Smokeless moxibustion machine

By adopting automatic ash elastic and optimized moxa column structure design in smokeless moxa column, the problems of smoke ash blocking and uneven combustion are solved, uniform heat transmission and uniformity of moxa column combustion are achieved, and the effect of moxa column is improved.

CN222930040UActive Publication Date: 2025-06-03NANYANG AI NATURAL BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421435666.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-22
Publication Date
2025-06-03
Estimated Expiration
2034-06-22

AI Technical Summary

Technical Problem

When used in existing moxibustion devices, it is difficult for the soot to fall off effectively, resulting in heat adsorption and affecting the moxibustion experience; at the same time, the different diameters of the moxa columns lead to uneven combustion.

Method used

A smokeless moxibustion machine is designed, using an automatic ash elastic mechanism. The ash on the moxa column is shaken off into the ash connection net by driving the servo motor to ensure uniform heat transmission. By setting through holes and round holes in the center of the moxa column, sufficient oxygen is ensured to achieve uniform combustion.

Benefits of technology

The heat transfer from the burning end of the moxa stick is not blocked by the ash, ensuring that the moxa stick is burned evenly and improving the experience effect of moxa stick.

✦ Generated by Eureka AI based on patent content.

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Abstract

The smokeless moxibustion machine comprises a body, the upper end of the body is communicated with a smoke suction pipe, the outer wall of the smoke suction pipe is communicated with a combustion chamber, an anti-scalding cover is fixed to the outer wall of the combustion chamber, a vertical plate is fixed to the interior of the body, a controller is fixed to the left end of the vertical plate, a transverse plate is arranged at the right end of the vertical plate, and a filtering assembly is arranged at the upper end of the transverse plate. The right end of the body is provided with an air outlet, the right end of the body is rotatably connected with a box door, the left end of the combustion chamber is provided with a heat port, the front end of the combustion chamber is provided with a chamber door, the interior of the combustion chamber is slidably connected with an ash receiving net, and the upper end of the ash receiving net is provided with an ash flipping assembly. Through cooperation of the fixing frame, the shaking frame and the servo motor, a moxa cone fixed to a fixing needle shakes after being burnt for a period of time, ash on the moxa cone is shaken off into an ash receiving net to be collected, and heat at the burning end of a moxa stick is prevented from being blocked by the ash adsorbed on the moxa stick.
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Description

Technical Field

[0001] The utility model relates to the technical field of moxibustion, in particular to a smokeless moxibustion machine. Background Art

[0002] Moxibustion is a method of moxibustion in traditional Chinese acupuncture and moxibustion therapy. It is to ignite moxa cones or moxa sticks made of mugwort leaves and smoke and roast human acupoints or specific parts. Through the heat of moxa fire penetrating the skin, it regulates yin and yang, qi and blood, and warms and dredges the meridians, so as to achieve a therapy for health care and treatment.

[0003] However, the following problems will be encountered in the use of existing moxibustion machines:

[0004] 1. When the existing moxibustion device is in use, the soot generated by the combustion of moxibustion naturally falls off. However, due to the stickiness of the soot, without the action of external force, relying on gravity to fall naturally requires a very long thickness of the soot accumulated at the burning end of the moxa stick, which will cause the heat at the burning end of the moxa stick to be blocked by the adsorbed soot, greatly affecting the moxibustion experience.

[0005] 2. Due to different moxibustion positions, moxa cones with different diameters need to be used for moxibustion. When the diameter of the moxa cone is large, due to insufficient oxygen in the central part of the moxa cone, the central part of the moxa cone burns slowly and the edge burns quickly during combustion, affecting the uniform combustion of the moxa cone. Content of the Utility Model

[0006] In view of the above problems, the utility model provides a smokeless moxibustion machine, which has automatic ash ejection, prevents the soot from adsorbing on the moxa stick and affecting the heat transfer, and enables the burning end of the moxa stick to burn evenly.

