Moxibustion bed
By designing height-adjustable moxibustion components and a drive mechanism on the moxibustion bed, the problem of existing moxibustion beds being unable to accurately target the shoulders and neck has been solved. This enables precise application of moxibustion heat to the shoulders and neck and even coverage of the whole body, while extending the burning time of moxa products.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN OSENLONG TECH DEV CO LTD
- Filing Date
- 2025-05-08
- Publication Date
- 2026-06-02
AI Technical Summary
Existing moxibustion beds cannot adjust the moxibustion position according to the user's body shape or treatment needs, resulting in limited coverage of moxibustion heat, especially in the shoulders and neck, where it is difficult to accurately and reliably act on acupoints.
A moxibustion bed was designed, comprising a main body, a reclining board, and a moxibustion mechanism. The main body has a receiving cavity and a headrest. The reclining board is provided with ventilation holes. The moxibustion mechanism includes a support component and multiple moxibustion components, wherein the first moxibustion component is higher than the second moxibustion component and is specifically designed for the shoulders and neck. The position of the moxibustion components is adjusted by a drive mechanism to precisely act on the shoulders and neck.
This technology enables the heat from moxibustion to be applied precisely and reliably to the shoulders, neck, and corresponding acupoints, ensuring even moxibustion throughout the body, extending the burning time of moxa products, and improving the sustained effect of moxibustion.
Smart Images

Figure CN224307528U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of moxibustion equipment technology, and in particular to a moxibustion bed. Background Technology
[0002] A moxibustion bed is a device used for moxibustion fumigation. It stimulates acupoints on the human body by burning mugwort to achieve health care and treatment effects. Most moxibustion beds use a fixed moxibustion cup structure, which cannot be adjusted according to the user's body shape or treatment needs. This results in a limited range of moxibustion heat coverage. For example, when a user lies on a moxibustion bed, part of their body is in contact with the bed, while part is suspended in the air. As a result, it is difficult for the moxibustion heat to accurately and reliably act on some acupoints such as the shoulders and neck. Utility Model Content
[0003] Therefore, the main purpose of this utility model is to provide a moxibustion bed that can accurately and reliably apply moxibustion heat to the shoulder and neck.
[0004] To achieve the above objectives, this utility model provides a moxibustion bed, comprising:
[0005] The main body has a receiving cavity, and the area of the main body without the receiving cavity has a headrest portion;
[0006] A reclining board is placed on the main body and covers the receiving cavity, and the reclining board has multiple ventilation holes through it;
[0007] A moxibustion mechanism is disposed within the receiving cavity. The moxibustion mechanism includes a support component, a first moxibustion component, and multiple second moxibustion components. The multiple second moxibustion components are spaced apart from the support component. The first moxibustion component is disposed on the support component and located at one end of the receiving cavity near the headrest. The first moxibustion component and the second moxibustion components are respectively used to receive and ignite the moxa product. The height of the first moxibustion component is higher than that of the second moxibustion components.
[0008] Optionally, the height of the first moxibustion component is 20-40mm higher than the height of the second moxibustion component.
[0009] Optionally, the support assembly includes a support frame, a first mounting component, and a second mounting component. The first mounting component and the second mounting component are spaced apart from each other on the support frame. The first moxibustion component is disposed on the first mounting component, and a plurality of second moxibustion components are spaced apart from each other on the second mounting component. The first mounting component is located at one end of the receiving cavity near the headrest.
[0010] Optionally, the moxibustion mechanism further includes a first drive mechanism disposed on the support assembly. The first drive mechanism is connected to the first mounting member in a transmission manner. The first drive mechanism is used to drive the first mounting member to move left and right relative to the support frame in a first direction, so as to drive the first moxibustion assembly to move left and right in the first direction.
