue, 501 is a storage groove, 502 is a lifting part, and 503 is a cooling part;
[0053] 2011 is a mounting port, 2012 is a smoke guide port, 201a is a top cover, 201b is a side cover; 2021 is a fixed disc, and 2022 is a fixed rib; 3011 is a first position avoiding port, 3012 is a second position avoiding port, and 3021 is a third position avoiding port. DETAILED DESCRIPTION
[0054] The core of the present application is to disclose a moxa equipment to improve the heat utilization rate of the moxa equipment and facilitate storage and transportation.
[0055] In order for those skilled in the art to better understand the present application, the following describes the embodiments of the present application with reference to the accompanying drawings. In addition, the embodiments shown below do not limit the invention described in the claims in any way. In addition, the entire content of the configuration represented in the following embodiments is not limited to what is necessary for the solution of the invention described in the claims.
[0056] Referring to Figures 1 to 8 The disclosed moxa equipment includes a first shell 100, a combustion chamber 200, and a heat insulation part 300, wherein: the combustion chamber 200 is arranged inside the first shell 100; the first shell 100 is provided with a physiotherapy part 101 corresponding to the combustion chamber 200; and the heat insulation part 300 is arranged between the inner wall of the first shell 100 and the combustion chamber 200 and avoids the physiotherapy part 101 to block the heat transfer to the first shell 100.
[0057] Compared with the prior art, the heat insulation part 300 of the moxa equipment provided by the embodiments of the present application avoids the physiotherapy part 101, on the one hand, most of the generated heat is concentrated in the physiotherapy part 101, thereby improving the heat utilization rate of the moxa equipment; on the other hand, since most of the heat of the combustion chamber 200 is kept inside the heat insulation part 101, the heat transfer to the first shell 100 is effectively prevented, and the occurrence of scalding is reduced.
[0058] It should be noted that the material of the first shell 100 is not specifically limited, as long as it can form a shell structure, which is within the protection scope of the present application. In order to reduce the weight of the entire moxibustion device, the first shell 100 is an aluminum shell, a magnesium alloy shell, a plastic shell structure, etc.
[0059] The combustion chamber 200 is used to accommodate moxa to burn stably inside. In some examples of the present application, the combustion chamber 200 includes a combustion cover 201 surrounding a combustion cavity, a moxa fixing device 202 for fixing moxa, and an ignition heating pipe 203 for igniting moxa, wherein: the combustion cover 201 is provided with a smoke guide port 2012 communicating with the combustion cavity and a mounting port 2011 accommodating the installation of moxa; the moxa fixing device 202 is located in the combustion cavity and fixed to the combustion cover 201; the ignition heating pipe 203 is arranged on the moxa fixing device 202.
[0060] It should be noted that the internal form of the moxa fixing device 202 is adapted to the external form of the moxa to fix the moxa, for example, the moxa fixing device 202 is a cylindrical structure. In some examples of the present application, the moxa fixing device 202 includes a fixing disc 2021 and a plurality of fixing ribs 2022 in U-shaped structure, wherein: the fixing disc 2021 has an opening in the middle for accommodating moxa; a plurality of fixing ribs 2022 are arranged in cross, and both ends of each fixing rib 2022 are fixed to the fixing disc 2021. Compared with the structure of the fixing rib 2022, the contact area between the moxa and the air can be increased, so that the moxa burns more fully.
[0061] The connection mode between the fixing rib 2022 and the fixing disc 2021 is detachable connection or non-detachable connection, and / or the connection mode between the fixing disc 2021 and the combustion cover 201 is detachable connection or non-detachable connection. In the detachable connection mode, for example, bolt connection, screw connection; in the non-detachable connection mode, for example, welding connection, rivet connection.
[0062] The number of moxa fixing devices 202 is one or more. When the number of moxa fixing devices 202 is one, the moxa device can fix one moxa at a time; when the number of moxa fixing devices 202 is more than one, the moxa device can fix multiple moxas at a time, wherein one moxa fixing device 202 fixes one moxa.
[0063] On the basis of the number of moxa fixing devices 202 being more than one, the plurality of moxa fixing devices 202 can be arranged arbitrarily, which can be understood as arranged in a certain rule, or not arranged in a rule. When arranged in a rule, the plurality of moxa fixing devices 202 are arranged in a linear type, or in a circular type, or in a matrix type, etc. The present application preferably adopts the matrix type arrangement, which is convenient for processing and assembly.
