Moxibustion instrument charging base with expandable photovoltaic panel energy storage

By introducing an expandable photovoltaic panel into the moxibustion device charging base, the problems of inconvenience and resource waste caused by the small battery capacity of the moxibustion device are solved, and the convenience of self-charging is realized.

CN115347629BActive Publication Date: 2026-02-10ZUODIAN IND (HUBEI) CO LTD
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Patent Information

Application Number
CN202110529654.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-15
Publication Date
2026-02-10
Estimated Expiration
2041-05-15

AI Technical Summary

Technical Problem

Existing moxibustion devices are small in size and have limited battery capacity, which means they cannot be used for a long time and require a charging cable to be carried around, resulting in inconvenience and waste of resources.

Method used

Design a moxibustion device charging base with scalable photovoltaic panel energy storage. The photovoltaic panel absorbs solar energy and converts it into electrical energy to charge the moxibustion device. The base includes a photovoltaic mechanism, a fixing mechanism, and a charging mechanism, realizing the scalability and fixation of the photovoltaic panel.

Benefits of technology

This technology enables the moxibustion device to charge itself without a charging cable, avoiding power consumption and resource waste, and improving ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the moxibustion instrument field, in particular to a moxibustion instrument charging base with extensible photovoltaic panel energy storage, which comprises a bottom shell, the lower end of the bottom shell is provided with a photovoltaic mechanism, the inside of the photovoltaic mechanism is provided with a fixing mechanism, the upper end of the bottom shell is provided with a charging mechanism, the upper end of the charging mechanism is provided with a cover plate mechanism, the second push block drives the arc block to rotate, the arc block drives the clamping groove to move when rotating, the clamping groove is corresponded with the clamping rod, then the first push block is pushed to rotate, the first push block drives the uppermost rotating plate to rotate, the uppermost rotating plate drives the round block on the lower surface to rotate when rotating, the round block drives the first arc groove at the lower end to rotate when rotating, the corresponding rotating plate is driven to rotate through the first arc groove, the corresponding multiple rotating plates are driven to rotate through the multiple round blocks, then the multiple rotating plates are staggered to open, the fixing openings on the multiple rotating plates are staggered to open, the multiple photovoltaic panels are moved out from the rotating groove, and the photovoltaic panels absorb solar energy to convert electric energy to charge the charging battery.
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Description

TECHNICAL FIELD

[0001] The application relates to the field of moxibustion instruments, in particular to a moxibustion instrument charging base with an extensible photovoltaic panel energy storage function. BACKGROUND

[0002] Moxibustion, also known as moxibustion therapy or moxibustion method, is a treatment method for stimulating human acupoints or specific parts by using moxa sticks or moxa columns made of moxa leaves, so as to adjust the physiological and biochemical functions of the human body through the activation of meridian qi, thereby achieving the purpose of preventing and treating diseases. The multifunctional moxibustion instrument is designed according to the principle of traditional moxibustion and combines modern computer technology and magnetic therapy methods, and can be used for warm moxibustion, warm acupuncture moxibustion, material separation moxibustion, foaming moxibustion and pus moxibustion.

[0003] The existing moxibustion instrument is small in size for convenient carrying, so that the battery inside the moxibustion instrument is small in size, and the moxibustion instrument cannot be used for a long time and needs to be charged. However, since the moxibustion instrument needs to be carried with the sound, when no matching charging line is carried, the moxibustion instrument cannot be charged, and thus the moxibustion instrument cannot be used. In addition, since the battery capacity inside the moxibustion instrument charging base is small, if the charging of the battery of the charging base is forgotten and the power is not turned off in time, the power will be continuously consumed, and thus resources are wasted. SUMMARY

[0004] In view of the problem that the existing moxibustion instrument is small in size for convenient carrying, so that the battery inside the moxibustion instrument is small in size, and the moxibustion instrument cannot be used for a long time and needs to be charged, but since the moxibustion instrument needs to be carried with the sound, when no matching charging line is carried, the moxibustion instrument cannot be charged, and thus the moxibustion instrument cannot be used, and since the battery capacity inside the moxibustion instrument charging base is small, if the charging of the battery of the charging base is forgotten and the power is not turned off in time, the power will be continuously consumed, and thus resources are wasted, the application provides a moxibustion instrument charging base with an extensible photovoltaic panel energy storage function.

[0005] The technical scheme adopted by the application to solve the technical problem is that the moxibustion instrument charging base with an extensible photovoltaic panel energy storage function comprises a bottom shell, a photovoltaic mechanism is arranged at the lower end of the bottom shell, a fixing mechanism is arranged in the photovoltaic mechanism, a charging mechanism is arranged at the upper end of the bottom shell, and a cover plate mechanism is arranged at the upper end of the charging mechanism.