[0011] Optionally, the first driving mechanism is a linear drive module;
[0012] The first driving mechanism includes a first driving member and a lead screw connected by transmission. The lead screw passes through the first mounting member and is threadedly engaged with the first mounting member. The first driving member is used to drive the lead screw to rotate, thereby causing the first mounting member to move left and right along the axial direction of the lead screw.
[0013] Optionally, the support frame is provided with a guide rail, and the first mounting member is slidably disposed on the guide rail.
[0014] Optionally, the moxibustion mechanism further includes a second drive mechanism disposed on the support frame. The second drive mechanism is used to drive the second mounting member to move back and forth relative to the support frame in a second direction, so as to drive the second moxibustion component to move back and forth in the second direction.
[0015] Optionally, the moxibustion mechanism further includes a third drive mechanism disposed in the receiving cavity, the third drive mechanism being connected to the support assembly in a transmission manner, and the third drive mechanism being used to drive the support assembly to move up and down in a third direction.
[0016] Optionally, the moxibustion bed further includes a purification mechanism, which is disposed in the main body and communicates with the receiving cavity. The purification mechanism is used to draw in the gas generated after the moxa product is burned and to purify the gas before discharging it.
[0017] Optionally, the first moxibustion component includes a moxibustion piece and a heating mechanism. The heating mechanism includes a heating rod, which is inserted into the moxibustion piece. The mugwort product is disposed on the moxibustion piece and sleeved on the heating rod. The top of the heating rod has a heating wire, which is used to heat and ignite the mugwort product.
[0018] The second moxibustion component has the same structure as the first moxibustion component.
[0019] The present invention has the following advantages: When a user needs to perform moxibustion, the user lies on the moxibustion bed with their head resting on the bolster and their body on the reclining board. Then, the first moxibustion component and multiple second moxibustion components ignite the mugwort product. The heat generated by the burning mugwort product and the medicinal components volatilized during the burning process are transmitted to the skin through the ventilation holes of the reclining board, acting on the body to achieve the effect of moxibustion. In this application, the first moxibustion component is located at the end of the receiving cavity near the bolster. The first moxibustion component is specifically designed for moxibustion of the shoulder and neck, thus ensuring that the heat of moxibustion is accurately applied to the shoulder and neck and the corresponding acupoints. In addition, the height of the first moxibustion component is higher than that of the second moxibustion components, so that the first moxibustion component is closer to the shoulder and neck in terms of height compared to the second moxibustion components, thereby ensuring that the heat of moxibustion is reliably applied to the shoulder and neck and the corresponding acupoints. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the devices shown in these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the structure of an example of a moxibustion bed.
[0022] Figure 2 for Figure 1 Axonometric sectional view.
[0023] Figure 3 This is a schematic diagram of the structure of a moxibustion bed with the reclining board hidden in one embodiment.
[0024] Figure 4 This is a schematic diagram of the structure of the moxibustion mechanism, main control module and power supply component in one embodiment.
[0025] Figure 5 This is a schematic diagram of the mounting base, the first moxibustion component, and the first driving mechanism according to one embodiment.
[0026] Figure 6 This is a schematic diagram of the structure of an moxibustion mechanism as viewed from the bottom, according to one embodiment.
[0027] Figure 7 This is a schematic diagram of the purification mechanism according to one embodiment.
[0028] Among them, 1. Artemisia argyi products;
[0029] 100. Main body; 110. Receiving cavity; 120. Headrest area; 130. Vent hole;
[0030] 200. Reclining board; 210. Ventilation hole;
[0031] 300. Moxibustion mechanism; 310. Support component; 311. Support frame; 312. First mounting component; 313. Second mounting component; 3131. Abutment component; 314. Mounting base; 3141. Guide rail; 3142. Cavity; 320. First moxibustion component; 321. Moxibustion element; 322. Heating mechanism; 3221. Heating rod; 3222. Base; 330. Second moxibustion component; 340. First drive mechanism; 341. First drive component; 342. Lead screw; 350. Second drive mechanism; 351. Second drive component; 352. Abutment component; 3521. Abutment head; 360. Third drive mechanism; 361. Third drive component; 362. Transmission rod; 363. Steering mechanism; 364. Screw; 365. Connecting plate;
[0032] 400. Purification mechanism; 410. Three-way catalytic converter; 420. Turbo fan; 430. Radiator; 431. Cooling fan;
[0033] 500. Main control module;
[0034] 600. Power supply components.