[0064] The ignition heating tube 203 is used for igniting moxibustion, wherein, when the moxibustion holder 202 is one, the ignition heating tube 203 is directly arranged on the moxibustion holder 202 to contact the moxa stick. When the moxibustion holder 202 is multiple, one ignition heating tube 203 can be arranged on each moxibustion holder 202; or when the moxibustion holder 202 is multiple, the ignition heating tube 203 is sequentially fixed on the multiple moxibustion holders 202, and the ignition heating tube 203 and the corresponding part of the moxibustion holder 202 form a circular ring structure. In the figure, the ignition heating tube 203 is sequentially fixed on the multiple moxibustion holders 202, and compared with the structure of arranging the ignition heating tube 203 separately, this structure can realize simultaneous ignition of multiple moxibustions, and is simple in operation and / or control logic.
[0065] The ignition heating tube 203 is arranged at the bottom of the moxibustion holder 202 and is fixed on the moxibustion holder 202 by a metal wire; the ignition heating tube 203 can also be arranged at the middle of the moxibustion holder 202, and can also be arranged at the top of the moxibustion holder 202. Preferably, the ignition heating tube 203 is arranged at the bottom of the moxibustion holder 202.
[0066] The installation port 2011 is used for accommodating the installation of moxa sticks, wherein, when there is one moxibustion holder 202 and one installation port 2011, the moxibustion holder 202 corresponds to the installation port 2011; when there are multiple moxibustion holders 202 and one installation port 2011, one installation port 2011 corresponds to multiple moxibustion holders 202, and the installation of moxa sticks in the multiple moxibustion holders 202 is realized through the installation port 2011; when there are multiple moxibustion holders 202 and multiple installation ports 2011, one installation port 2011 can correspond to multiple moxibustion holders 202, and multiple installation ports 2011 can correspond to one moxibustion holder 202. In particular, when the number of installation ports 2011 is consistent with the number of moxibustion holders 202, one installation port 2011 corresponds to one moxibustion holder 202.
[0067] In order to improve the use effect of the moxibustion device, the installation port 2011 is provided with a sealing cover for sealing the installation port 2011, and the sealing cover is removed when installation is needed; after the moxa stick is installed in place, the sealing cover is installed at the installation port 2011. When the number of installation ports 2011 is multiple, one installation port 2011 is correspondingly provided with one sealing cover, and each installation port 2011 is further provided with a step portion, the step portion abuts against the end face of the sealing cover, and the side wall of the installation port 2011 cooperates with the outer periphery of the sealing cover; or all installation ports 2011 correspond to one sealing cover to realize the sealing of the installation port 2011.
[0068] The combustion cover 201 is a cylindrical structure or a cuboid structure. In the drawings, the combustion cover 201 is a cuboid structure, specifically, the combustion cover 201 includes a top cover 201a and a side cover 201b in a surrounding structure, wherein: the top cover 201a is arranged at a first end of the side cover 201b, and a second end of the side cover 201b corresponds to the physiotherapy part 101; the mounting port 2011 is located on the top cover 201a, the moxa fixing device 202 is fixed to the inner surface of the top cover 201a; and the smoke guide port 2012 is arranged on the side cover 201b.
[0069] The heat insulation component 300 is used to block the heat transfer to the first shell 100. The heat insulation component 300 includes a heat insulation sleeve 301 sleeved on the combustion cover 201, and the heat insulation sleeve 301 has a first avoiding port 3011 avoiding the mounting port 2011 and a second avoiding port 3012 avoiding the smoke guide port 2012. When the combustion cover 201 is a cylindrical structure, the heat insulation sleeve 301 is also a cylindrical structure; when the combustion cover 201 is a cuboid structure, the heat insulation sleeve 301 is also a cuboid structure.
[0070] In order to expand the application range of the moxa instrument, in an example of the present application, the first shell 100 includes a fixed shell 102, a sliding shell 103 and a guide component 104; wherein the fixed end of the guide component 104 is connected with the fixed shell 102, the sliding end of the guide component 104 is connected with the sliding shell 103; and the physiotherapy part 101 is arranged on the sliding shell 103. By moving the sliding shell 103, the relative position of the physiotherapy part 101 relative to the fixed shell 102 can be adjusted to perform physiotherapy on different parts.
[0071] It should be noted that the guide component 104 can be a sliding rail or a sliding groove. In order to improve the moxa combustion effect, the sliding shell 103 is further provided with an air inlet hole which can communicate with the combustion chamber 200.