[0006] Specifically, the photovoltaic mechanism comprises a base fixedly connected to the lower surface of the bottom shell, one end surface of the base is provided with a rotating groove, the inner walls at the upper and lower ends of the rotating groove are fixedly connected with the same fixing cylinder, the fixing cylinder is inserted into a plurality of circular holes, the plurality of circular holes are respectively provided on the surfaces of a plurality of rotating plates, the upper surfaces of the plurality of rotating plates are each provided with a first arc groove, the lower surfaces of the plurality of rotating plates are each fixedly connected with a circular block, the plurality of circular blocks at the upper end are respectively clamped into the corresponding first arc grooves, the circular block at the lowermost end is clamped into the corresponding second arc groove provided on the inner wall at the lower end of the rotating groove, one end of the rotating plate at the uppermost end is fixedly connected with a first push block, the surfaces of the plurality of rotating plates are each provided with a fixing opening, and the interiors of the plurality of fixing openings are each fixedly clamped with a photovoltaic panel.

[0007] Specifically, the fixing mechanism comprises a fixing seat fixedly connected to the end of the rotating plate at the uppermost end away from the first push block, the surface of the fixing seat is provided with a recess, the recess is clamped with a clamping rod, the clamping rod is inserted into a plug hole, the other end of the plug hole extends to communicate with a third arc groove provided in the base, the interior of the third arc groove is clamped with an arc block, the lower end of the arc block is fixedly connected with a spring, the spring is clamped in the third arc groove, the surface of the end of the arc block away from the spring is provided with a clamping groove corresponding to the clamping rod, the side wall of the arc block away from the clamping rod is fixedly connected with a second push block, the second push block is clamped into an arc-shaped opening provided on the outer wall of the base.

[0008] Specifically, the charging mechanism comprises an inner box fixedly sleeved on the inner wall of the bottom shell, a circular magnet fixedly connected to the lower surface of the inner box, a charging battery fixedly connected to the lower surface of the inner box, an EVA fixedly connected to the lower surface of the charging battery, a charging PCB fixedly connected to the lower end inner wall of the bottom shell, the charging PCB fixed to the upper surface of the bottom shell through a first cross-head self-tapping screw, a charging display cover fixedly connected to the inner wall of the bottom shell, a first long magnet fixedly connected to the lower surface of the inner box, a spring needle PCB fixedly connected to the lower end inner wall of the inner box through a second cross-head self-tapping screw, and an LED display PCB fixedly connected to the interior of the charging display cover.

[0009] Specifically, the cover mechanism comprises a rear cover inner plate fixedly sleeved on the inner wall of the upper end opening of the bottom shell, two second long magnets fixedly connected to the upper surface of the rear cover inner plate in a symmetrical manner, a rear cover fixedly clamped to the upper end of the rear cover inner plate, and a handle cover fixedly connected to the upper surface of the rear cover through a cross countersunk head self-tapping screw.

[0010] Specifically, the first arc groove corresponds to the second arc groove.

[0011] Specific, the arc block and the groove spacing is the same as the length of the card rod.

[0012] Specific, the depth of the groove is the same as the depth of the card slot.

[0013] The beneficial effects of the present application:

[0014] (1) the charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage, the arc block is driven to rotate by the second push block, the card slot is moved when the arc block rotates, the card slot is corresponded with the card rod, then the first push block is pushed to rotate, the first push block drives the uppermost rotating plate to rotate, the lower surface of the uppermost rotating plate is driven to rotate when the uppermost rotating plate rotates, the first arc groove at the lower end is driven to rotate when the circular block rotates, the corresponding rotating plate is driven to rotate through the first arc groove, the corresponding multiple rotating plates are driven to rotate through multiple circular blocks, and then the multiple rotating plates are staggered to open, the fixed opening on the multiple rotating plates is staggered to open, and the multiple photovoltaic panels are removed from the inside of the rotating groove, and the photovoltaic panels absorb solar energy to convert electric energy to charge the battery.

[0015] (2) the charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage, when the photovoltaic panel is not needed, the rotating plate is rotated into the inside of the rotating groove, the arc block is driven to rotate by the spring, the card rod is pushed by the card slot when the arc block rotates, the card rod is clamped in the groove, and then the multiple photovoltaic panels are fixed. BRIEF DESCRIPTION OF DRAWINGS

[0016] The present application will be further described below in conjunction with the drawings and examples.

[0017] Figure 1 A structure schematic view of the charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage is provided for the present application.

