Grain-refined magnetic self-generating capacitor acupuncture needle
By combining plasma surface treatment and permanent magnet materials with acupuncture needles, a capacitor acupuncture needle with refined surface energy is formed, which solves the problem of insufficient self-generated electrochemical effect of acupuncture needles, realizes a highly efficient self-generated current treatment effect, and expands the application range of capacitors in medical devices.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-15
- Publication Date
- 2026-03-24
AI Technical Summary
The current intensity of the self-generated electrochemical effect of existing acupuncture needles is insufficient, the application of traditional capacitors in medical devices is limited, and the surface treatment technology of acupuncture needles has failed to effectively improve the electrochemical effect of acupuncture. There is a lack of capacitor devices that can be used directly or in conjunction with drugs and medical devices to treat and prevent diseases in the human body.
The acupuncture needle with refined magnetic grains and a self-generating capacitor uses plasma surface treatment technology to form refined surface energy on the surface of the acupuncture needle. Combined with permanent magnet materials and capacitors or capacitor tape, it enhances the electrochemical current of acupuncture. The energy storage and discharge function of the capacitor and the magnetic field are used to prevent and treat diseases in the human body.
It significantly enhances the intensity of acupuncture electrochemical current, achieves spontaneous current therapy within 24 hours, improves the therapeutic effect of acupuncture needles, and works in conjunction with drugs and medical devices in the treatment and prevention of diseases in the human body.
Smart Images

Figure CN121714451A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of traditional Chinese medicine acupuncture instruments, and particularly relates to a grain refinement magnetic self-power generation capacitor acupuncture needle. BACKGROUND
[0002] Body acupuncture is acupuncture treatment on acupoints and meridians.
[0003] Head acupuncture, also known as scalp acupuncture, is a method of preventing and treating diseases by acupuncture (needle embedding) on specific acupoint lines on the scalp; its theoretical basis is that "① According to the traditional theory of zang-fu and meridians: the six yang meridians and the six yin meridians of the small cycle of the hands and feet all run through the head and face, and the head and face are important parts where the qi of zang-fu and meridians converges. The head is the house of wisdom. ② According to the projection of the cerebral cortex function on the scalp, the corresponding head acupoint lines are established.", so head acupuncture is suitable for brain-related diseases (such as sequelae of cerebrovascular accidents, cortical visual impairment, cerebellar balance disorders, cortical polyuria, enuresis, tremor paralysis, chorea, senile dementia, headache, dizziness, etc.), certain non-brain-related diseases (such as low back and leg pain, neuralgia, asthma, hiccups, ear-related dizziness, tinnitus, hearing impairment, migraine, stomachache, uterine prolapse, etc.), acupuncture anesthesia, etc. (According to the CNKI "head acupuncture" theme search on December 16, 2025, there are 7161 papers from 1959 to now) It is reported that electro-acupuncture head acupuncture has statistical significance compared with ordinary head acupuncture.
[0004] Wrist-ankle acupuncture is a kind of acupuncture based on the theory of twelve meridians in traditional Chinese medicine, which is performed by acupuncture (needle embedding) in the subcutaneous superficial layer of specific areas of the wrist or ankle of twelve meridians to achieve the purpose of treating various diseases of twelve meridians and zang-fu organs of the whole body. It is widely used in clinical practice due to its simple operation, definite effect, and less pain (According to the CNKI "wrist-ankle acupuncture" theme search on December 16, 2025, there are 1357 papers from 1976 to now).
[0005] The Chinese invention patent with patent number 200610048914.0, "A Multi-head Surface Characteristic Difference Device for Electrochemical Acupuncture Needles and Intradermal Needles," discovered that the original effect of acupuncture is the electrochemical effect of acupuncture and revealed the mechanism of the electrochemical effect of acupuncture. The patent "A High-Efficiency Self-Generating Electrochemical Current Linked Press Needle (Utility Model Patent No. 201520631644.0)" uses conductive tape to fix the press needle to the skin (its press needle body) and generates a self-generating electrochemical current linkage after being inserted into the skin. It is innovative and pioneered the concept that the press needle (inserted into the body) and the conductive tape (covering the skin) together generate a spontaneous acupuncture electrochemical effect (i.e., redox effect) in the body and in the skin area covered by the conductive tape, and increased the effective area of the spontaneous acupuncture electrochemical effect of continuous 24-hour / day needle embedding treatment. However, if the current of the spontaneous needle electrochemical effect can be enhanced through further innovation and invention, it will be beneficial to further enhance the degree of spontaneous intradermal needle electrochemical effect.
[0006] Biophysics states that "the single-channel current of a cell is extremely small, at the pA level (a 1 nA current stimulus to a nerve cell can record an action potential, with a peak value reaching +50mV)"; Acupuncture states that "electroacupuncture refers to inserting acupuncture needles into acupoints to obtain Qi, and then applying a pulsed current close to the body's bioelectricity. This method utilizes both needle and electrical stimulation to stimulate and regulate the Qi of the meridians, thereby preventing and treating diseases. Electroacupuncture began to be widely used in my country in the 1950s, and has advantages such as saving time and effort, objectively controlling the stimulation amount, and improving therapeutic efficacy." The application number is 201510. Chinese invention patent application No. 514089.8, entitled "A High-Efficiency Self-Generating Electrochemical Current Linked Press Needle," describes a product whose self-generated electrochemical current can approach or exceed 1 nA of cellular current, while others cannot. Obviously, the electrochemical current of the aforementioned nA-level acupuncture needles is far from the therapeutic current of "electroacupuncture instruments...the maximum current is limited to within 1 mA." Therefore, creative efforts are still needed to enhance the intensity of the self-generated electrochemical current of acupuncture needles (such as intradermal needles, scalp needles, wrist-ankle needles, etc.).
[0007] Neurophysiology tells us that "the electrical properties of nerve fibers are mainly reflected in the resistance, capacitance, voltage (potential) three aspects." We know that the capacitance (or called capacitor "any two mutually insulated and close to each other, the conductor can be seen as a capacitor", or for the super capacitor "has excellent pulse charge and discharge performance, power density is higher than the battery, energy density is higher than the traditional capacitor. Super capacitor is divided into two layers of capacitor and pseudo capacitor such as two kinds", or for the hybrid capacitor) is the device used to store the amount of electricity (the ability to hold electric charge) in the circuit, (mainly used in power filter, signal filtering, signal coupling, resonance, filter, compensation, charge and discharge, energy storage, direct current isolation circuit) it is indispensable electronic components in the field of electronics, electric power. And the membrane capacitance of nerve cells can also store electrical energy and provide stored electrical energy output in the form of coordination to maintain the physiological state of stable membrane current.
[0008] According to the textbook and dictionary records "charge is the positive or negative electricity carried by the object or the object's point. Different kinds of electric charges attract each other, and the same kind of electric charges repel each other." "When two charges interact, they do not directly contact each other, so the interaction between them must be mediated by other objects. Such substances are called electric field. As long as the charge exists, there is an electric field around the charge." "Any two mutually insulated and close to each other, the conductor can be seen as a capacitor, the two conductors are the two poles of the capacitor. There is a potential difference between the two poles of the capacitor." "Generally, one electrode of a battery is called a half-cell. In this sense, the electrode not only includes the electrode itself, but also includes the electrolyte solution." "Microscopic battery: due to the electrochemical heterogeneity of the metal surface, there is a potential difference in the micro area or local area of the metal surface. Microscopic battery mainly has the following types: (1) uneven chemical composition of metal, such as carbide in carbon steel, Fe impurity in industrial pure Zn, etc. Because their potential is higher than that of the base metal, they form a micro battery. (2) unevenness of metal organization. (3) unevenness of metal surface physical state, such as deformation, uneven processing, grain distortion of metal, which can lead to the formation of micro battery. Generally, the part with large deformation and high internal stress is the anode area, which is easy to be corroded. In addition, temperature difference, light, etc. can also form micro battery."
[0009] For a long time, the capacitor has been used as a basic element in power filter, signal filter, signal coupling, resonance, filter, compensation, charge and discharge, energy storage, direct current isolation circuit, etc. Influenced by this traditional cognitive bias, the application of capacitor technology in medical equipment is limited to the filter circuit of electrocardiograph, power management in pacemaker and energy storage in some medical electronic devices; the problem is how to make the use of capacitor in a wider range.
[0010] Since the capacitor is never a kind of direct (or with drugs, instruments) applied to the human body to treat diseases capacitor treatment device; and Western medicine, traditional Chinese medicine has never been a direct (or with drugs, instruments) applied to the human body for the treatment of disease, disease prevention capacitor device, and acupuncture (acupuncture, buried needle, moxibustion) has never been a direct (or with acupuncture needle, intradermal needle, head needle, wrist and ankle needle, moxibustion and other acupuncture instruments) applied to the human body for the treatment of disease, disease prevention capacitor device, therefore, people have never used capacitor directly or with drugs, medical instruments for the treatment, health care, disease prevention theory and the corresponding technical method, there is no direct or with drugs, medical instruments (including traditional Chinese medicine instruments) applied to the human body for the treatment of disease, health care, disease prevention capacitor device; it can be seen that in order to overcome the foregoing technical bias, technical problems and defects, to create a past never had, and can be directly or with drugs, medical instruments (especially traditional Chinese medicine instruments) applied to the human body for the treatment of disease, disease prevention capacitor device (and related technical methods) still need to pay creative labor.
[0011] In addition, since the needle body of the acupuncture needle is usually made of metal (such as stainless steel), the binding energy and arrangement of the metal atoms on the surface of the metal (stainless steel) are stably combined in the form of metal bond (free electron sharing), and at present the acupuncture needle is coated with silicone oil on the needle body (for lubrication when the needle is inserted into the skin), in addition, various bacteria, viruses and pollutants may be left on the action surface of various acupuncture needle products, and after sterilization and disinfection (using ethylene oxide, cobalt 60, etc.), bacteria, virus inactivators and pollutants may be attached, and so on. These can form heat sources affecting the body and oxidation passivation layers on the metal surface, thereby affecting the electrochemical effect of the metal acupuncture needle. The use of plasma surface treatment of metal can improve the surface energy of the metal and improve the wettability (the surface energy can be increased from below 30 dynes to above 50 dynes); it can clean and activate the surface (the plasma can decompose the surface oil, oxidation layer and weak boundary layer, and at the same time, the active particles can "activate" the surface, providing clean and high-activity substrate lubricity for subsequent processing); micro-bombardment and structure regulation (physical sputtering can form a nano-scale rough structure on the surface, such as porous and convex, increase the specific surface area, and enhance the mechanical bonding force with other materials, such as battery pole piece treatment, improve the wettability of electrolyte); although the plasma surface treatment technology has the effect of improving antibacterial property or cell compatibility in medicine, but due to the constraints of the aforementioned cognitive and habitual biases of the traditional acupuncture stimulation of acupuncture needles, people have not discovered or applied the plasma surface treatment technology to the processing of various acupuncture needles. Obviously, by using plasma surface treatment technology, overcoming traditional biases, and producing acupuncture needles with grain refinement surface energy on the action surface of the needle, a self-generated electric capacitor acupuncture needle can be further effectively enhanced. It also needs to pay creative labor.
