Handheld moxibustion massager
The nested structure of the inner sleeve and the outer sleeve and the touch vibration method solve the problems of burns and ash falling caused by holding moxa sticks, achieve the uniformity and safety of open flame moxibustion, enhance the penetration effect of moxa smoke, and simplify the massage operation.
Patent Information
- Application Number
- CN202511053823.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing moxibustion technology, holding moxa sticks is prone to burns, ash falls, and the massage operation is cumbersome and ineffective. The moxibustion box cannot simultaneously achieve open flame moxibustion and prevent ash falling.
It adopts a nested structure of inner sleeve and outer sleeve, the moxa stick is placed eccentrically and rotates dynamically, the ashes are shaken off by the touch vibration method, the moxa smoke is controlled by the suction pipe and exhaust fan, and the self-rotating massage piece realizes simple massage.
It realizes open flame moxibustion without isolation net, avoids ash burns, enhances the penetration effect of moxa smoke, simplifies massage operation, and improves the uniformity and safety of moxibustion.
Smart Images

Figure CN120617047A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of moxibustion massage, and in particular relates to a handheld moxibustion massager. Background Art
[0002] Moxibustion is a method of roasting or fumigating acupuncture points on the human body surface by burning moxa sticks or moxa wool. The light and heat radiation energy and moxa smoke oil generated by them penetrate into the acupuncture points and local parts of the body, thereby warming the meridians and promoting health and wellness. The effect of open flame moxibustion is significantly better than that of electric heating moxibustion. Therefore, moxibustion is mostly performed by using a moxibustion box with built-in burning moxa sticks.
[0003] However, there are many problems with existing moxibustion technology: (1) The moxibustion effect of holding the moxa stick directly is better, but it is not easy to control the distance between the moxa stick and the human skin. It is easy to cause burns if the distance is too close or affect the moxibustion effect if it is too far. In addition, the moxa stick burning ash cannot be cleaned in time. If the ash falls directly onto the surface of the human skin, it is easy to cause burns. The moxibustion smoke is diffused everywhere, affecting the moxibustion environment and the penetration effect of the moxa smoke. (2) The moxibustion box usually fixes the moxa stick inside and uses a filter to block the moxa stick ashes. The moxibustion box is then placed on the surface of the human skin. Although it can effectively prevent the ashes from falling onto the human skin, it will also seriously affect the effect of moxibustion. The heat is mainly transferred through the filter, which is significantly different from the effect of open flame moxibustion. It is impossible to achieve the effects of open flame moxibustion and preventing ashes from falling at the same time. (3) Massaging the area near the acupuncture points while performing moxibustion can enhance the experience and therapeutic effect. Existing moxibustion massage techniques are usually complicated to operate. Some techniques require manual movement of the moxibustion box to achieve massage. This type of massage method has poor effect and is laborious to operate. Some other techniques require the use of complex control systems to achieve massage movements. Summary of the Invention
[0004] In response to the above technical problems, the present invention provides a handheld moxibustion massager, which achieves moxibustion by nesting an inner sleeve and an outer sleeve, places the moxa stick eccentrically, and changes the moxa stick from static to dynamic, making the open flame moxibustion more uniform. It also uses a clever touch vibration method to shake off and collect the burning ashes of the moxa stick, which can not only achieve open flame moxibustion without an isolation net, but also effectively avoid the risk of ashes falling onto the user's skin and causing burns, effectively solving the problem that the moxibustion box in the prior art cannot simultaneously achieve open flame moxibustion and prevent ashes from falling, and the massage effect can be achieved with only a simple pressing action.
[0005] The technical solution adopted by the present invention is as follows: This solution provides a handheld moxibustion massager, which consists of an inner sleeve and an outer sleeve rotatably nested in the outer wall of the inner sleeve. The outer sleeve has an annular array on the upper wall with air inlet hole one, and the inner sleeve has an annular array on the upper wall with air inlet hole two. Air inlet hole one and air inlet hole two are arranged correspondingly. The outer sleeve has an annular array on the circumferential outer wall with an intake pipe fixedly provided. The lower end of the intake pipe opens toward the lower edge of the inner sleeve. An annular tube is provided on the upper edge of the side wall of the outer sleeve. The upper ends of the intake pipes are connected to the annular tubes. An exhaust fan is fixed on the upper wall of the outer sleeve. The air inlet end of the exhaust fan is connected to the intake pipe. The exhaust end of the exhaust fan is detachably provided with a filter. The exhaust fan can absorb the moxa smoke emitted from the inner sleeve.