[0035] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0036] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0037] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of this utility model are only used to explain the relative positional relationship and movement of the components in a specific posture (as shown in the attached figure). If the specific posture changes, the directional indication will also change accordingly. Furthermore, the descriptions involving "first," "second," etc., in this utility model are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, "and / or" throughout the text includes three solutions. Taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0038] In this application, left-right movement refers to the left and right relative to the user when the user is lying on the moxibustion bed, with the user's left side being left; forward-backward movement refers to the forward and backward relative to the user when the user is lying on the moxibustion bed, with the user's head facing forward and the user's feet facing backward; up-down or lifting refers to the up and down relative to the user when the user is lying on the moxibustion bed, with the user's face facing up and the user's back facing down, and lifting refers to the user being farther or closer to the ground or other structure supporting the moxibustion bed.
[0039] In this embodiment of the application, the first direction refers to... Figure 1 and Figure 4 The direction of the X-axis in the diagram, the second direction refers to... Figure 1 and Figure 4 The direction of the Y-axis in the diagram, and the third direction indicator Figure 1 and Figure 4 The direction of the Z-axis in the diagram.
[0040] The following will mainly describe the specific structure of the moxibustion bed.
[0041] like Figure 1-3As shown, a moxibustion bed includes a main body 100, a reclining board 200, and a moxibustion mechanism 300. The main body 100 has a receiving cavity 110, and the area of the main body 100 without the receiving cavity 110 has a headrest portion 120. The reclining board 200 covers the main body 100 and covers the receiving cavity 110, and the reclining board 200 has multiple ventilation holes 210. The moxibustion mechanism 300 is disposed in the receiving cavity 110. The moxibustion mechanism 300 includes a support component 310, a first moxibustion component 320, and multiple second moxibustion components 330. The multiple second moxibustion components 330 are spaced apart from the support component 310. The first moxibustion component 320 is disposed on the support component 310 and is located at one end of the receiving cavity 110 near the headrest portion 120. The first moxibustion component 320 and the second moxibustion component 330 are respectively used to receive and ignite the moxa product 1. The height of the first moxibustion component 320 is higher than that of the second moxibustion component 330.
[0042] When a user needs to undergo moxibustion fumigation, the user lies on the moxibustion bed with their head resting on the headrest 120 and their body on the reclining board 200. Then, the first moxibustion component 320 and multiple second moxibustion components 330 ignite the mugwort product 1. The heat generated by the burning mugwort product 1 and the medicinal components volatilized during the burning process are transmitted to the human skin through the vents of the reclining board 200, acting on the human body to achieve the effect of moxibustion fumigation. In this application, the first moxibustion component 320 is located at the end of the receiving cavity 110 near the headrest 120. The first moxibustion component 320 is specifically used for moxibustion fumigation of the shoulder and neck, thereby ensuring that the moxibustion heat is accurately applied to the shoulder and neck and the corresponding acupoints. In addition, the height of the first moxibustion component 320 is higher than that of the second moxibustion components 330, so that the first moxibustion component 320 is closer to the shoulder and neck in height than the second moxibustion component 330, thereby ensuring that the moxibustion heat is reliably applied to the shoulder and neck and the corresponding acupoints.
