Moxibustion rod feeding mechanism and moxibustion device assembling equipment
The automatic insertion and gluing mechanism for moxibustion sticks solves the problems of increased labor intensity and low efficiency caused by manual operation in existing technologies, and achieves efficient gluing and moxibustion device assembly.
Patent Information
- Application Number
- CN202423022445.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-09
AI Technical Summary
In existing technologies, applying adhesive to moxibustion sticks requires operators to use both hands, which increases labor intensity and reduces adhesive application efficiency.
A moxibustion stick feeding mechanism was designed. Through the cooperation of a turntable, a feeding pipe and an air pump, the moxibustion sticks are automatically inserted into the channel and coated with glue, reducing manual operation and improving the glue coating efficiency.
It reduces labor intensity, improves the quality and efficiency of adhesive application, and improves overall assembly efficiency by assembling the moxibustion device through the pin.
Smart Images

Figure CN223587619U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to moxa -moxibustion production equipment technical field, concretely relates to a moxa -moxibustion stick feeding mechanism and moxa -moxibustion equipment. BACKGROUND
[0002] Moxibustion is a traditional Chinese medicine health care therapy.
[0003] The utility model discloses a kind of moxa -moxibustion structures with open hole moxa stick, which is disclosed in publication number CN205359960U, after igniting moxa stick, just tear off the release layer on the seat body adhesive paper, moxa -moxibustion can be pasted on skin acupoint, moxa -moxibustion is carried out, and the smoke released by moxa stick ignition enters the cavity inside moxa -moxibustion shell mostly from the hole in the middle of moxa stick, then slowly overflow from the small hole at the edge of cavity, so that moxa -moxibustion does not need to be moved everywhere when using, and moxa stick ash will automatically fall in moxa stick ash storage groove, and will not directly fall on skin.
[0004] At present, when assembling moxa -moxibustion seat and moxa -moxibustion stick of moxa -moxibustion, moxa -moxibustion stick with adhesive on one end is usually inserted into the hole of moxa -moxibustion seat. However, when gluing moxa -moxibustion stick, operator often needs to operate with both hands, one hand holding moxa -moxibustion stick, and the other hand holding glue brush to glue, since the number of moxa -moxibustion sticks is large, it needs to be taken and placed frequently, which increases labor intensity, and the gluing efficiency is not high. UTILITY MODEL CONTENTS
[0005] The utility model aims at overcoming the above technical deficiencies, and provides a moxa -moxibustion stick feeding mechanism, i.e. moxa -moxibustion equipment, to solve the technical problem that in the prior art, when gluing moxa -moxibustion stick, operator often needs to operate with both hands, one hand holding moxa -moxibustion stick, and the other hand holding glue brush to glue, since the number of moxa -moxibustion sticks is large, it needs to be taken and placed frequently, which increases labor intensity, and the gluing efficiency is not high.
[0006] To achieve the above technical purpose, the utility model takes the following technical scheme:
[0007] In the first aspect, the utility model provides a moxa -moxibustion stick feeding mechanism, which comprises:
[0008] A table body;
[0009] A turntable is rotatably arranged on the table body;
[0010] A plurality of placing seats are arranged on the turntable and sequentially arranged along the circumference of the turntable, and each placing seat is provided with a channel for inserting moxa -moxibustion stick;
[0011] A feeding pipe is arranged on the table body and provided with a discharge port opposite to the channel; and
[0012] A gas pump is connected to the feeding pipe and can send compressed gas to the discharging port when the placing seat is rotated to the lower side of the discharging port, so as to drive the moxa stick in the feeding pipe to be inserted into the adjacent channel from the discharging port.
[0013] In some embodiments, the moxa stick feeding mechanism further comprises a mounting frame and a driving cylinder, the mounting frame is mounted on the table body and has a fixing plate above the placing seat, and the driving cylinder is mounted on the fixing plate and has a telescopic rod capable of being telescopically extended towards the placing seat.
[0014] One end of the feeding pipe provided with the discharging port is mounted on the telescopic rod and can move along with the telescopic rod to approach and move away from the placing seat.
[0015] In some embodiments, the moxa stick feeding mechanism further comprises a mounting plate and a plurality of discharging nozzles, the mounting plate is mounted on the telescopic rod, each of the discharging nozzles has a plug capable of being inserted into the discharging port, and the outlet apertures of the plurality of discharging nozzles are different in size and can be selectively assembled on the mounting plate.