[0012] In addition, the force exerted by the magnetic field on the current-carrying conductor in it is called Ampere force; the microcosmic force of the magnetic field on the moving charge is Lorentz force; magnetic therapy is a method of treating diseases by applying magnetic field to human body. The magnetic field acting on the human body can change the direction and size of the biological current of the human body, produce weak eddy current, affect the direction of electron movement in the body, the distribution concentration and movement speed of ions inside and outside the cells, and the excitability of nerves, change the permeability of cell membrane, material exchange and biochemical process inside and outside the cells; the direction of the magnetic field can also affect the orientation of lipids, myosin, mitochondria and other macromolecules in the body, and affect the activity of enzymes and biochemical reactions; obviously, if a self-generated electric current generated by the oxidation-reduction effect of the acupuncture needle with grain refinement surface energy treated by plasma surface treatment is added to the electric capacitor, and then the magnetic field Lorentz force and Ampere force do work, the action field of the self-generated electrochemical effect can be further effectively enhanced. It also needs to pay creative labor. SUMMARY
[0013] The object of the present application is to provide a self-power capacitor acupuncture needle with grain refinement magnetism, which combines a capacitor and / or a capacitor tape roll with a permanent magnet material and an acupuncture needle with grain refinement surface energy treated by plasma, the permanent magnet material can affect the direction and size of the current movement in the human body (produce weak eddy current to affect the direction of electron movement in the body, the distribution concentration and movement speed of ions inside and outside the cells, and the excitability of nerves, change the permeability of cell membrane, material exchange between inside and outside the cells, and biological and biochemical reactions), and at the same time, the acupuncture needle body with grain refinement of magnetic metal material and the acupuncture electrochemical effect caused by the larger self-power current in the human body are affected, and are collectively stored in the charge layer of the capacitor and / or capacitor tape roll through the inner needle handle (so that the capacitor has the functions of containing, storing energy, compensating, charging and discharging), thereby collectively acting on the human body for disease prevention and treatment (the present application is based on the essential principles of physics and biophysics, and creates a self-power capacitor acupuncture needle with grain refinement magnetism that has never been used before, which can directly use a capacitor device and an acupuncture needle with a permanent magnet material and grain refinement surface energy to act on the human body for disease prevention and treatment).
[0014] To achieve the above-mentioned object of the present application, the technical solution of the present application is as follows:
[0015] A self-power capacitor acupuncture needle with grain refinement magnetism, comprising an acupuncture needle with a grain refinement surface energy acting surface, a permanent magnet material, and a capacitor and / or a capacitor tape roll, the acupuncture needle is composed of a needle body and an inner needle handle; the acupuncture needle body (i.e. the needle tip) is provided with a grain refinement surface energy acting surface, the permanent magnet material is fixed on the front part of the inner needle handle of the acupuncture needle, and the capacitor and / or capacitor tape roll is fixed on the rear part of the inner needle handle of the acupuncture needle, or the permanent magnet material is fixed on the rear part of the inner needle handle of the acupuncture needle, and the capacitor and / or capacitor tape roll is fixed on the front part of the inner needle handle of the acupuncture needle, or the permanent magnet material is fixed on the inner needle handle of the acupuncture needle, and the capacitor and / or capacitor tape roll is fixed on the permanent magnet material, or the capacitor and / or capacitor tape roll is fixed on the inner needle handle of the acupuncture needle, and the permanent magnet material is fixed on the capacitor and / or capacitor tape roll, so that the permanent magnet material and the capacitor and / or capacitor tape roll form an outer needle handle. In addition, at least one capacitor tape for storing charge can be additionally provided. The technical effect of the above-mentioned technical solution is that the acupuncture electrochemical current is increased synergistically, which is unexpected for those skilled in the art.
[0016] Further, the capacitor and / or capacitor tape roll fixed on the inner needle handle of the acupuncture needle, or the capacitor and / or capacitor tape roll fixed on the permanent magnet material and the inner needle handle of the acupuncture needle, should be connected with the inner needle handle by a conventional physical and chemical technical method to form a conductive related capacitor function.
[0017] Further, the firmness of the capacitor, the capacitor tape roll, the connection between the permanent magnet materials, and the connection between the inner needle handle part of the acupuncture needle (which should be connected by conventional physical and chemical technical methods) should meet the provisions of Clause 4.6 of the national standard "Acupuncture Needle (GBT 2024-2016)".
[0018] The needle body (needle tip) of the application is made of a metal material containing magnetism, a metal material containing little magnetism, or a metal material containing no magnetism. The grain refinement surface energy action surface of the needle body is obtained by high-speed impact of plasma (high-energy particles such as ions, electrons, etc.) on the surface of stainless steel, mechanical action on the surface layer atoms through momentum transfer, triggering a series of structural changes: generating atomic vacancies with surface displacement, interstitial atoms, breaking the original lattice balance of the stainless steel surface, making part of the atoms deviate from the original lattice position, and forming vacancy defects; at the same time, the impacted atoms may squeeze into the interstitial atoms of other atoms, forming interstitial atoms. These defects will increase the activity of surface atoms, providing sites for subsequent chemical reactions or diffusion. In addition, the continuous bombardment of plasma (high-energy particles such as ions, electrons, etc.) will cause local distortion of the surface lattice (lattice distortion), and even produce dislocation lines (linear defects of atomic arrangement). For stainless steel (taking face-centered cubic structure austenitic stainless steel as an example), lattice distortion will cause the atomic arrangement of the surface layer to transition from a regular crystal structure to a "quasi-crystal" or "disorder". The aforementioned atomic vacancies, interstitial atoms, and lattice distortion of the stainless steel surface create objective conditions for the substantial enhancement of the needle electrochemical effect spontaneous power generation.
[0019] The grain refinement and amorphization of the grain refinement surface energy action surface of the application are generated by high-speed impact of plasma (high-energy particles such as ions, electrons, etc.) on the surface of stainless steel: for polycrystalline stainless steel, plasma bombardment will break the integrity of the surface layer grains, making large grains break into smaller sub-grains (size can be reduced to microns or nanometers), i.e. grain refinement. If the bombardment energy is extremely high or the processing time is relatively long, the surface layer atoms may completely lose regular arrangement, forming an amorphous layer (atomic disordered stacking), and the thickness of this layer is usually in the nanometer and micron level. The aforementioned grain refinement and amorphization of the stainless steel surface create objective basis conditions for the enhancement of the needle electrochemical spontaneous power generation effect.
[0020] The plasma surface treatment device described in the application can be selected from: a corona discharge device (such as an atmospheric pressure plasma device), a radio frequency plasma device, a jet plasma device, a sliding arc discharge device, a microwave plasma device, a low-pressure (vacuum) plasma device, and the like, and has a “worthwhile” and satisfactory plasma surface treatment device that can meet the requirement of forming the acupuncture needle action site into a surface energy structure having atomic vacancies and interstitial atoms and / or grain refinement and amorphization.
[0021] In the application, the inner needle handle and the needle tip of the needle body are in an integrated structure form of a metal material containing magnetism, or are in a form of the needle tip of the needle body and the inner needle handle made by winding, sleeving, bonding or welding in a conventional manner (such as “Acupuncture Needle (GBT2024-2016)”). The outer needle handle is a permanent magnet material and a capacitor and / or a capacitor tape roll, which is sleeved or bonded on the inner needle body. The firmness of the connection between the outer needle handle and the inner needle handle must meet the requirements specified in Clause 4.6 of “Acupuncture Needle (GBT2024-2016)”.
[0022] In the application, “needle body and / or needle handle” includes three cases of “needle body” or “needle handle” and “needle body and needle handle”. “And / or” in this article is also understood in the same way.
[0023] In the application, the needle handle of the acupuncture needle includes an inner needle handle and an outer needle handle, and the outer needle handle is fixed with a capacitor and / or a capacitor tape roll and a permanent magnet material, or is fixed with a capacitor and / or a capacitor tape roll and / or a permanent magnet material. The capacitor and / or capacitor tape roll is firmly sleeved or bonded on the inner needle handle and / or needle body. When the needle body needle tip of the acupuncture needle (such as in the treatment mode of wrist-ankle needle) is inserted into the human body along the subcutaneous tissue, the permanent magnet material of the outer needle handle is attached to the surface of the skin. The permanent magnet material attached to the surface of the skin can affect the direction of the current in the human body (affect the bioelectric charge and electron movement of various cells, macromolecules and other biological substances) in its action area. At the same time, due to the electrochemical heterogeneity of the surface of the needle body, the needle tip of the needle body will have an electrochemical reaction (oxidation-reduction reaction) with the electrolyte solution of the human body at the action interface to form a potential difference, and generate an acupuncture electrochemical current. The current interacts with the current affected by the permanent magnet material, rapidly enters the capacitor and / or capacitor tape roll through the inner needle handle, and the capacitor rapidly stores a large amount of charge accumulation surface due to the extremely fast speed of charge flow. In turn, it acts on (and is relative to the capacitor charge accumulation surface) the extremely small needle body needle tip, and a potential difference is generated between the extremely small amount of charge acupuncture electrochemical effect (oxidation-reduction reaction) action surface of the needle body needle tip and the extremely small amount of charge acupuncture electrochemical effect (oxidation-reduction reaction) action surface, thereby increasing the oxidation-reduction reaction of the needle body needle tip and increasing the spontaneous electricity current of the needle body needle tip.
[0024] The capacitor in this invention can be one or more of the following: polyester film capacitor, polypropylene film capacitor, polystyrene film capacitor, paper capacitor, ceramic capacitor, mica capacitor, electrolytic capacitor, tantalum capacitor, etc.