[0018] Figure 2 A base overhead structure schematic view of the charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage is provided for the present application.

[0019] Figure 3 A base structure schematic view of the charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage is provided for the present application.

[0020] Figure 4 A charging seat of the moxibustion instrument with expandable photovoltaic panel energy storage is provided for the present application. Figure 1 A part A enlarged view of the present application is provided.

[0021] Figure 5 A part B enlarged view of the present application is provided. Figure 1 A part B enlarged view of the present application is provided.

[0022] As shown in the figure: 1, the bottom shell; 2, photovoltaic mechanism; 21, base; 22, rotating groove; 23, fixed cylinder; 24, round hole; 25, rotating plate; 26, first arc groove; 27, round block; 28, second arc groove; 29, first push block; 210, fixed opening; 211, photovoltaic panel; 3, fixing mechanism; 31, fixing seat; 32, groove; 33, clamping rod; 34, insertion hole; 35, third arc groove; 36, arc block; 37, spring; 38, clamping groove; 39, second push block; 310, arc-shaped opening; 4, charging mechanism; 41, inner box; 42, round magnet; 43, charging battery; 44, EVA; 45, charging PCB board; 46, first cross head self-tapping screw; 47, charging display cover; 48, first long magnet; 49, second cross head self-tapping screw; 410, spring needle PCB board; 411, LED display PCB board; 5, cover mechanism; 51, rear cover inner plate; 52, second long magnet; 53, cross countersunk self-tapping screw; 54, rear cover; 55, handle cover. DETAILED DESCRIPTION

[0023] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the present application will be further described below in conjunction with specific embodiments.

[0024] As Figures 1-5 shown, the moxibustion instrument charging seat with expandable photovoltaic panel energy storage according to the present application comprises a bottom shell 1, the lower end of the bottom shell 1 is provided with a photovoltaic mechanism 2, the inside of the photovoltaic mechanism 2 is provided with a fixing mechanism 3, the upper end of the bottom shell 1 is provided with a charging mechanism 4, and the upper end of the charging mechanism 4 is provided with a cover mechanism 5.

[0025] Specifically, the photovoltaic mechanism 2 includes a base 21, which is fixedly connected to the lower surface of the base shell 1. A rotating groove 22 is formed on one end surface of the base 21. The same fixing cylinder 23 is fixedly connected to the inner walls of the upper and lower ends of the rotating groove 22. The fixing cylinder 23 is inserted into multiple round holes 24. The multiple round holes 24 are respectively formed on the surface of multiple rotating plates 25. A first arc groove 26 is formed on the upper surface of each of the multiple rotating plates 25. A round block 27 is fixedly connected to the lower surface of each of the multiple rotating plates 25. The multiple round blocks 27 at the upper end are respectively engaged in the corresponding first arc groove 26. The round block 27 at the lower end is engaged in the corresponding second arc groove 28. The second arc groove 28 is formed on the lower inner wall of the rotating groove 22. A first pusher is fixedly connected to one end of the uppermost rotating plate 25. Block 29 and multiple rotating plates 25 each have a fixed opening 210 on their surface. Photovoltaic panels 211 are fixedly attached to the inside of each fixed opening 210. Pushing the first push block 29 to rotate causes the uppermost rotating plate 25 to rotate. When the uppermost rotating plate 25 rotates, it causes the circular block 27 on the lower surface to rotate. When the circular block 27 rotates, it causes the first arc groove 26 attached at the lower end to rotate. The first arc groove 26 drives the corresponding rotating plate 25 to rotate. The multiple circular blocks 27 drive the corresponding multiple rotating plates 25 to rotate, thereby causing the multiple rotating plates 25 to open alternately. The fixed openings 210 on the multiple rotating plates 25 open alternately, allowing the multiple photovoltaic panels 211 to move out from inside the rotating groove 22. The photovoltaic panels 211 absorb solar energy and convert it into electrical energy to charge the rechargeable battery 43.

[0026] Specifically, the fixing mechanism 3 includes a fixing base 31, which is fixedly connected to the end of the uppermost rotating plate 25 away from the first push block 29. A groove 32 is formed on the surface of the fixing base 31, and a locking rod 33 is engaged inside the groove 32. The locking rod 33 is inserted into the insertion hole 34, and the other end of the insertion hole 34 extends to communicate with the third arc groove 35. The third arc groove 35 is formed inside the base 21, and an arc block 36 is engaged inside the third arc groove 35. A spring 37 is fixedly connected to the lower end of the arc block 36 and is engaged inside the third arc groove 35. The arc block 36 has a slot 38 on its surface away from the spring 37. The slot 38 corresponds to the locking rod 33. A second push block 39 is fixedly connected to the side wall of the arc block 36 away from the locking rod 33. The second push block 39 is engaged inside the arc-shaped opening 310. The arc-shaped opening 310 is opened on the outer wall of the base 21. The arc block 36 is pushed to rotate by the spring 37. When the arc block 36 rotates, it pushes the locking rod 33 through the slot 38, so that the locking rod 33 is engaged inside the groove 32, thereby fixing multiple photovoltaic panels 211.

