An moxa cone punch for warm acupuncture therapy and its usage method

By designing a moxa column hole puncher with warm acupuncture therapy, the combination of a punching mechanism and a pressing plate is used to solve the problem of waste chips when drilling at the tail end of the moxa column, effectively constraining and cleaning of waste chips, and improving processing efficiency.

CN120038807BActive Publication Date: 2025-06-24NANJING HUALI MEDICAL TECH CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202510498158.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-06-24
Estimated Expiration
2045-04-21

AI Technical Summary

Technical Problem

The tail end of the wool column is prone to produce more waste chips when drilling, causing waste chips to accumulate on the surface of the punching base, affecting subsequent assembly. In addition, the punching machinery at the double-hole position requires frequent loading and unloading of materials to reduce processing efficiency.

Method used

A moxa column hole puncher with warm acupuncture therapy is designed, using a combination of a punching mechanism and a pressure plate. The pressure plate is driven to contact with the moxa column through a continuous downward drill bit, pressing the waste chips on the periphery of the punching hole, and effectively restraining and cleaning the waste chips through the cooperation of the vacuum seat and the lifting sleeve.

Benefits of technology

The timing coordination between drilling operations and waste chip treatment is achieved, effectively restraining waste chips in the compressed area, avoiding scattering and accumulation, improving the compactness of the ash at the tail of the wool column, and improving processing efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120038807B_ABST
    Figure CN120038807B_ABST
Patent Text Reader

Abstract

The present invention discloses an moxa stick punching device for warm acupuncture therapy and its usage method, belonging to the technical field of moxa stick processing. It includes a base, a turntable is rotatably connected to the top of the base, and a plurality of transfer platforms for limiting moxa sticks are provided inside the turntable. A plurality of punching bodies are provided at positions corresponding to the transfer platforms on the top of the base, and a feeding mechanism is provided on the top of at least one side of the transfer platform. In the present invention, through the designed punching mechanism and the pressing plate, the continuously downward pressing drill bit can drive the top pressing plate to contact the punching end of the moxa stick. At this time, the waste chips on the periphery of the moxa stick punching can be continuously pressed under the pressing action of the pressing plate. Through the linkage cooperation of the pressing plate and the drill bit, while continuously pressing down to the set depth, the pressing plate is precisely fitted with the end face of the moxa stick, realizing the time sequence coordination of drilling operation and waste chip treatment, effectively constraining the drilling waste chips in the pressing area, eliminating the risk of scattering caused by fiber fluffiness, avoiding the scattering of punching waste chips affecting subsequent packaging and sales, and improving the ash compactness at the tail of the moxa stick.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of moxa stick processing, and particularly relates to a moxa stick punching device for warm acupuncture therapy and a using method thereof. Background Art

[0002] A moxa stick is a short moxa roll, usually used in portable moxibustion, joint moxibustion devices, single-column and double-column moxibustion devices, fire dragon cans and other moxibustion devices. In warm acupuncture therapy, a moxa stick needs to be punched at one end to facilitate insertion on the tail of a filiform needle, and punching helps the moxa stick to burn more evenly, avoiding some parts of the moxa stick burning out while other parts are not fully burned, improving the utilization rate of wormwood resources and the effect of moxibustion.

[0003] Chinese invention patent with publication number CN119217467A discloses a moxa stick punching device for warm acupuncture therapy and a using method thereof, including a base table. An installation frame is connected to the upper end of the base table. A connection table is installed on the surface of the installation frame. An electric push rod is installed at the upper end of the connection table. The output end of the electric push rod penetrates the connection table. The output end of the electric push rod is connected to a connection plate. An adjustment plate is arranged at the upper end of the connection plate. A plug rod is installed at the bottom of the adjustment plate. When the clamping jaws are extruded by the moxa stick, they will move outwards. When the clamping jaws move outwards, they will be extruded through the piston rod, and then the diameter of the upper end of the punching head is adjusted through the hole diameter expansion component. The hole diameter is adjusted according to the diameter of the moxa stick, making the punching device highly flexible. However, in actual use, a large amount of waste chips are easily generated at the tail end of the moxa stick during drilling, which easily causes the waste chips to accumulate on the surface of the punching base, affecting subsequent assembly. And the punching machine with double holes needs to be loaded and unloaded frequently, affecting the processing efficiency, and there is room for improvement. Summary of the Invention

