Rechargeable stone needle warming moxibustion instrument

By designing a rechargeable Bianstone moxibustion device with a built-in battery and USB charging port, precise temperature control and personalized settings are achieved, solving the problem of traditional moxibustion devices being inconvenient to carry, improving the flexibility and safety of treatment, and reducing waste and costs.

CN224056301UActive Publication Date: 2026-03-31ZHONGSHAN POWERWING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional moxibustion devices require electricity to operate, making them inconvenient to carry, limiting the flexibility and safety of treatment, and lacking precise temperature control and personalized settings.

Method used

A rechargeable Bianstone moxibustion device has been designed, featuring a built-in battery and USB charging port. It is equipped with a heating unit, a control unit, an adjustment unit, and a display unit, allowing users to adjust the temperature as needed. The Bianstone base can be detachably connected via a card block and a card slot.

Benefits of technology

It improves the flexibility and safety of the equipment, avoids the risk of burns, provides personalized treatment plans, reduces waste generation, lowers the cost of use, and enhances the portability and ease of operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rechargeable stone needle warming moxibustion instrument which comprises a hollow handle and a stone needle seat connected to one end of the handle. The handle is provided with a heating unit capable of heating so as to increase the temperature of the stone needle seat, a control unit capable of controlling the heating unit to heat, an adjusting unit used for adjusting the heating temperature of the heating unit and a display unit used for displaying temperature gears; a battery capable of supplying power to the heating unit, the control unit, the adjusting unit and the display unit is arranged in the handle, the handle is further provided with a USB charging port used for charging the battery, the design of the built-in battery and the USB charging port enables the device not to depend on a fixed power source any more, and the use flexibility is greatly improved. A user can be treated or nursed at any place and is not limited by the environment. The heating process is accurately managed through the control unit, and the burn risk possibly caused by traditional moxibustion is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of medical and health care products technology, and in particular to a rechargeable Bian stone moxibustion device. Background Technology

[0002] In traditional Chinese medicine, moxibustion is a treatment method that uses the heat generated by burning materials such as mugwort to act on specific acupoints or areas of the body to achieve therapeutic effects. Bian stone therapy, on the other hand, utilizes the physical properties of natural stone, such as its heat conduction, to massage, scrape, or apply warm compresses to the body to promote blood circulation, relieve muscle tension, and improve health.

[0003] As people's understanding of traditional medicine deepens and their interest in natural therapies grows, various products combining traditional methods with modern engineering technology have emerged on the market. For example, some devices use electric heating instead of directly burning mugwort to achieve the effects of moxibustion. This allows for more precise temperature control, reduces smoke and odor, and improves safety and convenience. However, these types of moxibustion products generally require electricity, resulting in long, inconvenient cords that make them difficult to carry and use at work or during leisure time, significantly limiting their therapeutic efficacy and the number of people they can treat.

[0004] This utility model is based on the above-mentioned circumstances. Utility Model Content

[0005] This invention overcomes the shortcomings of the prior art and provides a rechargeable Bianstone moxibustion device.

[0006] This utility model is achieved through the following technical solution:

[0007] A rechargeable Bianstone moxibustion device includes a hollow handle and a Bianstone base connected to one end of the handle. The handle is provided with a heating unit that can generate heat to raise the temperature of the Bianstone base, a control unit that can control the heating unit to heat, an adjustment unit for adjusting the heating temperature of the heating unit, and a display unit for displaying the temperature level. The handle contains a battery that can power the heating unit, control unit, adjustment unit, and display unit. The handle is also provided with a USB charging port for charging the battery.

[0008] As described above, a rechargeable Bianstone moxibustion device has a connection structure between the Bianstone base and the handle that allows the Bianstone base to be detachably connected to the handle.

[0009] As described above, a rechargeable Bianstone moxibustion device has a slot on the Bianstone base for inserting the lower end of the handle. The connection structure includes a slot on the inner side wall of the slot and a locking block on the outer side wall of the lower end of the handle that can be inserted into the slot after the handle is rotated.

[0010] As described above, a rechargeable Bianstone moxibustion device includes a heating unit comprising a heating film, a conductive rod between the heating film and the control unit, and a heat insulation gap between the heating film and the lower end of the handle.

[0011] As described above, a rechargeable Bianstone moxibustion device includes a control circuit board as its control unit.

[0012] As described above, in a rechargeable Bianstone moxibustion device, the display unit includes an indicator light electrically connected to a control circuit board.

[0013] As described above, a rechargeable Bianstone moxibustion device includes an adjustment unit comprising a control panel located at the other end of the handle. The control panel is equipped with a power button, a temperature adjustment button, and an indicator light display window.

[0014] As described above, in a rechargeable Bianstone moxibustion device, the indicator light is positioned between the control circuit board and the control panel. A light-shielding cotton is also provided between the control circuit board and the control panel to limit the light from escaping from the indicator light. The light-shielding cotton has a light-transmitting hole that allows light to pass through, and the light-transmitting hole is connected to the indicator light's display window.