[0007] To achieve the above object, the utility model provides the following technical solution: a smokeless moxibustion machine, including a main body, a smoking pipe is connected to the upper end of the main body, a combustion chamber is connected to the outer wall of the smoking pipe, a heat insulation cover is fixed to the outer wall of the combustion chamber, a vertical plate is fixed inside the main body, a controller is fixed to the left end of the vertical plate, a horizontal plate is arranged at the right end of the vertical plate, a filtering component is arranged at the upper end of the horizontal plate, a blower fixedly connected to the main body is arranged at the lower end of the horizontal plate, an air outlet is opened at the right end of the main body, and a box door is rotatably connected to the right end of the main body;

[0008] A heat port is arranged at the left end of the combustion chamber, a chamber door is arranged at the front end of the combustion chamber, an ash receiving net is slidably connected inside the combustion chamber, and an ash ejecting component is arranged at the upper end of the ash receiving net;

[0009] The ash shaking component includes an X-shaped fixing frame fixedly connected to the main body. A shaking frame is rotatably connected to the upper end of the fixing frame. A servo motor is provided at the intersection of the fixing frame. The servo motor is meshed and connected to the shaking frame. A stop block and an arc-shaped guide plate are provided at the front end of the fixing frame. A spring with one end fixedly connected to the fixing frame is arranged inside the guide plate, and the other end of the spring is fixedly connected to the shaking frame. A plurality of fixing seats are provided at the upper end of the shaking frame, and fixing needles are respectively fixed to the upper ends of the fixing seats.

[0010] Preferably, a fixing ring is provided at the intersection of the X-shaped fixing frame. The stop block is fixed to the outer wall of the fixing ring, and the guide plate is located outside the stop block.

[0011] Preferably, the shaking frame is in a cross shape. A toothed ring is provided at the intersection of the cross-shaped shaking frame. The fixing seat is conical and a through hole penetrating up and down is provided at the axis. The inside of the fixing needle is hollow and communicated with the through hole of the fixing seat. A plurality of round holes are formed in the outer wall of the fixing seat.

[0012] Preferably, a cylinder slides inside the fixing ring. The cylinder is fixedly connected to the shaking frame. One end of the spring is fixedly connected to the fixing frame, and the other end of the spring is fixedly connected to the cylinder.

[0013] Preferably, the servo motor is fixed to the inner wall of the fixing ring. A sector gear is fixed to the output end of the fixing ring. The sector gear is meshed with the toothed ring of the shaking frame, and the output shaft of the servo motor is eccentrically arranged with respect to the fixing ring.

[0014] Preferably, the filtering component includes a plurality of connecting frames distributed up and down. Guide rails fixedly connected to the main body are respectively fixed to the left end and the right end of the connecting frame, and filter nets are respectively fixed inside the guide rails.

[0015] Preferably, an upper smoke pipe is communicated with the outer wall of the smoking pipe. An air inlet pipe is provided at the right end of the combustion chamber. The upper smoke pipe is communicated with the combustion chamber. An accordion cover communicated with the combustion chamber is provided at the upper end of the main body.

[0016] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0017] 1. Through the cooperation of the fixing frame, the shaking frame and the servo motor, the moxa stick fixed on the fixing needle shakes after burning for a period of time, and the ash on the moxa stick is shaken off and collected in the ash receiving net, preventing the heat at the burning end of the moxa stick from being blocked by the ash adsorbed on it. At the same time, the fixing seat is set to be conical and the ash is received through the ash receiving net, so that all the ash generated by the burning of the moxa stick slides into the ash receiving net, facilitating the centralized treatment of the ash.

[0018] 2. By opening a through hole at the axis line of the fixed seat, and making the inside of the fixed needle hollow and opening a plurality of round holes on the outer wall, the moxa stick is inserted and fixed on the fixed needle. Oxygen can enter the central position of the moxa stick through the through hole of the fixed seat and the round holes of the fixed needle, so as to ensure the oxygen amount in the central part of the moxa stick and make the burning speed of the edge and the center of the moxa stick consistent. Brief Description of the Drawings

[0019] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0020] Figure 2 It is a schematic diagram of the cross-section of the body of the present utility model;

[0021] Figure 3 It is a schematic diagram of the overall combustion chamber of the present utility model;

[0022] Figure 4 It is a schematic diagram of the partial cross-section of the combustion chamber of the present utility model;

[0023] Figure 5 It is a schematic diagram of the overall ash ejecting assembly of the present utility model;

[0024] Figure 6 It is an exploded view of the ash ejecting assembly of the present utility model;

[0025] Figure 7 It is a schematic diagram of the partial enlargement of the present utility model;

[0026] Figure 8 It is a schematic diagram of the overall filtering assembly of the present utility model.