[0043] In this embodiment, the mugwort product 1 is a moxa stick made of mugwort leaves and mugwort floss. It is understood that the mugwort product 1 can also be other suitable shapes, such as moxa sticks. The headrest 120 is a head cushion set on the main body 100. The head cushion can be, but is not limited to, round or square. In other embodiments, the head cushion may not be set, and a certain area on the main body 100 may be directly used as the headrest 120. In this embodiment, there are two reclining boards 200. The two reclining boards 200 are joined together to form a large board to cover the receiving cavity 110. This arrangement makes it easy to pick up a reclining board 200 to replace the mugwort product 1 in the corresponding position, and it also saves more materials when processing the reclining board 200. It is understood that in other embodiments, there may be one or more reclining boards 200.
[0044] Specifically, during normal use, the headrest 120 is located at one end of the top of the moxibustion bed, while the other end supports the user's feet. The reclining board 200 supports the user's body. When the moxibustion bed is in operation, the heat generated by the burning of the mugwort product 1 and the medicinal components volatilized during the combustion process are transmitted to the skin through the vents of the reclining board 200, acting on the body. The heat generated by the burning mugwort directly acts on acupoints. This warm stimulation can promote local blood circulation, improve metabolism, and relieve muscle tension and pain. The warming effect also helps to dispel cold from the body, achieving the effect of warming the meridians and dispelling cold. Furthermore, mugwort itself contains a variety of medicinal components, such as volatile oils and flavonoids. These components are absorbed through the skin during the burning process and enter the human body to exert their pharmacological effects. For example, the volatile oil in mugwort has antibacterial, anti-inflammatory, and analgesic effects, which help to improve local inflammation and pain symptoms. In addition, when the user lies on the moxibustion bed, the multiple ventilation holes 210 of the lying board 200 roughly correspond to specific acupoints on the human body. Through these ventilation holes 210, the heat from the burning mugwort can be directly transferred to important acupoints on the human body, stimulating the meridian system, regulating the functions of the internal organs, and achieving the effects of harmonizing qi and blood and enhancing immunity.
[0045] Further, refer to Figure 4 The height of the first moxibustion component 320 is 20-40mm higher than the height of the second moxibustion component 330. In this embodiment, the height of the first moxibustion component 320 is 30mm higher than the height of the second moxibustion component 330. Specifically, when the user lies on the moxibustion bed, the shoulders and neck are suspended, and the shoulders and neck are about 30mm higher than the back and other positions. Therefore, the first moxibustion component 320 is set 30mm higher than the second moxibustion component 330, so that the moxibustion heat exerted by the first moxibustion component 320 on the shoulders and neck is roughly the same as the moxibustion heat exerted by the second moxibustion component 330 on the back, legs, and other positions, thereby allowing the user's whole body to be reliably fumigated with moxibustion.
[0046] The height of the first moxibustion component 320 is 20-40mm higher than that of the second moxibustion component 330. This means that the top of the first moxibustion component 320 is 20-40mm higher than the top of the second moxibustion component 330, which also means that the moxa product contained in the first moxibustion component 320 is 20-40mm higher than that contained in the second moxibustion component 330.
[0047] In existing technologies, although some moxibustion beds are equipped with moxibustion cups and other moxibustion mechanisms 300 at the corresponding shoulder and neck positions, the height of the moxibustion cups is the same at all positions. As a result, when the back and other positions receive good moxibustion, the shoulders and neck are suspended further away from the moxibustion cups and other moxibustion mechanisms 300, so the shoulders and neck can hardly feel the moxibustion effect.
