Swinging moxibustion adjusting mechanism for moxibustion bed

By designing a swinging moxibustion adjustment mechanism on the moxibustion bed, effective moxibustion can be applied to both sides of the patient's abdomen and both sides of the legs, solving the problem that existing moxibustion beds cannot provide full coverage, improving the moxibustion effect and simplifying the cleaning process.

CN224251807UActive Publication Date: 2026-05-19JIANGXI SHUANGCHENG MEDICAL HEALTH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI SHUANGCHENG MEDICAL HEALTH CO LTD
Filing Date
2025-05-30
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In existing moxibustion beds, the moxa cakes can only move up and down and left and right on the same horizontal plane, which cannot effectively perform moxibustion on both sides of the patient's abdomen and both sides of the legs, thus affecting the moxibustion effect.

Method used

Design a swinging moxibustion adjustment mechanism that uses a moving mechanism and a scissor-type lifting mechanism to drive the moxa cake to swing back and forth, mimicking the traditional rotary moxibustion and sparrow-pecking moxibustion methods, and adapting to the shape of the human body for moxibustion.

Benefits of technology

It enables effective moxibustion on both sides of the patient's abdomen and both sides of the legs, improving the efficiency of moxibustion. The collection tray design prevents the accumulation and falling of moxa ash, reducing the workload of operators.

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Abstract

The utility model relates to the technical field of moxibustion beds, in particular to a swinging moxibustion adjusting mechanism for a moxibustion bed, which comprises a bed body, a bearing plate, a cover plate, a moving mechanism, a scissor type lifting mechanism and the like. A bearing plate is detachably connected to the bed body, a plurality of holes distributed in an array mode are formed in the bearing plate, and the holes are used for allowing heat and smoke generated by burning moxa cakes to pass through; the front part of the bed body is rotationally connected with two cover plates; the inner left portion and the inner right portion of the bed body are each provided with a moving mechanism. And each moving mechanism is fixedly connected with a shear fork type lifting mechanism. According to the swing moxibustion adjusting mechanism for the moxibustion bed obtained through the design, the moving mechanism and the shear fork type lifting mechanism operate synchronously, ignited moxa cakes are driven to move freely in the bed body, the ignited moxa cakes are moved to the needed positions, the existing traditional rotary moxibustion and sparrow-pecking moxibustion modes are simulated, the moxibustion effect is good, and the moxibustion effect is good. And moxibustion is carried out on a patient.
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Description

Technical Field

[0001] This utility model relates to the field of moxibustion bed technology, and more specifically, to a swing moxibustion adjustment mechanism for a moxibustion bed. Background Technology

[0002] With the development of technology and the increasing demand for health, a variety of moxibustion tools and equipment have appeared on the market, aiming to improve the effect of moxibustion and simplify the operation process. The moxibustion bed is one of them. It is an innovative product that integrates the moxibustion function into the bed structure. When the moxibustion bed is working, it treats patients by burning moxa sticks.

[0003] In existing technologies, since the moxa cakes in the moxibustion bed are all on the same horizontal plane, they can only be moved back and forth up and down and left and right for moxibustion. It is impossible to perform moxibustion on the sides of the patient's abdomen and the sides of the legs. As a result, the sides of the body and legs cannot be effectively moxibusted by the moxa cakes compared to other areas, which will affect the moxibustion effect of the moxa cakes on the patient. Utility Model Content

[0004] To overcome the drawback that the moxa cakes in the moxibustion bed are all on the same horizontal plane, allowing only up-and-down and left-and-right reciprocating motions, and preventing moxibustion on the sides of the patient's abdomen and legs, thus affecting the moxibustion effect on the patient, a swinging moxibustion adjustment mechanism is provided. This mechanism can swing the moxa cakes back and forth, allowing for moxibustion on the sides of the patient's abdomen and legs, adapting to the shape of the human body and improving moxibustion efficiency.

[0005] Another objective of this invention is to provide a swinging moxibustion adjustment mechanism for a moxibustion bed that has the above-mentioned functions.

