Stone needle moxibustion
By designing the structure of the Bian stone moxibustion device and utilizing a metal cover and elastic reset mechanism, the problem of moxa stick residue adhesion was solved, enabling rapid removal of ash, ensuring the cleanliness and stability of the moxibustion device, and extending its service life.
Patent Information
- Application Number
- CN202422774816.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-14
AI Technical Summary
In existing reusable moxibustion devices, the residue left after the moxa stick burns out adheres to the needle and is difficult to remove, affecting cleanliness and hygiene. This may lead to unstable moxibustion or poor results, and shorten the lifespan of the device.
A Bian stone moxibustion device is designed, including a grip, a moxibustion part, and a bottom cover. The bottom cover is detachably connected to the bottom of the moxibustion part. A metal cover is fixed inside the moxibustion part, and the lower end of the needle extends into the metal cover. When cleaning ash, the bottom cover is opened, and the moxibustion part is manually pulled to move the metal cover downward to scrape off the ash. The device uses elastic reset to achieve rapid cleaning.
This effectively prevents ash from sticking to the needles, simplifies the cleaning process, and ensures the stability and lifespan of the moxibustion device.
Smart Images

Figure CN223627808U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to moxa -moxibustion equipment technical field, concretely relates to a stone moxa -moxibustion. BACKGROUND
[0002] In the field of traditional Chinese medicine physiotherapy, moxa -moxibustion is widely used in the treatment of various diseases and relieving body pain as a traditional therapy. With the development of science and technology, modern moxa -moxibustion instrument emerges as the times require, aims at improving the convenience and safety of moxa -moxibustion. This kind of moxa -moxibustion instrument is usually designed with reusable characteristics to reduce medical waste and reduce costs.
[0003] However, in the existing reusable moxa -moxibustion instrument, there is a common technical problem. Specifically, when the moxa stick is burned out during moxa -moxibustion, the user needs to open the bottom cover of the moxa -moxibustion instrument to pour out the ash generated after the moxa stick is burned. The moxa stick is usually fixed in the moxa -moxibustion instrument by a needle to ensure its stability and positional accuracy during the burning process. However, after the moxa stick is burned out, due to the effect of high temperature and chemical substances generated by burning, the residues of the moxa stick often adhere to the needle and are difficult to remove.
[0004] This adhesion phenomenon not only affects the cleanliness and hygiene of the moxa -moxibustion instrument, but also may hinder the stable installation of the new moxa stick, leading to instability or poor effect during moxa -moxibustion. In addition, the long-term accumulation of residues may also cause corrosion or damage to the needle, shortening the service life of the moxa -moxibustion instrument. SUMMARY
[0005] The technical problem to be solved by the utility model is to provide a stone moxa -moxibustion to overcome the deficiencies in the prior art.
[0006] The technical scheme for solving the above technical problem is as follows: a stone moxa -moxibustion, comprising a holding part, a moxa -moxibustion part and a bottom cover, the bottom cover is detachably connected to the bottom of the moxa -moxibustion part, the upper end of the moxa -moxibustion part is elastically connected to the holding part; a plurality of moxa holes are formed in the bottom of the bottom cover, and air inlet holes are formed in the peripheral wall of the bottom cover; a metal cover is fixedly arranged in the moxa -moxibustion part and covers downward, a needle hole is formed in the upper end surface of the metal cover, and a needle is connected to the bottom of the holding part, the lower end of the needle extends into the metal cover through the needle hole.
[0007] The utility model has the advantages that: when cleaning ash, only the bottom cover needs to be opened, one hand holds the holding part, the other hand pulls down the moxa -moxibustion part to drive the metal cover to move downward, the ash of the moxa stick is scraped off from the needle, then the moxa -moxibustion part is released and can be automatically reset under the action of elasticity, the ash of the moxa stick can be quickly removed, and the ash of the moxa stick can be prevented from adhering to the needle.