[0016] Each of the placing seats comprises a main seat and a plurality of insertion seats, each of the insertion seats is provided with the channel, and the plurality of insertion seats are selectively mounted on the main seat and correspond to the plurality of discharging nozzles one by one.
[0017] In some embodiments, the mounting plate is provided with an assembly screw hole in the up-down direction, and the outer periphery of each of the discharging nozzles is provided with an external thread corresponding to the assembly screw hole to form a threaded segment, so that each of the discharging nozzles can be screwed into the assembly screw hole.
[0018] In some embodiments, the main seat is provided with a mounting screw hole in the up-down direction, and each of the insertion seats is provided with a mounting through hole corresponding to the mounting screw hole.
[0019] The placing seat further comprises a mounting bolt, the mounting bolt is provided through the mounting through hole and is screwed into the mounting screw hole, so that the plurality of insertion seats are selectively mounted on the main seat.
[0020] In some embodiments, the placing seats are spaced apart above the rotary table, and the moxa stick feeding mechanism further comprises a baffle, the baffle is mounted on the table body and located between the placing seats and the rotary table to stop the moxa stick.
[0021] In some embodiments, the moxa stick feeding mechanism further comprises a frame body, the frame body is mounted on the table body, and the baffle is mounted on the frame body and can move in the up-down direction relative to the frame body to adjust the distance between the baffle and the placing seat.
[0022] In some embodiments, the frame body is provided with an adjusting hole in the up-down direction, the baffle is provided with a connecting plate extending in the up-down direction, and the connecting plate is provided with a connecting hole corresponding to the adjusting hole;
[0023] The moxa stick loading mechanism further comprises an adjusting bolt and an adjusting nut, the adjusting bolt passes through the connecting hole and the adjusting hole, and the adjusting nut is screwed on one end of the adjusting bolt extending out of the adjusting hole.
[0024] In some embodiments, the moxa stick loading mechanism further comprises a flexible pad, and the flexible pad is installed on one end of the baffle close to the placement seat.
[0025] In a second aspect, the utility model also provides a moxa stick loading mechanism.
[0026] Compared with the prior art, in the moxa stick loading mechanism, when it is necessary to glue the moxa stick, the rotating table is first driven to rotate, so that one placement seat is rotated to below the discharge port of the feeding pipe; then the air pump is used to pump compressed gas into the feeding pipe, so that the moxa stick at the discharge port is pressed into the channel of the placement seat; then the rotating table is continuously driven to rotate, so that the next placement seat is rotated to below the discharge port of the feeding pipe, and the placement seat with the inserted moxa stick is rotated away from the discharge port at this time, so that the glued moxa stick can be glued. In this way, the moxa stick is inserted into the channel of the placement seat and fixed before being glued, the gluing quality is improved, the operator does not need to operate with both hands, the labor intensity is reduced, continuous gluing can be carried out, and the gluing efficiency is improved. In addition, after the glue is applied, the moxa stick in the channel can be directly pressed into the hole of the moxa seat by the ejector pin, so that the moxa stick is assembled, and the moxa stick assembly efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a schematic view of the moxa stick loading mechanism of the utility model embodiment;
[0028] Figure 2 is Figure 1 a partial schematic view of the moxa stick loading mechanism;
[0029] Figure 3 is Figure 1 a frame schematic view of the air pump and the feeding pipe;
[0030] Figure 4 is a schematic view of the moxa stick of an embodiment;
[0031] Figure 5 is Figure 2 a schematic view of the mounting plate, the discharge nozzle and the placement seat;
[0032] Figure 6 is Figure 5The explosion view of the mounting plate and the discharge nozzle;
[0033] Figure 7 is Figure 2 The explosion view of the mounting plate and the discharge nozzle;
[0034] Figure 8 is Figure 2 The explosion view of the mounting plate and the discharge nozzle.
[0035] BRIEF DESCRIPTION OF DRAWINGS
[0036] 1, the base; 2, the rotary table; 3, the mounting seat; 3a, the channel; 31, the main body seat; 31a, the mounting screw hole; 32, the plug-in seat; 32a, the mounting through hole; 4, the feeding pipe; 4a, the discharge port; 41, the discharge nozzle; 42, the threaded section; 43, the material pipe; 44, the air inlet branch pipe; 5, the air pump; 6, the mounting frame; 61, the driving cylinder; 62, the mounting plate; 62a, the assembly screw hole; 7, the baffle; 71, the connecting plate; 71a, the connecting hole; 8, the adjusting hole; 9, the adjusting bolt; 91, the adjusting nut; 10, the moxa stick seat; 20, the moxa stick; 30, the base. DETAILED DESCRIPTION
[0037] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.