[0027] Specifically, the charging mechanism 4 includes an inner box 41, which is fixedly fitted onto the inner wall of the bottom shell 1. A round magnet 42 is fixedly connected to the lower surface of the inner box 41, a rechargeable battery 43 is fixedly connected to the lower surface of the inner box 41, and an EVA 44 is fixedly connected to the lower surface of the rechargeable battery 43. A charging PCB board 45 is fixedly connected to the lower inner wall of the bottom shell 1, and the charging PCB board 45 is fixed to the upper surface of the bottom shell 1 by a first cross-head self-tapping screw 46. A charging display cover 47 is fixedly connected to the inner wall of the bottom shell 1. A first long magnet 48 is fixedly connected to the center of the lower surface of the box 41. A spring pin PCB board 410 is fixedly connected to the lower inner wall of the inner box 41 by a second cross-head self-tapping screw 49. An LED display PCB board 411 is fixedly connected inside the charging display cover 47. When the moxibustion device needs to be charged, the moxibustion device is placed inside the inner box 41 so that the charging interface on the moxibustion device contacts the pin on the charging PCB board 45. The pin charges the battery inside the charging battery 43 into the moxibustion device to charge it.

[0028] Specifically, the cover mechanism 5 includes a rear cover inner plate 51, which is fixedly sleeved on the inner wall of the upper opening of the bottom shell 1. Two second long magnets 52 are symmetrically fixedly connected to the upper surface of the rear cover inner plate 51. A rear cover 54 is fixedly snapped onto the upper end of the rear cover inner plate 51. A handle cover 55 is connected to the upper surface of the rear cover 54 by a cross countersunk self-tapping screw 53. At the same time, when charging the moxibustion device, the handle cover 55 is closed to fix the moxibustion device and prevent it from falling off.

[0029] Specifically, the first arc groove 26 corresponds to the second arc groove 28, thereby making each rotating plate 25 rotate at the same angle.

[0030] Specifically, the distance between the arc block 36 and the groove 32 is the same as the length of the locking rod 33, so that when the locking rod 33 contacts the arc block 36, the arc block 36 pushes the locking rod 33 to engage inside the groove 32.

[0031] Specifically, the depth of the groove 32 is the same as the depth of the slot 38, so that the shank 33, which has been moved into the slot 38, can be moved out of the groove 32.

[0032] In use, firstly, push the second push block 39 to rotate, which in turn drives the arc block 36 to rotate. The arc block 36's rotation causes the slot 38 to move, aligning it with the locking rod 33. Then, push the first push block 29 to rotate, causing the uppermost rotating plate 25 to rotate. The rotation of the uppermost rotating plate 25 causes the circular block 27 on the lower surface to rotate, which in turn drives the lower-end locking first arc groove 26 to rotate. The first arc groove 26 then drives the corresponding rotating plate 25 to rotate. Multiple circular blocks 27 drive multiple corresponding rotating plates 25 to rotate, causing the multiple rotating plates 25 to open alternately. This causes the fixed openings 210 on the multiple rotating plates 25 to open alternately, allowing multiple photovoltaic panels 211 to move out from inside the rotating groove 22. The photovoltaic panels 211 then absorb... The solar energy is converted into electrical energy to charge the rechargeable battery 43. When the photovoltaic panel 211 is not needed, the rotating plate 25 is rotated into the rotating groove 22. The spring 37 pushes the arc block 36 to rotate. When the arc block 36 rotates, it pushes the locking rod 33 through the locking groove 38, so that the locking rod 33 is locked into the groove 32, thereby fixing multiple photovoltaic panels 211. When the moxibustion device needs to be charged, the moxibustion device is placed in the inner box 41, so that the charging interface on the moxibustion device contacts the pin on the charging PCB board 45. The pin charges the battery inside the rechargeable battery 43 into the moxibustion device. At the same time, when the moxibustion device is being charged, the handle cover 55 is closed to fix the moxibustion device and prevent it from falling off.

