Thunder-fire moxibustion moxa stick cutting tool

By designing a cutting tool for moxa sticks including a first shear device, a second shear device and a spacing adjustment mechanism, the problems of inaccurate cutting length and low efficiency of moxa sticks are solved, and the accuracy and efficiency of moxa sticks are achieved.

CN223115330UActive Publication Date: 2025-07-18张银燕
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Patent Information

Application Number
CN202422100965.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-07-18
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

In the prior art, the cutting length of the thunder fire moxa stick is inaccurate and inefficient, which affects the treatment effect.

Method used

A thunder fire moxa stick cutting tool including a first shear device, a second shear device and a spacing adjustment mechanism is designed, and precise cutting is achieved by adjusting the spacing of the shear device and using a needle-shaped cutting structure.

Benefits of technology

The length consistency and efficiency of moxa stick cutting are achieved, meeting treatment needs and improving cutting efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of medical auxiliary tools, and particularly relates to a thunder-fire moxibustion moxa stick cutting tool. The utility model provides a thunder fire moxibustion moxa stick cutting tool which comprises a first shearing device, a second shearing device and a distance adjusting mechanism, the first shearing device is connected with the distance adjusting mechanism, the second shearing device is connected with the distance adjusting mechanism, and the second shearing device is connected with the distance adjusting mechanism. The distance adjusting device is used for adjusting the distance between the first shearing device and the second shearing device, and each of the first shearing device and the second shearing device comprises a first component and a second component. The thunder-fire moxibustion moxa stick cutting tool can accurately and efficiently cut thunder-fire moxibustion moxa sticks meeting length requirements according to treatment requirements.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical auxiliary tools, in particular to a moxa stick cutting tool for thunder-fire moxibustion. Background Art

[0002] Thunder-fire moxibustion is a traditional Chinese medicine moxibustion method, which requires the use of moxa sticks made of a mixture of traditional Chinese medicine powder and moxa floss. The moxa sticks used in thunder-fire moxibustion are usually made into long strips first, and then cut into small sections according to certain length specifications according to the actual needs of treatment. At present, special moxa stick scissors are used to cut the long moxa sticks. However, during the cutting process, the cutting personnel can only cut according to the estimated length, which is likely to cause the length of the cut moxa sticks to be inaccurate and not meet the usage requirements, thus having an adverse impact on the treatment effect. If the moxa stick is measured and marked first and then cut according to the mark, the efficiency is relatively low. Content of the Utility Model

[0003] In view of this, the utility model provides a moxa stick cutting tool for thunder-fire moxibustion, which is used to solve the technical problems of inaccurate cutting length and low cutting efficiency of thunder-fire moxa sticks in the prior art.

[0004] The technical solution adopted by the utility model is as follows:

[0005] In the first aspect, the utility model provides a moxa stick cutting tool for thunder-fire moxibustion, which includes a first shearing device, a second shearing device and a spacing adjusting mechanism. The first shearing device is connected to the spacing adjusting mechanism, and the second shearing device is connected to the spacing adjusting mechanism. The spacing adjusting mechanism is used to adjust the spacing between the first shearing device and the second shearing device. Both the first shearing device and the second shearing device include a first component and a second component. The first component includes a first shearing part and a first holding part, and the second component includes a second shearing part and a second holding part. The first component and the second component are rotatably connected at one end where the first shearing part faces the first holding part and at one end where the second shearing part faces the second holding part. The first shearing part and the second shearing part are arc-shaped, and needle-shaped cutting structures are arranged on the inner sides of the first shearing part and the second shearing part.

[0006] Preferably, scales are arranged on the spacing adjusting mechanism. The spacing adjusting mechanism includes a third component and a fourth component. The first shearing device is connected to the third component, and the second shearing device is connected to the fourth component. The fourth component is connected to the third component in a manner of relative movement along a straight line direction.

[0007] Preferably, the third component is strip-shaped, the fourth component is slidably connected to the third component, and the scales are arranged on the third component.

[0008] Preferably, one of the third component and the fourth component is provided with a linear slide rail, and the other is provided with a linear slide groove, and the third component and the fourth component are slidably connected via the slide rail and the slide groove.

[0009] Preferably, a first mounting seat is provided on the third component, a second mounting seat is provided on the fourth component, the first shearing device is connected to the first mounting seat, and the second cutting device is connected to the second mounting seat.

[0010] Preferably, the first shearing device is detachably connected to the first mounting seat and / or the second shearing device is detachably connected to the second mounting seat.