[0006] The embodiments of this utility model are achieved through the following technical solution: a swinging moxibustion adjustment mechanism for a moxibustion bed, comprising a bed body, a support plate, a cover plate, a moving mechanism, and a scissor-type lifting mechanism; the support plate is detachably connected to the bed body, and the support plate has a plurality of arrayed holes for the heat and smoke generated by burning moxa cakes; two cover plates are rotatably connected to the front of the bed body; a moving mechanism is installed on the inner left and inner right parts of the bed body; a scissor-type lifting mechanism is fixedly connected to each moving mechanism; it also includes a mounting plate, a power component, a guide plate, a meniscus, a heating rod, and a collection tray; each A mounting plate is fixedly connected to the lifting part of the scissor lift mechanism; a power component is connected to each mounting plate; a guide plate is fixedly connected to the inner side of each mounting plate; two arc surfaces are provided on each guide plate, distributed front and back; two menisci are slidably connected to each guide plate, and the menisci are located within the arc surfaces; the two menisci are connected to the power component; several heating rods are arranged in a matrix on the upper surface of each menisci; a collection tray is fixedly connected to the upper surface of each menisci, and several heating rods pass through the collection tray; the power component is used to drive the menisci, heating rods and collection tray to swing forward or backward together.

[0007] Furthermore, the power assembly includes a servo motor, a lead screw, a first slide, a second slide, a connecting rod, a sleeve, and a first spring. A servo motor is fixedly connected to the left and right sides of the front side of the mounting plate. A lead screw is rotatably connected to the left and right sides of the mounting plate, and a guide plate is located between the two lead screws. The output shafts of the two servo motors are each fixedly connected to a lead screw. A first slide is screwed to the front of each lead screw. A second slide is screwed to the rear of each lead screw. Each first slide has a vertical groove. Each second slide has a vertical groove. A connecting rod is slidably arranged in the vertical grooves of the two first slides. Another connecting rod is slidably arranged in the vertical grooves of the two second slides. Each connecting rod is fixedly connected to a meniscus. A sleeve is rotatably connected to both ends of each connecting rod, and the two sleeves are located on opposite sides of the two first slides. A first spring is fixedly connected to the lower part of each sleeve. All first springs are fixedly connected to either a first slide or a second slide.

[0008] Furthermore, each of the two collection trays on the same side is fixed with an intercepting bar, and the two intercepting bars are located on opposite sides of the two collection trays; the vertical cross-section of the intercepting bar is hook-shaped.

[0009] Furthermore, each of the two collection trays on the same side has a notch on its opposite side.

[0010] Furthermore, it also includes four fixing strips fixed to the front and rear sides of each mounting plate, with the four fixing strips symmetrically distributed in pairs; two electric push rods fixed to each fixing strip; a limiting block fixed to the telescopic part of each electric push rod; a cross section opened at the front and rear of each meniscus; two springs II detachably connected to each cross section; all springs II on the same meniscus are detachably connected to the collection tray; a limiting post fixed to each side of each collection tray; a semi-circular groove provided on each limiting block; the limiting post and the semi-circular groove of the limiting block are adapted; a groove opened on each guide plate; and a guide groove opened on each mounting plate.

[0011] Furthermore, it also includes a filter screen fixed in the groove of each guide plate; a collection box is fixed to the lower surface of each guide plate and the collection box is located in the scissor lift mechanism; a drawer is detachably connected to each collection box.

[0012] Furthermore, each cover plate has a magnet on the side closest to the bed.

[0013] The beneficial effects of this utility model are as follows:

[0014] The present invention provides a swinging moxibustion adjustment mechanism for a moxibustion bed, which operates synchronously with a moving mechanism and a scissor-type lifting mechanism. The mechanism moves the lit moxa cake freely within the bed, moving it to the desired position, mimicking the existing traditional rotary moxibustion and sparrow-pecking moxibustion methods to perform moxibustion on the patient.

[0015] The present invention provides a swinging moxibustion adjustment mechanism for a moxibustion bed, which uses a meniscus to move back and forth within the arc surface of a guide plate, allowing the lit moxa cake to swing back and forth. This not only allows for moxibustion on both sides of the patient's abdomen but also on both sides of the patient's legs, adapting to the shape of the human body and improving the moxibustion effect of the moxa cake on the patient.

[0016] The present invention provides a swinging moxibustion adjustment mechanism for a moxibustion bed, which, during the continuous back-and-forth swinging of the collection plate, allows some moxa ash to be expelled through the notch on the collection plate, preventing excessive accumulation and stirring of moxa ash. At the same time, the intercepting strips intercept the moxa ash sliding towards the opposite sides of the two collection plates, preventing the moxa ash from falling into the bed and increasing the cleaning difficulty for the operator.

[0017] The swing moxibustion adjustment mechanism for the moxibustion bed obtained by the above design of this utility model pushes the collection plate to move away from the meniscus, forcing the moxa cake on the heating rod to fall off and enter the groove and guide groove. In this way, the operator does not need to use pliers to remove the moxa cake on the heating rod, reducing the operator's workload.