[0033] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A moxibustion device charging base with expandable photovoltaic energy storage, comprising a bottom shell (1), a photovoltaic mechanism (2) is provided at the lower end of the bottom shell (1), a fixing mechanism (3) is provided inside the photovoltaic mechanism (2), a charging mechanism (4) is provided at the upper end of the bottom shell (1), and a cover plate mechanism (5) is provided at the upper end of the charging mechanism (4). The photovoltaic mechanism (2) includes a base (21), which is fixedly connected to the lower surface of the bottom shell (1). A rotating groove (22) is provided on one end surface of the base (21). The same fixed cylinder (23) is fixedly connected to the inner walls of the upper and lower ends of the rotating groove (22). The fixed cylinder (23) is inserted into a plurality of circular holes (24). The plurality of circular holes (24) are respectively opened on the surface of a plurality of rotating plates (25). A first arc groove (26) is provided on the upper surface of the plurality of rotating plates (25). The lower surface of the plurality of rotating plates (25) is provided with a first arc groove (26). Each of the upper and lower rotating plates (25) is fixedly connected with a round block (27). The round blocks (27) at the upper end are respectively engaged in the corresponding first arc groove (26). The round block (27) at the lower end is engaged in the corresponding second arc groove (28). The second arc groove (28) is opened on the lower inner wall of the rotating groove (22). One end of the uppermost rotating plate (25) is fixedly connected with a first push block (29). Fixed openings (210) are opened on the surface of each of the rotating plates (25). Photovoltaic panels (211) are fixedly engaged inside each of the fixed openings (210). The fixing mechanism (3) includes a fixing seat (31), which is fixedly connected to the end of the uppermost rotating plate (25) away from the first push block (29). A groove (32) is provided on the surface of the fixing seat (31), and a locking rod (33) is engaged inside the groove (32). The locking rod (33) is inserted into the socket (34), and the other end of the socket (34) extends to communicate with the third arc groove (35). The third arc groove (35) is opened inside the base (21), and an arc groove (35) is engaged inside the third arc groove (35). Block (36), the lower end of the arc block (36) is fixedly connected to a spring (37), the spring (37) is engaged in the third arc groove (35), the surface of the arc block (36) away from the spring (37) is provided with a slot (38), the slot (38) corresponds to the lever (33), the side wall of the arc block (36) away from the lever (33) is fixedly connected to a second push block (39), the second push block (39) is engaged in the interior of the arc opening (310), the arc opening (310) is opened on the outer wall of the base (21).

2. The moxibustion device charging base with expandable photovoltaic panel energy storage according to claim 1, characterized in that: The charging mechanism (4) includes an inner box (41), which is fixedly sleeved on the inner wall of the bottom shell (1). A round magnet (42) is fixedly connected to the lower surface of the inner box (41), a rechargeable battery (43) is fixedly connected to the lower surface of the inner box (41), and an EVA (44) is fixedly connected to the lower surface of the rechargeable battery (43). A charging PCB board (45) is fixedly connected to the lower inner wall of the bottom shell (1). The charging PCB board (45) is fixed to the upper surface of the bottom shell (1) by a first cross-head self-tapping screw (46). A charging display cover (47) is fixedly connected to the inner wall of the bottom shell (1). A first long magnet (48) is fixedly connected to the center of the lower surface of the inner box (41). A spring pin PCB board (410) is fixedly connected to the lower inner wall of the inner box (41) by a second cross-head self-tapping screw (49). An LED display PCB board (411) is fixedly connected inside the charging display cover (47).

3. The moxibustion device charging base with expandable photovoltaic panel energy storage according to claim 1, characterized in that: The cover plate mechanism (5) includes a rear cover inner plate (51), which is fixedly sleeved on the inner wall of the upper opening of the bottom shell (1). Two second long magnets (52) are symmetrically fixedly connected on the upper surface of the rear cover inner plate (51). A rear cover (54) is fixedly snapped onto the upper end of the rear cover inner plate (51). A handle cover (55) is connected to the upper surface of the rear cover (54) by a cross countersunk self-tapping screw (53).

4. A moxibustion device charging base with expandable photovoltaic panel energy storage according to claim 1, characterized in that: The first arc groove (26) corresponds to the second arc groove (28).

5. A moxibustion device charging base with expandable photovoltaic panel energy storage according to claim 1, characterized in that: The distance between the arc block (36) and the groove (32) is the same as the length of the lever (33).

6. A moxibustion device charging base with expandable photovoltaic panel energy storage according to claim 1, characterized in that: The depth of the groove (32) is the same as the depth of the slot (38).

Citation Information

Patent Citations

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    CN104410125A

  • Environmental protection and energy saving type portable power source

    CN207896726U