[0011] Preferably, an inner polygonal mounting groove is provided on the first mounting seat, an outer polygonal connecting block matching the mounting groove is provided on the first shearing device, the mounting groove and the connecting block are connected by magnetic attraction and / or an inner polygonal mounting groove is provided on the second mounting seat, an outer polygonal connecting block matching the mounting groove is provided on the second shearing device, and the mounting groove and the connecting block are connected by magnetic attraction.

[0012] Preferably, a clamping seat is provided on the first mounting seat, a clamping head is provided on the first shearing device, and the clamping head is clamped with the clamping seat and / or a clamping seat is provided on the second mounting seat, a clamping head is provided on the second shearing device, and the clamping head is clamped with the clamping seat.

[0013] Preferably, the spacing adjustment mechanism also includes a locking member, which includes a locking head with an external thread and a knob portion, and the fourth component is provided with a threaded hole, the external thread of the locking head cooperates with the threaded hole on the fourth component, the locking head passes through the threaded hole on the fourth component, and the knob portion is located at one end of the locking head facing away from the third component.

[0014] Preferably, a paddle is provided at one end of the fourth component away from the second shearing device, and the paddle extends outward from the side wall of the fourth component along a preset direction, and the preset direction is a direction perpendicular to the direction in which the fourth component moves relative to the third component.

[0015] Beneficial effects: The moxibustion stick cutting tool of the present utility model is provided with a first shearing device and a second shearing device, and the two shearing devices are connected to a spacing adjusting mechanism. Before cutting the moxibustion stick of thunder-fire moxibustion, adjust the spacing adjusting mechanism first to make the spacing between the first shearing device and the second shearing device the same as the length of the small moxibustion stick segments to be obtained after shearing. Then pass the moxibustion stick through the first shearing device and the second shearing device, operate the two shearing devices to cut the moxibustion stick. After cutting is completed, continue to move the moxibustion stick to the position passing through the two shearing devices, and cut the moxibustion stick segment by segment according to the foregoing method, so as to obtain moxibustion sticks that meet the length specifications. Since the present utility model can continuously cut the moxibustion stick after adjusting the two shearing devices at one time, and there is no need to measure or adjust the length in the middle, it can not only accurately cut moxibustion sticks with consistent length and meeting the specifications, but also has high cutting efficiency. Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required to be used in the embodiments of the present utility model will be briefly introduced below. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to these drawings, and all of them are within the protection scope of the present utility model.

[0017] Figure 1 Three-dimensional structure schematic diagram of the moxibustion stick cutting tool of the present utility model;

[0018] Figure 2 Three-dimensional structure schematic diagram of the first shearing device in the present utility model;

[0019] Figure 3 Three-dimensional structure schematic diagram of the spacing adjusting mechanism in the present utility model;

[0020] Figure 4 Three-dimensional structure schematic diagram of the fourth component of the present utility model;

[0021] Figure 5 Three-dimensional structure schematic diagram of another perspective of the spacing adjusting mechanism of the present utility model;

[0022] Figure 6 Three-dimensional structure schematic diagram of the clamping structure of the present utility model;

[0023] Figure 7 Three-dimensional structure schematic diagram of the moxibustion stick cutting tool of the present utility model that adopts magnetic attraction connection;

[0024] Figure 8 Structure schematic diagram of the installation of the second shearing device and the fourth component in the present utility model.

[0025] Parts and their numbers in the figure:

[0026] The first shearing device 10, the first component 11, the first shearing part 111, the first holding part 112, the second component 12, the second shearing part 121, the second holding part 122, the cutting structure 113, the connecting block 13, the chuck 14, the second shearing device 20, the spacing adjusting mechanism 30, the third component 31, the linear sliding groove 311, the first mounting seat 312, the fourth component 32, the linear sliding rail 321, the second mounting seat 322, the paddle 323, the mounting groove 313, the card seat 314, the locking part 33, the base 3141, the driving part 3142, the first claw 3143, the second claw 3144. Detailed implementation manners

[0027] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or sequence between these entities or operations. In the description of the present utility model, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation to the present utility model. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, the elements defined by the statement "comprising..." do not exclude the existence of additional identical elements in the process, method, article or device including the said elements. If there is no conflict, the embodiments of the present utility model and the various features in the embodiments may be combined with each other, and all are within the protection scope of the present utility model.