[0018] At the same time, the ash accumulated on the collection tray will fall into the groove and guide channel, then pass through the mesh of the filter and into the drawer below. Attached Figure Description

[0019] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention.

[0020] Figure 1 This is a three-dimensional structural diagram of the swing moxibustion adjustment mechanism for the moxibustion bed of this utility model;

[0021] Figure 2 This is a three-dimensional structural diagram of the swing moxibustion adjustment mechanism for the moxibustion bed of this utility model, including the bed body, the moving mechanism, the scissor-type lifting mechanism, and the mounting plate.

[0022] Figure 3 This is a three-dimensional structural diagram of the mounting plate, power component, guide plate, meniscus, heating rod, and collection tray of the swing moxibustion adjustment mechanism for the moxibustion bed of this utility model.

[0023] Figure 4 This is a three-dimensional structural diagram of the meniscus, collecting plate, spring 2, and limiting column of the swing moxibustion adjustment mechanism for the moxibustion bed of this utility model.

[0024] Figure 5 This is a three-dimensional structural diagram of the mounting plate, guide plate, filter, collection box, and drawer of the swing moxibustion adjustment mechanism for the moxibustion bed of this utility model.

[0025] Reference numerals: 1-Bed frame, 2-Support plate, 3-Cover plate, 4-Moving mechanism, 5-Scissor lift mechanism, 6-Mounting plate, 7-Guide plate, 8-Meniscus, 9-Heating element, 10-Collection tray

[0026] 101-Servo motor, 102-Lead screw, 103-Slide 1, 104-Slide 2, 105-Connecting rod, 106-Circular sleeve, 107-Spring 1

[0027] 201-Fixing bar, 202-Electric push rod, 203-Limit block, 204-Spring 2, 205-Limit post, 206-Filter screen, 207-Collection box, 208-Drawer

[0028] 6001-Guide groove, 7001-Arc surface, 7002-Groove, 8001-Cut surface, 10001-Intercepting strip, 10301-Vertical slide groove one, 10401-Vertical slide groove two. Detailed Implementation

[0029] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0030] Example 1

[0031] A swinging moxibustion adjustment mechanism for a moxibustion bed, such as Figures 1-5 As shown, the device includes a bed frame 1, a support plate 2, a cover plate 3, a moving mechanism 4, and a scissor-type lifting mechanism 5. The support plate 2 is detachably connected to the bed frame 1, and the support plate 2 has several arrayed holes for passing through the heat and smoke generated by burning moxa sticks. Two cover plates 3 are rotatably connected to the front of the bed frame 1. A moving mechanism 4 is installed on the inner left and inner right sides of the bed frame 1. A scissor-type lifting mechanism 5 is fixedly connected to each moving mechanism 4.

[0032] It also includes a mounting plate 6, a power assembly, a guide plate 7, menisci 8, heating rods 9, and a collection tray 10; a mounting plate 6 is fixedly connected to the lifting part of each scissor lift mechanism 5; a power assembly is connected to each mounting plate 6; a guide plate 7 is fixedly connected to the inner side of each mounting plate 6; two arc surfaces 7001 distributed front and back are provided on each guide plate 7; two menisci 8 are slidably connected to each guide plate 7, and the menisci 8 are located within the arc surfaces 7001; the two menisci 8 are connected to the power assembly; a number of heating rods 9 are arranged in a matrix on the upper surface of each menisci 8; a collection tray 10 is fixedly connected to the upper surface of each menisci 8, and a number of heating rods 9 pass through the collection tray 10; the power assembly is used to drive the menisci 8, heating rods 9, and collection tray 10 to swing forward or backward together.

[0033] The power assembly includes a servo motor 101, a lead screw 102, a first slide 103, a second slide 104, a connecting rod 105, a circular sleeve 106, and a first spring 107. A servo motor 101 is bolted to the left and right sides of the front side of the mounting plate 6. A lead screw 102 is rotatably connected to the left and right sides of the mounting plate 6, and a guide plate 7 is located between the two lead screws 102. The output shafts of the two servo motors 101 are fixedly connected to one lead screw 102. A first slide 103 is screwed to the front of each lead screw 102. A second slide 104 is screwed to the rear of each lead screw 102. Each first slide 103 has a vertical groove 10. 301; Each slide block 2 104 has a vertical slide groove 2 10401; a connecting rod 105 is slidably arranged in the vertical slide groove 10301 of the two slide blocks 103; another connecting rod 105 is slidably arranged in the vertical slide groove 10401 of the two slide blocks 2 104; each of the two connecting rods 105 is fixedly connected to a meniscus 8; each end of each connecting rod 105 is rotatably connected to a round sleeve 106, and the two round sleeves 106 are located on opposite sides of the two slide blocks 103; a spring 107 is fixedly connected to the lower part of each round sleeve 106; all the springs 107 are fixedly connected to one slide block 103 or one slide block 2 104.