[0006] The ash sweeping swivel is provided on the power shaft for rotation, and the ash sweeping swivel is located above the semi-arc baffle. The power shaft and the ash sweeping swivel are arranged in a transmission manner. An L-shaped ash sweeping plate is fixedly provided in a circular array on the outer wall of the inner sleeve, and filter holes are provided in the lower wall and side walls of the L-shaped ash sweeping plate.
[0007] A vibration plate is fixed on the inner wall of the inner sleeve, and the vibration plate is located directly above the semi-arc baffle. A vibration bar is fixed on the side wall array at the end of the vibration plate. The vibration bar is made of elastic metal and is located between the upper wall of the baffle and the plane of the lower wall of the upper rotating ring, and the outer end of the vibration bar is located on the movement path of the positioning pin. When the upper rotating ring drives the positioning pin to move, the positioning pin will move to the vibration bar. At this time, the moxa stick on the positioning pin is located above the semi-arc baffle. After continuing to move, the positioning pin contacts the vibration bar, causing the vibration bar to deform. After the positioning pin passes over the vibration bar, the vibration bar resets and rebounds the positioning pin, thereby causing the positioning pin to vibrate, so that the ashes of the burning moxa stick on the positioning pin can quickly fall into the semi-arc baffle.
[0008] An ash retaining ring is fixedly provided on the inner circumferential wall of the inner sleeve. The ash retaining ring is located below the L-shaped ash sweeping plate. The end of the L-shaped ash sweeping plate is located above the ash retaining ring. The ash retaining ring can receive the moxa stick ashes thrown off the L-shaped ash sweeping plate.
[0009] A lower swivel is provided on the lower wall of the inner sleeve for rotation. A connecting rod is fixedly connected between the inner circumferential wall of the lower swivel and the lower end of the power shaft. The power shaft drives the lower swivel to rotate synchronously through the connecting rod. A gear ring is fixed on the outer circumferential wall of the lower swivel.
[0010] A corrugated ring is fixedly provided on the lower edge of the outer side wall of the inner sleeve, and a self-spinning massage piece is provided in an annular array inside the corrugated ring in an inclined sliding manner. The self-spinning massage piece is coordinated with the lower rotating ring. Specifically, an annular array on the inner wall of the corrugated ring is distributed and fixed with an inclined guide groove, and the self-spinning massage piece is inclined and slidably engaged with the inclined guide groove. When the self-spinning massage piece is subjected to an upward extrusion force, it will contact and mesh with the gear ring and produce a self-spinning effect, thereby massaging the area around the moxibustion area.
[0011] The beneficial effects achieved by the present invention are as follows: (1) The present invention realizes moxibustion by nesting the inner sleeve and the outer sleeve, placing the moxa stick eccentrically, and changing the moxa stick from static to dynamic, so that the open-fire moxibustion is more uniform, and adopts an ingenious touch vibration method to shake off and collect the burning ashes of the moxa stick, and collects the burning ashes of the moxa stick by shaking off and quickly sweeping. It can realize open-fire moxibustion without an isolation net and effectively avoid the risk of ashes falling on the user's skin and causing burns, effectively solving the problem that the moxibustion box in the prior art cannot simultaneously realize open-fire moxibustion and prevent ashes from falling; (2) The inner sleeve forms a space for moxa smoke fumigation and ironing, and the moxa smoke can effectively penetrate the acupuncture points and the body, and there is no filter to isolate it, so the moxa smoke fumigation and ironing effect is better; (3) The moxa smoke flows through the suction pipe and the annular pipe to the exhaust fan and is discharged after being filtered by the filter, which can effectively control the spread of moxa smoke. At the same time, the suction pipe arranged in the annular array makes the outer wall of the outer sleeve a corrugated structure, which can increase the friction of holding the hand and facilitate the operator's hand-held operation; (4) The outer sleeve and the inner sleeve rotate relative