[0028] Embodiment 1

[0029] As Figure 1As shown in the figure, the utility model provides a moxa stick cutting tool for thunder-fire moxibustion. The moxa stick cutting tool for thunder-fire moxibustion includes a first shearing device 10, a second shearing device 20 and a spacing adjusting mechanism 30. The first shearing device 10 is connected to the spacing adjusting mechanism 30, and the second shearing device 20 is connected to the spacing adjusting mechanism 30. The spacing adjusting mechanism is used to adjust the spacing between the first shearing device 10 and the second shearing device 20.

[0030] As Figure 2 shown in the figure, both the first shearing device 10 and the second shearing device 20 include a first component 11 and a second component 12. The first component 11 includes a first shearing part 111 and a first holding part 112. The second component 12 includes a second shearing part 121 and a second holding part 122. The first component 11 and the second component 12 are rotatably connected at one end of the first shearing part 111 facing the first holding part 112 and one end of the second shearing part 121 facing the second holding part 122. The first shearing part 111 and the second shearing part 121 are arc-shaped, and a needle-shaped cutting structure 113 is provided on the inner sides of the first shearing part 111 and the second shearing part 121.

[0031] The first component 11 and the second component 12 of the foregoing first shearing device 10 or second shearing device 20 can be rotatably connected by means of hinging. The hinge point is located at the tail of the shearing part, that is, the end of the shearing part close to the holding part. After hinging, a closed area is formed between the first shearing part 111 and the second shearing part 121. The direction towards the closed area is the inner sides of the first shearing part 111 and the second shearing part 121. The needle-shaped cutting structure 113 is provided on one side of the first shearing part 111 and the second shearing part 121 facing the foregoing closed area. After the first component 11 and the second component 12 are hinged, the first shearing part 111 and the second shearing part 121 can rotate relative to each other. During the rotation, the size of the foregoing closed area will change accordingly. When the size of the closed area is larger than the size of the moxa stick, the moxa stick is inserted into the closed area, and then the first component 11 and the second component 12 are rotated to reduce the closed area. As the closed area shrinks, the needle-shaped cutting structures 113 on the inner sides of the two shearing parts cut the moxa stick. To facilitate driving the relative rotation of the first shearing part 111 and the second shearing part 121, in this embodiment, a first holding part 112 and a second holding part 122 are respectively provided on the first component 11 and the second component 12. The operator drives the relative rotation of the first shearing part 111 and the second shearing part 121 by operating the relative rotation of the two holding parts so as to cut the moxa stick.

[0032] Before cutting the moxa stick, first adjust the distance between the first cutting device 10 and the second cutting device 20 through the spacing adjustment mechanism 30 according to the length specification of the small segments obtained after cutting the moxa stick. For example, if the length of each small segment of the moxa stick after cutting is required to be 3 cm, then adjust the distance between the first cutting device 10 and the second cutting device 20 to 3 cm through the spacing adjustment mechanism 30.

[0033] After the spacing is adjusted, pass the moxa stick through the hole formed by the first cutting part 111 and the second cutting part 121 of the two cutting devices, and then operate the first cutting device 10 and the second cutting device 20 to cut the moxa stick. Since the distance between the first cutting device 10 and the second cutting device 20 is the length set in advance according to the usage requirements, the length of the moxa stick between the first cutting device 10 and the second cutting device 20 after cutting is exactly the required length set in advance, that is, the distance between the first cutting device 10 and the second cutting device 20. After the previous section is cut, move the remaining moxa stick so that it just passes through the two cutting devices, and then operate the two cutting devices to cut, and then repeat the above steps to continue cutting the remaining moxa stick section by section.

[0034] When it is necessary to change the length specification of the small segment of the moxa stick, the distance between the two cutting devices can be adjusted by using the spacing adjustment mechanism according to the new length specification. For example, if the length specification of the small segment of the moxa stick is changed to 4 cm, the distance between the two cutting devices can be adjusted to 4 cm through the spacing adjustment mechanism, and then operate the two cutting devices to cut the moxa stick. At this time, the length of the small segment of the moxa stick obtained is 4 cm that meets the new length requirement.

[0035] After adopting the foregoing method, the length of the cut moxa stick can be flexibly changed, so that the length of the moxa stick can be adjusted arbitrarily according to the needs, and the cutting accuracy is also well guaranteed.

[0036] As an example, in this embodiment, a scale is provided on the spacing adjustment mechanism 30. The spacing adjustment mechanism 30 includes a third component 31 and a fourth component 32. The first cutting device 10 is connected to the third component 31, and the second cutting device 20 is connected to the fourth component 32. The fourth component 32 is connected to the third component 31 in a manner of relative movement along a straight line direction.