[0015] As described above, a rechargeable Bianstone moxibustion device is provided with an insulating plate between the control circuit board and the control panel. The control panel abuts against the insulating plate, and the insulating plate has clearance holes at the positions corresponding to the light-transmitting holes.

[0016] As described above, a rechargeable Bianstone moxibustion device has a handle made of wood.

[0017] Compared with the prior art, the present invention has the following advantages:

[0018] The built-in battery and USB charging port design eliminates the need for a fixed power source, greatly enhancing flexibility. Users can perform treatments or care anywhere, without environmental limitations. The control unit precisely manages the heating process, avoiding the burn risks associated with traditional moxibustion. Simultaneously, the temperature adjustment function allows users to set an appropriate treatment temperature according to their needs, further ensuring safety. Users can adjust the heating unit's temperature settings based on their individual constitution, condition, and preferences to achieve personalized treatment plans. The display unit provides intuitive temperature feedback for easy operation and monitoring. Using a rechargeable battery instead of disposable batteries reduces waste and lowers long-term operating costs. The USB charging port is compatible with various charging methods, such as power banks and computer USB ports, offering convenience and speed. Attached Figure Description

[0019] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is an exploded view of the present invention;

[0022] Figure 3 This is a cross-sectional schematic diagram of the present invention. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings:

[0024] like Figures 1 to 3 The rechargeable Bianstone moxibustion device shown includes a hollow handle 1 and a Bianstone base 2 connected to one end of the handle 1. The handle 1 is provided with a heating unit 3 that can generate heat to raise the temperature of the Bianstone base 2, a control unit 4 that can control the heating unit 3 to heat, an adjustment unit 5 for adjusting the heating temperature of the heating unit 3, and a display unit 6 for displaying the temperature level. The handle 1 is provided with a battery 7 that can supply power to the heating unit 3, the control unit 4, the adjustment unit 5, and the display unit 6. The handle 1 is also provided with a USB charging port 71 for charging the battery 7.

[0025] The built-in battery 7 and USB charging port 71 design eliminates the need for a fixed power source, greatly improving flexibility. Users can perform treatments or care anywhere, without environmental limitations. The control unit 4 precisely manages the heating process, avoiding the burn risks associated with traditional moxibustion. Simultaneously, the temperature adjustment function allows users to set a suitable treatment temperature according to their needs, further ensuring safety. Users can adjust the temperature setting of the heating unit 3 based on their individual constitution, condition, and preferences to achieve personalized treatment plans. The display unit 6 provides intuitive temperature feedback for easy operation and monitoring. Using a rechargeable battery 7 instead of disposable batteries reduces waste and lowers long-term operating costs. The USB charging port 71 is compatible with various charging methods, such as power banks and computer USB ports, offering convenience and speed.

[0026] In one embodiment, a connecting structure is provided between the Bianstone base 2 and the handle 1, which allows the Bianstone base 2 to be detachably connected to the handle 1. Specifically, the Bianstone base 2 is provided with a slot 21 for the lower end of the handle 1 to be inserted into, and the connecting structure includes a slot 211 provided on the inner side wall of the slot 21, and a locking block 11 provided on the outer side wall of the lower end of the handle 1, which can be inserted into the slot 211 and engaged after the handle 1 is rotated.

[0027] The Bianstone base 2 is detachably connected to the handle 1, allowing users to easily remove the Bianstone 2 for cleaning or replacement. This is crucial for maintaining device hygiene and extending its lifespan, especially when shared by multiple users. Users can choose different shapes of Bianstone base 2 to suit different treatment needs or personal preferences. The combination design of the locking block 11 and the slot 211 allows users to quickly install and remove the Bianstone base 2, increasing the device's portability and ease of use.

[0028] In one embodiment, the heating unit 3 includes a heating film, a conductive rod 31 is provided between the heating film and the control unit 4, and a heat insulation gap 32 is provided between the heating film and the lower end of the handle 1.

[0029] As a thin, flexible, and efficient heating element, the heating film can rapidly heat up and provide uniform heat distribution, ensuring that the Bianstone base 2 is heated evenly during use and improving the therapeutic effect. A heat insulation gap 32 is provided between the heating film and the lower end of the handle 1, effectively preventing heat conduction to the handle 1, avoiding overheating of the user's grip area, and improving comfort and safety. Simultaneously, the heat insulation gap 32 helps concentrate heat on the Bianstone base 2, improving energy utilization efficiency, reducing the thermal impact on the internal electronic components of the handle 1, slowing down the aging rate of components due to high temperatures, and thus extending the overall lifespan of the product. The rapid response characteristics of the heating film make temperature adjustment more sensitive, allowing users to quickly adjust to the ideal treatment temperature as needed.

[0030] In one embodiment, the control unit 4 includes a control circuit board. The display unit 6 includes an indicator light electrically connected to the control circuit board. The adjustment unit 5 includes a control panel located at the other end of the handle 1, the control panel having a power button 51, a temperature adjustment button 52, and an indicator light display window 53. The control circuit board can be connected to the handle 1 via threaded fasteners or other connection methods, and the indicator light is connected to the control circuit board.