to each other to adjust the area of the connection between the air inlet hole 1 and the air inlet hole 2, thereby adjusting the air intake volume; (5) The positioning pin comes into contact with the vibration bar, causing the vibration bar to deform. After the positioning pin passes over the vibration bar, the vibration bar resets and rebounds the positioning pin, causing the positioning pin to vibrate, so that the ashes of the burning moxa stick on the positioning pin can quickly fall into the semi-arc baffle; (6) The ash retaining ring can receive the moxa stick ashes falling from the L-shaped ash sweeping plate; (7) The self-spinning massage piece only needs a simple pressing action to make the driven gear engage with the gear ring, and the lower rotating ring can drive the massage plate and massage ball to rotate, massaging the area around the moxibustion area, effectively solving the problem of complex operation and poor massage effect of the existing technology. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the structure of a handheld moxibustion massager proposed by the present invention Figure 1 ; Figure 2 This is a schematic diagram of the structure of a handheld moxibustion massager proposed by the present invention Figure 2 ; Figure 3 A half-section structural diagram of a handheld moxibustion massager proposed by the present invention; Figure 4 This is a perspective structural diagram of the interior of the inner sleeve of the present invention; Figure 5 Schematic diagram of the structure of the upper rotating ring in the present invention; Figure 6 for Figure 3 A partial enlarged view of part A in FIG; Figure 7 Schematic diagram of the structure of the dust sweeping rotating ring in the present invention; Figure 8 Schematic diagram of the structure of the vibration plate in the present invention; Figure 9 It is a structural diagram of the self-spinning massage element in the present invention.
[0013] Among them, 1. Inner sleeve, 11. Air inlet 2, 12. Power shaft, 13. Semi-arc baffle, 131. Ash bar, 132. Sub gear 1, 133. Mother gear 2, 14. Upper swivel, 141. Positioning pin, 142. Baffle, 143. Barb, 15. Ash sweeping swivel, 151. Sub gear 2, 152. L-shaped ash sweeping plate, 153. Filter hole, 16. Mother gear 1, 17. Vibration plate, 171 , vibration bar, 18, dust blocking ring, 19, lower swivel, 191, connecting rod, 192, gear ring, 10, corrugated ring, 101, spinning massage part, 102, inclined guide groove, 103, slider, 104, driven gear, 105, massage plate, 106, massage ball, 2, outer sleeve, 21, air inlet hole 1, 22, suction pipe, 23, annular pipe, 24, exhaust fan, 25, filter, 26, motor.
[0014] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention. DETAILED DESCRIPTION
[0015] Example 1: Please refer to Figures 1-9, this embodiment provides a handheld moxibustion massager, which consists of an inner sleeve 1 and an outer sleeve 2 rotatably nested on the outer wall of the inner sleeve 1. The outer sleeve 2 has four air inlet holes 21 in a circular array on the upper wall, and the inner sleeve 1 has four air inlet holes 11 in a circular array on the upper wall. The air inlet holes 21 and the air inlet holes 11 are arranged correspondingly. The outer sleeve 2 and the inner sleeve 1 can rotate relative to each other to adjust the area of the connection between the air inlet holes 21 and the air inlet holes 11, thereby adjusting the air intake volume. The outer sleeve 2 is fixedly provided with an air intake pipe 22 in a circular array on the outer wall of the outer sleeve 2. The lower end opening of the air intake pipe 22 faces the lower edge of the inner sleeve 1, and the upper edge of the side wall of the outer sleeve 2 An annular tube 23 is provided, and the upper ends of the suction pipes 22 are connected to the annular tube 23. An exhaust fan 24 is fixedly provided on the upper wall of the outer sleeve 2. The air inlet end of the exhaust fan 24 is connected to the suction pipe 22, and the exhaust end of the exhaust fan 24 is detachably provided with a filter 25. The exhaust fan 24 can absorb the moxa smoke emitted from the inner sleeve 1, and suck it into the exhaust fan 24 through the suction pipe 22 and the annular tube 23, and then be discharged after being filtered by the filter 25, which can effectively control the spread of moxa smoke. At the same time, the suction pipes 22 arranged in the annular array make the outer wall of the outer sleeve 2 a corrugated structure, which can increase the hand-held friction and facilitate hand-held operation by the operator.