[0027] Explanation of the labels in the figures: 1. Body; 2. Combustion chamber; 3. Smoking pipe; 4. Anti-scalding cover; 5. Ash ejecting assembly; 101. Bellows cover; 102. Cabinet door; 103. Air outlet; 104. Vertical plate; 105. Controller; 106. Filtering assembly; 107. Horizontal plate; 108. Fan; 201. Heat port; 202. Chamber door; 203. Ash receiving net; 301. Upper smoke pipe; 302. Intake pipe; 51. Fixed frame; 52. Shaking frame; 53. Servo motor; 511. Fixed ring; 512. Stop block; 513. Guide plate; 514. Spring; 521. Tooth ring; 522. Fixed seat; 523. Fixed needle; 531. Sector gear; 1061. Guide rail; 1062. Connection frame; 1063. Filter net. Detailed Embodiment

[0028] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0029] Please refer to Figure 1 ,Figure 2 , Figure 3 and Figure 8 , a smokeless moxibustion machine, comprising a main body 1. A smoking pipe 3 is connected to the upper end of the main body 1. The smoking pipe 3 is a cylindrical and hollow electric telescopic pipe, which is convenient for adjusting the position of moxibustion to achieve the best moxibustion effect. The distance between the moxibustion part and the moxa cone is adjusted according to one's own physical sensation to be comfortable for oneself. The outer wall of the smoking pipe 3 is connected to a combustion chamber 2, and the outer wall of the smoking pipe 3 is connected to an upper smoke pipe 301. An air inlet pipe 302 is provided at the right end of the combustion chamber 2. The upper smoke pipe 301 and the air inlet pipe 302 are cylindrical and hollow. The upper smoke pipe 301 is connected to the combustion chamber 2, and the smoking pipe 3 is connected to the upper smoke pipe 301. The lower end of the smoking pipe 3 is connected to the main body 1, which is convenient for guiding the smoke generated by the combustion of the moxa cone inside the combustion chamber 2 into the main body 1 for filtration, achieving the effect of smokeless emission. Air is introduced through the air inlet pipe 302 to provide sufficient oxygen for the combustion of the moxa cone inside the combustion chamber 2. A bellows cover 101 connected to the combustion chamber 2 is provided at the upper end of the main body 1. A heat insulation cover 4 is fixed to the outer wall of the combustion chamber 2. The heat insulation cover 4 is in a U shape and covers the outside of the combustion chamber 2. The surface of the heat insulation cover 4 is covered with small holes for heat dissipation, preventing the operator from directly contacting the combustion chamber 2 and causing burns. A vertical plate 104 is fixed inside the main body 1. A controller 105 is fixed to the left end of the vertical plate 104. The controller 105 is a conventional device and will not be elaborated here. The controller 105 is used to control the operation of each part of the device. A horizontal plate 107 is provided at the right end of the vertical plate 104. A filtration component 106 is provided at the upper end of the horizontal plate 107. The controller 105 divides the space inside the main body 1 into two parts, one part is a control room and the other part is a purification room. The horizontal plate 107 divides the purification room into two parts, one part is a filtration room and the other part is a ventilation room. The bellows cover 101 is connected to the purification room. The filtration component 106 includes a plurality of connecting frames 1062 distributed up and down. Guide rails 1061 fixedly connected to the main body 1 are respectively fixed to the left end and the right end of the connecting frame 1062. Filter meshes 1063 are respectively fixed inside the guide rails 1061. The filter meshes 1063 include non-woven filter cloth, fiber filter cloth, antibacterial cotton sheet, polyester filter cotton sheet and activated carbon filter cotton sheet. The smoke generated by moxibustion combustion is filtered through the filtration component 106, which is beneficial to filter out the particles in the smoke and achieve the smokeless effect. A blower 108 fixedly connected to the main body 1 is provided at the lower end of the horizontal plate 107. An air outlet 103 is opened at the right end of the main body 1. The blower 108 is used to suck the smoke generated by the combustion of the moxa cone in the combustion chamber 2 into the filtration room, filter it through the filtration component 106, and the filtered gas is discharged through the air outlet 103.