[0072] Further, the first shell 100 further includes a partition plate 105, wherein: the partition plate 105 is fixed on the fixed shell 102 and divides the interior of the first shell 100 into an installation cavity 107 and a flue cavity 106, and the combustion chamber 200 is installed in the installation cavity 107; and the flue cavity 106 communicates with the smoke guide port 2012.
[0073] The physiotherapy part 101 is fixed on the bottom of the sliding shell 103 in a non-detachable manner or in a detachable manner. Different types of physiotherapy parts 101 can be replaced for different moxa treatment projects.
[0074] The heat insulation component 300 further comprises a first heat insulation sealing plate 302 and a second heat insulation sealing plate 303, the first heat insulation sealing plate 302 is arranged at the opening of the sliding shell 103 and cooperates with the sliding shell 103 to form a cavity for sealing the combustion chamber 200, and the second heat insulation sealing plate 303 is arranged at the second end of the side cover 201b and has a third avoiding opening 3021 which avoids the moxa fixing device 202.
[0075] The heat insulation component 300 is a structure processed by using a heat insulation material, for example, an aerosol heat insulation layer.
[0076] Referring to Figures 9 to 13 , the moxa equipment further comprises a second shell 500 and a connecting body, wherein the first shell 100 is configured to have a storage state and an unfolded state, the bottom of the second shell 500 has a supporting component, and the connecting body is connected between the first shell 100 and the second shell 500 and rotatably connected with the first shell 100 so as to switch the first shell 100 between the storage state and the unfolded state.
[0077] The first shell 100 is internally provided with a combustion chamber 200 for burning the combustion material, the first shell 100 is rotatably connected with the connecting body, and the function of rotating the first shell 100 around the connecting position can be realized, when rotated to a suitable position, the lifting is realized through the sliding connection between the connecting body and the second shell 500, and the combustion chamber 200 is placed at a suitable position for moxa treatment, when rotated to another position, the moxa equipment occupies a smaller space volume and is convenient to store.
[0078] It should be noted that the rotatable connection between the first shell 100 and the connecting body can be realized through a pin shaft, a hinge structure, or a cam or gear structure.
[0079] In the illustration, the second shell 500 is vertically arranged, in the storage state, the first shell 100 and the second shell 500 are vertically arranged with the first shell 100, as shown in Figure 12 , and in the unfolded state, the second shell 500 is vertically arranged and the first shell 100 is horizontally arranged, as shown in Figure 13 .
[0080] In order to further reduce the volume of the moxa equipment in the storage state, in an example of the present application, the side surface of the second shell 500 has an inwardly recessed storage groove 501, when the first shell 100 is in the storage state, the end surface of the physiotherapy part 101 of the second shell 500 is attached to the groove bottom of the storage groove 501, that is, when this structure is arranged, the first shell 100 and the second shell 500 are almost parallel, at this time, the volume of the stored first shell 100 and the second shell 500 is relatively smallest.
[0081] Further, in order to expand the application scenarios of the moxibustion device, the connecting piece 400 is slidably connected with the second shell 500, and the second shell 500 is internally provided with a lifting component 502, the fixed end of the lifting component 502 is connected with the second shell 500, and the lifting end of the lifting component 502 is connected with the connecting piece 400, so as to adjust the vertical height of the connecting piece 400.
[0082] The connecting body is inserted into the interior of the second shell 500 and is slidably connected with the second shell 500. The above connection mode can realize the function of changing the height of the connecting body in the vertical direction, so as to adapt to the use height of the device required by different users in different scenarios, and when the moxibustion device is no longer used, the connecting body part can be retracted into the interior of the second shell 500, so that the vertical height of the moxibustion device is reduced to occupy a smaller storage space.
[0083] It should be noted that the sliding connection between the connecting body and the second shell 500 can be realized by a slide rail, a slide groove structure, or by a bearing kit. The lifting component 502 can be an electric or manual push rod, or an electric or hydraulic automatic lifting platform. Here, an electric push rod is preferred.
[0084] The second shell 500 is internally provided with a smoke treatment chamber, and the connecting piece 400 is provided with a smoke guide channel 401 which communicates the combustion chamber 200 with the smoke treatment chamber. In this way, the smoke generated by the combustion chamber 200 can enter the smoke treatment chamber through the smoke guide channel 401, and after being treated in the smoke treatment chamber, it can be discharged to the outside.