[0008] On the basis of the above technical scheme, the utility model can also be improved as follows.
[0009] Further, the moxibustion part comprises an outer shell, a movable ring, an outer ring, a middle ring, an inner ring and a spring;
[0010] The top of the outer shell is inwardly bent to form a connecting part connected with the lower end of the movable ring, the lower end surface of the holding part is provided with a first annular groove, the upper end of the movable ring is movably extended in the first annular groove, the inner circumferential wall of the movable ring is provided with a positioning boss, the outer circumferential wall of the middle ring is provided with a limiting boss along the height direction thereof, the upper end surface of the limiting boss is connected with the lower end surface of the positioning boss, and the outer shell is sleeved on the outer side of the middle ring.
[0011] The outer ring is spacedly sleeved on the outer side of the inner ring, the upper end surface of the outer ring is connected with the upper end surface of the inner ring, a second annular groove is formed between the outer ring and the inner ring, and the middle ring is arranged in the second annular groove.
[0012] Further, a T-shaped ring sleeve and a filter element are arranged in the holding part, the lower end of the T-shaped ring sleeve extends into the middle part of the inner ring, the lower end surface of the T-shaped ring sleeve is sealingly arranged between the upper end surface of the metal cover, the plug pin is connected to the lower middle part of the T-shaped ring sleeve through the fixing part, and the middle part of the T-shaped ring sleeve is provided with the filter element.
[0013] The upper end of the movable ring is movably extended in the first annular groove, the inner circumferential wall of the movable ring is provided with a positioning boss, the outer circumferential wall of the middle ring is provided with a limiting boss along the height direction thereof, the upper end surface of the limiting boss is connected with the lower end surface of the positioning boss, and the outer shell is sleeved on the outer side of the middle ring.
[0014] Further, the shell of the holding part comprises an upper half shell and a lower half shell, the T-shaped ring sleeve and the filter element are arranged in the lower half shell, and the upper half shell is detachably connected with the lower half shell.
[0015] The lower end surface of the upper half shell is connected with a cover shell, the fan is arranged in the cover shell, the middle part of the lower end surface of the cover shell is provided with a first through hole, the circumferential wall of the cover shell is provided with a second through hole, the circumferential wall of the T-shaped ring sleeve is provided with a third through hole, the third through hole is located above the filter element, the air inlet end of the fan is sealingly communicated between the first through hole and the filter element, and the air outlet end of the fan is sequentially communicated with the second through hole, the third through hole and the smoke exhaust hole.
[0016] Further, the pin is a ceramic ignition pin, the lower end face of the upper half shell is provided with a first spring probe group, the upper end face of the lower half shell is provided with a first metal contact group, the first spring probe group is in abutting connection with the first metal contact group, the first spring probe group is electrically connected with the circuit board, and the positive and negative poles of the first metal contact group are electrically connected with the positive and negative poles of the pin.
[0017] Further, the bottom of the bottom cover is connected with a stone head.
[0018] Further, the stone head is internally provided with a temperature sensor, the lower end face of the lower half shell is provided with a second spring probe group, the upper end face of the bottom cover is provided with a second metal contact group, the second spring probe group is in abutting connection with the second metal contact group, and the positive and negative poles of the temperature sensor are electrically connected with the positive and negative poles of the second metal contact group; the first spring probe group comprises two pairs of positive and negative spring probes, the first metal contact group comprises two pairs of positive and negative metal contacts, and the positive and negative poles of the second spring probe group are electrically connected with one pair of positive and negative metal contacts.
[0019] Further, the holding part is internally provided with a storage battery, and the peripheral wall of the holding part is provided with a charging port in electrical connection with the storage battery.
[0020] Further, the holding part is in a spherical shape.