[0034] An intercepting bar 10001 is fixedly attached to each of the two collection trays 10 on the same side, and the two intercepting bars 10001 are located on opposite sides of the two collection trays 10 respectively; the vertical cross section of the intercepting bar 10001 is in the shape of a barb.

[0035] Furthermore, to prevent excessive accumulation of ash on the collection tray 10 and the resulting dust from being blown away, a notch is provided on each of the two collection trays 10 facing each other on the same side.

[0036] It also includes four fixing strips 201 fixed to the front and rear sides of each mounting plate 6, and the four fixing strips 201 are symmetrically distributed in pairs; two electric push rods 202 are bolted to each fixing strip 201; a limiting block 203 is fixed to the telescopic part of each electric push rod 202; a cross-section 8001 is opened at the front and rear of each meniscus 8; two springs 204 are detachably connected to each cross-section 8001; all springs 204 on the same meniscus 8 are detachably connected to the collection tray 10; a limiting post 205 is fixed to each side of each collection tray 10; a semi-circular groove is provided on each limiting block 203; the limiting post 205 is adapted to the semi-circular groove of the limiting block 203; a groove 7002 is opened on each guide plate 7; and a guide groove 6001 is opened on each mounting plate 6.

[0037] It also includes a filter screen 206 fixed in the groove 7002 of each guide plate 7; a collection box 207 is fixed to the lower surface of each guide plate 7 and the collection box 207 is located in the scissor lift mechanism 5; a drawer 208 is detachably connected to each collection box 207.

[0038] Furthermore, to prevent the smoke generated by burning mugwort cakes from escaping through the gap between the cover plate 3 and the bed body 1, a magnet is provided on the side of each cover plate 3 closest to the bed body 1.

[0039] The working steps of this embodiment are as follows:

[0040] The following orientations are based on the viewpoint shown in the diagram, with the direction of cover plate number 3 being the front.

[0041] The rotations described below refer to views from front to back, from top to bottom, and from right to left.

[0042] In use, the operator first removes the receiving plate 2, places a moxa cake on each of the heating rods 9, and then puts the receiving plate 2 back on the bed frame 1. Next, an external power supply is connected to all components requiring electric drive. Then, a blanket is laid on the receiving plate 2, and the patient lies on the blanket with their head to the right and feet to the left. The operator then covers the patient's body with a cover (leaving the patient's head outside the cover). The heating rods 9 are heated according to the set program to ignite the moxa cakes. The scissor lift mechanism 5 is then operated according to the program to drive the installation... The mounting plate 6, power assembly, guide plate 7, meniscus 8, heating rod 9, collection tray 10, and lit moxa cake are moved upwards to a suitable height for moxibustion on the patient. Then, the moving mechanism 4 and scissor-type lifting mechanism 5 are operated synchronously through program control, moving the mounting plate 6, power assembly, guide plate 7, meniscus 8, heating rod 9, collection tray 10, and lit moxa cake together to move the lit moxa cake to any desired position within the bed 1. This can mimic the existing traditional rotary moxibustion and sparrow-pecking moxibustion methods to perform moxibustion on the patient.

