Novel silver needle temperature control device
Through the silver needle temperature control device of ceramic heating tube and temperature measurement thermocouple combined with automatic control unit, the problem of inaccurate temperature control and large heat loss in the prior art is solved, efficient and energy-saving temperature control is achieved, and treatment effect is improved and safety is ensured.
Patent Information
- Application Number
- CN202420732369.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-04-10
AI Technical Summary
The existing silver needle casing heating device is difficult to accurately control the temperature, has large heat loss, poor treatment effect, and has problems such as inconvenient operation, short life of the clip, and the weight of the clip lead to tilting of the silver needle.
The heating is carried out using ceramic heating pipes, combined with the temperature measuring thermocouple and automatic control unit, and precise temperature control is carried out through the power supply host, and the outer tube sleeve and thermal insulation column protection is used for Peek material to ensure that the heating components are close to the working point of the human body and reduce heat loss.
It achieves efficient and energy-saving temperature control, reduces heat loss, improves treatment effect, avoids the risk of clamp tilt and scalding, and has a simple and reliable structure.
Smart Images

Figure CN223126888U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of acupuncture, and more specifically, to a new type of silver needle temperature control device. Background Art
[0002] In the prior art, the heating method of the silver needle sleeve heating device is to heat the silver needle by placing the sleeve device at the needle tail of the silver needle. In clinical use, the lengths of the silver needles used in different parts are different, and the acupuncture depths at the needle placement points are also different. Therefore, the distances from the needle tails to the needle insertion points on the human body are also different. As a result, there is a certain difference between the temperature at the working point on the human body and the temperature at the heating end. It is very difficult to control the constant temperature at the working point on the human body by the silver needle within a suitable range. There is a large heat loss, low efficiency, and poor treatment effect.
[0003] There are also other drawbacks in its clinical use. For example:
[0004] 1. When the needles are densely placed at the patient's affected area, it occupies external space and is inconvenient to operate and use;
[0005] 2. The spring device in the clip of the heating device has a short service life and a high damage rate;
[0006] 3. The existing clamp-type heating device cannot be used for heating acupuncture needles;
[0007] 4. For the existing clamp-type heating device, the weight of the clip is 1.45 g, and when it is clamped on the silver needle during treatment, it will cause the silver needle to tilt, posing a safety hazard. Summary of the Utility Model
[0008] To overcome the deficiencies in the above prior art, the utility model provides a new type of silver needle temperature control device. The device has high heating efficiency, is more energy-saving, is safe to use, the heating component is close to the working point on the human body, is less affected by the length of the silver needle and the acupuncture depth, can accurately control the temperature when the silver needle acts on the working point on the human body, has small heat loss, high efficiency, and improves the treatment effect.
[0009] To solve the above technical problems, the technical solution adopted by the utility model is as follows:
[0010] A new type of silver needle temperature control device includes a silver needle, a heating tube, a heating tube sleeve, and a power supply host. The heating tube sleeve is sleeved outside the silver needle. Both ends of the heating tube sleeve are provided with holes, and the silver needle passes through the heating tube sleeve through the holes. The heating tube is arranged inside the heating tube sleeve, and the heating tube is connected to the power supply host through a wire harness.
[0011] The outside of the heating tube is coated with a heat insulation film.
[0012] A temperature-measuring thermocouple is provided on the heating tube, and the temperature-measuring thermocouple is connected to the power supply host through a wire harness.
[0013] The heating tube sleeve includes an outer tube sleeve and an outer tube cover. The outer tube sleeve is a hollow tube structure with an opening on one side, and the outer tube sleeve and the outer tube cover are connected by a buckle.
[0014] Heat-insulating columns are provided below the heating tube sleeve. Corresponding holes are provided on both sides of the heat-insulating columns, and the silver needles pass through the heat-insulating columns through the holes.
[0015] The heating tube uses a ceramic heating tube, and a ruthenium-based slurry is sprayed on the ceramic heating tube.
[0016] A signal collection unit, a voltage control unit, a human-computer interaction unit, and an automatic control unit are provided in the power supply host. The automatic control unit is respectively connected to the signal collection unit and the voltage control unit. The human-computer interaction unit is connected to the automatic control unit. The signal collection unit and the voltage control unit are electrically connected to the wire harness.
[0017] A display screen and a temperature control knob are provided on the power supply host. The display screen is electrically connected to the signal collection unit, and the temperature control knob is electrically connected to the human-computer interaction unit.
[0018] The outer tube sleeve and the outer tube cover are made of Peek material.
[0019] The heat-insulating column is made of Peek material.