[0037] In this embodiment, the first shearing device 10 and the second shearing device 20 can be respectively installed on the third component 31 and the fourth component 32. Since the fourth component 32 can move relative to the third component 31 in a straight line direction after the fourth component 32 is connected to the third component 31, the second shearing device 20 is driven to move relative to the first shearing device 10 by moving the fourth component 32 relative to the third component 31, so as to adjust the distance between the first shearing device 10 and the second shearing device 20. Specifically, in implementation, the first shearing device 10 and the second shearing device 20 can be installed on the distance adjusting mechanism 30 in a parallel manner, and the rotation axis direction of the relative rotation of the first component 11 and the second component 12 is parallel to the straight line direction of the movement of the fourth component 32 relative to the third component 31, so that the moxa sticks that meet the length requirements can be sheared more accurately.

[0038] As Figure 1 and Figure 3 shown, the third component 31 is strip-shaped, the fourth component 32 is slidably connected to the third component 31, and the scale is set on the third component 31. In this embodiment, the third component 31 can be set as a slender strip, and the length of the fourth component 32 is relatively short, so that the fourth component 32 can slide along the third component 31 to adjust the distance between the first shearing device 10 and the second shearing device 20. This way facilitates the user to accurately know the distance between the first shearing device 10 and the second shearing device 20 through the scale corresponding to the position of the fourth component 32.

[0039] As Figure 1 and Figure 3 shown, as an example, in this embodiment, one of the third component 31 and the fourth component 32 is provided with a linear slide rail 321, and the other is provided with a linear slide groove 311, and the third component 31 and the fourth component 32 are slidably connected through the slide rail and the slide groove.

[0040] Specifically, in implementation, the third component 31 can be set as a flat long strip, and two outwardly protruding slide rails are provided on the two side walls of the third component 31. The direction of the slide rails is parallel to the rotation axis direction of the relative rotation of the first component 11 and the second component 12. Specifically, two grooves can be processed at one end of the third component 31 away from the first shearing device 10 and the second shearing device 20, and the remaining part will naturally form two outwardly protruding slide rails.

[0041] As Figure 4As shown, the fourth component 32 can adopt a semi-enclosing structure and be sleeved on the third component 31, so that the slide rails on the third component 31 are just embedded into the chutes on both sides of the fourth component 32. Under the constraint of the slide rails and chutes on both sides, the fourth component 32 can move linearly relative to the third component 31 accurately, so as to quickly and accurately adjust the distance between the first shearing device 10 and the second shearing device 20.

[0042] As an example, in this embodiment, a first mounting seat 312 is provided on the third component 31, a second mounting seat 322 is provided on the fourth component 32, the first shearing device 10 is connected to the first mounting seat 312, and the second shearing device 20 is connected to the second mounting seat 322.

[0043] As Figure 5 shown, in this embodiment, the first shearing device is mounted on the first mounting seat 312 on the third component 31, and the second shearing device 20 is mounted on the second mounting seat 322 of the fourth component 32. This can facilitate the accurate positioning and installation of the first shearing device 10 and the second shearing device 20, and will not affect the sliding of the fourth component 32 relative to the third component 31.

[0044] As Figure 1 shown, when performing specific treatments, moxa sticks of different diameters are often selected according to needs for thunder-fire moxibustion, and shearing devices of different diameters also need to be selected for shearing. For this reason, in this embodiment, the first shearing device 10 is detachably connected to the first mounting seat 312 and / or the second shearing device 20 is detachably connected to the second mounting seat 322.

[0045] Since the first shearing device 10 and the second shearing device 20 in this embodiment are detachably connected to the mounting seats respectively, when the diameter of the moxa stick to be cut changes and the corresponding shearing device needs to be replaced, in this embodiment, the first shearing device 10 can be conveniently detached from the first mounting seat 312, and then a new first shearing device 10 with a different diameter specification can be installed on the first mounting seat 312. Similarly, the first shearing device 10 can be conveniently detached from the first mounting seat 312, and then a new second shearing device 20 with a different diameter specification can be installed on the second mounting seat 322. After adopting the foregoing structure, the corresponding shearing device can be quickly replaced according to the diameter of the moxa stick. Therefore, the thunder-fire moxibustion moxa stick cutting tool in this embodiment can be flexibly adjusted according to the length specification and diameter specification of the moxa stick, so as to efficiently cut moxa sticks of any specification.