[0048] refer to Figure 4-5 The first moxibustion component 320 includes a moxibustion element 321 and a heating mechanism 322. The heating mechanism 322 includes a heating rod 3221, which is inserted into the moxibustion element 321. The mugwort product 1 is placed on the moxibustion element 321 and sleeved on the heating rod 3221. The top of the heating rod 3221 has a heating wire, which is used to heat and ignite the mugwort product 1. Specifically, in this application, only the top of the heating rod 3221 has a heating wire, so only the top of the heating rod 3221 heats the mugwort product 1, thus only a portion of the mugwort product 1 is heated and ignited, and then it burns gradually. In this way, the burning of the mugwort product 1 is slower and more stable. The difference is that in the prior art, the heating rod 3221 heats the moxa stick and other moxa products 1 as a whole, so that the moxa stick and other moxa products 1 are heated and ignited from top to bottom, which makes the moxa stick and other moxa products 1 burn faster. As a result, the moxa products 1 have already burned out before the moxibustion fumigation process is completed. At this time, although there is still temperature in the moxibustion bed, the moxibustion effect has been lost. In this application, only the top of the heating rod 3221 has a heating wire, which overcomes the above problems and makes the moxa products 1 burn more slowly, thus making the moxibustion last longer.
[0049] In this embodiment, the moxibustion component 321 is cup-shaped. It is understood that in other embodiments, the moxibustion component 321 may be bowl-shaped or other suitable shapes, as long as it can accommodate the moxa product 1.
[0050] Furthermore, there is a gap between the side wall of the moxibustion device 321 and the mugwort product 1, which allows air to circulate, thus facilitating the complete combustion of the mugwort product 1.
[0051] Further, refer to Figure 5 The heating mechanism 322 also includes a base 3222, which supports the moxibustion device 321. The heating rod 3221 passes through the base 3222 and is inserted into the moxibustion device 321.
[0052] In this embodiment, the second moxibustion component 330 has the same structure as the first moxibustion component 320.
[0053] Furthermore, the main body 100 of the moxibustion bed is covered with a breathable soft material layer.
[0054] refer to Figure 2 and Figure 4The support component 310 includes a support frame 311, a first mounting component 312, and a second mounting component 313. The first mounting component 312 and the second mounting component 313 are spaced apart from each other on the support frame 311. A first moxibustion component 320 is disposed on the first mounting component 312, and multiple second moxibustion components 330 are spaced apart from each other on the second mounting component 313. The first mounting component 312 is located at one end of the receiving cavity 110 near the headrest portion 120. Specifically, the first moxibustion component 320 is fixedly disposed on the first mounting component 312, and the multiple second moxibustion components 330 are respectively fixedly disposed on the second mounting component 313. In this embodiment, the first mounting component 312 is a small tray, and the second mounting component 313 is a large tray. It is possible that the first mounting component 312 and the second mounting component 313 can be structures of any shape or specification, as long as they can achieve their own function. For example, the first mounting component 312 and the second mounting component 313 can both be mounting plates or mounting blocks, etc.
[0055] refer to Figure 4-5 The support frame 311 is provided with a guide rail 3141, and the first mounting member 312 is slidably disposed on the guide rail 3141. Specifically, the first mounting member 312 has a sliding groove on the side facing the guide rail 3141, and the sliding groove is slidably adapted to the guide rail 3141.
[0056] refer to Figure 4-5 The support frame 311 is provided with a mounting base 314, and the side wall of the mounting base 314 has a cavity 3142, and the guide rail 3141 is disposed in the cavity 3142.
[0057] refer to Figure 4-5 The moxibustion mechanism 300 also includes a first drive mechanism 340 disposed on the support component 310. The first drive mechanism 340 is connected to the first mounting member 312 and is used to drive the first mounting member 312 to move left and right in a first direction, thereby driving the first moxibustion component 320 to move left and right in the first direction. Specifically, by driving the first mounting member 312 to move left and right in the first direction through the first drive mechanism 340, that is, by moving the first mounting member 312 left and right relative to the user's shoulder, the first moxibustion component 320 on the first mounting member 312 can better act on the entire shoulder, so that the shoulder is reliably moxibusted.
[0058] The stroke of the first drive mechanism 340 is 150-500mm. In this embodiment, the stroke of the first drive mechanism 340 is 150mm. Although this stroke is less than the shoulder width of an adult, the first mounting member 312 moves 150mm in the middle of the user's shoulder, which is sufficient to ensure that the heat of moxibustion covers the user's shoulder.