[0038] In order to solve the technical problem that in the prior art, when gluing the moxa stick, the operator needs to operate with both hands, one hand holding the moxa stick and the other hand holding the glue brush to glue, because the number of moxa sticks is large, it needs to be taken and placed frequently, which increases the labor intensity, and the gluing efficiency is not high, the utility model provides a moxa stick feeding mechanism, which can fix the moxa stick in the channel before gluing, improve the gluing quality, and does not need the operator to operate with both hands, reduce the labor intensity, and can continuously glue, improve the gluing efficiency. In addition, after gluing, the moxa stick in the channel can be directly pressed into the hole of the moxa stick seat by the ejector pin to complete the moxa stick assembly, improve the moxa stick assembly efficiency.
[0039] It should be noted that the moxa stick feeding mechanism of the utility model is used in but not limited to moxa stick assembly equipment and the like, in order to facilitate the description, in the utility model, only the moxa stick feeding mechanism applied to the moxa stick assembly equipment is taken as an example for description, and the principle of the moxa stick feeding mechanism applied to other types of equipment is substantially the same as that applied to the moxa stick assembly equipment, which is not described here.
[0040] Please refer to Figures 1 to 4 , Figures 1 to 4The structure schematic view of the moxa stick feeding mechanism in an embodiment of the utility model, the moxa stick feeding mechanism includes the table body 1, the rotating table 2, the feeding pipe 4, the air pump 5 and multiple placing seats 3;The rotating table 2 is rotatably arranged on the table body 1;Multiple placing seats 3 are arranged on the rotating table 2 and are sequentially arranged along the circumference of the rotating table 2, each placing seat 3 is provided with a channel 3a for inserting the moxa stick 20;The feeding pipe 4 is arranged on the table body 1 and is provided with a discharge port 4a opposite the channel 3a;The gas outlet of the air pump 5 is communicated with the feeding pipe 4, and when the placing seat 3 is rotated to below the discharge port 4a, compressed gas can be delivered to the discharge port 4a to drive the moxa stick 20 in the feeding pipe 4 to be inserted into the adjacent channel 3a from the discharge port 4a.It needs to be explained that in the example of the drawing, the channel 3a of each placing seat 3 is arranged along the up-down direction;And the discharge port 4a of the feeding pipe 4 is located above the placing seat 3.
[0041] When the moxa stick 20 needs to be coated with glue in the moxa stick feeding mechanism provided by the utility model, the rotating table 2 is first driven to rotate, so that one placing seat 3 is rotated to below the discharge port 4a of the feeding pipe 4;Then the air pump 5 pumps compressed gas into the feeding pipe 4 to press the moxa stick 20 at the discharge port 4a into the channel 3a of the placing seat 3;Then the rotating table 2 is continuously driven to rotate, so that the next placing seat 3 is rotated to below the discharge port 4a of the feeding pipe 4, and the placing seat 3 that has been inserted with the moxa stick 20 is rotated away from the discharge port 4a, so that the fixed moxa stick 20 can be coated with glue. In this way, the moxa stick 20 is inserted into the channel 3a of the placing seat 3 and fixed before being coated with glue, which improves the glue coating quality, does not require the operator to operate with both hands, reduces the labor intensity, and can continuously coat the glue, improving the glue coating efficiency. In addition, after the glue is coated, the moxa stick 20 in the channel 3a can be directly pressed into the hole of the moxa seat 10 by the ejector pin to complete the moxa device assembly, improving the moxa device assembly efficiency.
[0042] It needs to be explained that in an embodiment, the feeding pipe 4 includes a material pipe 43 and an air inlet branch pipe 44, the material pipe 43 is used for conveying the moxa stick 20, the discharge port 4a is located at the end of the material pipe 43, and the air inlet branch pipe 44 is communicated with the material pipe 43 and the gas outlet of the air pump 5 and is used for conveying compressed gas into the material pipe 43 to press the moxa stick 20 in the material pipe 43 towards the channel 3a of the placing seat 3 from the discharge port 4a. In addition, the front end of the material pipe 43 at the communication position with the air inlet branch pipe 44 is provided with a switch to control the on-off and adjust the discharging amount. It should be understood that the channel 3a penetrates the body of the placing seat 3.