[0030] Please refer to Figure 3 and Figure 4, a heat port 201 is provided at the left end of the combustion chamber 2. Due to the setting of the heat port 201, the heat generated by the burning of the moxa stick in the combustion chamber 2 will directly perform moxibustion on the patient through the heat port 201, so that most of the heat generated by the burning of the moxibustion is transmitted through the heat port 201, ensuring the effect of moxibustion on the patient. A chamber door 202 is provided at the front end of the combustion chamber 2. An ash receiving net 203 is slidably connected inside the combustion chamber 2. A ash ejecting assembly 5 is provided at the upper end of the ash receiving net 203. After the chamber door 202 is opened, the moxa stick can be installed and ignited on the ash ejecting assembly 5, which is convenient for placing the moxa stick. At the same time, the ash is received through the ash receiving net 203, and the ash after the burning of the moxa stick is collected, which is convenient for centralized treatment of the ash.

[0031] Please refer to Figure 4 , Figure 5 , Figure 6 and Figure 7 , the ash ejecting assembly 5 includes an X-shaped fixing frame 51 fixedly connected to the main body 1. The fixing frame 51 is set in an X shape, which is beneficial to support the components on the fixing frame 51 and realize the function of supporting and fixing. A stop block 512 and an arc-shaped guide plate 513 are provided at the front end of the fixing frame 51. A spring 514 with one end fixedly connected to the fixing frame 51 is arranged inside the guide plate 513. The other end of the spring 514 is fixedly connected to a shaking frame 52. Two guide plates 513 are provided, and the spring 514 between the two guide plates 513 is used to tighten the shaking frame 52, so that the shaking frame 52 impacts the stop block 512. The shaking frame 52 collides with the stop block 512 to generate vibration, so that the ash after the burning of the moxa stick falls off from the moxa stick. A fixing ring 511 is provided at the intersection of the X-shaped fixing frame 51. The stop block 512 is fixed on the outer wall of the fixing ring 511. The guide plate 513 is located outside the stop block 512. The fixing ring 511 is used for rotatably connecting a gear ring 521 and is also convenient for fixing a servo motor 53.

[0032] Please refer to Figure 5 , Figure 6 and Figure 7, a shaking frame 52 is rotatably connected to the upper end of the fixing frame 51. The shaking frame 52 is in a cross shape. Multiple fixing seats 522 are provided at the upper end of the shaking frame 52. The use of the cross-shaped shaking frame 52 is beneficial for fixing more moxa cones, achieving greater heat generation, and at the same time ensuring that the moxa cones do not affect each other during combustion. Fixing needles 523 are respectively fixed to the upper ends of the fixing seats 522. A toothed ring 521 is provided at the intersection of the cross-shaped shaking frame 52. The fixing seat 522 is conical and has a through hole penetrating up and down at its axis. The inside of the fixing needle 523 is hollow and communicates with the through hole of the fixing seat 522. A plurality of round holes are opened on the outer wall of the fixing seat 522. A through hole is opened at the axis line of the fixing seat 522, and the inside of the fixing needle 523 is hollow and a plurality of round holes are opened on its outer wall. The moxa cone is inserted and fixed on the fixing needle 523. Oxygen can enter the central position of the moxa cone through the through hole of the fixing seat 522 and the round holes of the fixing needle 523, ensuring the oxygen amount in the central part of the moxa cone and ensuring that the combustion speeds at the edge and in the center of the moxa cone are consistent. A cylinder slides in the fixing ring 511. The cylinder is fixedly connected to the shaking frame 52. One end of the spring 514 is fixedly connected to the fixing frame 51, and the other end of the spring 514 is fixedly connected to the cylinder. The cylinder at the lower end of the shaking frame 52 is inserted between two guide plates 513, playing a guiding role in the rotation of the shaking frame 52.