[0025] Preferably, the capacitor capacity can be selected from or customized by professional capacitor manufacturers according to different product specifications, ranging from 1pF to 900μF (e.g., purchase or customize capacitors of different ranges from 1pF to 900μF). Capacitors of 500pF, 550pF, 600pF, 650pF, 700pF, 750pF, 800pF, 850pF, 900pF, 950pF, 1μF, 5μF, 10μF, 20μF, 30μF, 40μF, 50μF, 60μF, 70μF, 80μF, 90μF, 100μF, 200μF, 300μF, 400μF, 500μF, 600μF, 700μF, 800μF, and 900μF.
[0026] Preferably, the form of the capacitor is not limited. Depending on the requirements of different product specifications, capacitors of different forms can be purchased or customized from professional capacitor manufacturers, such as hollow cylindrical capacitors that can be tightly fitted (fitted into the inner needle handle), or strip-shaped capacitors, rectangular capacitors, etc. that are easy to adhere to the inner needle handle.
[0027] Preferably, the fixing between the capacitor and the inner needle handle can be achieved by at least one of the known physical, mechanical, and chemical techniques, but the degree of firmness of the fixing should be greater than or equal to the provisions of Clause 4.6 on the firmness of the connection between the needle body and the needle handle in "Acupuncture Needles (GBT2024-2016)".
[0028] The capacitor tape roll in the present application is composed of a conductive layer and an adhesive layer. The side of the capacitor tape roll not attached to the inner needle handle (hereinafter referred to as A surface) is conductive with the conductive layer, but the side of the capacitor tape roll attached to the inner needle handle (hereinafter referred to as B surface, with a non-conductive adhesive layer) is not conductive with the conductive layer (the structure of the capacitor tape roll, the production and the storage of the capacitor tape are the same, which will be described in detail below). The capacitor tape roll can be used to wrap the inner needle handle in single layer or multiple layers in sequence, or a part of the capacitor tape roll can be used to wrap the inner needle handle and a part of the capacitor tape roll can be used to fix and paste the capacitor acupuncture needle on the human body (the part of the capacitor tape roll wrapping the inner needle handle can be the middle part or the side part). An electrode or device connected to the inner needle handle can also be provided in the capacitor tape roll to serve as a tool for connecting the conductive layer and the inner needle handle.
[0029] Preferably, the two externally connected electrodes (conductive connection) of the capacitor and / or capacitor tape roll, one of which is connected to the inner needle handle and is referred to as "needle handle connecting electrode or device" for forming a conductive connection between the needle tip and the capacitor through the inner needle handle, and the other of which is referred to as "capacitor tape connected electrode or device" for forming a conductive connection with the electrode of the capacitor tape storing electric charge. The shape of the aforementioned electrode or device is not limited and can be any effective conductive connection form, and the conductive connection structure can be made according to known technology.
[0030] In the present application, the capacitor tape for storing charge comprises a conductive layer and an adhesive layer arranged in sequence and at least one connecting capacitor electrode or device (the related electrical connection device can be made according to known technology), the side (hereinafter referred to as A side) of the capacitor tape not attached to the human body is conductive between the electrodes, but the side (hereinafter referred to as B side) of the capacitor tape facing the human body is not conductive between the electrodes. When the needle is left on the human body, the capacitor tape can be used to fix the acupuncture needle, and can be connected (in series) with the connecting point of the capacitor on the needle handle (through the connecting capacitor electrode or device), so that the storage and release function of the conductive layer of the capacitor tape is applied, and the charge capacity of the capacitor is expanded. In addition, the capacitor tape can store a large amount of charge in the conductive layer (i.e. A side), and the charge stored in the conductive layer (i.e. A side) forms a charge field under the interval of the B side of the capacitor tape, and an interface layer with the same amount but opposite sign as the charge on the A side of the capacitor tape is formed in the human tissue. At this time, the charge field on the A side of the capacitor tape and the membrane charge of the human tissue form a capacitor with electrochemical effect according to the physical law. Therefore, the capacitor acupuncture needle of the present application not only has the treatment effect of generating spontaneous current for 24 hours / day when used, but also has the coordination effect of enhancing the spontaneous electric current required by the body (i.e. realizing high-efficiency spontaneous electricity generation). In addition, the capacitor and / or the capacitor tape roll and the charge field accumulated on the A side of the capacitor tape can be attached to the corresponding surface layer (such as acupoint and meridian) of the human body, and form an electromagnetic energy effect field with the human body to interact with the capacitor charge of the acupuncture spontaneous electrochemical current, so that the electromagnetic energy effect field of the corresponding acupoint and meridian (point-shaped, strip-shaped or block-shaped corresponding area) is in a high energy state, the strength of the acupuncture spontaneous electrochemical linkage current of the capacitor acupuncture needle is improved, and the meridian is dredged, the blood is activated and the local and overall yin and yang balance is adjusted.
[0031] Preferably, the conductive adhesive of the capacitor tape roll can further disperse microparticles of permanent magnetic material.
[0032] In the present application, the acupuncture needle is an acupuncture needle (such as for scalp acupuncture, body acupuncture and wrist-ankle acupuncture).
[0033] In the present application, the needle body and the inner needle handle of the acupuncture needle are made of a material containing magnetic material and having conductive property.
[0034] Preferably, the capacitor tape comprises a conductive layer and an adhesive layer arranged in sequence, and the connecting capacitor electrode is located in the adhesive layer and forms a conductive path between the conductive layer.
[0035] Since the sticking surface of the adhesive layer to the human body is not conductive or insulating, when the needle body is inserted into the human body, the stored charges on the interface of the conductive layer form a charge field, and at the same time, an interface layer with the same number but opposite sign of the charges in the human tissue is formed; at this time, under the separation of the non-conductive adhesive layer, the charge field on the conductive layer and the charge between the human tissue membrane form a capacitor with electrochemical effect according to the physical law.
[0036] In order to further improve the charge storage capacity of the capacitor acupuncture needle, as a preferred embodiment, in the capacitor acupuncture needle, the adhesive layer is an electric storage adhesive layer, and the adhesive of the electric storage adhesive layer is dispersed with charge storage microparticles.
[0037] The size of a single charge storage microparticle in any direction is smaller than the thickness of the electric storage adhesive layer.
[0038] When the adhesive layer contains charge storage microparticles, not only will a charge field be formed on the conductive layer, but also there will be charge accumulation on the layer in contact with the conductive layer, which is beneficial to further improve the intensity of the acupuncture self-generated electrochemical current of the capacitor acupuncture needle.
[0039] However, in order to ensure that the adhesive layer still plays a role in isolating the conductive layer and the human body, the size of a single charge storage microparticle in any direction needs to be set to be smaller than the thickness of the electric storage adhesive layer. At this time, the charge storage microparticles are either in contact with the conductive layer, or in contact with the human skin, or in the middle of the electric storage adhesive layer and not in contact with the conductive layer and the human body. In this way, it can avoid the direct conduction of the charge storage microparticles between the conductive layer and the human body, and form a conductive path between the conductive layer and the human body. Moreover, when the acupuncture self-generated electrochemical current is generated, the numerous charge storage microparticles and the electric storage adhesive layer itself also form numerous capacitors for storing electricity, which can exert the corresponding charge effect.
[0040] In addition to controlling the size of the charge storage microparticles or controlling the thickness of the electric storage adhesive layer, a layer (i.e. a layer of ordinary adhesive) of non-conductive ordinary adhesive layer without charge storage microparticles can be further provided under the electric storage adhesive layer, i.e. the adhesive layer comprises an electric storage adhesive layer and an ordinary adhesive layer arranged in sequence, the electric storage adhesive layer is in contact with the conductive layer and the adhesive thereof is dispersed with charge storage microparticles, and the ordinary adhesive layer does not form a conductive path between the needle body.
[0041] At this time, in the electric storage adhesive layer, the size and density of a single charge storage microparticle can be arbitrary, i.e. the size of the charge storage microparticle in any direction can be smaller than, equal to or greater than the thickness of the electric storage adhesive layer; this is because in any case, the presence of the ordinary adhesive layer can ensure that the conductive layer and the electric storage adhesive layer are not directly conductive to the human body.
[0042] In addition, as preferred, in the capacitor acupuncture needle described above, the adhesive of the charge storage adhesive layer can be added with permanent magnetic particle material while adding charge storage particles, so that the charge storage adhesive layer has both capacitance and magnetic field (magnetic paste) effects.
[0043] If necessary, the charge storage capacitor tape of the capacitor acupuncture needle of the present application can be further upgraded to a super capacitor (i.e. double-layer capacitor or multi-layer capacitor) to further improve the charge storage capacity of the charge storage capacitor tape of the capacitor acupuncture needle. In order to form the super capacitor, one or more separators can be provided in the capacitor tape; when only one charge storage adhesive layer is provided on one conductive layer, the separator can be provided between the conductive layer and the charge storage adhesive layer; when multiple charge storage adhesive layers are provided on one conductive layer, the separator can be provided between the conductive layer and the charge storage adhesive layer, or between adjacent charge storage adhesive layers.
[0044] The separator of the present application can be made of one or more of the following materials: synthetic polymer-based materials (such as polypropylene, polytetrafluoroethylene, polyethylene, polyvinylidene fluoride, synthetic paper insulation materials, etc.), biomass-based materials (cellulose-based materials (such as NKK TF series separators, nanocellulose film separators, etc.), paper insulation materials, mica paper insulation materials, composite paper insulation materials, etc.), inorganic composite separators (4) (ceramic fiber composite separators, metal oxide composite separators, aluminum oxide (α-Al2O3), titanium dioxide, zeolite, etc.), etc., as long as the separator is not conductive or insulating.
[0045] Of course, the "B-side adhesive layer containing conductive particles and having conductive function" also has charge storage function, but its charge storage function is weaker than that of the "B-side adhesive layer without conductive function", because if the "B-side adhesive layer contains conductive particles and has conductive function, the conductive particles will directly conduct electricity with the skin, thereby reducing its charge storage capacity". Since the "B-side adhesive layer containing conductive particles and having conductive function" also has charge storage function, the present application does not exclude the use of "B-side adhesive layer containing conductive particles and having conductive function" capacitor tape.