[0043] In one of the embodiments, the moxa stick feeding mechanism further includes a mounting frame 6 and a driving cylinder 61, the mounting frame 6 is mounted on the table body 1 and has a fixed plate located above the placing seat 3, the driving cylinder 61 is mounted on the fixed plate and its telescopic rod can be telescopic towards the placing seat 3;One end of the feeding pipe 4 provided with the discharge port 4a is mounted on the telescopic rod and can move with the telescopic rod to approach and move away from the placing seat 3.
[0044] In the embodiment, the distance between the discharge port 4a of the feeding pipe 4 and the placement seat 3 can be adjusted by driving the telescopic rod of the air cylinder 61. Therefore, before the placement seat 3 is rotated to the lower side of the discharge port 4a, the feeding pipe 4 can be first lifted by driving the air cylinder 61, so that the discharge port 4a is lifted to a position away from the placement seat 3, to avoid interference between the two; and when the placement seat 3 is rotated to the lower side of the discharge port 4a, the feeding pipe 4 is then lowered by driving the air cylinder 61, so that the end of the discharge port 4a is lowered to abut the placement seat 3, to ensure that the moxa stick 20 is centrally inserted into the channel 3a, to achieve better guiding effect. It should be noted that in the embodiment, the feeding pipe 4 is a flexible pipe.
[0045] In one of the embodiments, referring to Figure 5 and Figure 6 , the moxa stick feeding mechanism further comprises a mounting plate 62 and a plurality of discharge nozzles 41, the mounting plate 62 is mounted on the telescopic rod, each discharge nozzle 41 has a plug capable of being inserted into the discharge port 4a, and the outlet aperture sizes of the plurality of discharge nozzles 41 are different, and the plurality of discharge nozzles 41 are selectively assembled on the mounting plate 62; each placement seat 3 comprises a main seat 31 and a plurality of insertion seats 32, each insertion seat 32 is provided with a channel 3a, and the plurality of insertion seats 32 are selectively mounted on the main seat 31 and correspond to the plurality of discharge nozzles 41 one by one.
[0046] In the embodiment, a plurality of sizes of discharge nozzles 41 are provided, so that the moxa stick 20 can be centrally inserted into the channel 3a while being applicable to moxa sticks 20 of various sizes; at the same time, the placement seat 3 is correspondingly provided with a plurality of sizes of channels 3a for insertion of moxa sticks 20 of various sizes, to improve the versatility.
[0047] It should be noted that the aperture of the discharge nozzle 41 is tapered in the direction close to the placement seat 3, to guide the moxa stick 20 to fall into the channel 3a. It should be understood that the example in the drawing is a group of discharge nozzles 41, and the group of discharge nozzles 41 is provided with a plurality of discharge nozzles 41, and the outlet apertures of the plurality of discharge nozzles 41 in the same group are the same. The plurality of discharge nozzles 41 in the same group are of the same model, and the discharge nozzles 41 in different groups are of different models.
[0048] In one of the embodiments, the mounting plate 62 is provided with an assembly screw hole 62a in the up-down direction, and the outer periphery of each discharge nozzle 41 is provided with an external thread corresponding to the assembly screw hole 62a, to form a threaded segment 42, so that each discharge nozzle 41 can be screwed to the assembly screw hole 62a.
[0049] In the embodiment, the threaded segment 42 cooperates with the assembly screw hole 62a on the mounting plate 62 to achieve detachable connection of each discharge nozzle 41 with the mounting plate 62, so that the plurality of discharge nozzles 41 can be selectively assembled on the mounting plate 62, and the structure is simple and reliable.
[0050] In one embodiment, please refer to Figure 7 The main body 31 is provided with mounting screw holes 31a along the vertical direction, and each insertion seat 32 is provided with mounting through holes 32a corresponding to the mounting screw holes 31a; the placement seat 3 also includes mounting bolts, which pass through the mounting through holes 32a and are screwed into the mounting screw holes 31a, so that various insertion seats 32 can be selectively installed on the main body 31.
[0051] In this embodiment, the insertion base 32 and the main body base 31 are detachably connected through the cooperation of mounting bolts, mounting through holes 32a, and mounting screw holes 31a, thereby allowing multiple insertion bases 32 to be selectively assembled onto the main body base 31. Specifically, in the example drawing, a group of insertion bases 32 is provided, and there are multiple insertion bases 32 in this group. The channel 3a of multiple insertion bases 32 in the same group has the same size, that is, multiple insertion bases 32 in the same group are of the same type, and insertion bases 32 in different groups are of different types. In addition, in this solution, the main body plate is provided with a mounting groove, the side wall of the mounting groove is provided with a mounting flange, and the mounting screw hole 31a is formed on the mounting flange, making the overall structure more compact.