[0016] The middle part of the inner top wall of the inner sleeve 1 is provided with a power shaft 12 for vertical rotation, and the upper wall of the outer sleeve 2 is fixedly provided with a motor 26. The output shaft of the motor 26 passes through the outer sleeve 2 and the inner sleeve 1 and is coaxially fixedly connected to the upper end of the power shaft 12. A semi-arc baffle 13 is fixedly provided on the lower half of the inner side wall of the inner sleeve 1. The power shaft 12 rotates through the semi-arc baffle 13. The upper wall edge of the semi-arc baffle 13 is fixedly provided with an ash blocking strip 131. An upper swivel 14 is coaxially fixed on the power shaft 12. The upper swivel 14 is close to the inner top wall of the inner sleeve 1. A positioning pin 141 is fixedly provided on the lower wall edge of the upper swivel 14. A baffle 142 is fixed on the positioning pin 141. A barb 143 is provided on the side wall of the positioning pin 141. The positioning pin 141 is used to fix the moxa stick. The barb 143 can prevent the moxa stick from falling off. A dust sweeping swivel 15 is rotatably provided on the power shaft 12. The dust sweeping swivel 15 is positioned at the Above the semi-arc baffle 13, the power shaft 12 and the ash sweeping swivel 15 are arranged for transmission, and the specific transmission method is: a mother gear 16 is coaxially fixed on the power shaft 12, and a sub-gear 132 is rotatably provided on the upper wall of the semi-arc baffle 13, the mother gear 16 and the sub-gear 132 are meshed for transmission, and the number of teeth of the mother gear 16 is greater than the number of teeth of the sub-gear 132, and a mother gear 2 133 is coaxially fixed on the sub-gear 132, and a sub-gear 2 151 is coaxially fixed on the lower wall of the ash sweeping swivel 15, and the mother gear 2 133 and the sub-gear 2 151 are meshed for transmission, and the number of teeth of the mother gear 2 133 is greater than the number of teeth of the sub-gear 2 151. The above arrangement enables the ash sweeping swivel 15 to rotate rapidly, and an L-shaped ash sweeping plate 152 is fixed in a circular array on the outer circumference of the ash sweeping swivel 15, and the lower wall and side wall of the L-shaped ash sweeping plate 152 are both provided with filter holes 153 in an array.
[0017] A vibration plate 17 is fixed on the inner wall of the inner sleeve 1. The vibration plate 17 is located just above the semi-arc baffle 13. A vibration bar 171 is fixed to the side wall array at the end of the vibration plate 17. The vibration bar 171 is made of elastic metal. In this embodiment, stainless steel is used. The vibration bar 171 is located between the upper wall of the baffle 142 and the plane where the lower wall of the upper rotating ring 14 is located, and the outer end of the vibration bar 171 is located on the movement path of the positioning pin 141. When the upper rotating ring 14 drives the positioning pin 141 to move, the positioning pin 141 It will move to the vibration bar 171. At this time, the moxa stick on the positioning pin 141 is located above the semi-arc baffle 13. After continuing to move, the positioning pin 141 comes into contact with the vibration bar 171, causing the vibration bar 171 to deform. After the positioning pin 141 passes over the vibration bar 171, the vibration bar 171 resets and rebounds the positioning pin 141, causing the positioning pin 141 to vibrate, so that the ashes of the burning moxa stick on the positioning pin 141 can quickly fall into the semi-arc baffle 13.
[0018] An ash retaining ring 18 is fixedly provided on the inner circumferential wall of the inner sleeve 1 , which is located below the L-shaped ash sweeping plate 152 , and the end of the L-shaped ash sweeping plate 152 is located above the ash retaining ring 18 . The ash retaining ring 18 can receive the moxa ash falling from the L-shaped ash sweeping plate 152 .
[0019] A lower swivel ring 19 is rotatably provided on the lower wall of the inner sleeve 1. A connecting rod 191 is fixedly connected between the inner circumferential wall of the lower swivel ring 19 and the lower end of the power shaft 12. The power shaft 12 drives the lower swivel ring 19 to rotate synchronously through the connecting rod 191. A gear ring 192 is fixedly sleeved on the outer circumferential wall of the lower swivel ring 19.