[0021] Further, the inner bottom wall of the bottom cover is covered with a filter screen at the moxibustion hole. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is an overall structural schematic diagram of the utility model;
[0023] Figure 2 It is an exploded structural schematic diagram of the utility model Figure 1 ;
[0024] Figure 3 It is an exploded structural schematic diagram of the utility model Figure 2 ;
[0025] Figure 4 It is an exploded structural schematic diagram of the utility model
[0026] Figure 5 It is a moxibustion part cross section structural schematic diagram of the utility model in a normal state;
[0027] Figure 6 It is a moxibustion part cross section structural schematic diagram of the utility model in a dust cleaning state;
[0028] Figure 7 It is a structural schematic diagram of the lower half shell of the utility model;
[0029] Figure 8 It is an exploded state schematic diagram of the T-shaped ring sleeve and filter element of the utility model;
[0030] Figure 9 It is internal circuit structure schematic diagram of the utility model.
[0031] In the drawings, the component list represented by each sign is as follows:
[0032] 1, holding part, 11, upper half shell, 111, first spring probe group, 112, fan, 113, circuit board, 114, control button, 115, cover, 1151, first through hole, 1152, second through hole, 116, storage battery, 117, charging port, 12, lower half shell, 121, pin, 122, first annular groove, 123, smoke exhaust hole, 124, first metal contact group, 125, second spring probe group, 126, T-shaped ring sleeve, 1261, third through hole, 127, fixing piece, 13, filter core, 2, moxa part, 21, metal cover, 211, pinhole, 212, smoke passing hole, 22, outer shell, 221, connecting part, 23, movable ring, 231, positioning boss, 24, outer ring, 241, second annular groove, 242, limiting groove, 243, limiting skirt, 25, middle ring, 251, limiting boss, 26, inner ring, 27, spring, 3, bottom cover, 31, moxa hole, 32, air inlet hole, 33, stone head, 34, temperature sensor, 35, second metal contact group, 36, filter screen, 4, moxa column. DETAILED DESCRIPTION
[0033] The principles and characteristics of the utility model are described below in combination with the drawings, and the examples are only used to explain the utility model and not to limit the scope of the utility model.
[0034] As shown in Figures 1-9 embodiment 1, a stone moxa, comprising holding part 1, moxa part 2 and bottom cover 3, bottom cover 3 is detachably connected to the bottom of moxa part 2, the upper end of moxa part 2 is elastically connected in holding part 1; Bottom cover 3 bottom is provided with a plurality of moxa holes 31, and the peripheral wall of bottom cover 3 is provided with an air inlet hole 32; The downward cover of the metal cover 21 is fixedly arranged in the moxa part 2, the upper end surface of the metal cover 21 is provided with a pinhole 211, the bottom of the holding part 1 is connected with a pin 121, and the lower end of the pin 121 is inserted into the metal cover 21.
[0035] When cleaning ash, only the bottom cover 3 is opened, one hand holds the holding part 1, the other hand pulls down the moxa part 2 to drive the metal cover 21 to move downward, the ash of the moxa column 4 is scraped off from the pin 121, then the moxa part 2 is released and can be automatically reset under the action of elasticity, the technical scheme can quickly remove the ash of the moxa column 4, and can avoid the ash of the moxa column 4 from adhering to the pin 121; In the specific implementation, the bottom cover 3 is rotatably buckled and connected with the moxa part 2.