[0059] Furthermore, the first drive mechanism 340 is a linear drive module. The linear drive module may be, but is not limited to, a belt drive mechanism, a cylinder, an electric actuator, etc.
[0060] refer to Figure 4-5 In this embodiment, the first driving mechanism 340 includes a first driving member 341 and a lead screw 342 connected by a transmission connection. The lead screw 342 passes through the first mounting member 312 and is threadedly engaged with the first mounting member 312. The first driving member 341 is used to drive the lead screw 342 to rotate, thereby causing the first mounting member 312 to move left and right along the axial direction of the lead screw 342. Specifically, the axial direction of the lead screw 342 is parallel to the first direction. In this embodiment, the first driving member 341 is a motor, specifically a stepper motor. The first driving member 341 can rotate in both directions, so that the first driving mechanism 340 can drive the first mounting member 312 to move back and forth along the first direction, so that the first moxibustion component 320 can perform moxibustion on the shoulder and neck relatively evenly and reliably. In other embodiments, the first driving mechanism 340 can also drive the first mounting member 312 to move a certain distance, thereby performing moxibustion on specific parts or acupoints of the shoulder and neck.
[0061] In this embodiment, the lead screw 34 is located inside the cavity 3142. In this embodiment, there is one first moxibustion component 320; in other embodiments, there are two or more first moxibustion components 320, and the number of first mounting members 312 is the same as the number of first moxibustion components 320 and corresponds one-to-one. In this case, the lead screw 342 passes through each first mounting member 312 and is threadedly engaged with each first mounting member 312.
[0062] refer to Figure 4 and Figure 6 The moxibustion mechanism 300 also includes a second drive mechanism 350 disposed on the support frame 311. The second drive mechanism 350 is used to drive the second mounting member 313 to move back and forth relative to the support frame 311 in a second direction, so as to drive the second moxibustion assembly 330 to move back and forth in the second direction. Specifically, the second mounting member 313 is movably disposed on the support frame 311.
[0063] refer to Figure 6 In this embodiment, the second driving mechanism 350 includes a second driving member 351 and a supporting member 352 connected by transmission. One end of the supporting member 352 has a supporting head 3521. Two abutting members 3131 are spaced apart at the bottom of the second mounting member 313. The supporting head 3521 abuts against the two abutting members 3131. The second driving member 351 drives the supporting member 352 to rotate, thereby the supporting head 3521 abuts against the abutting members 3131, driving the second mounting member 313 to move along the second direction. During the operation, the front and rear positions of the supporting head 3521 in the second direction change, thereby driving the second mounting member 313 to reciprocate back and forth along the second direction. Specifically, the second driving member 351 is a motor; the abutting member 3131 is a blocking block.
[0064] Furthermore, the second drive mechanism 350 also includes an eccentric wheel with an eccentric shaft. One end of the abutment 352 is sleeved on the eccentric shaft. The second drive member 351 is connected to the eccentric wheel in a transmission. The second drive member 351 drives the eccentric wheel to rotate, thereby causing the abutment 352 to rotate. As a result, the abutment head 3521 abuts against the stop member 3131, thereby causing the second mounting member 313 to move along the second direction.
[0065] In other embodiments, the second drive mechanism 350 can also be a linear drive module, as long as it can drive the second mounting member 313 to move back and forth relative to the support frame 311 in the second direction. The linear drive module can be, but is not limited to, a belt drive mechanism, a cylinder, an electric push rod, etc.