[0020] A corrugated ring 10 is fixedly provided at the lower edge of the outer wall of the inner sleeve 1. A self-spinning massage member 101 is provided in an annular array in the corrugated ring 10 and slides obliquely. The self-spinning massage member 101 is arranged in conjunction with the lower rotating ring 19. Specifically, an annular array is distributed and fixed on the inner wall of the corrugated ring 10 and is provided with an inclined guide groove 102. The self-spinning massage member 101 includes a slider 103, a driven gear 104, a massage plate 105 and a massage ball 106. The slider 103 is obliquely slidably engaged with the inclined guide groove 102, and the driven gear 104 rotates. The massage plate 105 is fixedly connected to the lower wall of the driven gear 104, and the massage ball 106 is fixedly arranged on the lower wall of the massage plate 105. When the massage ball 106 is subjected to an upward extrusion force, the slider 103 will slide upward along the inclined guide groove 102, so that the driven gear 104 is engaged with the gear ring 192. The gear ring 192 can drive the massage plate 105 and the massage ball 106 to rotate through the driven gear 104, thereby massaging the area around the moxibustion area.
[0021] The specific usage process of this solution is as follows: before performing moxibustion on the user, first insert the moxa stick into the inner sleeve 1 and insert it into the positioning pin 141, so that the upper end of the moxa stick hits the baffle 142, and the barb 143 can prevent the moxa stick from falling off. Then the operator holds the inner sleeve 1 and the outer sleeve 2 with both hands and rotates them to adjust the area of the connecting area between the air inlet hole 1 21 and the air inlet hole 2 11, thereby adjusting the air intake volume.
[0022] Then start the motor 26 and the exhaust fan 24, hold the outer sleeve 2, and lightly touch the lower end of the inner sleeve 1 (i.e., the massage ball 106) to the acupuncture point to be moxibustioned, and then you can start moxibustion on the user. The motor continues to run, causing the power shaft 12 to rotate continuously, and the power shaft 12 drives the upper rotating ring 14, the mother gear 16 and the lower rotating ring 19 to rotate continuously.
[0023] When the upper rotating ring 14 rotates, it drives the moxa stick on the positioning pin 141 to revolve around the power shaft 12, and the moxa stick changes from static to dynamic. This setting method can make the open flame moxibustion more uniform. When the moxa stick is located in the area outside the semi-arc baffle 13, the moxa stick is directly connected to the user's skin, and open flame moxibustion is performed on the acupuncture points. When the positioning pin 141 moves to the vibration bar 171, the moxa stick on the positioning pin 141 is located above the semi-arc baffle 13. After continuing to move, the positioning pin 141 comes into contact with the vibration bar 171, causing the vibration bar 171 to deform. After the positioning pin 141 passes over the vibration bar 171, the vibration bar 171 resets and rebounds the positioning pin 141, thereby causing the positioning pin 141 to vibrate, so that the ashes of the burning moxa stick on the positioning pin 141 can quickly fall into the semi-arc baffle 13.
[0024] When the mother gear 16 rotates, it drives the sub-gear 132 to rotate, so that the mother gear 2 133 rotates, thereby making the sub-gear 2 151 drive the ash sweeping swivel 15 to rotate rapidly, thereby making the L-shaped ash sweeping plate 152 rotate rapidly, and the L-shaped ash sweeping plate 152 moves rapidly under the moxa stick. Since the vibration bar 171 vibrates the positioning pin 141, most of the ashes will fall directly onto the semi-arc baffle 13. Therefore, the moxa stick generally does not drop ashes in the area outside the semi-arc baffle 13. When ashes are accidentally dropped, the L-shaped ash sweeping plate 152 rotates rapidly to catch and sweep away the dropped ashes. The L-shaped ash sweeping plate 152 is provided with a filter hole 153 to avoid more disturbed airflow caused by the rotation of the L-shaped ash sweeping plate 152. The L-shaped ash sweeping plate 152 throws the ashes on it into the ash baffle ring 18, thereby effectively preventing the moxa stick from dropping ashes onto the user's skin in the area outside the semi-arc baffle 13, thereby avoiding burns.
[0025] The above process uses two methods, shaking off and rapid sweeping, to collect the ashes of the burning moxa sticks. This can not only realize open flame moxibustion without an isolation net, but also effectively avoid the risk of ashes falling onto the user's skin and causing burns.