[0052] In one embodiment, please refer to Figure 8 The placement seat 3 is positioned above the platform 1 at intervals. The moxibustion stick feeding mechanism also includes a baffle 7, which is installed on the platform 1 and located between the placement seat 3 and the turntable 2 to stop the moxibustion stick 20.
[0053] In this embodiment, a baffle 7 is provided below the placement seat 3, so that the moxibustion stick 20 can be stopped from below by the baffle 7, preventing the compressed gas from accidentally driving the moxibustion stick 20 through the channel 3a and detaching it from the placement seat 3, ensuring that the upper end of the moxibustion stick 20 can be stably inserted into the channel 3a, so that the lower end of the moxibustion stick 20 can be coated with adhesive.
[0054] In one embodiment, the moxibustion stick feeding mechanism also includes a frame, which is installed on the platform 1. A baffle 7 is installed on the frame and can move relative to the frame in the vertical direction to adjust the distance between it and the placement seat 3.
[0055] In this embodiment, the distance between the baffle 7 and the placement seat 3 can be flexibly adjusted according to the batch length of the moxibustion stick 20, thereby ensuring that the baffle 7 can stably stop the moxibustion stick 20 and that the upper end of the moxibustion stick 20 is inserted into the channel 3a. It should be noted that in this solution, the frame and the mounting bracket 6 are integrally set.
[0056] In one embodiment, the frame is provided with adjustment holes 8 in the vertical direction, and the baffle 7 extends in the vertical direction with a connecting plate 71. The connecting plate 71 is provided with a connecting hole 71a corresponding to the adjustment hole 8. The moxibustion stick feeding mechanism also includes an adjustment bolt 9 and an adjustment nut 91. The adjustment bolt 9 passes through the connecting hole 71a and the adjustment hole 8, and the adjustment nut 91 is screwed onto the end of the adjustment bolt 9 that extends out of the adjustment hole 8.
[0057] In this embodiment, the position of the baffle 7 in the vertical direction is flexibly adjusted by the combination of the adjusting hole 8, the connecting hole 71a, the adjusting bolt 9 and the adjusting nut 91, thereby adjusting the position between the baffle 7 and the placement seat 3. The structure is simple and reliable.
[0058] In one embodiment, the moxibustion stick feeding mechanism further includes a flexible pad, which is installed on one end of the baffle 7 near the placement seat 3.
[0059] In this embodiment, a flexible pad is provided on the side of the baffle 7 near the placement seat 3 to buffer the moxibustion stick 20 and prevent the moxibustion stick 20 from being damaged by direct rigid contact with the baffle 7.
[0060] Furthermore, this utility model also provides a moxibustion device assembly device, which includes a moxibustion stick feeding mechanism as described in any of the above embodiments. It should be noted that the detailed structure of the moxibustion stick feeding mechanism of the moxibustion device assembly device can be referred to the embodiments of the moxibustion stick feeding mechanism described above, and will not be repeated here. Since the moxibustion stick feeding mechanism described above is used in the moxibustion device assembly device of this utility model, the embodiments of the moxibustion device assembly device of this utility model include all the technical solutions of all embodiments of the moxibustion stick feeding mechanism described above, and the achieved technical effects are also completely the same, and will not be repeated here.
[0061] To better understand this utility model, the following is combined with... Figures 1 to 8 The technical solution of this utility model is described in detail below:
[0062] In this embodiment, when it is necessary to apply glue to the moxibustion stick 20, the turntable 2 is first rotated so that a placement seat 3 rotates to below the outlet 4a of the material pipe 43; then compressed gas is pumped into the air inlet branch pipe 44 by the air pump 5 to press the moxibustion stick 20 at the outlet 4a of the material pipe 43 into the channel 3a of the placement seat 3. The moxibustion stick 20 can be stopped by the baffle 7 during the downward movement along the channel 3a, so that the upper end of the moxibustion stick 20 is inserted into the channel 3a of the placement seat 3.
[0063] After the moxibustion stick 20 is inserted, the turntable 2 is driven to rotate so that the next placement seat 3 rotates to below the discharge port 4a of the material pipe 43. At this time, the placement seat 3 with the moxibustion stick 20 inserted rotates away from the discharge port 4a, so that the glue can be applied to the lower end of the fixed moxibustion stick 20.