[0046] As preferred, the charge storage capacitor tape of the capacitor acupuncture needle of the present application includes at least two charge storage capacitor units, each of which includes at least one conductive layer and at least one adhesive layer arranged in sequence; when a separator is provided, each charge storage capacitor unit includes at least one conductive layer, at least one separator and at least one adhesive layer arranged in sequence.
[0047] At this time, the shape of each charge storage capacitor unit of the charge storage capacitor tape can be the same or different, and can be arbitrarily set as a circular, elliptical, polygonal, concave-convex polygonal, etc.
[0048] As a further preferred embodiment, in the capacitor acupuncture needle described above, the adhesive layer of the capacitor tape is made of at least one of non-conductive or insulating materials such as hot melt adhesive, acrylic adhesive, UV adhesive, silicone adhesive, hydrogel, water-based adhesive, and rubber; it is only required that the adhesive layer attached to the skin should meet the requirements of the General Requirements for Medical Adhesive regarding adhesion and biocompatibility.
[0049] As a further preferred embodiment, in the capacitor acupuncture needle described above, the conductive layer comprises a conductive cloth.
[0050] Alternatively, the conductive layer comprises a substrate and a conductive adhesive layer provided on the substrate; in this case, since the conductive adhesive layer is formed by an adhesive with densely packed conductive particles, the conductive adhesive layer can impart conductivity to the conductive layer, and thus the substrate can be conductive or non-conductive.
[0051] Obviously, when the adhesive layer of the capacitor acupuncture needle contains densely packed charge storage particles, a non-conductive substrate can be used instead of the conductive cloth; in this case, the capacitor tape roll of the capacitor acupuncture needle comprises a substrate (which can be conductive or non-conductive), a charge storage adhesive layer (equivalent to the conductive adhesive layer described above), and a general adhesive layer.
[0052] For the material of the conductive cloth, a film-shaped or sheet-shaped material with conductive properties can be selected by those skilled in the art as needed, such as a treated fiber conductive material (e.g., plain conductive cloth, check conductive cloth, mesh conductive cloth, non-woven conductive cloth, etc.), a metal or noble metal film or mesh (e.g., copper foil, aluminum foil, gold foil, silver foil, copper mesh, aluminum foil fiber composite cloth, etc.), a treated plastic conductive material (e.g., non-woven conductive cloth, acetate conductive cloth, hot melt conductive cloth, flame-retardant conductive cloth, conductive foam, conductive sponge, etc.), carbon-plated conductive cloth, nickel-plated conductive cloth, gold-plated conductive cloth, carbon-based material film (carbon film, activated carbon film, graphene film, etc.), and a conductive functional cloth made of a permanent magnetic material.
[0053] As a further preferred embodiment, in the capacitor acupuncture needle described above, the charge storage particles are made of at least one of a metal (e.g., nano-silver, copper, aluminum, etc.), a metal oxide (e.g., copper oxide, cobalt oxide, iron oxide, ruthenium oxide, manganese oxide, nickel oxide, aluminum oxide (γ-Al2O3), etc.), a composite metal oxide (e.g., molybdate, lithium titanate, CuCO2S4, etc.), a non-metallic conductive substance (e.g., polyaniline, polypyrrole, polythiophene, and other conductive polymers such as carbon, carbon black, carbon aerogel, activated carbon, nano-carbon, graphene, and other carbon-based charge storage materials), and a material with a conductive plating layer (which can be any material).
[0054] Alternatively, the charge storage microparticles are made of a composite of at least two of the above materials; for example, activated carbon / polyaniline composite material, graphene / polyazole / MnO2 composite material, polyaniline / graphene, multi-walled carbon nanotube / polyazole core-shell composite material, PANI / MnO2 composite material, PANI / CuO composite material, PEDOT / CuO composite material, CNT / Fe2O3 composite material, CNT- / Ni(OH)2 composite material, Mn3O4 / graphene composite material, CO(OH)2 / graphene composite material, and the like, which are not exhaustively listed.
[0055] Alternatively, the charge storage microparticles are aqueous or oily droplets containing electrolytes. The present application also provides a charge storage capacitor needle acupuncture needle with grain refinement magnetic self-power generation capacitor needle acupuncture needle.
[0056] Preferably, the permanent magnet material form is not limited, and different forms of permanent magnet materials can be selected or customized according to different product specifications, such as: the acupuncture needle outer handle of the permanent magnet material can adopt a cylindrical shape with holes, or a cylindrical shape with a surface of concave-convex geometry with holes, or a multi-sided column shape with holes, or a multi-layer overlapping shape of magnetic rings with holes, or a shape with multiple strip geometries combined into grooves and / or holes, and the like; or composite permanent magnet materials such as permanent magnet material microparticles (including microparticle powder) and permanent magnet material functional cloth (permanent magnet material functional cloth, i.e. magnetic cloth: magnetic cloth is a functional material composed of a permanent magnet with strong magnetic field strength and a flexible material, which is divided into two types: permanent magnet material functional cloth with conductive function and permanent magnet material functional cloth without conductive function); although the form or structure of the aforementioned permanent magnet material acupuncture needle outer handle is not limited, its structure can be made according to known technology, but the firmness between it and the inner handle should be ≥ the provisions of clause 4.6 of the needle body and needle handle connection firmness of Needle Acupuncture (GBT2024-2016).
[0057] As a further preferred, the grain refinement magnetic self-power generation capacitor acupuncture needle above-mentioned, the permanent magnet material uses: at least one of the following materials: neodymium iron boron permanent magnet powder (it has certain conductivity itself, such as in the preparation of bonded neodymium iron boron and iron-based soft magnetic powder composite permanent magnet material, the excellent conductivity of iron-based soft magnetic powder makes the composite permanent magnet material also has good conductivity), samarium cobalt permanent magnet powder (samarium cobalt magnet is alloy magnet, without non-metallic elements boron, carbon and silicon and other non-metallic insulating elements, congenital conductivity is better), aluminum nickel cobalt permanent magnet powder (such as 2J85 permanent magnet alloy, it is a kind of permanent magnet alloy with iron as matrix, doped with cobalt, aluminum, copper and other elements, and copper element helps to improve the conductivity of alloy), iron-chromium-cobalt permanent magnet powder (iron-chromium-cobalt permanent magnet alloy is a kind of magnetic material with iron, chromium and cobalt as main components, containing molybdenum and a small amount of titanium and silicon elements, and has good conductivity), ferroferric oxide permanent magnet powder (ferroferric oxide has excellent conductivity and magnetic permeability, and can be used as the core component of magnetic powder to manufacture permanent magnet material), etc.); and the permanent magnet material without electric conductivity function has ferrite such as oxide phase in NdFeB, MnZn ferrite (belongs to ceramic, magnetic source is from ferrimagnetism, but conductivity is very poor, equivalent to insulator or semiconductor, mainly used in high frequency scene), samarium iron nitride SmFeN (although containing metal elements, but in practical application, it usually exists in the form of powder sintering or bonding, and has low conductivity).
[0058] As a further preferred, in the grain refinement magnetic self-power generation capacitor acupuncture needle above-mentioned, the charge or permanent magnet material storage particle uses at least one of the following materials: metal (such as nano-silver, copper, aluminum, etc.), metal oxide (such as copper oxide, cobalt oxide, iron oxide, ruthenium oxide, manganese oxide, nickel oxide, aluminum oxide (γ-Al2O3), etc.), composite metal oxide (such as molybdate, lithium titanate, CuCO2S4, etc.), non-metallic conductive material (such as polyaniline, polypyrrole, polythiophene and other conductive polymers, such as carbon, carbon black, carbon aerogel, activated carbon, nano-carbon, graphene, and other carbon storage materials), and materials with conductive plating layer (which can be any material), neodymium iron boron permanent magnet powder, samarium cobalt permanent magnet powder, aluminum nickel cobalt permanent magnet powder, iron-chromium-cobalt permanent magnet powder, ferroferric oxide permanent magnet powder, ferrite, samarium iron nitride, etc.
[0059] Alternatively, the charge storage particles are made of a composite of at least two of the above materials; for example, activated carbon / polyaniline composite material, graphene / poly pyrrole / MnO2 composite material, polyaniline / graphene, multi-walled carbon nanotube / poly pyrrole core-shell composite material, PANI / MnO2 composite material, PANI / CuO composite material, PEDOT / CuO composite material, CNT / Fe2O3 composite material, CNT- / Ni (OH) 2 composite material, Mn3O4 / graphene composite material, CO (OH) 2 / graphene composite material, etc.
[0060] Compared with the prior art, the beneficial effects of the present invention are reflected in:
[0061] (1) This invention overcomes the defects of existing acupuncture needles that lack atomic vacancies, interstitial atoms, grain refinement and amorphous surface energy electrochemical properties. It can produce acupuncture needle products with atomic vacancies, interstitial atoms, grain refinement and amorphous surface energy electrochemical properties. It can also eliminate the need for silicone oil coating on the needle body (for lubrication when inserting the needle into the skin) and the possible heat source and oxide passivation layer formed on the metal surface after sterilization (using ethylene oxide, cobalt 60, etc., which may be attached with bacteria, viruses and other contaminants). In addition, under the combined action of permanent magnet materials, the electrochemical effect of acupuncture is further increased.
[0062] (2) The capacitor acupuncture needle of the present invention overcomes traditional prejudices and, based on the essential principles of physics and biophysics, creates a previously unprecedented device that can directly use capacitors and / or capacitor tape rolls, capacitor tape and acupuncture needles with magnetic materials to act on the human body for head acupuncture (dizziness, headache, Alzheimer's disease, sequelae of cerebrovascular accident, migraine, neuralgia, etc.), body acupuncture, and wrist and ankle acupuncture (treatment of various diseases of the twelve meridians and viscera of the whole body). Thus, the combination device with capacitor structure and acupuncture needles has the effect of 24-hour / day needle retention treatment under electrochemical action, and also has the coordination effect of capacitor (such as capacitors that can store charge, store energy, compensate, charge and discharge) to enhance the body's self-generated current. Furthermore, it forms the electromagnetic energy field of the capacitor charge of the corresponding acupoints and meridians for self-generated chemical acupuncture and the coordination ability of the inherent demand of the linkage current. Thus, the electromagnetic energy field effect of the self-generated chemical capacitor charge generated by it is much greater than the spontaneous acupuncture current of traditional acupuncture needles.