[0085] Further, in order to reduce the temperature of the smoke in the smoke treatment chamber, the second shell 500 is internally provided with a cooling component 503 for cooling the high-temperature smoke in the smoke treatment chamber. The cooling component 503 is a water-cooled structure or other structure with cooling function. The cooling component 503 is arranged in the second shell 500 in the vertical direction. The vertical arrangement of the cooling component 503 can reduce the bottom area of the second shell 500, thereby reducing the floor area and occupying a smaller storage space.
[0086] The above support component is a protruding structure or a universal wheel arranged at the four corners of the bottom of the second shell 500.
[0087] When it is a protruding structure, the height of the protruding structure should not be too high, so that the height from the lower edge of the second shell 500 to the ground is less than 4mm. When the support component is a universal wheel, the part of the second shell 500 where the universal wheel is arranged is provided with a recess, so that the height from the lower edge of the second shell 500 to the ground is less than 4mm. Since the minimum width of the moxibustion device wire is 4mm, when the height from the lower edge of the second shell 500 to the ground is less than 4mm, the possibility that the lower edge of the second shell 500 presses the device wire during movement can be avoided, thereby improving the safety of the device.
[0088] The moxibustion device provided by the application has multiple states, wherein, Figure 12 is a front view of the moxibustion device provided by the application in a storage state; Figure 13 is a front view of the moxibustion device provided by the application in a first unfolded state; Figure 14 is a front view of the moxibustion device provided by the application in a second unfolded state; Figure 15 is a front view of the moxibustion device provided by the application in a first unfolded state.
[0089] When the moxibustion device is stored and transported, the first shell 100 is rotated until the first shell 100 is in the storage groove 501, as shown in Figure 12 .
[0090] When the moxibustion device is needed, the first shell 100 is rotated to a preset angle, as shown in Figure 13 .
[0091] When the physiotherapy part 101 cannot reach the physiotherapy position in the horizontal direction in the structure shown in Figure 13 , the sliding shell 103 is moved so that the sliding shell 103 is lengthened in the horizontal direction relative to the fixed shell 102, as shown in Figure 14 ; or when the physiotherapy part 101 cannot reach the physiotherapy position in the vertical direction in the structure shown in Figure 13 , the connecting piece 400 is moved so that the first shell 100 is raised in the vertical direction relative to the second shell 500.
[0092] It should be noted that the material of the second shell 500 is not specifically limited, as long as the shell structure can be formed, which is within the protection scope of the application. In order to reduce the weight of the entire moxibustion device, the second shell 500 is an aluminum shell, a magnesium alloy shell, a plastic shell structure, etc.
[0093] The terms "first", "second", etc. in the specification and claims of the application and the above-mentioned drawings are used to distinguish different objects, and are not used to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but can include steps or units that are not listed.
[0094] The foregoing description of the disclosed embodiments enables a person skilled in the art to make or use the application. Modifications of these embodiments will occur to persons of skill in the art, and that the appended claims are intended to cover all such modifications that do not depart from the true spirit and scope of the application. Therefore, the application is not limited to the embodiments shown but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A moxibustion device, characterized in that, It includes a first housing, a combustion chamber, and heat insulation components, wherein: The combustion chamber is disposed inside the first housing; The first housing is provided with a physiotherapy section, which corresponds to the combustion chamber; The heat insulation component is disposed between the inner wall of the first housing and the combustion chamber and avoids the physiotherapy section to prevent heat from being transferred to the first housing; The combustion chamber includes a combustion hood that forms the combustion cavity, a moxibustion holder for fixing the moxibustion device, and an ignition heating tube for igniting the moxibustion device. The combustion hood is provided with a smoke inlet communicating with the combustion cavity and an installation port for accommodating the moxibustion device. The moxibustion holder is located in the combustion cavity and fixed to the combustion hood. The ignition heating tube is disposed on the moxibustion holder. The first housing includes a fixed housing, a sliding housing, and a guide component, and also includes a partition plate, wherein: the partition plate is fixed on the fixed housing and divides the interior of the first housing into an installation cavity and a flue cavity, the combustion chamber is installed in the installation cavity; the flue cavity is connected to the flue outlet.
2. The moxibustion device as described in claim 1, characterized in that, The moxibustion fixation device includes a fixing plate and multiple U-shaped fixing ribs, wherein: the fixing plate has an opening in the middle to accommodate moxibustion; the multiple fixing ribs are arranged in a cross pattern, and both ends of each fixing rib are fixed to the fixing plate.
3. The moxibustion device as described in claim 2, characterized in that, The fixing plate is fixed to the combustion hood by bolts, or the fixing plate is welded to the combustion hood.