[0043] After performing rotary moxibustion or sparrow-pecking moxibustion on the patient, taking the right-hand moving mechanism 4, scissor-type lifting mechanism 5, mounting plate 6, power component, guide plate 7, meniscus 8, heating rod 9, collection tray 10, and lit moxa cake as an example, the scissor-type lifting mechanism 5 is controlled to stop the lit moxa cake at a suitable height for moxibustion on the patient. Then, the output shafts of the two servo motors 101 are controlled to drive the two lead screws 102 to rotate intermittently clockwise and counterclockwise, forcing the two slide blocks 103 and 104 to move back and forth on the corresponding lead screws 102. Simultaneously, the connecting rods 105, meniscus 8, heating rod 9, collection tray 10, and lit moxa cake move back and forth together. During the movement, the two connecting rods 105 are restricted by the tension of the sleeve 106 and spring 107, causing the two meniscus 8 to slide back and forth within the two arc surfaces 7001 of the guide plate 7. At the same time, the two The connecting rod 105 slides up and down within the vertical groove 10301 of the first slide block 103 and the vertical groove 10401 of the second slide block 104, causing the meniscus 8, heating rod 9, collection tray 10, and lit moxa cake to swing back and forth. The continuously swinging moxa cake performs moxibustion on both sides of the patient's abdomen. At the same time, the left-side moving mechanism 4, scissor-type lifting mechanism 5, mounting plate 6, power component, guide plate 7, meniscus 8, heating rod 9, collection tray 10, and lit moxa cake also operate in the same manner as described above, using the lit moxa cake to perform moxibustion on both sides of the patient's legs. When the patient's moxibustion is completed and the two menisci 8 are in a horizontal position, the output shafts of all servo motors 101 are stopped rotating. This allows for moxibustion not only on both sides of the patient's abdomen but also on both sides of the patient's legs, adapting to the shape of the human body and improving the moxibustion effect of the moxa cake on the patient.

[0044] It should be noted that when the collection tray 10 swings back and forth continuously, some of the ash on the collection tray 10 will fall from the notch on the collection tray 10 into the groove 7002 and the guide groove 6001, preventing excessive accumulation of ash on the collection tray 10 and causing it to be stirred up during the swing. At the same time, barbed intercepting strips 10001 are provided on the front side of the front collection tray 10 and the rear side of the rear collection tray 10, which can intercept the ash sliding forward in the front collection tray 10 and the ash sliding backward in the rear collection tray 10, preventing the ash from falling into the bed 1 when the collection tray 10 swings back and forth, thus increasing the cleaning difficulty for the operator.

[0045] After the patient completes moxibustion, the output shafts of all servo motors 101 drive the lead screw 102 to rotate clockwise, causing the connected components to move together. This allows the connecting rod 105 to slide to the top of the vertical slide groove 10301 and the vertical slide groove 20401, and the four menisci 8 to slide to the front of the arc surface 7001. All springs 107 are forced to stretch, and the output shafts of all servo motors 101 stop rotating. At this time, the limiting posts 205 connected to the two front collection plates 10 are aligned with the semicircular grooves of the front limiting blocks 203, causing the extension parts of the four front electric push rods 202 to extend, driving the four The limiting block 203 moves toward the four limiting posts 205. During the movement, the limiting block 203 will contact the limiting posts 205 on the front collection plate 10, causing the limiting posts 205 to fall into the semi-circular groove of the limiting block 203, and pushing the front collection plate 10 and the limiting posts 205 to move away from the meniscus 8. When the two front collection plates 10 move, they will take the moxa cakes attached to several heating rods 9 with them, causing several burned moxa cakes to detach from several heating rods 9 and roll along the inclined collection plate 10 into the groove 7002 and guide groove 6001 of the guide plate 7, where they are intercepted by the filter screen 206.

[0046] Next, control the output shafts of all servo motors 101 to drive the lead screw 102 to rotate counterclockwise, causing the connected components to move together, so that the four menisci 8 slide to the rear of the arc surface 7001. Control the output shafts of all servo motors 101 to stop rotating. At this time, the limiting posts 205 connected to the two rear collection trays 10 are aligned with the semi-circular grooves of the rear limiting block 203. Control the extension parts of the four rear electric push rods 202 to extend, causing the connected components to move, pushing the rear collection trays 10 and limiting posts 205 to move away from the menisci 8. The two rear collection trays 10 push the moxa cakes attached to the rear heating rods 9 to automatically detach, so that they also fall into the filter screen 206 of the guide groove 6001. In this way, the operator does not need to use pliers to remove the moxa cakes from the heating rods 9, reducing the operator's workload.

[0047] It should be noted that when the moxa cake is removed from the collection tray 10, the moxa ash accumulated on the collection tray 10 will also be poured into the filter screen 206 of the guide groove 6001. When the moxa ash falls onto the filter screen 206, it will pass through the mesh of the filter screen 206 and come into the drawer 208 below. When the drawer 208 is almost full of moxa ash, the operator grabs the handle of the cover plate 3 to open it, and then removes the drawer 208 from the collection box 207 to remove the moxa ash from the drawer 208.

[0048] It should be understood that this embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the invention, and these equivalent forms also fall within the scope defined by the appended claims.