[0063] (3) This invention combines a capacitor and / or capacitor tape roll with an acupuncture needle that has undergone plasma treatment, has refined surface energy, and contains permanent magnet materials. The permanent magnet materials can influence the direction and magnitude of current movement in the human body within the action area (generating weak vortex currents that affect the direction of electron movement in the body and the distribution concentration and movement speed of ions inside and outside cells, as well as affecting nerve excitability, changing cell membrane permeability, intracellular and extracellular material exchange, and biochemical processes, etc., and simultaneously affecting the acupuncture needle body containing magnetic metal materials with refined surface energy and the greater self-induced electrochemical effect of acupuncture in the human body). The generated current, together with the inner needle handle, passes through the charge storage layer of the capacitor and / or capacitor tape roll (giving the capacitor the functions of holding, storing, compensating, charging and discharging), thereby acting together on the human body for disease prevention and treatment. (Based on the essential principles of physics and biophysics, this invention creates a type of self-generating capacitor acupuncture needle with refined grain magnetism that has never existed before, which can directly use a capacitor device and an acupuncture needle with permanent magnet material and refined grain surface energy to act together on the human body for disease prevention and treatment.) This allows the self-generating chemical current effect it produces to be far greater than the spontaneous needling current of traditional acupuncture needles.
[0064] (4) This invention also enables the capacitor tape (of the capacitor acupuncture needle) and the charge field stored in the capacitor tape to adhere to the corresponding human body surface (such as acupoints and meridians), and together with the human body, form an electromagnetic energy effect field of capacitor charge that interacts with the self-generated chemical current of acupuncture, so that the strip-shaped and sheet-shaped meridian acupoint electromagnetic energy effect field is in a high energy state, thereby facilitating the unblocking of meridians, promoting blood circulation and removing blood stasis, and regulating the local and overall yin-yang balance. In addition, (according to the fourteen meridians and the circulation of meridians and acupoints of the major and minor circulations of traditional Chinese medicine) it can also be carried with the body 24 hours a day to help regulate the smooth flow of qi in the fourteen meridians and the major and minor circulations (Ren and Du meridians), help relieve emotions, relax the mind, practice meditation, etc., and benefit the physical and mental health of middle-aged and elderly people to enjoy a long and healthy life. Attached Figure Description
[0065] Figure 1 This is a schematic diagram of the first cross-sectional structure of a self-generating capacitor acupuncture needle with refined magnetic grains, according to the present invention.
[0066] Figure 2 This is a schematic diagram of a second cross-sectional structure of a self-generating capacitor acupuncture needle with refined magnetic grains, according to the present invention.
[0067] Figure 3 This is a schematic diagram of the third structure of a self-generating capacitor acupuncture needle with refined magnetic grains according to the present invention.
[0068] Figure 4 for Figure 3 A schematic diagram of the left view;
[0069] Figure 5 This is a schematic diagram of the fourth structure of a self-generating capacitor acupuncture needle with refined magnetic grains according to the present invention.
[0070] Figure 6 A schematic diagram of a self-generating capacitor acupuncture needle with refined grain structure;
[0071] Figure 7 This is a schematic diagram of the structure of a common acupuncture needle;
[0072] Figure 8 This is a schematic diagram of the fifth structure of a self-generating capacitor acupuncture needle with refined magnetic grains according to the present invention.
[0073] Figure 9 This is a schematic diagram of the first cross-sectional structure of the capacitor tape for storing charge in an acupuncture needle with refined magnetic grains, according to the present invention.
[0074] Figure 10 This is a second schematic diagram of the cross-sectional structure of the capacitor tape for storing charge in an acupuncture needle with refined magnetic grains, according to the present invention.
[0075] Figure 11 This is a third schematic diagram of the cross-sectional structure of the capacitor tape for storing charge in an acupuncture needle with refined magnetic grains, according to the present invention.
[0076] Figure 12 This is a fourth schematic diagram of the cross-sectional structure of the capacitor tape for storing charge in an acupuncture needle with refined magnetic grains, according to the present invention.
[0077] Figure 13 This is a fifth schematic diagram of the cross-sectional structure of the capacitor tape for storing charge in an acupuncture needle with refined magnetic grains, according to the present invention.
[0078] In the diagram: 1. Acupuncture needle; 1.1 Inner needle handle; 1.2 Needle body (or needle tip); 1.3 Grain-refined surface energy interaction surface; 2. Outer needle handle; 2.1 Capacitor and / or capacitor tape roll outer needle handle (or capacitor; or capacitor; or capacitor tape roll; or capacitor and / or capacitor tape roll); 2.2 Permanent magnet material outer needle handle (or permanent magnet material); 2.3 Externally connected electrode (conductive connection); 2.31 Electrode or device connecting the needle handle; 2.32 Electrode or device connected by capacitor tape; 2.33 Conductive layer (conductive cloth) connecting conductive point; 3. Charge-storing capacitor tape (or capacitor; or charge-storing layer; or capacitor; or capacitor tape); 3.1 Conductive layer (or conductive cloth); 3.2 Adhesive layer; 3.3 Electrode or device connecting the capacitor; 3.4 Charge storage particles; 3.5 Non-conductive adhesive layer; 3.6 Charge-storing adhesive layer; 3.7 Diaphragm. Detailed Implementation
[0079] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments.
[0080] Example 1
[0081] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 8 , Figure 9 , Figure 11 As shown, an acupuncture needle with a grain-refined magnetic self-generating capacitor includes an acupuncture needle 1 with a grain-refined surface energy interaction surface 1.3, a permanent magnet material 2.2, and a capacitor and / or capacitor tape roll 2.1. The acupuncture needle 1 consists of a needle body 1.2 and an inner needle handle 1.1. A grain-refined surface energy interaction surface 1.3 is formed on the needle body 1.2 (i.e., the needle tip). The permanent magnet material 2.2 is fixed to the front of the inner needle handle 1.1 of the acupuncture needle 1, and the capacitor and / or capacitor tape roll 2.1 is fixed to the rear of the inner needle handle 1.1 of the acupuncture needle 1, or the permanent magnet material 2.2 is fixed... The capacitor and / or capacitor tape roll 2.1 are fixed to the front of the inner needle handle 1.1 of the acupuncture needle 1, while the capacitor and / or capacitor tape roll 2.1 are fixed to the rear of the inner needle handle 1.1 of the acupuncture needle 1; or the permanent magnet material 2.2 is fixed to the inner needle handle 1.1 of the acupuncture needle 1, while the capacitor and / or capacitor tape roll 2.1 are fixed to the permanent magnet material 2.2; or the capacitor and / or capacitor tape roll 2.1 are fixed to the inner needle handle 1.1 of the acupuncture needle 1, while the permanent magnet material 2.2 is fixed to the capacitor and / or capacitor tape roll 2.1, so that the permanent magnet material 2.2 and the capacitor and / or capacitor tape roll 2.1 form the outer needle handle 2. In addition, at least one capacitor tape 3 for storing charge may also be provided.
[0082] The capacitor and / or capacitor tape roll 2.1 fixed to the needle handle 1.1 inside the acupuncture needle 1, as described in this embodiment, or the capacitor and / or capacitor tape roll 2.1 fixed to the permanent magnet material 2.2 and the needle handle 1.1 inside the acupuncture needle 1, should form a conductive capacitive functional connection with the needle handle 1.1 inside the acupuncture needle 1 using conventional physical and chemical techniques.
[0083] The connection between the capacitor 2.1, the capacitor tape roll 2.1, the permanent magnet material 2.2 and the inner needle handle 1.1 of the acupuncture needle 1 described in this embodiment (the connection should be made using conventional physical and chemical techniques) should meet the requirements of Clause 4.6 of the national standard "Acupuncture Needles (GBT2024-2016)".
[0084] The needle body 1.2 (needle tip) described in this embodiment is made of a magnetic metal material (such as stainless steel). The needle body has a grain-refined surface energy interaction surface 1.3. This interaction occurs through the high-speed impact of plasma (high-energy particles, such as ions and electrons) on the stainless steel surface. The momentum transfer and mechanical action on the surface atoms trigger a series of structural changes: atomic vacancies and interstitial atoms with surface displacement are generated, disrupting the original lattice balance of the stainless steel surface. This causes some atoms to detach from their original lattice positions, forming vacancy defects. Simultaneously, the impacted atoms may be squeezed into other interatomic spaces, forming interstitial atoms. These defects increase the activity of surface atoms, providing sites for subsequent chemical reactions or diffusion. Furthermore, continuous bombardment by plasma (high-energy particles, such as ions and electrons) causes local distortion of the surface lattice (lattice distortion), and even the generation of dislocation lines (linear defects in atomic arrangement). For stainless steel (taking face-centered cubic austenitic stainless steel as an example), lattice distortion causes the atomic arrangement of the surface layer to transition from a regular crystal structure to a "quasi-crystalline" or "disordered" structure. The aforementioned atomic vacancies, interstitial atoms, and lattice distortions on the stainless steel surface objectively created the conditions for a significant enhancement of the self-generated electricity generated by the needle-punching electrochemical effect.
[0085] The grain refinement surface energy interaction surface 1.3 described in this embodiment refers to the grain refinement and amorphization generated by high-speed plasma (high-energy particles such as ions and electrons) impacting the stainless steel surface. For polycrystalline stainless steel, plasma bombardment breaks the integrity of the surface grains, causing large grains to break into smaller subgrains (the size can be reduced to the micrometer or nanometer scale), i.e., grain refinement. If the bombardment energy is extremely high or the processing time is long, the surface atoms may completely lose their regular arrangement, forming an amorphous layer (disordered atomic stacking), the thickness of which is usually in the nanometer and micrometer scale. The aforementioned grain refinement and amorphization of the stainless steel surface provides the objective foundation for the enhancement of the needle-punched electrochemical self-generating effect.
[0086] The plasma surface treatment equipment described in this embodiment can be selected from the following: corona discharge equipment (such as atmospheric pressure plasma equipment), radio frequency plasma equipment, jet plasma equipment, sliding arc discharge equipment, microwave plasma equipment, low pressure (vacuum) plasma equipment, etc., which are "good value for money" plasma surface treatment equipment that can satisfy the requirement of making the acupuncture needle action site into a surface energy structure with atomic vacancies and interstitial atoms and / or grain refinement and amorphization.