4. The moxibustion device as described in claim 2, characterized in that, The number of moxibustion fixation devices is multiple.
5. The moxibustion device as described in claim 4, characterized in that, The multiple moxibustion fixation devices are arranged in a matrix.
6. The moxibustion device as described in claim 4, characterized in that, The ignition heating tube is fixed sequentially on a plurality of moxibustion fixation devices, and the corresponding part of the ignition heating tube and the moxibustion fixation device has a circular structure.
7. The moxibustion device as described in claim 6, characterized in that, The ignition heating element is located at the bottom of the moxibustion fixation device and is fixed to the moxibustion fixation device by a metal wire.
8. The moxibustion device as described in claim 4, characterized in that, The number of mounting ports is the same as the number of moxibustion fixation devices, with one mounting port corresponding to one moxibustion fixation device.
9. The moxibustion device as described in claim 8, characterized in that, The mounting port is provided with a sealing cap to close the mounting port.
10. The moxibustion device as described in claim 9, characterized in that, When there are multiple mounting ports, each mounting port is provided with a corresponding sealing cover. Each mounting port is also provided with a stepped portion, which abuts against the end face of the sealing cover. The side wall of the mounting port cooperates with the outer periphery of the sealing cover.
11. The moxibustion device as described in claim 1, characterized in that, The combustion hood includes a top cover and a side cover with an enclosing structure, wherein: the top cover is disposed at the first end of the side cover, and the second end of the side cover corresponds to the physiotherapy part; the mounting port is located on the top cover, and the moxibustion fixator is fixed to the inner surface of the top cover; the smoke guide is disposed on the side cover; The heat insulation component includes a heat insulation sleeve fitted onto the combustion hood, the heat insulation sleeve having a first clearance opening that avoids the mounting port and a second clearance opening that avoids the smoke inlet.
12. The moxibustion device as described in claim 11, characterized in that, The heat insulation component further includes a first heat insulation sealing plate and a second heat insulation sealing plate, wherein the fixed end of the guide component is connected to the fixed shell, and the sliding end of the guide component is connected to the sliding shell; the first heat insulation sealing plate is disposed at the opening of the sliding shell and cooperates with the sliding shell to form a cavity that seals the combustion chamber; the second heat insulation sealing plate is disposed at the second end of the side cover, and the second heat insulation sealing plate has a third clearance opening that avoids the moxibustion fixation device; the physiotherapy part is disposed on the sliding shell.
13. The moxibustion device as described in claim 12, characterized in that, The sliding shell is also provided with an air inlet, which can communicate with the combustion chamber.
14. The moxibustion device as described in claim 12, characterized in that, The physiotherapy unit is detachably fixed to the bottom of the sliding shell.
15. The moxibustion device as described in any one of claims 1 to 14, characterized in that, The heat insulation component is an aerosol heat insulation layer.
16. The moxibustion device as described in any one of claims 1 to 14, characterized in that, The moxibustion device also includes a second housing and a connector, wherein: The first housing is configured with a stowed state and an unfolded state; The bottom of the second housing has a supporting component; The connector is connected between the first housing and the second housing, and is rotatably connected to the first housing so that the first housing can switch between a stowed state and an unfolded state.
17. The moxibustion device as described in claim 16, characterized in that, The second housing has an inwardly recessed storage groove on its side. When the first housing is in the storage state, the end face of the second housing where the physiotherapy part is located fits against the bottom of the storage groove.
18. The moxibustion device as described in claim 16, characterized in that, The connecting body is slidably connected to the second housing, and a lifting component is provided inside the second housing. The fixed end of the lifting component is connected to the second housing, and the lifting end of the lifting component is connected to the connecting body to adjust the vertical height of the connecting body.
19. The moxibustion device as described in claim 16, characterized in that, The second housing has a flue gas treatment chamber inside, and the connecting body is provided with a smoke guide channel connecting the combustion chamber and the flue gas treatment chamber.
20. The moxibustion device as described in claim 19, characterized in that, The second housing is equipped with a cooling component for cooling the high-temperature flue gas in the flue gas treatment chamber.
21. The moxibustion device as described in claim 16, characterized in that, The supporting components are casters located at the four corners of the bottom of the second housing.
22. The moxibustion device as described in claim 16, characterized in that, The bottom of the second housing, where the caster wheel is located, has a recessed portion so that the lower edge of the second housing is less than 4mm from the ground.
Citation Information
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