Claims

1. A swing moxibustion adjustment mechanism for a moxibustion bed, comprising a bed body (1), a support plate (2), a cover plate (3), a moving mechanism (4), and a scissor-type lifting mechanism (5); the support plate (2) is detachably connected to the bed body (1), and the support plate (2) has a plurality of arrayed holes for passing through the heat and smoke generated by burning moxa cakes; two cover plates (3) are rotatably connected to the front of the bed body (1); a moving mechanism (4) is installed on the inner left and inner right parts of the bed body (1); a scissor-type lifting mechanism (5) is fixedly connected to each moving mechanism (4); characterized in that, It also includes a mounting plate (6), a power assembly, a guide plate (7), a meniscus (8), heating rods (9), and a collection tray (10); a mounting plate (6) is fixedly connected to the lifting part of each scissor lift mechanism (5); a power assembly is connected to each mounting plate (6); a guide plate (7) is fixedly connected to the inner side of each mounting plate (6); two arc surfaces (7001) are provided on each guide plate (7) in a front-to-back distribution; two meniscus (8) are slidably connected to each guide plate (7), and the meniscus (8) are located within the arc surface (7001); the two meniscus (8) are connected to the power assembly; a number of heating rods (9) are provided on the upper surface of each meniscus (8) in a matrix distribution; a collection tray (10) is fixedly connected to the upper surface of each meniscus (8), and a number of heating rods (9) pass through the collection tray (10); the power assembly is used to drive the meniscus (8), heating rods (9) and collection tray (10) to swing forward or backward together.

2. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 1, characterized in that, The power assembly includes a servo motor (101), a lead screw (102), a slide block one (103), a slide block two (104), a connecting rod (105), a round sleeve (106), and a spring one (107); a servo motor (101) is fixedly connected to the left and right sides of the front side of the mounting plate (6); a lead screw (102) is rotatably connected to the left and right sides of the mounting plate (6), and a guide plate (7) is located between the two lead screws (102); the output shafts of the two servo motors (101) are fixedly connected to one lead screw (102); a slide block one (103) is screwed to the front of each lead screw (102); a slide block two (104) is screwed to the rear of each lead screw (102); a vertical groove one (107) is opened on each slide block one (104). 301); Each slide block 2 (104) has a vertical slide groove 2 (10401); a connecting rod (105) is slidably arranged in the vertical slide groove 1 (10301) of the two slide blocks 1 (103); another connecting rod (105) is slidably arranged in the vertical slide groove 2 (10401) of the two slide blocks 2 (104); each of the two connecting rods (105) is fixedly connected to a meniscus (8); each end of each connecting rod (105) is rotatably connected to a round sleeve (106), and the two round sleeves (106) are located on opposite sides of the two slide blocks 1 (103); each of the round sleeves (106) has a spring 1 (107) fixedly connected to the lower part; all the springs 1 (107) are fixedly connected to a slide block 1 (103) or a slide block 2 (104).

3. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 2, characterized in that, Each of the two collection trays (10) on the same side has an intercepting strip (10001) fixedly attached, and the two intercepting strips (10001) are located on opposite sides of the two collection trays (10); the vertical cross section of the intercepting strip (10001) is hook-shaped.

4. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 2, characterized in that, Each of the two collection trays (10) on the same side has a notch on the opposite side.

5. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 2, characterized in that, It also includes four fixing strips (201) fixed to the front and rear sides of each mounting plate (6), and the four fixing strips (201) are symmetrically distributed in pairs; two electric push rods (202) are fixed to each fixing strip (201); a limiting block (203) is fixed to the telescopic part of each electric push rod (202); a cross section (8001) is opened at the front and rear of each meniscus (8); two springs are detachably connected to each cross section (8001). 204); all springs 2 (204) on the same meniscus (8) are detachably connected to the collection tray (10); each collection tray (10) has a limiting post (205) fixed on each side; each limiting block (203) has a semi-circular groove; the limiting post (205) is adapted to the semi-circular groove of the limiting block (203); each guide plate (7) has a groove (7002); each mounting plate (6) has a guide groove (6001).

6. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 5, characterized in that, It also includes a filter screen (206) fixed in the groove (7002) of each guide plate (7); a collection box (207) is fixed to the lower surface of each guide plate (7), and the collection box (207) is located in the scissor lift mechanism (5); a drawer (208) is detachably connected to each collection box (207).

7. The swinging moxibustion adjustment mechanism for a moxibustion bed according to claim 1, characterized in that, Each cover plate (3) has a magnet on the side closest to the bed body (1).