[0087] In this embodiment, the connection between the inner needle handle 1.1 and the needle body and needle tip 1.2 is made in accordance with the conventional methods of winding, sleeve, bonding, and welding of the structure of "(GBT2024-2016) Acupuncture Needles", or a capacitor and / or capacitor tape roll 2.1 is used as the outer needle handle 2 to be directly sleeved or bonded (i.e., fixed to the inner needle handle 1.1 using conventional physical and chemical techniques) (but when a capacitor and / or capacitor tape roll 2.1 is used as the outer needle handle 2, it must meet the requirements specified in 4.6 of "(GBT2024-2016)" regarding the firmness of the connection between the needle body and the needle handle).
[0088] In this embodiment Figure 1 Figure 2 It uses a capacitor and / or capacitor tape roll 2.1 and a permanent magnet material 2.2 as the outer needle handle 2, which is directly sleeved or glued to the inner needle handle 1.1.
[0089] In this embodiment, the handle of the acupuncture needle 1 includes an inner handle 1.1 and an outer handle 2; the outer handle 2 is a capacitor and / or capacitor tape roll 2.1 and a permanent magnet material 2.2, or a capacitor and / or capacitor tape roll 2.1 and / or permanent magnet material 2.2 are fixed thereon, and the capacitor and / or capacitor tape roll 2.1 is firmly sleeved or bonded to the inner handle 1.1 (the handle 1.1 and the needle body 1.2 are integral or tightly connected). When the acupuncture needle 1 (such as a wrist-ankle needle) is inserted subcutaneously into the human body, the permanent magnet material 2.2 of the outer needle handle 2 adheres to the skin surface. The permanent magnet material 2.2 attached to the skin surface can influence the direction of current movement in the human body (biocharge and electron movement of various cells, macromolecules, and other biological substances) within its area of action. At the same time, due to the electrochemical inhomogeneity on the surface of the needle body 1.2, the needle body 1.2 will undergo an electrochemical reaction (oxidation-reduction reaction) with the human body's electrolyte solution at the interface, forming a potential difference, thereby generating an acupuncture electrochemical current. A portion of the current between this current and the current influenced by the permanent magnet material 2.2 will rapidly enter the charge storage layer of the capacitor and / or capacitor tape roll 2.1 through the inner needle handle 1.1. Because the charge flow is extremely fast, and because the capacitor and / or capacitor tape roll 2.1 (which has a large capacity accumulation space) rapidly store and accumulate a large amount of charge, this, in turn, acts on the relatively small needle body 1.2, and generates a potential difference between the needle body 1.2 and the needle body 1.2, which is the surface of the needle body 1.2 that is affected by the needle piercing electrochemical effect (redox reaction). This repeatedly and continuously increases the needle piercing electrochemical effect of the redox reaction and increases the needle piercing electrochemical self-generated current (because the current speed is approximately the same as the speed of light, which is 300,000 km / s, the speed at which the capacitor stores and releases charge through the needle body 1.2 is also the same as the speed of light, so that the potential difference between the two repeatedly and continuously exists at the speed of light).
[0090] In this embodiment, the capacitor 2.1 may be selected from one or more of the following capacitors: polyester film capacitor, polypropylene film capacitor, polystyrene film capacitor, paper capacitor, ceramic capacitor, mica capacitor, electrolytic capacitor, tantalum capacitor, etc.
[0091] In this embodiment, the capacitance of capacitor 2.1 can be selected from professional capacitor manufacturers and purchased or customized according to different product specifications, ranging from 1pF to 900μF (or larger if needed). Examples of capacitors 2 available for purchase or customization include: 1pF, 5pF, 10pF, 15pF, 20pF, 30pF, 40pF, 50pF, 60pF, 70pF, 80pF, 90pF, 100pF, 150pF, 200pF, 250pF, 300pF, 350pF, 400pF, 450pF, and 500pF. Capacitors of 550pF, 600pF, 650pF, 700pF, 750pF, 800pF, 850pF, 900pF, 950pF, 1μF, 5μF, 10μF, 20μF, 30μF, 40μF, 50μF, 60μF, 70μF, 80μF, 90μF, 100μF, 200μF, 300μF, 400μF, 500μF, 600μF, 700μF, 800μF, and 900μF are available (2.1). Additionally, capacitors with larger capacitance (2.1) can be selected as needed.
[0092] In this embodiment, the form of the capacitor 2.1 is not limited. Depending on the requirements of different product specifications, capacitors 2 of different forms can be purchased or customized from professional capacitor manufacturers, such as hollow cylindrical (fitted into the needle handle) that can be tightly fitted, or strip-shaped, rectangular, etc. that are easy to adhere to the inner needle handle 1.1.
[0093] In this embodiment, the capacitor 2.1 and the inner needle handle 1.1 can be fixed by at least one of the known physical, mechanical and chemical techniques, but the degree of firmness of the fixation between the two should be greater than or equal to the provisions of Clause 4.6 of "Acupuncture Needles (GBT2024-2016)" regarding the firmness of the connection between the needle body and the needle handle.
[0094] In this embodiment, the capacitor 2.1 has two externally connected electrodes (conductive connection points) 2.3. One electrode connected to the inner needle handle 1.1 is called "connecting needle handle electrode or device 2.3.1" and is used for the needle body 1.2 to form a conductive connection with the capacitor 2.1 through the inner needle handle 1.1. The other electrode is called "electrode or device 2.3.2 connected by capacitor tape" and is used for the conductive connection of the capacitor electrode or device 3.3 connected by the capacitor tape 3 for storing charge. In addition, the conductive layer (conductive cloth) with notches on the adhesive layer 3.2 to expose the conductive cloth 2.33 and connect the conductive point 2.33 is also an alternative application method for conductive connection. The shape of the electrodes or devices mentioned above is not limited and can be any effective conductive connection shape required. The structure of the conductive connection can be made according to known technology.
[0095] Preferably, the capacitor tape 3 includes a conductive layer 3.1 and an adhesive layer 3.2 arranged sequentially, and the capacitor electrode or device 3.3 is located in the adhesive layer and forms a conductive path with the conductive layer.
[0096] Preferably, the conductive adhesive 3.1 of the capacitor tape roll 2.1 may also contain particles of permanent magnet material 1.3, thereby further enhancing the needle-punching electrochemical effect current of the present invention.
[0097] The acupuncture needles in this embodiment are acupuncture filiform needles (such as those used for scalp acupuncture, body acupuncture, wrist and ankle acupuncture, etc.); the needle body 1.2 and the inner needle handle 1.1 of the acupuncture filiform needle are both made of materials with conductive properties.
[0098] In this embodiment, the acupuncture needle body 1.2 and the inner needle handle 1.1, which are integrally formed, both contain magnetic material 1.3 (or weakly magnetic material 1.3, such as 304 stainless steel) and also have electrical conductivity.
[0099] In this embodiment, the adhesive layer 3.2 is non-conductive or insulating to the surface of the human body. Therefore, when the needle 1.2 is inserted into the human body, the charge stored and accumulated on the interface of the conductive layer 3.1 forms a charge field. At the same time, an interface layer with the same number but opposite sign as the charge on the conductive layer 3.1 is formed in the human tissue. At this time, with the non-conductive adhesive layer 3.2 in between, the charge field on the conductive layer 3.1 and the charge on the human tissue membrane form a capacitor 2.1 with an electrochemical effect according to physical laws.
[0100] Furthermore, to enhance the charge storage capacity of the capacitor acupuncture needle, preferably, in the aforementioned capacitor acupuncture needle, the adhesive layer 3.2 is a charge-storage adhesive layer 3.6, in which charge-storage microparticles 3.4 are dispersed in the adhesive. The size of each charge-storage microparticle 3.4 in any direction is smaller than the thickness of the charge-storage adhesive layer 3.6. When the adhesive layer 3.2 contains charge-storage microparticles 3.4, not only will a charge field be formed on the conductive layer, but charge will also accumulate in the layer where the charge-storage adhesive layer 3.6 contacts the conductive layer 3.1, which is beneficial for further improving the intensity of the self-generated electrochemical current generated by the capacitor acupuncture needle.
[0101] In this embodiment, to ensure that the adhesive layer 3.2 can still function as an isolation layer between the conductive layer 3.1 and the human body, the size of each individual charge storage particle 3.4 in any direction needs to be set to be smaller than the thickness of the charge storage adhesive layer 3.6. In this case, the charge storage particle 3.6 is either in contact with the conductive layer 3.1, in contact with the human skin, or located in the middle of the charge storage adhesive layer 3.6 without contacting either the conductive layer 3.1 or the human body. This avoids the charge storage particle 3.4 directly conducting between the conductive layer 3.1 and the human body, thus preventing the formation of a conductive path between the conductive layer 3.1 and the human body. Moreover, when the needle puncture generates a self-generating electrochemical current, the numerous charge storage particles 3.4 and the charge storage adhesive layer 3.6 themselves also form numerous capacitors 2.1 for storing electricity, which can exert the corresponding charge storage and release effect.
[0102] In addition to controlling the size of the charge storage particles 3.4 or the thickness of the charge storage adhesive layer 3.6, this embodiment can also provide a second layer (i.e., apply another layer) of ordinary non-conductive adhesive layer 3.5 without charge storage particles 3.4 under the charge storage adhesive layer 3.6. Specifically, the adhesive layer 3.2 comprises the charge storage adhesive layer 3.6 and the ordinary non-conductive adhesive layer 3.5 arranged sequentially. The charge storage adhesive layer 3.6 is in contact with the conductive layer 3.1, and its adhesive contains dispersed charge storage particles 3.4. The ordinary non-conductive adhesive layer 3.5 does not form a conductive path with the needle body 1.2. In this case, the individual particle size and density of the charge storage particles 3.4 in the charge storage adhesive layer 3.6 can be arbitrary; that is, the size of the charge storage particles 3.4 in any direction can be less than, equal to, or greater than the thickness of the charge storage adhesive layer 3.6. This is because, in any case, the presence of the ordinary non-conductive adhesive layer 3.5 is sufficient to ensure that there is no direct conductivity between the conductive layer 3.1 and the charge storage adhesive layer 3.6 and the human body.
[0103] In this embodiment Figure 8 In the aforementioned capacitor acupuncture needle, the adhesive layer 3.2 can contain permanent magnet material particles 2.2 in addition to charge storage particles 3.4, so that the adhesive layer 3.2 has both the function of capacitance 2.1 and the function of magnetic field 2.2 (magnetic patch).