[0036] Embodiment 2, this embodiment is a further improvement on the basis of embodiment 1, which is as follows:
[0037] The moxa part 2 comprises an outer shell 22, a movable ring 23, an outer ring 24, a middle ring 25, an inner ring 26 and a spring 27;
[0038] The top of the outer shell 22 is inwardly bent to form a connecting part 221 connected with the lower end of the movable ring 23, the lower end surface of the holding part 1 is provided with a first annular groove 122, the upper end of the movable ring 23 is movably telescoped in the first annular groove 122, the inner peripheral wall of the movable ring 23 is provided with a positioning boss 231, the outer peripheral wall of the middle ring 25 is provided with a limiting boss 251 along the height direction thereof, the upper end surface of the limiting boss 251 is connected with the lower end surface of the positioning boss 231, and the outer shell 22 is sleeved outside the middle ring 25; the outer ring 24 is spacedly sleeved outside the inner ring 26, the upper end surface of the outer ring 24 is connected with the upper end surface of the inner ring 26, a second annular groove 241 is formed between the outer ring 24 and the inner ring 26, and the middle ring 25 is arranged in the second annular groove 241;
[0039] The peripheral wall of the outer ring 24 is provided with a limiting groove 242 corresponding to the limiting boss 251, the limiting boss 251 extends out of the limiting groove 242 and moves longitudinally in the limiting groove 242, the upper end surfaces of the inner ring 26 and the outer ring 24 are connected below the holding part 1, the lower end surface of the outer ring 24 extends outwardly to form a limiting skirt 243, and the two ends of the spring 27 abut against the limiting skirt 243 and the connecting part 221 respectively; the metal cover 21 is fixedly arranged inside the middle ring 25 below the inner ring 26.
[0040] When cleaning the ash, one hand holds the holding part 1 and the other hand holds the outer shell 22 to pull it downward, at this time, since the inner ring 26 is fixed with the movable ring 23 through the positioning boss 231, the outer shell 22 drives the inner ring 26 to move downward, since the limiting boss 251 is fixed with the positioning boss 231 after passing through the limiting groove 242, no movement interference occurs between the inner ring 26 and the middle ring 25 during the movement of the outer shell 22 driving the inner ring 26 to move downward, the inner ring 26 drives the metal cover 21 to move downward synchronously during the movement of the inner ring 26 to move downward, and the pin 121 is fixed at the bottom of the holding part 1, so it does not move with the metal cover 21, thereby the metal cover 21 pushes the moxa stick 4 out of the pin 121 during the movement of the metal cover 21 to move downward, and the pin hole 211 scrapes off the ash remaining on the peripheral wall of the pin 121, so as to realize the cleaning effect, the structure is ingenious, and only pulling the outer shell 22 downward can realize the pushing out of the moxa stick 4 and the scraping off effect of the remaining substances on the pin 121.
[0041] Embodiment 3, this embodiment is a further improvement on the basis of embodiment 2, which is as follows:
[0042] A T-shaped ring sleeve 126 and a filter core 13 are arranged in the holding part 1, the lower end of the T-shaped ring sleeve 126 extends into the middle of the inner ring 26, the lower end surface of the T-shaped ring sleeve 126 is arranged in sealing with the upper end surface of the metal cover 21, the pin 121 is connected to the middle of the lower end of the T-shaped ring sleeve 126 through a fixing part 127, and the middle of the T-shaped ring sleeve 126 is arranged with the filter core 13; a fan 112 and a circuit board 113 are arranged in the holding part 1, a control button 114 electrically connected with the circuit board 113 is arranged on the wall of the holding part 1, the fan 112 is arranged above the filter core 13, and the fan 112 is electrically connected with the circuit board 113.
[0043] A plurality of smoke passing holes 212 are arranged on the top of the metal cover 21, and a smoke discharging hole 123 is arranged on the wall of the holding part 1, the air inlet hole 32, the moxa hole 31, the smoke passing hole 212, the filter core 13, the air inlet end of the fan 112, the air outlet end of the fan 112 and the smoke discharging hole 123 are sequentially communicated to form an air flow channel.
[0044] Through suction of the fan 112, air enters into the base from the air inlet hole 32 to provide oxygen required by combustion of the moxa stick 4, the moxa stick 4 burns to act on the human skin through the moxa hole 31, then enters into the T-shaped ring sleeve 126 through the smoke passing hole 212 on the top of the metal cover 21, then enters into the air inlet end and the air outlet end of the fan 112 through the filter core 13, and then is discharged through the smoke discharging hole 123, thereby achieving a good smoke filtering effect.