[0046] As Figure 1 and Figure 6As shown in the figure, as an example of one of the detachable connections, the detachable connection between the mounting seat and the corresponding shearing device can be achieved by means of snap connection, and the snap connection structure can adopt an existing snap connection structure. It can also adopt the snap connection structure in this embodiment, that is, a clamping seat 314 is provided on the first mounting seat 312, a clamping head 14 is provided on the first shearing device 10, and the clamping head 14 is snap-connected to the clamping seat 314 and / or a clamping seat 314 is provided on the second mounting seat 322, a clamping head 14 is provided on the second shearing device 20, and the clamping head 14 is snap-connected to the clamping seat 314.

[0047] When installing the shearing device onto the mounting seat, the clamping head 14 can be inserted into the clamping seat 314. When it is necessary to replace the shearing device, the clamping head 14 can be pulled out from the clamping seat 314. In order to prevent the clamping head 14 from exiting along the vertical direction of the clamping seat 314, anti-slip textures can be provided at the place where the clamping head 14 and the clamping seat 314 contact the clamping head 14 to increase the friction force and avoid the relative movement between the clamping head 14 and the clamping seat 314. As Figure 6 shown, the clamping seat 314 includes a base 3141, a driving member 3142, a first claw 3143 and a second claw 3144. The first claw 3143 and the second claw 3144 are rotatably connected to the base 3141, and the driving member 3142 is hinged to the first claw 3143 and the second claw 3144. When the clamping head 14 is inserted into the clamping seat 314, the clamping head 14 pushes the driving member 3142 in the direction close to the base 3141. During the movement of the driving member 3142, the first claw 3143 and the second claw 3144 are driven to rotate in the direction of clamping the clamping head 14, so as to clamp the clamping head 14 tightly. A barb structure is provided at the end of the clamping head 14 facing the clamping seat 314, so as to resist the claw in the exiting direction and prevent the clamping head 14 from disengaging from the clamping seat 314.

[0048] As Figure 7 and Figure 8 shown, as an example of one of the detachable connections, in this embodiment, an inner polygonal mounting groove 313 is provided on the first mounting seat 312, an outer polygonal connecting block 13 matching the mounting groove 313 is provided on the first shearing device 10, and the mounting groove 313 and the connecting block 13 are magnetically connected and / or an inner polygonal mounting groove 313 is provided on the second mounting seat 322, an outer polygonal connecting block 13 matching the mounting groove 313 is provided on the second shearing device 20, and the mounting groove 313 and the connecting block 13 are magnetically connected.

[0049] The mounting groove 313 and the connecting block 13 can be made of magnetic materials such as magnets. When the shearing device and the mounting seat need to be installed, the connecting block 13 can be aligned with the mounting groove 313, and the direction of the connecting block 13 can be adjusted to match the direction of the mounting groove 313, and then the connecting block 13 is embedded in the mounting groove 313, and the connecting block 13 and the mounting groove 313 are automatically attracted by the magnetic field force. Since the connecting block 13 and the mounting groove 313 adopt a polygonal structure, the shearing device and the mounting seat will not rotate in the circumferential direction after being connected.

[0050] like Figure 1 As shown, in this embodiment, the spacing adjustment mechanism 30 also includes a locking member 33, and the locking member 33 includes a locking head with an external thread and a knob portion. A threaded hole is provided on the fourth component 32, and the external thread of the locking head cooperates with the threaded hole on the fourth component 32. The locking head passes through the threaded hole on the fourth component 32, and the knob portion is located at the end of the locking head facing away from the third component 31.

[0051] When the fourth component 32 moves to a predetermined distance relative to the third component 31, the knob of the locking member 33 is rotated to move the locking member 33 in a direction of abutting the third component 31 under the action of the thread. When the locking member 33 moves to abut the third component 31 reliably, the fourth component 32 is locked on the third component 31 by the locking member 33 and cannot move relatively. Through the aforementioned locking structure, the fourth component 32 and the third component 31 can be kept in a fixed position after the spacing is adjusted, thereby ensuring the accuracy and stability of the moxa stick cutting length.