[0033] Please refer to Figure 5 , Figure 6 and Figure 7 , a servo motor 53 is provided at the intersection of the fixing frame 51. The servo motor 53 is meshed with the shaking frame 52. The servo motor 53 is fixed to the inner wall of the fixing ring 511. The output end of the fixing ring 511 is fixed with a sector gear 531. The sector gear 531 is meshed with the toothed ring 521 of the shaking frame 52. The output shaft of the servo motor 53 is eccentrically arranged with respect to the fixing ring 511. When the servo motor 53 rotates, it drives the sector gear 531 to rotate. The sector gear 531 is meshed with the toothed ring 521 to drive the shaking frame 52 to rotate. Since the sector gear 531 is sector-shaped and the servo motor 53 is eccentrically arranged with respect to the toothed ring 521, after the sector gear 531 is meshed with the toothed ring 521 for a part, they are no longer meshed. At this time, the spring 514 pulls the shaking frame 52 to reverse and hit the stopper 512, thereby causing the shaking frame 52 to vibrate and making the soot on the moxa cone fall off.

[0034] When the present utility model is in use:

[0035] First, remove the heat insulation cover 4, open the chamber door 202, insert the moxa stick onto the fixing pin 523 for fixation, close the chamber door 202 after lighting the moxa stick, refix the heat insulation cover 4 onto the combustion chamber 2, align the heat outlet 201 with the position where moxibustion is needed for the patient, start the blower 108 and the servo motor 53 to work, and control them through the remote control. Remote control: A (long press) to rise, and after releasing (rise for 15 seconds, fall for 15 seconds, reciprocating motion); B (long press) to fall, and after releasing (fall for 25 seconds, rise for 25 seconds, reciprocating motion); C (long press) to rise, and after releasing (rise for 35 seconds, fall for 35 seconds, reciprocating motion); D to stop (fall for 45 seconds). Sit on a stool at a suitable height according to the body part where moxibustion is needed, and use the remote control to control the reciprocating lifting height to achieve the best moxibustion effect. Adjust the distance between the moxibustion part and the moxa stick according to your own physical feeling to be comfortable for yourself;

[0036] Then, the blower 108 works to generate suction, and the smoke generated by the burning of the moxa stick in the combustion chamber 2 is drawn into the smoking pipe 3 through the upper smoke pipe 301 and the bellows cover 101. The smoke in the smoking pipe 3 enters the filter assembly 106 for filtration, and the filtered gas is discharged through the air outlet 103;

[0037] Next, the servo motor 53 rotates to drive the sector gear 531 to rotate. The sector gear 531 meshes with the toothed ring 521 and then drives the shaking frame 52 to rotate. While the shaking frame 52 rotates, the cylinder fixed on the shaking frame 52 pulls the spring 514 to stretch. Since the sector gear 531 is sector-shaped and the servo motor 53 and the toothed ring 521 are eccentrically arranged, after the sector gear 531 meshes with the toothed ring 521 for a part, they no longer mesh. At this time, the spring 514 pulls the shaking frame 52 to reverse and hit the stop block 512, causing the shaking frame 52 to vibrate, thereby making the soot on the moxa stick fall off. The fallen soot falls into the ash receiving net 203 for collection;

[0038] Finally, when the moxa stick inserted on the fixing pin 523 burns, oxygen enters the central position of the moxa stick through the through hole of the fixing seat 522 and the round hole of the fixing pin 523, providing oxygen for the central part of the moxa stick, making the burning speed of the edge and the center of the moxa stick the same. After the moxibustion is completed, turn off the blower 108 and the servo motor 53. After the device cools down, open the chamber door 202 to handle the soot on the ash receiving net 203. Open the box door 102 and replace the filter screen 1063 on the connection frame 1062. After the moxibustion is over, you need to put on your clothes, avoid drafts and taking a bath, and then put away the device for future use.