[0004] The purpose of the present invention is to provide a moxa stick punching device for warm acupuncture therapy and a using method thereof, which are proposed to solve the problems that a large amount of waste chips are easily generated at the tail end of the moxa stick during drilling, which easily causes the waste chips to accumulate on the surface of the punching base, affecting subsequent assembly, and the punching machine with double holes needs to be loaded and unloaded frequently.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A moxa stick punching device for warm acupuncture therapy includes a base. A turntable is rotatably connected to the top of the base, and there are multiple transfer platforms for limiting moxa sticks inside the turntable. Multiple punching bodies are arranged at the positions corresponding to the transfer platforms on the top of the base, and a feeding mechanism is arranged at the top of at least one side of the transfer platforms. A punching mechanism is arranged at the bottom of the punching body. A supporting mechanism is connected and driven on one side of the punching mechanism. The supporting mechanism is slidably connected inside the transfer platform. The supporting mechanism supports the moxa stick to contact the punching mechanism through the downward pressure of the punching mechanism.

[0007] As a further description of the above technical solution:

[0008] The punching mechanism includes a drill rod. The top end of the drill rod is connected to the bottom of the hole-drilling body, and the bottom end of the drill rod is connected with a drill bit. One end of the drill rod close to the drill bit is connected with a fixing plate. Both sides of the top of the fixing plate are provided with sliding holes, and guide rods are slidably connected in the sliding holes. A pressing plate is connected between the bottom ends of the two guide rods, and the pressing plate is in contact with the top of the punching area. The waste chips of the moxa stick after punching are pressed against the periphery of the punching area by pressing down the pressing plate.

[0009] As a further description of the above technical solution:

[0010] A second spring is connected to the top of the pressing plate, and the other end of the second spring is connected to the bottom of the fixing plate. The second spring is sleeved outside the drill rod.

[0011] As a further description of the above technical solution:

[0012] The punching mechanism further includes a support cover. One side of the support cover is connected with a force-receiving block. The rod body and the rod sleeve at the top of the force-receiving block are connected to the outside of the top of the drill rod. An inner sealing pad is connected to the inner side of the support cover. The inner sealing pad has an opening, and the drill rod passes through the opening. A sealing cover is connected to the bottom of the support cover, and the top gap of the transfer table is closed by pressing down the sealing cover.

[0013] As a further description of the above technical solution:

[0014] A dust suction seat is connected to the outside of the turntable. The inner side of the dust suction seat is communicated with the suction gap inside the transfer table through a chamber. The dust suction seat is connected to an external dust extraction device through a pipeline.

[0015] As a further description of the above technical solution:

[0016] The supporting mechanism includes a moving rod. The top end of the moving rod extends to the top and touches the corresponding force-receiving block. The bottom end of the moving rod is connected with a driving rack. One side of the driving rack is meshed with a force-receiving gear. The force-receiving gear is connected to one side of the outside of the transfer table, and the other side of the force-receiving gear is meshed with a moving plate. One side of the moving plate is connected with a lifting sleeve. The lifting sleeve is slidably connected to the inner cavity of the transfer table. The moxa stick is lifted by driving the movement of the punching mechanism downward and driving the driving rack to drive the lifting sleeve.

[0017] As a further description of the above technical solution:

[0018] A groove is provided at the bottom of one side of the transfer table. A guide rod is connected in the groove. A guide hole is provided at the top of the moving plate. The moving rod is slidably connected to the outside of the guide rod through the guide hole. One side of the driving rack is connected with a sliding plate. A sliding hole is provided at the top of the sliding plate, and a sliding rod is slidably connected in the sliding hole. The bottom end of the sliding rod is connected to the outside of the transfer table.

[0019] As a further description of the above technical solution:

[0020] The feeding mechanism includes a feeding rack, the feeding rack is connected to the top of the base, a material cylinder is installed on the top of the feeding rack, and a sliding hole is penetrated between the material cylinder and the feeding rack. A motor is rotatably connected to the top of the feeding rack, the output shaft of the motor is connected with a cam, one side of the cam is attached to a force-receiving plate, one side of the force-receiving plate is connected with a push rod, a fixed block is sleeved outside the push rod, the fixed block is connected to the top of the feeding rack, a first spring is sleeved outside the push rod, and two ends of the first spring are respectively connected to corresponding positions on one side of the force-receiving block and the fixed block. One end of the push rod is connected with a push plate, and the push plate penetrates through an opening formed on one side of the material cylinder. The feeding of the mugwort column is controlled by the intermittent movement of the push plate in the opening.