[0020] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0021] The ceramic heating tube sprayed with ruthenium-based slurry is used for heating, with high heating efficiency and more energy-saving; the setting of the heat-insulating column prevents the heating tube sleeve from contacting the human skin, avoiding accidental scalding; the setting of the temperature-measuring thermocouple can reflect the heating temperature of the heating tube in real time and accurately, facilitating the operator to adjust and control according to the real-time temperature; the setting of the outer tube sleeve and the outer tube cover facilitates the storage of the heating tube therein, playing a role in protecting the heating tube and the human body; the heating tube sleeve and the heat-insulating column made of Keep material have strong heat resistance and corrosion resistance, strong radiation resistance, stable insulation performance, high flame retardancy, simple structure, stable and reliable; through the human-computer interaction unit and the automatic control unit in the power supply host, the heating tube can be stably adjusted manually or automatically to ensure that the treatment temperature is kept constant within a suitable range. This device has high heating efficiency, is more energy-saving, safe to use, the heating component is close to the human working point, is less affected by the length of the silver needle and the acupuncture depth, can accurately control the temperature when the silver needle acts on the human working point, has small heat loss, high efficiency, and improves the treatment effect. Description of the Drawings
[0022] Figure 1 Schematic diagram for the use of the present utility model;
[0023] Figure 2 Internal schematic diagram of the present utility model;
[0024] Figure 3 Schematic diagram of the heating tube sleeve part of the present utility model;
[0025] Figure 4 Schematic diagram of the control part of the power supply host of the present utility model;
[0026] In the figure: 1 is a silver needle, 2 is a heating tube, 3 is a heat insulation film, 4 is a temperature measuring thermocouple, 5 is an outer tube sleeve, 6 is an outer tube cover, 7 is a heat insulation column, 8 is a wire harness, 9 is a power supply host, 10 is a number limit collection unit, 11 is a voltage control unit, 12 is a human-computer interaction unit, 13 is an automatic control unit, 14 is a display screen, 15 is a temperature control knob, and 16 is human skin. Specific implementation manners
[0027] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the present utility model will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0028] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the specific embodiments disclosed below.
[0029] As Figures 1 to 4 shown, a new type of silver needle temperature control device includes a silver needle 1, a heating tube 2, a heating tube sleeve and a power supply host 9. The heating tube 2 is sleeved outside the silver needle 1. Both ends of the heating tube sleeve are provided with holes, and the holes are arranged to match the model of the silver needle 1. The silver needle 1 passes through the heating tube sleeve through the holes. The heating tube 2 is arranged in the heating tube sleeve. The heating tube sleeve plays a role in heat insulation and protecting human skin for the heating tube 2. The heating tube 2 is connected to the power supply host 9 through a wire harness 8. Energy is provided to the heating tube 2 by the power supply host 9, so that the heating tube 2 can generate heat. The heating tube 2 transfers the heat to the silver needle 1 to heat the silver needle 1 for treatment.
[0030] Preferably, a heat insulation film 3 is coated outside the heating tube 2. The heat insulation film 3 reduces the heat dissipation of the heating tube 2, reduces the heat consumption, and at the same time avoids the damage to the inner wall of the heating tube sleeve when the temperature is too high, and improves the service life of the device.
[0031] Preferably, a temperature measuring thermocouple 4 is provided on the heating tube 2, and the temperature measuring thermocouple 4 is connected to the power supply host 9 through a wire harness 8. The temperature measuring thermocouple 4 can monitor the temperature of the heating tube 2 in real time and transmit it to the power supply host 9 through an electrical signal, facilitating the control of the treatment temperature of the silver needle 1.
[0032] Preferably, the heating tube sleeve includes an outer tube sleeve 5 and an outer tube cover 6. The outer tube sleeve 5 is a hollow tube structure with an opening on one side, and the outer tube sleeve 5 and the outer tube cover 6 are snap-connected. The outer tube sleeve 5 and the outer tube cover 6 have the same diameter. The length of the heating tube sleeve is 2.9 cm and the weight is 1.05 g. The heating tube sleeve device with a small volume and small weight will neither occupy too much space, facilitating the dense arrangement of the silver needles 1, nor cause the silver needles 1 to tilt due to excessive self-weight. The outer surface of the outer tube sleeve 5 is provided with anti-slip lines.
[0033] Preferably, a heat insulation column 7 is provided below the heating tube sleeve. Corresponding holes are provided on both sides of the heat insulation column 7, and the silver needle 1 passes through the heat insulation column 7 through the holes. The diameter of the heat insulation column 7 is the same as that of the heating tube sleeve, aiming to prevent the heating tube sleeve from directly contacting the human skin 16 and avoiding the human skin 16 from being burned by high temperature.
[0034] Preferably, the heating tube 2 is a ceramic heating tube, and a ruthenium-based slurry is sprayed on the ceramic heating tube. The ceramic heating tube sprayed with ruthenium-based slurry has higher heating efficiency and is more energy-saving.