[0026] The moxa smoke fumigates the user's acupuncture points inside the inner sleeve 1 and flows out from the gaps in the corrugated ring 10. The exhaust fan 24 absorbs the moxa smoke, which is sucked into the exhaust fan 24 through the suction pipe 22 and the annular pipe 23 and discharged after being filtered through the filter 25. This can effectively control the spread of moxa smoke. At the same time, the suction pipe 22 arranged in the annular array makes the outer wall of the outer sleeve 2 a corrugated structure, which can increase the hand-held friction and facilitate the operator's hand-held operation.
[0027] When the lower rotating ring 19 rotates, the gear ring 192 rotates synchronously. When it is necessary to massage the skin around the moxibustion area, the operator holds the outer sleeve 2 and applies force toward the skin. When the massage ball 106 is subjected to an upward extrusion force, the slider 103 slides obliquely upward along the inclined guide groove 102, so that the driven gear 104 engages with the gear ring 192. The gear ring 192 can drive the massage plate 105 and the massage ball 106 to rotate through the driven gear 104, thereby massaging the area around the moxibustion area.
[0028] The present invention and its embodiments are described above. Such description is not restrictive. What is shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto.
Claims
1. A handheld moxibustion massager, characterized by: The handheld moxibustion massager comprises an inner sleeve (1) and an outer sleeve (2) rotatably nested in the outer wall of the inner sleeve (1); a power shaft (12) is provided in the middle of the inner top wall of the inner sleeve (1) for vertical rotation; a semi-arc baffle (13) is fixedly provided on the lower half of the inner side wall of the inner sleeve (1); an upper rotating ring (14) is coaxially fixedly provided on the power shaft (12); a positioning pin (141) is fixedly provided on the lower wall edge of the upper rotating ring (14); the upper rotating ring (14) is close to the inner top wall of the inner sleeve (1); and a semi-arc baffle (13) is fixedly provided on the lower half of the inner side wall of the inner sleeve (1). A dust sweeping rotating ring (15) is provided, the dust sweeping rotating ring (15) is located above the semi-arc baffle (13), the power shaft (12) and the dust sweeping rotating ring (15) are arranged for transmission, an L-shaped dust sweeping plate (152) is fixedly provided in an annular array on the outer circumference of the dust sweeping rotating ring (15), a vibration plate (17) is fixedly provided on the inner side wall of the inner sleeve (1), the vibration plate (17) is located just above the semi-arc baffle (13), a vibration bar (171) is fixedly provided in an array on the side wall of the end of the vibration plate (17), and the outer end of the vibration bar (171) is located on the motion path of the positioning pin (141).
2. A handheld moxibustion massager according to claim 1, characterized in that: A lower rotating ring (19) is rotatably provided on the lower wall of the inner sleeve (1), and the lower rotating ring (19) is fixedly connected to the lower end of the power shaft (12).
3. A handheld moxibustion massager according to claim 2, characterized in that: A corrugated ring (10) is fixedly provided on the lower edge of the outer wall of the inner sleeve (1), and a self-spinning massage piece (101) is provided in an annular array inside the corrugated ring (10) in an inclined and sliding manner. The self-spinning massage piece (101) is arranged in cooperation with the lower rotating ring (19).
4. A handheld moxibustion massager according to claim 1, characterized in that: The lower wall and side walls of the L-shaped dust sweeping plate (152) are both provided with filter holes (153) in an array.
5. The handheld moxibustion massager according to claim 1, characterized in that: An ash retaining ring (18) is fixedly provided on the inner circumferential wall of the inner sleeve (1), and an end portion of the L-shaped ash sweeping plate (152) is located above the ash retaining ring (18).
6. The handheld moxibustion massager according to claim 1, characterized in that: An air suction pipe (22) is fixedly provided in an annular array on the circumferential outer wall of the outer sleeve (2), and the lower end opening of the air suction pipe (22) faces the lower edge of the inner sleeve (1).
7. The handheld moxibustion massager according to claim 1, characterized in that: A motor (26) is fixedly provided on the upper wall of the outer sleeve (2), and an output shaft of the motor (26) passes through the outer sleeve (2) and the inner sleeve (1) and is coaxially fixedly connected to the upper end of the power shaft (12).
8. The handheld moxibustion massager according to claim 1, characterized in that: The outer sleeve (2) has an annular array of air inlet holes (21) on its upper wall, and the inner sleeve (1) has an annular array of air inlet holes (11) on its upper wall. The air inlet holes (21) and the air inlet holes (11) are arranged correspondingly.