[0104] In this embodiment, the capacitor tape roll 2.1 in the capacitor acupuncture needle can also be as follows: Figure 11 The supercapacitor 2.1 is further upgraded to a supercapacitor 2.1 (i.e., a double-layer capacitor or a multi-layer capacitor), further enhancing the charge storage capacity of the capacitor acupuncture needle capacitive tape roll 2.1. To form this supercapacitor 2.1, one or more separators 3.7 can be disposed within the capacitor tape roll 2.1. When only one layer of charge-storing adhesive layer 3.6 is disposed on a conductive layer 3.1, the separator 3.7 can be disposed between the conductive layer 3.1 and the charge-storing adhesive layer 3.6. When multiple layers of charge-storing adhesive layers 3.6 are disposed on a conductive layer 3.1, the separator 3.7 can be disposed between the conductive layer 3.1 and the charge-storing adhesive layer 3.6, or between adjacent charge-storing adhesive layers 3.6.
[0105] In this embodiment, the form of the permanent magnet material 2.2 is not limited. Depending on the specific product specifications, different forms of permanent magnet material 2.2 can be purchased or customized from professional manufacturers. For example, the acupuncture needle handle 2 of the permanent magnet material 2.2 can be a perforated cylinder, a perforated cylinder with multiple concave and convex geometric shapes, a perforated polygonal prism, a multi-layered perforated magnetic ring, or a shape composed of multiple strip-shaped geometric shapes forming grooves and / or holes, etc.; or a composite permanent magnet material 2.2 can be used, comprising permanent magnet material 2.2 particles (including particle powder) and permanent magnet material 2.2. Functional cloth (Permanent magnet material 2.2 functional cloth, i.e. magnetic cloth: magnetic cloth is a functional material composed of a permanent magnet with a strong magnetic field and a flexible material, and is divided into two types: permanent magnet material 2.2 functional cloth with conductive function and permanent magnet material 2.2 functional cloth without conductive function); Although the shape or structure of the outer needle handle 2 of the acupuncture needle of permanent magnet material 2.2 is not limited, its structure can be made according to known technology, but the degree of firmness between it and the inner needle handle 1.1 should be ≥ the provisions of clause 4.6 of "Acupuncture Needle (GBT2024-2016) on the firmness of the connection between the needle body and the needle handle".
[0106] The permanent magnet material 2.2 described in this embodiment uses: neodymium iron boron permanent magnet powder (which inherently possesses a certain degree of conductivity; for example, in the preparation of bonded neodymium iron boron and iron-based soft magnetic powder composite permanent magnet materials, the excellent conductivity of the iron-based soft magnetic powder ensures that the composite permanent magnet material also has good conductivity), samarium cobalt permanent magnet powder (samarium cobalt magnets are alloy magnets, lacking non-metallic elements such as boron, carbon, and silicon, and thus possessing inherently good conductivity), and aluminum nickel cobalt permanent magnet powder (such as 2J85). Permanent magnet alloys are permanent magnet alloys with iron as the base and doped with elements such as cobalt, aluminum, and copper, among which copper helps to improve the conductivity of the alloy. Other materials include iron-chromium-cobalt permanent magnet powder (iron-chromium-cobalt permanent magnet alloys are magnetic materials with iron, chromium, and cobalt as the main components, containing molybdenum and small amounts of titanium and silicon, and have good conductivity), and iron(III) oxide permanent magnet powder (iron(III) oxide has excellent conductivity and magnetic permeability and can be used as the core component of magnetic powder to manufacture permanent magnet materials). Permanent magnet materials that do not have conductive properties include ferrites such as the oxide phase in NdFeB, MnZn ferrites (belonging to the ceramic category, their magnetism originates from subferromagnetism, but their conductivity is extremely poor, equivalent to an insulator or semiconductor, mainly used in high-frequency applications), and samarium-iron-nitrogen (SmFeN) (although containing metallic elements, in practical applications they often exist in powder sintering or bonding forms, with low conductivity).
[0107] Example 2
[0108] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 , Figure 13As shown, a self-generating capacitor acupuncture needle with refined magnetic grains and a charge-storing capacitive tape 3 comprises a conductive layer 3.1 and an adhesive layer 3.2 arranged sequentially, and at least one capacitor electrode or device 3.3 (the relevant electrical connection device can be made according to known technology). The charge-storing capacitive tape 3 is conductive to the electrode on the side not attached to the human body (hereinafter referred to as side A), but is not conductive to the electrode on the side of the capacitive tape 3 facing the human body (i.e., the side that is attached to the human body during use; side B below has a non-conductive adhesive layer). When needles such as scalp needles, wrist-ankle needles, and body needles are inserted into the human body, the capacitive tape 3 can be used to fix the acupuncture needles and can also be connected (in series) to the capacitor 2.1 connection point on the inner needle handle 1.1 (via connecting capacitor electrodes or device 3.3), allowing the storage and discharge function of the conductive layer 3.1 of the capacitive tape to be utilized and increasing the charge capacity of capacitor 2.1. In addition, it can also store and accumulate a large amount of charge on the conductive layer 3.1 (i.e., surface A). With the B side of the capacitive tape 3 as a gap, the charge stored and accumulated on surface A of the capacitive tape 3 forms a charge field. At the same time, an interface layer with the same amount but opposite sign as the charge on surface A of the capacitive tape 3 is formed in the human tissue. At this time, the charge field on surface A of the capacitive tape 3 and the charge of the human tissue membrane form a capacitor with an electrochemical effect according to physical laws. Device 2.1; This enables the capacitor acupuncture needle 1 of the present invention to not only have the therapeutic effect of generating spontaneous current by retaining the needle for 24 hours / day, but also to coordinate the self-generated current required by the body by the capacitor 2.1 (i.e., to achieve efficient self-generation); it also allows the charge field gathered on the A side of the capacitor and / or capacitor tape roll 2.1 and capacitor tape 3 to adhere to and act on the corresponding human body surface (such as: acupoints, meridians), and to form an electromagnetic energy effect field of capacitor charge interacting with the human body through acupuncture self-generated chemical current, so that the electromagnetic energy effect field of the corresponding acupoints and meridians (point-shaped, strip-shaped or block-shaped corresponding areas) is in a higher energy state, thereby increasing the intensity of the acupuncture self-generated chemical linkage current of the capacitor acupuncture needle 1, thus facilitating the unblocking of meridians, promoting blood circulation and removing blood stasis, and regulating local and overall yin-yang balance.
[0109] Preferably, the capacitor tape 3 for storing charge in the capacitor acupuncture needle 1 of the present invention can be further upgraded to a supercapacitor 2.1 (i.e., a double-layer capacitor or a multi-layer capacitor), further enhancing the charge storage capacity of the capacitor tape 3 for storing charge in the capacitor acupuncture needle. To form this supercapacitor, one or more separators 3.7 can be provided in the capacitor tape 2.1; when only one layer of charge-storing adhesive layer 3.6 is provided on a conductive layer 3.1, the separator 3.7 can be provided between the conductive layer 3.1 and the charge-storing adhesive layer 3.6; when multiple layers of charge-storing adhesive layers 3.6 are provided on a conductive layer 3.1, the separator 3.7 can be provided between the conductive layer 3.1 and the charge-storing adhesive layer 3.6, or between adjacent charge-storing adhesive layers 3.6.
[0110] The diaphragm 3.7 described in this embodiment can be made from one or more of the following materials: synthetic polymer-based materials (such as polypropylene, polytetrafluoroethylene, polyethylene, polyvinylidene fluoride, synthetic paper insulation materials, etc.), biomass-based materials (such as cellulose-based materials (such as NKK TF series diaphragms, nanocellulose membrane diaphragms, etc.), paper insulation materials, mica paper insulation materials, composite paper insulation materials, etc.), inorganic composite diaphragms (4) (ceramic fiber composite diaphragms, metal oxide composite diaphragms, alumina (α-Al2O3), titanium dioxide, zeolite, etc.), but it is necessary to ensure that the diaphragm 3.7 is non-conductive or insulating.
[0111] In this embodiment, the "B-side adhesive layer contains conductive particles and has conductive function" also has a power storage function, but its power storage function is weaker than that of the "B-side adhesive layer does not have conductive function". This is because "if the B-side adhesive layer contains conductive particles and has conductive function, then these conductive particles will directly conduct electricity with the skin, thereby reducing its power storage capacity". Since the "B-side adhesive layer contains conductive particles and has conductive function" also has a power storage function, the present invention does not exclude the use of capacitor tape roll 2.1 with "B-side adhesive layer contains conductive particles and has conductive function", and does not exclude the use of capacitor tape 3 with "B-side adhesive layer contains conductive particles and has conductive function".
[0112] In this embodiment, the capacitor tape 3 for storing charge of the capacitor acupuncture needle also includes at least two energy storage capacitor units. Each energy storage capacitor unit includes at least one conductive layer 3.1 and at least one adhesive layer 3.2 arranged sequentially. When a diaphragm 3.7 is provided, each energy storage capacitor unit includes at least one conductive layer 3.1, at least one diaphragm 3.7 and at least one adhesive layer 3.2 arranged sequentially.
[0113] In this embodiment, the shapes of the charge-storing capacitor units of each capacitor tape 3 can be the same or different, and can be arbitrarily set as planar geometric shapes such as circles, ellipses, polygons, and concave-convex polygons. As a further preferred embodiment, in the above-mentioned capacitor acupuncture needle 1, the adhesive layer 3 of the capacitor tape uses an adhesive that is a non-conductive or insulating material, such as at least one of hot melt adhesive, acrylic adhesive, UV adhesive, silicone, hydrogel, water adhesive, and rubber. It is only necessary to ensure that the adhesive layer that is attached to the skin meets the requirements for adhesion and biocompatibility specified in the "General Requirements for Medical Tapes".
[0114] In this embodiment, the conductive layer 3.1 of the capacitor acupuncture needle 1 includes a conductive cloth; or the conductive layer 3.1 includes a substrate and a conductive adhesive layer 3.2 disposed on the substrate. In this case, since the conductive adhesive layer 3.2 is formed by an adhesive with densely packed conductive particles, the conductive adhesive layer 3.2 can impart conductivity to the conductive layer 3.2. Therefore, the substrate can be conductive or non-conductive. Obviously, when the adhesive layer 3.2 of the capacitor acupuncture needle 1 contains densely connected charge storage particles, a non-conductive substrate can be used instead of the conductive cloth; in this case, the capacitor tape 2.1 of the capacitor acupuncture needle includes a substrate (which can be conductive or non-conductive), a charge storage adhesive layer 3.6 (equivalent to the above-mentioned conductive adhesive layer), and a regular adhesive layer.