[0045] In specific implementation, a ring-shaped boss is arranged in the middle of the T-shaped ring sleeve 126, the filter core 13 is arranged on the ring-shaped boss to support the filter core 13, and rubber sealing rings are arranged between the filter core 13 and the ring-shaped boss and between the lower end surface of the T-shaped ring sleeve 126 and the upper end surface of the metal cover 21 to achieve sealing effect and avoid unfiltered smoke from seeping out through gaps.
[0046] In the embodiment 4, further improvement is made on the basis of the embodiment 3, and the specific implementation is as follows:
[0047] The shell of the holding part 1 includes an upper half shell 11 and a lower half shell 12; the upper half shell 11 is detachably connected with the lower half shell 12, and the T-shaped ring sleeve 126 and the filter core 13 are arranged in the lower half shell 12;
[0048] The lower end surface of the upper half shell 11 is connected with a cover shell 115, the fan 112 is arranged in the cover shell 115, the middle of the lower end surface of the cover shell 115 is provided with a first through hole 1151, the wall of the cover shell 115 is provided with a second through hole 1152, the wall of the T-shaped ring sleeve 126 is provided with a third through hole 1261, the third through hole 1261 is located above the filter core 13, the air inlet end of the fan 112 is in sealing communication between the first through hole 1151 and the filter core 13, and the air outlet end of the fan 112 is in communication with the second through hole 1152, the third through hole 1261 and the smoke discharging hole 123 in sequence.
[0049] After the air flow enters into the T-shaped ring 126 through the smoke hole 212 on the metal cover 21, the air flow is filtered by the filter core 13, enters into the air inlet end of the fan 112 through the first through hole 1151, and then sequentially passes through the second through hole 1152 and the third through hole 1261, and is discharged through the smoke outlet hole 123.
[0050] Embodiment 5, this embodiment is a further improvement on the basis of embodiment 4, which is as follows:
[0051] The pin 121 is a ceramic ignition pin, the lower end surface of the upper half shell 11 is provided with a first spring probe group 111, the upper end surface of the lower half shell 12 is provided with a first metal contact group 124, the first spring probe group 111 is in contact with the first metal contact group 124, the first spring probe group 111 is electrically connected with the circuit board 113, and the positive and negative poles of the first metal contact group 124 are electrically connected with the positive and negative poles of the pin 121.
[0052] The design of the ceramic ignition does not need to manually ignite with a naked flame, which improves the convenience, in addition, the dynamic electrical connection between the upper half shell 11 and the lower half shell 12 is realized by the first spring probe group 111 and the first metal contact group 124, which does not affect the disassembly of the upper half shell 11 and the lower half shell 12, and does not need to plug and unplug the line, which is more convenient.
[0053] Embodiment 6, this embodiment is a further improvement on the basis of embodiment 5, which is as follows:
[0054] The bottom cover 3 is connected with a stone head 33. It can be moxibustion physiotherapy, and the stone head 33 can be heated by the ignited moxa stick 4 at the same time of moxibustion physiotherapy, and the stone head 33 can be massaged, so that the physiotherapy effect is better.
[0055] Embodiment 7, this embodiment is a further improvement on the basis of embodiment 6, which is as follows:
[0056] The temperature sensor 34 is embedded in the stone head 33, the second spring probe group 125 is arranged on the lower end face of the lower half shell 12, the second metal contact group 35 is arranged on the upper end face of the bottom cover 3, the second spring probe group 125 is in abutment with the second metal contact group 35, and the positive and negative electrodes of the temperature sensor 34 are electrically connected with the positive and negative electrodes of the second metal contact group 35 respectively; the first spring probe group 111 comprises two pairs of positive and negative electrode spring probes, the first metal contact group 124 comprises two pairs of positive and negative electrode metal contacts, and the positive and negative electrodes of the second spring probe group 125 are electrically connected with one pair of positive and negative electrode metal contacts respectively.