[0021] As a further description of the above technical solution:

[0022] A plurality of heating blocks are arranged around the outer periphery of the drill bit, and the surface of the heating block is an arc surface.

[0023] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are as follows:

[0024] 1. In the present invention, through the designed drilling mechanism and the pressing plate, the continuously downward pressing drill bit can drive the top pressing plate to contact the punching end of the mugwort column. At this time, the waste chips on the periphery of the punched mugwort column can be continuously pressed under the pressing action of the pressing plate. Through the linkage cooperation of the pressing plate and the drill bit, while continuously pressing down to the set depth, the pressing plate can complete the precise fit with the end face of the mugwort column, realizing the timing coordination of the drilling operation and the waste chip treatment, enabling the drilling waste chips to be effectively constrained within the pressing area, eliminating the risk of scattering caused by fiber fluffiness, avoiding the scattering of punching waste chips affecting subsequent packaging and sales, and improving the compactness of the ash at the tail of the mugwort column.

[0025] 2. In the present invention, through the designed drilling mechanism, when the drilling machine body drives the drill bit to press downwards, the closed cover on the outer periphery of the drill rod can synchronously drive the closed cover to move downwards. The movement of the closed cover can contact the top of the transfer table. At this time, the closed cover can close the space at the top of the transfer table. Driving the rack to move can drive the driven gear to rotate and push the other moving plate to move upwards. The movement of the moving plate can drive the lifting sleeve to move upwards. The upward movement of the lifting sleeve can lift the mugwort column, which can improve the fitting effect between the mugwort column and the drill bit, and can improve the fitting and closing effect with the closed cover through the lifting of the lifting sleeve, which is beneficial to closing the drilling environment through the closed cover, and sucking the waste chips on the un-pressed part outside the pressing plate to the external system for reuse through the dust suction seat, further reducing the residue of waste chips.

[0026] 3. In the present invention, through the designed feeding mechanism, moxa cones are fed into the barrel by the feeding mechanism. When punching is required, the motor output shaft rotates to drive the cam to rotate. The longer end of the rotating cam can separate from the force-receiving plate, and the first spring can expand by its own elastic force to drive the push rod to move. The movement of the push rod can drive the push plate to move outwards. The outward movement of the push plate can open the barrel gap. After the gap in the barrel is opened, the moxa cones can fall downward. At this time, the turntable can rotate to transfer the moxa cones after blanking to the next punching station, and the punching machine body at the corresponding position can move downward to drill the moxa cones. Through the cooperation of the feeding mechanism and the turntable, and by setting a corresponding blanking component at the end of the other side station, the continuous processing efficiency can be improved through the cooperation of the blanking component. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 FIG. is a schematic diagram of the overall structure of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0028] Figure 2 FIG. is an axonometric view structure schematic diagram of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0029] Figure 3 FIG. is a side view structure schematic diagram of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0030] Figure 4 Proposed by the present invention Figure 3 Schematic diagram of the enlarged structure of part A in;

[0031] Figure 5 FIG. is another angle structure schematic diagram of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0032] Figure 6 FIG. is a partial structure schematic diagram of the punching mechanism of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0033] Figure 7 FIG. is an assembled structure schematic diagram of the punching mechanism of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0034] Figure 8 Proposed by the present invention Figure 7 Schematic diagram of the enlarged structure of part B in;

[0035] Figure 9 FIG. is a partial disassembled structure schematic diagram of the supporting mechanism of a moxa cone puncher for warm acupuncture therapy proposed by the present invention;

[0036] Figure 10 FIG. is a disassembled structure schematic diagram of the supporting mechanism of a moxa cone puncher for warm acupuncture therapy proposed by the present invention.