[0064] After the lower end of the moxa stick 20 is coated with glue, the upper end of the moxa stick 20 is pressed down through the needle passage 3a, so that the moxa stick 20 moves downward to the moxa seat 10 hole below the placement seat 3, and the moxa device assembly is completed.
[0065] It should be noted that in an embodiment, a base 30 is provided on the turntable 2 corresponding to each placement seat 3, and the base 30 is spaced below the placement seat 3 for placing the moxa seat 10.
[0066] The specific embodiments of the above-mentioned utility model do not constitute a limitation on the protection scope of the utility model. Any other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claim.
Claims
1. A feeding mechanism for moxibustion sticks, characterized in that, include: Platform; A turntable, rotatably mounted on the platform body; Multiple placement seats are provided on the turntable and arranged sequentially along the circumference of the turntable. Each placement seat is provided with a channel for inserting moxibustion sticks. A feed pipe is provided on the platform, and a discharge port is provided opposite to the channel; and An air pump, the air outlet of which is connected to the feed pipe, is capable of delivering compressed gas to the discharge port when the placement seat is rotated to the position below the discharge port, so as to drive the moxibustion stick in the feed pipe to be inserted from the discharge port into the adjacent channel.
2. The moxibustion stick feeding mechanism according to claim 1, characterized in that, The moxibustion stick feeding mechanism also includes a mounting frame and a drive cylinder. The mounting frame is installed on the platform and has a fixed plate located above the placement seat. The drive cylinder is installed on the fixed plate and its telescopic rod can extend and retract toward the placement seat. One end of the feed pipe with the discharge port is installed on the telescopic rod and can move with the telescopic rod to approach and move away from the placement seat.
3. The moxibustion stick feeding mechanism according to claim 2, characterized in that, The moxibustion stick feeding mechanism also includes a mounting plate and a variety of discharging nozzles. The mounting plate is mounted on the telescopic rod, and each of the discharging nozzles has a plug that can be inserted into the discharging port. The outlet diameter of the various discharging nozzles is different and can be selectively assembled on the mounting plate. Each of the aforementioned placement seats includes a main body seat and multiple insertion seats. Each of the aforementioned insertion seats is provided with the aforementioned channel. The multiple insertion seats can be selectively installed on the main body seat and correspond one-to-one with the multiple of the aforementioned discharge nozzles.
4. The moxibustion stick feeding mechanism according to claim 3, characterized in that, The mounting plate is provided with mounting screw holes along the vertical direction, and the outer periphery of each discharge nozzle is provided with external threads corresponding to the mounting screw holes to form a threaded section, so that each discharge nozzle can be screwed into the mounting screw holes.
5. The moxibustion stick feeding mechanism according to claim 3, characterized in that, The main body is provided with mounting screw holes along the vertical direction, and each of the insertion seats is provided with mounting through holes corresponding to the mounting screw holes; The placement base also includes mounting bolts, which pass through the mounting through hole and are screwed into the mounting screw hole, so that various insertion bases can be selectively installed on the main body base.
6. The moxibustion stick feeding mechanism according to claim 1, characterized in that, The placement seat is positioned above the platform, and the moxibustion stick feeding mechanism also includes a baffle. The baffle is installed on the platform and located between the placement seat and the turntable to stop the moxibustion stick.
7. The moxibustion stick feeding mechanism according to claim 6, characterized in that, The moxibustion stick feeding mechanism also includes a frame, which is installed on the platform. The baffle is installed on the frame and can move relative to the frame in the vertical direction to adjust the distance between it and the placement seat.
8. The moxibustion stick feeding mechanism according to claim 7, characterized in that, The frame is provided with adjustment holes in the vertical direction, and the baffle extends in the vertical direction with a connecting plate. The connecting plate is provided with a connecting hole corresponding to the adjustment hole. The moxibustion stick feeding mechanism also includes an adjusting bolt and an adjusting nut. The adjusting bolt passes through the connecting hole and the adjusting hole, and the adjusting nut is screwed onto the end of the adjusting bolt that extends out of the adjusting hole.
9. The moxibustion stick feeding mechanism according to claim 6, characterized in that, The moxibustion stick feeding mechanism also includes a flexible pad, which is installed on one end of the baffle near the placement seat.
10. A moxibustion device assembly device, characterized in that, Includes the moxibustion stick feeding mechanism as described in any one of claims 1-9.
Citation Information
Patent Citations
Moxibustion instrument structure with trompil formula moxa stick
CN205359960U