[0031] Furthermore, the indicator light is positioned between the control circuit board and the control panel. A light-shielding cotton 8 is also provided between the control circuit board and the control panel to limit the leakage of light from the indicator light. The light-shielding cotton 8 has a light-transmitting hole 81 that allows light to pass through, and the light-transmitting hole 81 communicates with the indicator light's display window 53. By providing a light-transmitting hole in the light-shielding cotton 8 and ensuring its precise communication with the indicator light's display window 53, light scattering and interference can be minimized. This allows users to see information such as the temperature setting more clearly and accurately, especially when used in bright environments. By limiting light leakage and ensuring the accuracy of the displayed information, users will not misread the temperature or other important parameters due to light interference, thereby improving safety during use.

[0032] Furthermore, an insulating plate 9 is provided between the control circuit board and the control panel. The control panel abuts against the insulating plate 9, and the insulating plate 9 has a clearance hole 91 corresponding to the position of the light-transmitting hole 81. The insulating plate 9 effectively isolates the control circuit board and the control panel, avoiding the risk of short circuits caused by poor contact or accidental conductive substances. The insulating plate 9 acts as a physical barrier, preventing external pressure or impact from directly acting on the fragile control circuit board, thereby protecting the internal electronic components from damage. The control panel abuts against the insulating plate 9, making the connection between the two tighter and more stable. This not only enhances the structural integrity of the entire device but also reduces loosening or displacement caused by vibration or movement. The insulating plate 9 can be a plate made of PC board or other insulating materials, and can be connected to the handle 1 by threaded fasteners or other connection methods. The control panel can be connected to the insulating plate 9 by glue or other connection methods, and can cover the connection structure of the insulating plate 9, improving the aesthetics of the product.

[0033] In one embodiment, the handle 1 is made of wood. Compared to metal or plastic, wood is closer to human body temperature, providing a natural and comfortable grip. This is especially important for users who use the product for extended periods, reducing hand fatigue. Simultaneously, wood is a natural thermal insulator, effectively preventing heat generated by the heating unit 3 from being transferred to the grip area, ensuring the user does not feel hot during operation. This not only improves safety but also enhances comfort. Wood is a renewable resource, helping to reduce environmental impact. Furthermore, wood is a natural poor conductor of electricity, making it less prone to static electricity buildup, thus reducing potential discomfort or interference caused by electrostatic discharge.

Claims

1. A rechargeable Bianstone moxibustion device, characterized in that: The utility model provides a kind of stone hammer, including hollow handle (1) and the stone hammer seat (2) connected in the handle (1) one end, the handle (1) is equipped with the heating unit (3) that can heat to make the temperature of stone hammer seat (2) increase, the control unit (4) that can control heating unit (3) to heat, the adjusting unit (5) for adjusting the heating temperature of heating unit (3) and the display unit (6) for showing temperature grade, handle (1) is equipped with the battery (7) for the power supply of heating unit (3), control unit (4), adjusting unit (5) and display unit (6), handle (1) is also equipped with the USB charging port (71) for charging battery (7).

2. The rechargeable stone warm-cure instrument according to claim 1, characterized in that: The stone hammer seat (2) is detachably connected to the handle (1) by the connecting structure between the handle (1) and the stone hammer seat (2).

3. The rechargeable stone warm-cure instrument according to claim 2, characterized in that: The stone hammer seat (2) is equipped with a slot (21) for inserting the lower end of the handle (1), and the connecting structure includes a clamping groove (211) on the inner side wall of the slot (21), and the lower end of the handle (1) is equipped with a clamping block (11) that can be inserted into the clamping groove (211) after rotating the handle (1).

4. The rechargeable stone warm-cure instrument according to claim 3, characterized in that: The heating unit (3) includes a heating film, and the heating film is equipped with a conductive rod (31) between the control unit (4), and the heating film is equipped with a heat insulation gap (32) between the lower end of the handle (1).

5. The rechargeable stone warm-cure instrument according to any one of claims 1-4, characterized in that: The control unit (4) includes a control circuit board.

6. The rechargeable stone warm-cure instrument according to claim 5, characterized in that: The display unit (6) includes a display lamp electrically connected to the control circuit board.

7. The rechargeable stone warm cauterant according to claim 6, characterized in that: The adjusting unit (5) includes a control panel on the other end of the handle (1), and the control panel is equipped with a power button (51), a temperature adjusting button (52) and a display window (53) of the display lamp.

8. The rechargeable stone warm cauterant according to claim 7, characterized in that: The display lamp is arranged between the control circuit board and the control panel, and the control circuit board and the control panel are further equipped with a shading cotton (8) for limiting light overflow of the display lamp, the shading cotton (8) is equipped with a light transmission hole (81) for light transmission, and the light transmission hole (81) is communicated with the display window (53) of the display lamp.

9. The rechargeable stone warm cauterant according to claim 8, characterized in that: The control circuit board and the control panel are further equipped with an insulating plate (9), and the control panel is abutted on the insulating plate (9), and the insulating plate (9) is equipped with a avoiding hole (91) corresponding to the position of the light transmission hole (81).

10. The rechargeable stone warm-cure instrument according to claim 1, characterized in that: The handle (1) is made of wood material.