[0037] Legend:

[0038] 1. Base; 2. Punching machine body; 3. Turntable; 4. Feeding mechanism; 401. Feeding rack; 402. Barrel; 403. Push plate; 404. Push rod; 405. Fixed block; 406. First spring; 407. Force plate; 408. Cam; 409. Motor; 5. Punching mechanism; 501. Support cover; 502. Inner sealing pad; 503. Closing cover; 504. Drill rod; 505. Force block; 506. Drill bit; 507. Press plate; 508. Second spring; 509. Guide rod; 510. Fixed plate; 6. Supporting mechanism; 601. Moving rod; 602. Driving gear plate; 603. Force gear; 604. Moving plate; 605. Lifting sleeve; 606. Sliding rod; 607. Slide plate; 7. Transfer table; 8. Unloading assembly; 9. Dust suction seat. DETAILED DESCRIPTION

[0039] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0040] See also Figures 1 - 10 The present invention provides a technical solution: a moxa stick puncher for warm acupuncture therapy, comprising a base 1, a turntable 3 is rotatably connected to the top of the base 1, and a plurality of transfer platforms 7 for limiting the position of moxa sticks are provided in the turntable 3, wherein the bottom of the turntable 3 has a rotating drive mechanism to control the turntable 3 and the transfer platform 7 to switch the workstations, and this part is a known technology in the relevant field and will not be elaborated on, a plurality of punching bodies 2 are provided at the position corresponding to the transfer platform 7 at the top of the base 1, and a feeding mechanism 4 is provided at the top of at least one side of the transfer platform 7, a punching mechanism 5 is provided at the bottom of the punching body 2, a supporting mechanism 6 is connected to the transmission on one side of the punching mechanism 5, and the supporting mechanism 6 is slidably connected in the transfer platform 7, and the supporting mechanism 6 supports the moxa stick to contact the punching mechanism 5 by pressing down the punching mechanism 5;

[0041] The punching mechanism 5 includes a drill rod 504, the top of which is connected to the bottom of the rotary hole body, the bottom of which is connected to a drill bit 506, and one end of the drill rod 504 close to the drill bit 506 is connected to a fixing plate 510, and sliding holes are provided on both sides of the top of the fixing plate 510, and guide rods 509 are slidably connected in the sliding holes, and a pressing plate 507 is connected between the bottom ends of the guide rods 509 on both sides, and the pressing plate 507 is fitted with the top of the punching hole, and the moxa stick punching waste is pressed tightly to the side of the punching hole by pressing down the pressing plate 507;

[0042] A second spring 508 is connected to the top of the pressing plate 507, and the other end of the second spring 508 is connected to the bottom of the fixing plate 510. The second spring 508 is sleeved outside the drill rod 504.

[0043] Among them, the punching body 2 is a control body with a downward pressing drive part, and the sensor system and PLC between multiple punching bodies 2 are precisely controlled. This part is a well-known technology in the similar field and will not be elaborated here;

[0044] To overcome the problem of waste chips spilling over the circumference of the mugwort column during punching, through the designed punching mechanism 5 and the pressing plate 507, when the punching body 2 works and drives the drill rod 504 to move downward, the movement of the drill rod 504 can drive the drill bit 506 to press-fit and punch the mugwort column. When waste chips are generated at the press-fitting position near the punched hole of the mugwort column, the continuously downward pressing drill bit 506 can drive the top pressing plate 507 to contact the punched end of the mugwort column. At this time, the waste chips around the punched hole of the mugwort column can be continuously pressed under the pressing action of the pressing plate 507. Through the linkage cooperation of the pressing plate 507 and the drill bit 506, the pressing plate 507 can complete the precise fitting with the end face of the mugwort column while continuously pressing down to the set depth, realizing the timing coordination of the drilling operation and waste chip treatment, effectively constraining the drilling waste chips within the pressing area, eliminating the risk of scattering caused by fiber fluffiness, avoiding the scattered drilling waste chips from affecting the subsequent packaging and sales, and improving the ash compactness at the tail of the mugwort column.

[0045] A plurality of heating blocks are arranged around the outer circumference of the drill bit 506, and the surface of the heating block is an arc surface. Among them, the heating block can be an electric thermocouple;

[0046] Through the designed heating block, the inner side of the punched hole can be heated and sintered by the heating block outside the drill bit 506 during punching, so as to avoid the collapse of the mugwort column material inside the punched hole due to too large a punched hole diameter, improve the punching effect of the mugwort column, retain the effective components of the mugwort floss in the punching gap through the hot pressing effect, and when the outer arc of the heating block contacts the punching gap of the mugwort column, the wedge-shaped fit between the heating block and the punching gap can break the punching stress and increase the pore strength at the end of the mugwort column after heating and sintering;