[0115] In this embodiment, the conductive cloth 3.1 can be made of a film or sheet material with conductive properties, as needed, by those skilled in the art. Examples include treated fiber conductive materials (such as plain weave conductive cloth, checkered conductive cloth, mesh conductive cloth, non-woven conductive cloth, etc.), metal or precious metal films or meshes (such as copper foil, aluminum foil, gold foil, silver foil, copper mesh, aluminum foil fiber composite cloth, etc.), treated plastic conductive materials (such as non-woven conductive cloth, acetate conductive cloth, hot melt conductive cloth, flame retardant conductive cloth, conductive foam, conductive sponge, etc.), carbon-plated conductive cloth, nickel-plated conductive cloth, gold-plated conductive cloth, carbon-based material films (carbon films, activated carbon films, graphene films, etc.), and functional cloths with conductive permanent magnet materials, etc.
[0116] In this embodiment, in the capacitor acupuncture needle 1 described above, the charge storage microparticles 3.4 are made of at least one of the following materials: metals (such as nano-silver, copper, aluminum, etc.), metal oxides (such as copper oxide, cobalt oxide, iron oxide, ruthenium oxide, manganese oxide, nickel oxide, aluminum oxide (γ-Al2O3), etc.), composite metal oxides (such as molybdate, lithium titanate, CuCO2S4, etc.), non-metallic conductive materials (such as conductive polymers such as polyaniline, polypyrrole, polythiophene, etc., carbon, carbon black, carbon aerogel, activated carbon, nano-carbon, graphene, etc.), and materials with conductive coatings (which can be any material); or, the charge... The storage particles 3.4 are made of a composite of at least two of the above materials; for example, activated carbon / polyaniline composite material, graphene / polypyrrole / MnO2 composite material, polyaniline / graphene, multi-walled carbon nanotube / polypyrrole core-shell composite material, PANI / MnO2 composite material, PANI / CuO composite material, PEDOT / CuO composite material, CNT / Fe2O3 composite material, CNT- / Ni(OH)2 composite material, Mn3O4 / graphene composite material, CO(OH)2 / graphene composite material, etc.; or, the charge storage particles 3.4 are aqueous or oily droplets containing electrolytes.
[0117] In this embodiment, the self-generating capacitor acupuncture needle with refined magnetic grains, the charge or permanent magnet material 2.2 storage particles are made of metals (such as nano-silver, copper, aluminum, etc.), metal oxides (such as copper oxide, cobalt oxide, iron oxide, ruthenium oxide, manganese oxide, nickel oxide, aluminum oxide (γ-Al2O3), etc.), composite metal oxides (such as molybdate, lithium titanate, CuCO2S4, etc.), non-metallic conductive materials (such as conductive polymers such as polyaniline, polypyrrole, polythiophene, etc., carbon, carbon black, carbon aerogel, activated carbon, nano-carbon, graphene, etc.), and materials with conductive coatings (which can be any material), neodymium iron boron permanent magnet powder, samarium cobalt permanent magnet powder, and aluminum nickel cobalt permanent magnets. It is made of at least one of the following materials: powder, iron-chromium-cobalt permanent magnet powder, iron tetroxide permanent magnet powder, ferrite, samarium iron nitrogen, etc.; or, the charge storage particles are made of a composite of at least two of the above materials; for example, activated carbon / polyaniline composite material, graphene / polypyrrole / MnO2 composite material, polyaniline / graphene, multi-walled carbon nanotube / polypyrrole core-shell composite material, PANI / MnO2 composite material, PANI / CuO composite material, PEDOT / CuO composite material, CNT / Fe2O3 composite material, CNT- / Ni(OH)2 composite material, Mn3O4 / graphene composite material, CO(OH)2 / graphene composite material, etc.
[0118] In this embodiment, the connecting needle handle electrode or device 2.31, the electrode or device 2.32 connected by the capacitor tape, and the conductive layer (conductive cloth) connecting conductive part 2.33 are all used for the conductive connection of the self-generating capacitor acupuncture needle with refined magnetic grains of the present invention.
[0119] The product manufactured according to the aforementioned procedure needs to be sealed and packaged according to the usual acupuncture needle manufacturing process, sterilized, and then released to the market for use. When needed, the sealed packaging is opened, the product is taken out, and the needle is retained according to the needle retention regulations of traditional Chinese medicine acupuncture needles. The needle is placed at the acupoint (disinfected, the needle is inserted into the acupoint and the manipulation is performed, and then the electrode or device 3.3 connected to the capacitor is aligned with the electrode or device 2.3.2 connected by the capacitor tape, and the acupuncture needle 1 of the present invention is fixed to the human body with the capacitor tape 3). The needle is retained for 24 hours a day until the end of the prescribed period, and then removed.
[0120] Pick Figure 5 The present invention relates to 10 acupuncture needles for a grain-refined magnetic self-generating capacitor. Figure 6 Ten grain-refined self-generating capacitor acupuncture needles (without permanent magnet material) and... Figure 7 Ten ordinary acupuncture needles (without grain refinement, permanent magnet materials, or capacitors) were used. The average self-generated current generated by these three types of acupuncture needles after 2 minutes of insertion into duck leg samples was measured using a piloamometer. Results: ① Figure 5(This patent) self-generated current is Figure 6 112.6 times; ② Figure 5 (This patent) self-generated current is Figure 7 1406.5 times; see Tables 1, 2 and 3.
[0121] Table 1 Figure 7 Data on the self-generated current generated by inserting 10 ordinary acupuncture needles into a duck's leg for 2 minutes.
[0122]
[0123] Table 2 Figure 6 Data on the self-generated current of 10 acupuncture needles inserted into a duck leg for 2 minutes, obtained by refining the grain size of the capacitor.
[0124]
[0125] Table 3 Figure 5 Data on the self-generated current of 10 acupuncture needles inserted into a duck leg for 2 minutes, obtained by refining the grain size of the magnetic capacitor.
[0126]
[0127] In summary, although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A self-generating capacitor acupuncture needle with refined grain magnetic properties, characterized in that, A self-generating capacitor acupuncture needle with refined magnetic grains comprises an acupuncture needle (1) having a refined surface energy interaction surface (1.3), a permanent magnet material (2.2), and a capacitor and / or capacitor tape roll (2.1). The acupuncture needle (1) consists of a needle body (1.2) and an inner needle handle (1.1). A refined surface energy interaction surface (1.3) is formed on the needle body (1.2). The permanent magnet material (2.2) is fixed to the front of the inner needle handle (1.1) of the acupuncture needle (1), and the capacitor and / or capacitor tape roll (2.1) is fixed to the rear of the inner needle handle (1.1) of the acupuncture needle (1), or the permanent magnet material (2.2) is fixed to the inner part of the acupuncture needle (1). The needle handle (1.1) is fixed to the rear, while the capacitor and / or capacitor tape roll (2.1) is fixed to the front of the inner needle handle (1.1) of the acupuncture needle (1), or the permanent magnet material (2.2) is fixed to the inner needle handle (1.1) of the acupuncture needle (1), while the capacitor and / or capacitor tape roll (2.1) is fixed to the permanent magnet material (2.2), or the capacitor and / or capacitor tape roll (2.1) is fixed to the inner needle handle (1.1) of the acupuncture needle (1), while the permanent magnet material (2.2) is fixed to the capacitor and / or capacitor tape roll (2.1), so that the permanent magnet material (2.2) and the capacitor and / or capacitor tape roll (2.1) form the outer needle handle (2). The technical features of the aforementioned technical solution can synergistically increase the technical effect of acupuncture electrochemical current, which is unexpected by those skilled in the art.
2. The capacitor acupuncture needle as described in claim 1, characterized in that, The capacitor acupuncture needle may also be equipped with at least one capacitor tape for storing charge (3).
3. The capacitor acupuncture needle as described in claim 1, characterized in that, The capacitor and / or capacitor tape roll (2.1) is provided with a connecting needle handle electrode or device (2.3.1) and an electrode or device (2.3.2) connected by the capacitor tape.
4. The capacitor acupuncture needle as described in claim 2, characterized in that, The capacitor tape (3) for storing charge includes a conductive layer (3.1) and an adhesive layer (3.2), as well as electrodes or devices (3.3) for connecting the capacitor.
5. The capacitor acupuncture needle as described in claim 3, characterized in that, The adhesive layer (3.2) of the charge-storing capacitor tape (3) contains charge-storing microparticles (3.4) dispersed in the adhesive; the size of each individual charge-storing microparticle (3.4) in any direction is smaller than the thickness of the charge-storing adhesive layer (3.6).
6. The capacitor acupuncture needle as described in claim 3, characterized in that, The adhesive layer (3.2) of the capacitor tape (3) for storing charge contains permanent magnet material (2.2) particles dispersed in the adhesive.
7. The capacitor acupuncture needle as described in claim 1, characterized in that, The adhesive layer (3.2) includes a charge storage adhesive layer (3.6) and a non-conductive adhesive layer (3.5) arranged sequentially. The charge storage adhesive layer (3.6) is in contact with the conductive layer (3.1) and its adhesive contains charge storage particles (3.4) and / or permanent magnet material (2.2) particles. The non-conductive adhesive layer (3.5) does not form a conductive path with the needle body (1.2).
8. The capacitor acupuncture needle according to any one of claims 1-6, characterized in that, The adhesive used in the adhesive layer (3.2) is a non-conductive or insulating material.
9. The capacitor acupuncture needle according to any one of claims 1-7, characterized in that, The conductive layer (3.1) comprises a conductive cloth; or, the conductive layer (3.1) comprises a substrate and a conductive adhesive layer disposed on the substrate.
10. The capacitor acupuncture needle according to any one of claims 1-7, characterized in that, The charge storage microparticle (3.4) is made of at least one of the following materials: metal, metal oxide, composite metal oxide, non-metallic conductive material and material with conductive coating; or, the charge storage microparticle (3.4) is made of a composite of at least two of the above materials.
Citation Information
Patent Citations
High-efficiency self-generating chemical current linkage press-needle
CN105902388A
Electrochemical acupuncture filiform needle and multihead surface characteristic difference device of intradermic needle
CN1823699B
High -efficient spontaneous electrochemistry electric current linkage thumb -tack needle for subcutaneous embedding
CN205031552U