[0052] like Figure 5 As shown, in this embodiment, a paddle 323 is provided at one end of the fourth component 32 away from the second shearing device 20, and the paddle 323 extends outward from the side wall of the fourth component 32 along a preset direction, and the preset direction is a direction perpendicular to the direction in which the fourth component 32 moves relative to the third component 31. However, when it is necessary to adjust the spacing between the first shearing device 10 and the second shearing device 20, the paddles 323 on the two side walls of the fourth component 32 can be moved with two fingers respectively. Since the paddle 323 extends in a direction perpendicular to the direction in which the fourth component 32 moves relative to the third component 31, it is convenient for the operator to insert the finger from the vertical direction and move the paddle 323 in the moving direction, so as to conveniently move the fourth component 32 without being affected by the second shearing device 20.

[0053] The above are only specific embodiments of the present utility model. Those skilled in the art can clearly understand that for the convenience and brevity of description, the specific working processes of the above-described systems, modules, and units can refer to the corresponding processes in the foregoing method embodiments and will not be elaborated herein. It should be understood that the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should all be covered within the protection scope of the present utility model.

Claims

1. Thunder-fire moxibustion moxa stick cutting tool, characterized in that, It includes a first shearing device, a second shearing device and a spacing adjustment mechanism. The first shearing device is connected to the spacing adjustment mechanism, and the second shearing device is connected to the spacing adjustment mechanism. The spacing adjustment mechanism is used to adjust the spacing between the first shearing device and the second shearing device. Both the first shearing device and the second shearing device include a first component and a second component. The first component includes a first shearing part and a first holding part, and the second component includes a second shearing part and a second holding part. The first component and the second component are rotatably connected at one end where the first shearing part faces the first holding part and at one end where the second shearing part faces the second holding part. The first shearing part and the second shearing part are arc-shaped, and needle-shaped cutting structures are provided on the inner sides of the first shearing part and the second shearing part.

2. The thunder-fire moxibustion stick cutting tool according to claim 1, characterized in that, A scale is provided on the spacing adjustment mechanism. The spacing adjustment mechanism includes a third component and a fourth component. The first shearing device is connected to the third component, and the second shearing device is connected to the fourth component. The fourth component and the third component are connected in a way that they move relatively along a straight line direction.

3. The thunder-fire moxibustion stick cutting tool according to claim 2, characterized in that, The third component is bar-shaped, and the fourth component is slidably connected to the third component. The scale is provided on the third component.

4. The thunder-fire moxibustion stick cutting tool according to claim 2, characterized in that, One of the third component and the fourth component is provided with a linear slide rail, and the other is provided with a linear slide groove. The third component and the fourth component form a sliding connection through the linear slide rail and the linear slide groove.

5. The thunder-fire moxibustion stick cutting tool according to claim 2, wherein A first mounting seat is provided on the third component, and a second mounting seat is provided on the fourth component. The first shearing device is connected to the first mounting seat, and the second shearing device is connected to the second mounting seat.

6. The thunder-fire moxibustion stick cutting tool according to claim 5, characterized in that, The first shearing device is detachably connected to the first mounting seat and / or the second shearing device is detachably connected to the second mounting seat.

7. The moxibustion stick cutting tool according to claim 6, wherein An inner polygonal mounting groove is provided on the first mounting seat, and an outer polygonal connecting block complementary to the mounting groove is provided on the first shearing device. The mounting groove and the connecting block are magnetically connected and / or an inner polygonal mounting groove is provided on the second mounting seat, and an outer polygonal connecting block complementary to the mounting groove is provided on the second shearing device. The mounting groove and the connecting block are magnetically connected.

8. The moxibustion stick cutting tool according to claim 6, wherein, A clamping seat is provided on the first mounting seat, and a clamping head is provided on the first shearing device. The clamping head is clamped with the clamping seat and / or a clamping seat is provided on the second mounting seat, and a clamping head is provided on the second shearing device. The clamping head is clamped with the clamping seat.

9. The moxibustion stick cutting tool for thunder-fire moxibustion according to any one of claims 2 to 8, characterized in that The spacing adjustment mechanism further includes a locking member. The locking member includes a knob part and a locking head provided with an external thread. A threaded hole is provided on the fourth component. The external thread of the locking head is matched with the threaded hole on the fourth component. The locking head passes through the threaded hole on the fourth component, and the knob part is located at one end of the locking head facing away from the third component.

10. The moxibustion stick cutting tool for thunder-fire moxibustion according to any one of claims 2 to 8, characterized in that, A dial is provided at one end of the fourth component away from the second shearing device. The dial extends outward from the side wall of the fourth component along a preset direction. The preset direction is a direction perpendicular to the direction in which the fourth component moves relative to the third component.