[0057] Since the temperature closer to the skin is closer to the body temperature, the temperature measurement is more accurate by embedding the temperature sensor 34 in the stone head 33 directly, and the dynamic electrical connection between the lower half shell 12 and the bottom cover 3 is realized through the second spring probe group 125 and the second metal contact group 35, so that the disassembly of the lower half shell 12 and the bottom cover 3 is not affected, and the line plugging is not required, and the convenience is higher.
[0058] In the embodiment 8, on the basis of any one of the embodiments 1 to 7, further improvements are made, and the specific improvements are as follows:
[0059] The battery 116 is arranged in the holding part 1, and the charging port 117 electrically connected with the battery 116 is arranged on the peripheral wall of the holding part 1. Without external power supply line, the practicality is more convenient and safe.
[0060] In the embodiment 9, on the basis of any one of the embodiments 1 to 8, further improvements are made, and the specific improvements are as follows:
[0061] The holding part 1 is spherical. The spherical holding part 1 can be comfortably held, is easy to bear stress and not easy to slip, and is more tightly gripped.
[0062] In the embodiment 10, on the basis of any one of the embodiments 1 to 9, further improvements are made, and the specific improvements are as follows:
[0063] The filter screen 36 is arranged on the inner bottom wall of the bottom cover 3 at the moxibustion hole 31. The medicine of the heat moxibustion can normally contact the skin, which does not affect the heat moxibustion physiotherapy and can also avoid the ash from falling and scalding the skin.
[0064] Although the embodiments of the utility model have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limiting the utility model, and the ordinary skilled in the art can change, modify, replace and transform the above embodiments within the scope of the utility model.
Claims
1. A stone spicula, characterized in that, The application relates to a moxa stick, which comprises a holding part (1), a moxa part (2) and a bottom cover (3), the bottom cover (3) is detachably connected to the bottom of the moxa part (2), the upper end of the moxa part (2) is elastically connected to the holding part (1), the bottom of the bottom cover (3) is provided with a plurality of moxa holes (31), the peripheral wall of the bottom cover (3) is provided with air inlet holes (32), a metal cover (21) is fixedly arranged in the moxa part (2) and covers downward, a needle hole (211) is formed in the middle of the upper end surface of the metal cover (21), a needle (121) is connected to the bottom of the holding part (1), and the lower end of the needle (121) extends into the metal cover (21) through the needle hole (211).
2. The stone cupping of claim 1, wherein, The moxa part (2) comprises an outer shell (22), a movable ring (23), an outer ring (24), a middle ring (25), an inner ring (26) and a spring (27). The top of the outer shell (22) is inwardly bent to form a connecting part (221) connected to the lower end of the movable ring (23), the lower end surface of the holding part (1) is provided with a first annular groove (122), the upper end of the movable ring (23) is movably arranged in the first annular groove (122), the inner peripheral wall of the movable ring (23) is provided with a positioning boss (231), the outer peripheral wall of the middle ring (25) is provided with a limiting boss (251) along the height direction, the upper end surface of the limiting boss (251) is connected to the lower end surface of the positioning boss (231), and the outer shell (22) is arranged outside the middle ring (25); the outer ring (24) is arranged outside the inner ring (26) in a spaced mode, the upper end surface of the outer ring (24) is connected to the upper end surface of the inner ring (26), a second annular groove (241) is formed between the outer ring (24) and the inner ring (26), and the middle ring (25) is arranged in the second annular groove (241); The peripheral wall of the outer ring (24) is provided with a limiting groove (242) corresponding to the limiting boss (251), the limiting boss (251) extends out of the limiting groove (242) and moves longitudinally in the limiting groove (242), the upper end surfaces of the inner ring (26) and the outer ring (24) are connected below the holding part (1), the lower end surface of the outer ring (24) extends outward to form a limiting skirt (243), and the two ends of the spring (27) abut against the limiting skirt (243) and the connecting part (221) respectively; the metal cover (21) is fixedly arranged in the middle ring (25) and below the inner ring (26).