[0047] Please refer to Figures 5 - 9 , the punching mechanism 5 further includes a support cover 501. One side of the support cover 501 is connected with a force-bearing block 505. The top rod body and rod sleeve of the force-bearing block 505 are connected to the outer side of the top of the drill rod 504. The inner side of the support cover 501 is connected with an inner sealing pad 502. The inner sealing pad 502 has an opening, and the drill rod 504 passes through the opening. The bottom of the support cover 501 is connected with a sealing cover 503, and the top gap of the transfer table 7 is closed by the downward pressure of the sealing cover 503;

[0048] A dust suction seat 9 is connected to the outside of the turntable 3. The inner side of the dust suction seat 9 is connected to the suction gap inside the transfer table 7 through a chamber, and the dust suction seat 9 is connected to an external dust extraction device through a pipeline;

[0049] Through the designed dust suction base 9, wherein the gap between the inner cavity of the dust suction base 9 and the transfer table 7 can form a dust suction channel, and the accumulation of waste chips can be further reduced by sucking the waste chips, improving the processing effect;

[0050] The supporting mechanism 6 includes a moving rod 601. The top end of the moving rod 601 extends to the top and contacts the stress block 505 at the corresponding position. The bottom end of the moving rod 601 is connected with a driving gear plate 602. One side of the driving gear plate 602 meshes with a stress gear 603. The stress gear 603 is connected to the outside of one side of the transfer table 7, and the other side of the stress gear 603 meshes with a moving plate 604. One side of the moving plate 604 is connected with a lifting sleeve 605. The lifting sleeve 605 is slidably connected to the inner cavity of the transfer table 7. The downward pressure drive of the punching mechanism 5 drives the movement, and the driving gear plate 602 drives the lifting sleeve 605 to lift the moxa stick;

[0051] A groove is formed at the bottom of one side of the transfer table 7. A guide rod 509 is connected in the groove. A guide hole is formed at the top of the moving plate 604. The moving rod 601 is slidably connected to the outside of the guide rod 509 through the guide hole. One side of the driving gear plate 602 is connected with a sliding plate 607. A sliding hole is formed at the top of the sliding plate 607, and a sliding rod 606 is slidably connected in the sliding hole. The bottom end of the sliding rod 606 is connected to the outside of the transfer table 7.

[0052] Specifically, to further reduce the residue of waste chips, through the designed punching mechanism 5, when the punching machine body 2 drives the drill bit 506 to press down, the closed cover 503 on the outer peripheral side of the drill rod 504 can drive the closed cover 503 to move downward synchronously. The movement of the closed cover 503 can contact the top of the transfer table 7. At this time, the closed cover 503 can seal the top space of the transfer table 7. At the same time, when the punching machine body 2 drives the drill rod 504 to move downward, it can drive the stress block 505 to move downward. The movement of the stress block 505 can press the bottom moving rod 601. When the moving rod 601 is pressed, it can drive the driving gear plate 602 to move. The movement of the driving gear plate 602 can drive the stress gear 603 to rotate and push the other moving plate 604 to move upward. The movement of the moving plate 604 can drive the lifting sleeve 605 to move upward. The upward movement of the lifting sleeve 605 can lift the moxa stick, thereby improving the fitting effect between the moxa stick and the drill bit 506, and improving the fitting and sealing effect with the closed cover 503 through the lifting of the lifting sleeve 605. It is beneficial to seal the drilling environment through the closed cover 503, and suck the waste chips on the outer peripheral side of the pressing plate 507 that are not pressed into the external system for reuse through the dust suction base 9, which is beneficial to further reduce the residue of waste chips and improve the punching processing efficiency.

[0053] Furthermore, through the cooperation of the force-bearing gear 603 and the driving tooth plate 602, the gradual upward pressure of the lifting sleeve 605 relative to the drilling body 2 can be achieved. The contact pressure between the lifting sleeve 605 and the pressing plate 507 on one side of the drill bit 506 can be controlled by the rising degree of the lifting sleeve 605, avoiding damage to the end of the moxa stick caused by excessive extrusion, and improving the drilling stability of the moxa stick through the linkage effect.