[0035] Preferably, a signal collection unit 10, a voltage control unit 11, a human-computer interaction unit 12, and an automatic control unit 13 are provided in the power supply host 9. The automatic control unit 13 is respectively connected to the signal collection unit 10 and the voltage control unit 11, the human-computer interaction unit 12 is connected to the automatic control unit 13, and the signal collection unit 10 and the voltage control unit 11 are electrically connected to the wire harness 8. The temperature measuring thermocouple 4 transmits the collected temperature signal to the signal collection unit 10, and then transmits it to the automatic control unit 13 in the form of an electrical signal. The automatic control unit 13 can adjust and control the voltage control unit 11; the human-computer interaction unit 12 can manually control the working voltage and heating temperature, and can also set a range value to enable the automatic control unit 13 to perform temperature stability control by itself.
[0036] Preferably, a display screen 14 and a temperature control knob 15 are provided on the power supply host 9. The display screen 14 is electrically connected to the signal collection unit 10, and the temperature control knob 15 is electrically connected to the human-computer interaction unit 12. The temperature of the heating tube 2 and the working voltage are displayed on the display screen 14.
[0037] Preferably, the outer tube sleeve 5 and the outer tube cover 6 are made of Peek material. The heating tube sleeve and the heat insulation column made of Keep material have strong heat resistance and corrosion resistance, strong radiation resistance, stable insulation, and high flame retardancy, with obvious economic benefits.
[0038] Preferably, the heat insulation column 7 is made of Peek material. The heat insulation column of the heating tube sleeve machine made of Keep material has strong heat resistance and corrosion resistance, and has strong radiation and stable insulation, which can ensure that the heat insulation column 7 reliably protects the human skin 16.
[0039] Before use, the heating tube 2 is sleeved outside the silver needle 1, the outer sleeve 5 is sleeved outside the silver needle 1 and the heating tube 2, the outer tube cover 6 is covered on the outer sleeve 5 to seal the outer sleeve 5. An opening for connecting the wire harness 8 is provided on the outer sleeve 5. The heat insulation column 7 is sleeved on the tip of the silver needle 1, and the top of the heat insulation column 7 contacts the outer tube cover 6. The silver needle 1 is inserted into the working point of the human skin. Through the setting of the power supply host 9, the temperature of the human working point is stably maintained between 43 and 45 degrees Celsius. Heating and temperature control are carried out at a position 1 cm away from the human skin 16 on the needle body of the silver needle.
[0040] Only the preferred embodiments of the present invention are described in detail above, but the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the purpose of the present invention, and all such changes should be included in the protection scope of the present invention.
Claims
1. A new type of silver needle temperature control device, characterized in that: It includes a silver needle (1), a heating tube (2), a heating tube sleeve, and a power supply host (9). The heating tube (2) is sleeved outside the silver needle (1). Both ends of the heating tube sleeve are provided with holes, and the silver needle (1) passes through the heating tube sleeve through the holes. The heating tube (2) is arranged inside the heating tube sleeve, and the heating tube (2) is connected to the power supply host (9) through a wire harness (8).
2. A novel silver needle temperature control device according to claim 1, characterized in that: An insulating film (3) is coated outside the heating tube (2).
3. A novel silver needle temperature control device according to claim 1, characterized in that: A temperature-measuring thermocouple (4) is arranged on the heating tube (2), and the temperature-measuring thermocouple (4) is connected to the power supply host (9) through a wire harness (8).
4. A novel silver needle temperature control device according to claim 1, characterized in that: The heating tube sleeve includes an outer tube sleeve (5) and an outer tube cover (6). The outer tube sleeve (5) is a hollow tube structure with an opening on one side, and the outer tube sleeve (5) and the outer tube cover (6) are snap-connected.
5. A novel silver needle temperature control device according to claim 1, characterized in that: An insulating column (7) is arranged below the heating tube sleeve. Corresponding holes are provided on both sides of the insulating column (7), and the silver needle (1) passes through the insulating column (7) through the holes.
6. A novel silver needle temperature control device according to claim 1, characterized in that: The heating tube (2) is a ceramic heating tube, and a ruthenium-based paste is sprayed on the ceramic heating tube.
7. A novel silver needle temperature control device according to claim 1, characterized in that: A signal collection unit (10), a voltage control unit (11), a human-computer interaction unit (12), and an automatic control unit (13) are arranged inside the power supply host (9). The automatic control unit (13) is respectively connected to the signal collection unit (10) and the voltage control unit (11). The human-computer interaction unit (12) is connected to the automatic control unit (13). The signal collection unit (10) and the voltage control unit (11) are electrically connected to the wire harness (8).
8. A novel silver needle temperature control device according to claim 7, characterized in that: A display screen (14) and a temperature control knob (15) are arranged on the power supply host (9). The display screen (14) is electrically connected to the signal collection unit (10), and the temperature control knob (15) is electrically connected to the human-computer interaction unit (12).
9. A novel silver needle temperature control device according to claim 4, characterized in that: The outer tube sleeve (5) and the outer tube cover (6) are made of Peek material.
10. A novel silver needle temperature control device according to claim 5, characterized in that: The insulating column (7) is made of Peek material.