[0066] refer to Figure 2 and Figure 4 The moxibustion mechanism 300 also includes a third drive mechanism 360 disposed in the receiving cavity 110. The third drive mechanism 360 is driveably connected to the support assembly 310 and is used to drive the support assembly 310 to move up and down in a third direction. Specifically, the third drive mechanism 360 is driveably connected to the support frame 311 and is used to drive the support frame 311 to move up and down in a third direction, thereby driving the first mounting member 312 and the second mounting member 313 to move up and down in a third direction, so as to simultaneously adjust the height of the first moxibustion assembly 320 and the second moxibustion assembly 330, thereby achieving temperature regulation. The higher the height of the first moxibustion assembly 320 and the second moxibustion assembly 330, the closer they are to the user lying on the moxibustion bed, and thus the higher the temperature felt by the user. Specifically, the third drive mechanism 360 is located on the bottom wall of the receiving cavity 110.
[0067] refer to Figure 4The third drive mechanism 360 includes a third drive member 361, a transmission rod 362, a steering gear 363, screws 364, and connecting plates 365. There are four steering gears 363, corresponding to the four corners of the support assembly 310. There are four screws 364, each located on and corresponding to one of the steering gears 363. There are two connecting plates 365; one connecting plate connects two screws 364, and the other connecting plate connects to two other screws 364. There are three transmission rods 362, and the third drive member 361 is connected to one of these transmission rods. Both ends of 362 are connected to two steering mechanisms 363. Each of the two steering mechanisms 363 is then connected to one end of a transmission rod 362. The other ends of these two transmission rods 362, which are not connected to the third drive component 361, are each connected to a steering mechanism 363. The third drive component 361 drives one transmission rod 362 to rotate. The transmission rod 362, through the two steering mechanisms 363, drives the other two transmission rods 362 to rotate, and in turn drives the other two steering mechanisms 363 to move. Thus, the four steering mechanisms 363 drive the four screws 364 to rotate. The four screws 364 drive the two connecting plates 365 to rise and fall, thereby driving the support assembly 310 to rise and fall. Specifically, the four steering mechanisms 363 are positioned at the four corners of the support assembly 310, and the third drive mechanism 360 drives the support assembly 310 to rise and fall. The third drive component 361 is a motor.
[0068] In other embodiments, the third drive mechanism 360 may also be a linear drive module such as a cylinder or an electric push rod. However, cylinders and electric push rods occupy a relatively large space. The aforementioned third drive mechanism 360 of this application can reduce the space occupied by half compared to cylinders and electric push rods.
[0069] refer to Figure 2 and Figure 7 The moxibustion bed also includes a purification mechanism 400, which is located in the main body 100 and communicates with the receiving cavity 110. The purification mechanism 400 is used to draw in the gas produced after the moxa product 1 is burned and to purify the gas before discharging it. Specifically, discharging the purified gas can mean discharging the purified gas into the air outside the moxibustion bed, discharging the purified gas from the purification mechanism 400, or collecting the gas through internal or external structures.
[0070] In this embodiment, reference Figure 7The purification mechanism 400 includes a three-way catalytic converter 410, which is used to purify the gases produced after the burning of the mugwort product 1. Further, the purification mechanism 400 also includes a turbine fan 420, which draws the gases produced after the burning of the mugwort product 1 to the three-way catalytic converter 410 and then discharges them to the outside. Still further, the purification mechanism also includes a radiator 430; in addition, the radiator 430 also has a cooling fan 431.
[0071] The side wall or bottom wall of the cavity is provided with an exhaust port. The three-way catalytic converter 410 is connected to the exhaust port through a connecting pipe so that the three-way catalytic converter 410 is connected to the cavity, so that the turbine fan 420 can draw the gas produced after the burning of the Artemisia argyi product 1 to the three-way catalytic converter 410.
[0072] refer to Figure 1 The main body 100 has exhaust holes 130 on its side wall and bottom wall near the purification mechanism 400. The exhaust holes 130 are used for heat dissipation and exhaust of purified gas.