3. A stone cupping according to claim 2, wherein, A T-shaped ring sleeve (126) and a filter core (13) are arranged in the holding part (1), the lower end of the T-shaped ring sleeve (126) extends into the middle part of the inner ring (26), the lower end surface of the T-shaped ring sleeve (126) is arranged in sealing with the upper end surface of the metal cover (21), the pin (121) is connected to the middle part of the lower end of the T-shaped ring sleeve (126) through a fixing part (127), and the middle part of the T-shaped ring sleeve (126) is provided with the filter core (13); a fan (112) and a circuit board (113) are arranged in the holding part (1), a control button (114) electrically connected with the circuit board (113) is arranged on the peripheral wall of the holding part (1), and the fan (112) is arranged above the filter core (13) and electrically connected with the circuit board (113); A plurality of smoke passing holes (212) are arranged on the top of the metal cover (21), and a smoke discharging hole (123) is arranged on the peripheral wall of the holding part (1); the air inlet hole (32), the moxibustion hole (31), the smoke passing hole (212), the filter core (13), the air inlet end of the fan (112), the air outlet end of the fan (112) and the smoke discharging hole (123) are sequentially communicated to form an air flow channel.
4. The stone cupping of claim 3, wherein, The shell of the holding part (1) comprises an upper half shell (11) and a lower half shell (12); the upper half shell (11) is detachably connected with the lower half shell (12), and the T-shaped ring sleeve (126) and the filter core (13) are arranged in the lower half shell (12); A cover shell (115) is connected to the lower end surface of the upper half shell (11), the fan (112) is arranged in the cover shell (115), the middle part of the lower end surface of the cover shell (115) is provided with a first through hole (1151), the peripheral wall of the cover shell (115) is provided with a second through hole (1152), the peripheral wall of the T-shaped ring sleeve (126) is provided with a third through hole (1261), the third through hole (1261) is located above the filter core (13), the air inlet end of the fan (112) is in sealing communication between the first through hole (1151) and the filter core (13), and the air outlet end of the fan (112) is sequentially communicated with the second through hole (1152), the third through hole (1261) and the smoke discharging hole (123).
5. A stone cupping according to claim 4, wherein, The pin (121) is a ceramic ignition pin, a first spring probe group (111) is arranged on the lower end surface of the upper half shell (11), a first metal contact group (124) is arranged on the upper end surface of the lower half shell (12), the first spring probe group (111) is in abutting connection with the first metal contact group (124), the first spring probe group (111) is electrically connected with the circuit board (113), and the positive and negative poles of the first metal contact group (124) are electrically connected with the positive and negative poles of the pin (121).
6. A stone cupping according to claim 5, characterized in that, The bottom of the bottom cover (3) is connected with a stone head (33).
7. A stone cupping according to claim 6, characterized in that, The temperature sensor (34) is embedded in the stone head (33), the lower end surface of the lower half shell (12) is provided with a second spring probe group (125), the upper end surface of the bottom cover (3) is provided with a second metal contact group (35), the second spring probe group (125) is in contact with the second metal contact group (35), and the positive and negative electrodes of the temperature sensor (34) are electrically connected with the positive and negative electrodes of the second metal contact group (35) respectively; the first spring probe group (111) comprises two pairs of positive and negative electrode spring probes, the first metal contact group (124) comprises two pairs of positive and negative electrode metal contacts, and the positive and negative electrodes of the second spring probe group (125) are electrically connected with one pair of positive and negative electrode metal contacts respectively.
8. The stone cupping of claim 1, wherein, The holding part (1) is provided with a battery (116), and the peripheral wall of the holding part (1) is provided with a charging port (117) electrically connected with the battery (116).
9. The stone cupping of claim 1, wherein, The holding part (1) is spherical.
10. The stone cupping of claim 1, wherein, The inner bottom wall of the bottom cover (3) is covered with a filter screen (36) at the moxibustion hole (31).