[0039] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A smokeless moxibustion machine, characterized in that: The invention comprises a body (1), the upper end of the body (1) is connected to a smoking pipe (3), the outer wall of the smoking pipe (3) is connected to a combustion chamber (2), the outer wall of the combustion chamber (2) is fixed with a scalding protection cover (4), a vertical plate (104) is fixed inside the body (1), a controller (105) is fixed at the left end of the vertical plate (104), a horizontal plate (107) is provided at the right end of the vertical plate (104), a filter assembly (106) is provided at the upper end of the horizontal plate (107), a fan (108) fixedly connected to the body (1) is provided at the lower end of the horizontal plate (107), an air outlet (103) is provided at the right end of the body (1), and a box door (102) is rotatably connected to the right end of the body (1); The left end of the combustion chamber (2) is provided with a heat outlet (201), the front end of the combustion chamber (2) is provided with a chamber door (202), the interior of the combustion chamber (2) is slidably connected with an ash receiving net (203), and the upper end of the ash receiving net (203) is provided with an ash ejection assembly (5); The ash ejection assembly (5) includes an X-shaped fixed frame (51) fixedly connected to the main body (1), the upper end of the fixed frame (51) is rotatably connected to a shaking frame (52), a servo motor (53) is provided at the intersection of the fixed frame (51), the servo motor (53) is meshingly connected to the shaking frame (52), a stopper (512) and an arc-shaped guide plate (513) are provided at the front end of the fixed frame (51), a spring (514) is provided in the guide plate (513), one end of which is fixedly connected to the fixed frame (51), the other end of the spring (514) is fixedly connected to the shaking frame (52), a plurality of fixed seats (522) are provided at the upper end of the shaking frame (52), and fixing pins (523) are respectively fixed to the upper ends of the fixed seats (522).

2. A smokeless moxibustion machine according to claim 1, characterized in that: A fixing ring (511) is provided at the intersection of the X-shaped fixing frame (51), the stopper (512) is fixed to the outer wall of the fixing ring (511), and the guide plate (513) is located outside the stopper (512).

3. A smokeless moxibustion machine according to claim 1, characterized in that: The shaking frame (52) is in the shape of a cross, and a gear ring (521) is provided at the intersection of the cross-shaped shaking frame (52). The fixing seat (522) is conical and has a through hole extending through the fixing seat (522) at its axis. The fixing pin (523) is hollow inside and communicates with the through hole of the fixing seat (522). The outer wall of the fixing seat (522) is provided with a plurality of circular holes.

4. A smokeless moxibustion machine according to claim 2, characterized in that: A cylinder slides inside the fixed ring (511), and the cylinder is fixedly connected to the shaking frame (52). One end of the spring (514) is fixedly connected to the fixed frame (51), and the other end of the spring (514) is fixedly connected to the cylinder.

5. The smokeless moxibustion machine according to claim 1, characterized in that: The servo motor (53) is fixed to the inner wall of the fixed ring (511), a sector gear (531) is fixed to the output end of the fixed ring (511), the sector gear (531) is meshed with the gear ring (521) of the shaking frame (52), and the output shaft of the servo motor (53) is eccentrically arranged with the fixed ring (511).

6. The smokeless moxibustion machine according to claim 1, characterized in that: The filter assembly (106) comprises a plurality of connection frames (1062) distributed vertically, guide rails (1061) fixedly connected to the body (1) are distributed and fixed at the left and right ends of the connection frames (1062), and filter screens (1063) are respectively fixed inside the guide rails (1061).

7. The smokeless moxibustion machine according to claim 1, characterized in that: The outer wall of the smoking pipe (3) is connected to an upper smoke pipe (301), the right end of the combustion chamber (2) is provided with an air intake pipe (302), the upper smoke pipe (301) is connected to the combustion chamber (2), and the upper end of the body (1) is provided with an accordion cover (101) connected to the combustion chamber (2).

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