[0073] refer to Figure 4 The moxibustion bed also includes a main control module 500 and a power supply component 600. The main control module 500 is electrically connected to the power supply component 600, the first moxibustion component 320, the second moxibustion component 330, the first drive mechanism 340, the second drive mechanism 350, and the third drive mechanism 360. The power supply component 600 supplies power to each electrical component through the main control module 500. The main control module 500 is used to control the start and stop of the first moxibustion component 320, the second moxibustion component 330, the first drive mechanism 340, the second drive mechanism 350, and the third drive mechanism 360. Specifically, the power supply component 600 is powered by a 24V power source.
[0074] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent device transformations made based on the contents of this utility model specification and drawings under the utility model concept, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. A moxibustion bed, characterized in that, include: The main body has a receiving cavity, and the area of the main body without the receiving cavity has a headrest portion; A reclining board is placed on the main body and covers the receiving cavity, and the reclining board has multiple ventilation holes through it; A moxibustion mechanism is disposed within the receiving cavity. The moxibustion mechanism includes a support component, a first moxibustion component, and multiple second moxibustion components. The multiple second moxibustion components are spaced apart from the support component. The first moxibustion component is disposed on the support component and located at one end of the receiving cavity near the headrest. The first moxibustion component and the second moxibustion components are respectively used to receive and ignite the moxa product. The height of the first moxibustion component is higher than that of the second moxibustion components.
2. The moxibustion bed as described in claim 1, characterized in that, The height of the first moxibustion component is 20-40mm higher than that of the second moxibustion component.
3. The moxibustion bed as described in claim 1, characterized in that, The support assembly includes a support frame, a first mounting component, and a second mounting component. The first mounting component and the second mounting component are spaced apart from each other on the support frame. The first moxibustion component is disposed on the first mounting component. A plurality of second moxibustion components are spaced apart from each other on the second mounting component. The first mounting component is located at one end of the receiving cavity near the headrest.
4. The moxibustion bed as described in claim 3, characterized in that, The moxibustion mechanism further includes a first drive mechanism disposed on the support component. The first drive mechanism is connected to the first mounting component in a transmission manner. The first drive mechanism is used to drive the first mounting component to move left and right relative to the support frame in a first direction, so as to drive the first moxibustion component to move left and right in the first direction.
5. The moxibustion bed as described in claim 4, characterized in that, The first driving mechanism is a linear drive module; The first driving mechanism includes a first driving member and a lead screw connected by transmission. The lead screw passes through the first mounting member and is threadedly engaged with the first mounting member. The first driving member is used to drive the lead screw to rotate, thereby causing the first mounting member to move left and right along the axial direction of the lead screw.
6. The moxibustion bed as described in claim 5, characterized in that, The support frame is provided with a guide rail, and the first mounting component is slidably disposed on the guide rail.
7. The moxibustion bed as described in claim 3, characterized in that, The moxibustion mechanism further includes a second drive mechanism disposed on the support frame. The second drive mechanism is used to drive the second mounting member to move back and forth relative to the support frame in a second direction, so as to drive the second moxibustion component to move back and forth in the second direction.
8. The moxibustion bed as described in claim 1, characterized in that, The moxibustion mechanism also includes a third drive mechanism disposed in the receiving cavity. The third drive mechanism is connected to the support component in a transmission manner, and the third drive mechanism is used to drive the support component to move up and down in a third direction.
9. The moxibustion bed as described in claim 1, characterized in that, The moxibustion bed also includes a purification mechanism, which is located in the main body and communicates with the receiving cavity. The purification mechanism is used to draw in the gas generated after the moxa product is burned and to purify the gas before discharging it.
10. The moxibustion bed as described in claim 1, characterized in that, The first moxibustion component includes a moxibustion piece and a heating mechanism. The heating mechanism includes a heating rod, which is inserted into the moxibustion piece. The mugwort product is placed on the moxibustion piece and sleeved on the heating rod. The top of the heating rod has a heating wire, which is used to heat and ignite the mugwort product. The second moxibustion component has the same structure as the first moxibustion component.