[0054] Please refer to Figure 4 , the feeding mechanism 4 includes a feeding frame 401. The feeding frame 401 is connected to the top of the base 1. A material cylinder 402 is installed on the top of the feeding frame 401. A sliding hole is penetrated between the material cylinder 402 and the feeding frame 401. A motor 409 is rotatably connected to the top of the feeding frame 401. The output shaft of the motor 409 is connected to a cam 408. One side of the cam 408 is attached to a force-bearing plate 407. One side of the force-bearing plate 407 is connected to a push rod 404. A fixing block 405 is sleeved outside the push rod 404. The fixing block 405 is connected to the top of the feeding frame 401. A first spring 406 is sleeved outside the push rod 404. The two ends of the first spring 406 are respectively connected to the corresponding positions on one side of the force-bearing block 505 and the fixing block 405. One end of the push rod 404 is connected to a push plate 403. The push plate 403 penetrates through an opening formed on one side of the material cylinder 402. The feeding of the moxa stick is controlled by the intermittent movement of the push plate 403 in the opening.

[0055] Specifically: through the designed feeding mechanism 4, when moxa stick drilling is required, the moxa stick is fed into the material cylinder 402 through the feeding mechanism 4. When drilling is required, the output shaft of the motor 409 rotates to drive the cam 408 to rotate. The longer end of the cam 408 can be separated from the force-bearing plate 407. At this time, the first spring 406 can expand by its own elastic force to drive the push rod 404 to move. The movement of the push rod 404 can drive the push plate 403 to move outward. The outward movement of the push plate 403 can open the gap of the material cylinder 402. At this time, after the gap in the material cylinder 402 is opened, the moxa stick can fall downward. At this time, the turntable 3 can rotate to transfer the moxa stick after feeding to the next drilling station. At this time, the drilling body 2 at the corresponding position moves downward to drill the moxa stick. Therefore, through the cooperation of the feeding mechanism 4 and the turntable 3, and a corresponding discharging component 8 is arranged at the end of the other side station. Through the cooperation of the discharging component 8, the continuous processing efficiency can be improved;

[0056] Among them, the discharging component 8 can be a corresponding clamp with a rotating part. After clamping the moxa stick, the clamp rotates through the rotating part to rotate out of the turntable 3 and fall to the next moxa stick conveying section

[0057] Through the designed first spring 406, the first spring 406 can use its own elastic force to realize the reciprocating movement of the pressing plate 507, improving the movement stability of the pressing plate 507.

[0058] In the present invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; the term "plural" refers to two or more, unless otherwise clearly defined. The terms "installed", "connected", "joined", "fixed", etc. should all be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; "joined" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0059] As described above, only the preferred specific embodiments of the present invention are provided, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A moxa stick puncher for warm acupuncture therapy, comprising a base (1), the top of the base (1) being rotatably connected to a turntable (3), and the turntable (3) having a plurality of transfer tables (7) for limiting the position of moxa sticks, characterized in that: A plurality of punching bodies (2) are provided at positions on the top of the base (1) corresponding to the transfer platform (7), and a loading mechanism (4) is provided on the top of at least one side of the transfer platform (7). A punching mechanism (5) is provided on the bottom of the punching body (2), and a supporting mechanism (6) is transmission-connected to one side of the punching mechanism (5). The supporting mechanism (6) is slidably connected to the transfer platform (7), and the supporting mechanism (6) supports the moxa stick to contact the punching mechanism (5) by pressing down the punching mechanism (5); The drilling mechanism (5) comprises a drill rod (504), the top end of the drill rod (504) is connected to the bottom of the drilling machine body (2), the bottom end of the drill rod (504) is connected to a drill bit (506), one end of the drill rod (504) close to the drill bit (506) is connected to a fixing plate (510), both sides of the top of the fixing plate (510) are provided with sliding holes, and guide rods (509) are slidably connected in the sliding holes, and a pressing plate (507) is connected between the bottom ends of the guide rods (509) on both sides, and the pressing plate (507) is fitted with the top of the drilling hole, and the moxa stick drilling waste is pressed tightly against the surrounding side of the drilling hole by pressing down the pressing plate (507); A second spring (508) is connected to the top of the pressure plate (507), the other end of the second spring (508) is connected to the bottom of the fixing plate (510), and the second spring (508) is sleeved on the outside of the drill rod (504); The punching mechanism (5) further comprises a support cover (501), one side of the support cover (501) is connected to a force block (505), the top of the force block (505) is connected to a rod body, the top of the rod body is connected to the outside of the top of the drill rod (504) through a rod sleeve, the inner side of the support cover (501) is connected to an inner sealing pad (502), the inner sealing pad (502) has an opening, the drill rod (504) is inserted into the opening, and the bottom of the support cover (501) is connected to a sealing cover (503), and the gap at the top of the transfer platform (7) is sealed by pressing down the sealing cover (503); The supporting mechanism (6) comprises a moving rod (601), the top end of the moving rod (601) extends to the top and contacts with the force block (505) at the corresponding position, the bottom end of the moving rod (601) is connected to a driving tooth plate (602), one side of the driving tooth plate (602) is meshed with a force gear (603), the force gear (603) is connected to the outer side of the transfer platform (7), and the other side of the force gear (603) is meshed with a moving plate (604), one side of the moving plate (604) is connected to a lifting sleeve (605), the lifting sleeve (605) is slidably connected to the inner cavity of the transfer platform (7), and the moving plate (604) and the driving tooth plate (602) are driven by the downward pressure of the punching mechanism (5) to drive the lifting sleeve (605) to lift the moxa stick; A plurality of heating blocks are arranged around the outer circumference of the drill bit (506), and the surface of the heating block is an arc surface.

2. The moxa cone puncher for warm acupuncture therapy according to claim 1, characterized in that: The outside of the turntable (3) is connected to a dust suction seat (9), the inside of the dust suction seat (9) is connected to the suction gap inside the transfer platform (7) through a chamber, and the dust suction seat (9) is connected to an external dust extraction device through a pipeline.

3. The moxa cone puncher for warm acupuncture therapy according to claim 1, characterized in that: A groove is provided at the bottom of one side of the transfer platform (7), and a guide rod (509) is connected to the groove. A guide hole is provided at the top of the movable plate (604), and the movable rod (601) is slidably connected to the outside of the guide rod (509) through the guide hole. A slide plate (607) is connected to one side of the driving tooth plate (602), and a sliding hole is provided at the top of the slide plate (607), and a sliding rod (606) is slidably connected in the sliding hole, and the bottom end of the sliding rod (606) is connected to the outside of the transfer platform (7).

4. The moxa cone puncher for warm acupuncture therapy according to claim 1, characterized in that: The feeding mechanism (4) comprises a feeding frame (401), the feeding frame (401) is connected to the top of the base (1), a barrel (402) is installed on the top of the feeding frame (401), and a sliding hole is provided between the barrel (402) and the feeding frame (401), a motor (409) is rotatably connected to the top of the feeding frame (401), the output shaft of the motor (409) is connected to a cam (408), a force plate (407) is attached to one side of the cam (408), and a push rod (404) is connected to one side of the force plate (407), The outer sleeve of the push rod (404) is provided with a fixed block (405), and the fixed block (405) is connected to the top of the loading rack (401). The outer sleeve of the push rod (404) is provided with a first spring (406), and the two ends of the first spring (406) are respectively connected to the corresponding positions of the force-bearing block (505) and one side of the fixed block (405). One end of the push rod (404) is connected to a push plate (403), and the push plate (403) is inserted into an opening opened on one side of the barrel (402). The ejection of moxa sticks is controlled by the intermittent movement of the push plate (403) in the opening.

5. A method for using a moxa stick punch for warm acupuncture therapy, applied to the moxa stick punch for warm acupuncture therapy according to any one of claims 1 to 4, characterized in that: The specific steps include: The moxa stick is delivered to the corresponding transfer platform (7) through the loading mechanism (4), and the turntable (3) rotates to drive the loading station transfer platform (7) to transfer to the next station. At this time, the punching machine body (2) of the next station can drive the punching mechanism (5) downward to punch holes. After running to the next station, a punching mechanism (5) with a larger diameter is set at the station according to the punching process requirements to perform hole expansion and compaction operations. After the hole is expanded at the corresponding side hole expansion station, it is transferred to the next station for unloading and transportation, and the continuous loading and unloading of the moxa stick is used to enhance the efficiency of the continuous drilling process of the moxa stick.

Citation Information

Patent Citations

  • Moxa cone puncher for needle warming moxibustion therapy and use method of moxa cone puncher

    CN119217467A

  • Automobile sealing strip punching and cutting integrated equipment

    CN109605473A

  • Stainless steel perforating machine

    CN214867407U