Grid pattern conductive graphene titanium germanium patch
By using a grid-patterned conductive graphene titanium germanium patch, the grid pattern of graphene titanium germanium and the structure of the paste can concentrate energy and light speed, achieve quantum superposition and magnetic field resonance, and enhance the conductivity and thermal conductivity of far-infrared rays. This solves the problems of skin irritation, short-term effect and difficulty in application of existing patches, and achieves a comprehensive soothing and muscle and bone strengthening effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- DAJI PHARM FACTORY CO LTD
- Filing Date
- 2025-09-22
- Publication Date
- 2026-05-01
AI Technical Summary
Existing patches are prone to causing skin irritation and allergies, have a short duration of use, are complex in structure and not easy to apply, have a long treatment time and cannot promote muscle and bone strength, and lack a comprehensive soothing effect.
The product uses a grid-patterned conductive graphene titanium germanium patch. Through the combination of the graphene titanium germanium grid pattern and the paste, energy and light speed are gathered to achieve quantum superposition and magnetic field resonance, which enhances the conductivity and thermal conductivity of far-infrared rays. It uses the body temperature to generate resonance and deeply soothes fatigue in sore areas.
It achieves rapid and comprehensive relief, significantly improves joint pain, restores cell vitality, promotes blood circulation, is highly safe and easy to use, and achieves therapeutic effects similar to actual acupuncture.
Smart Images

Figure CN121944402A_ABST
Abstract
Description
Mesh-patterned conductive graphene titanium germanium patch Technical Field
[0001] This invention relates to a grid-patterned conductive graphene titanium germanium patch, particularly a patch that can gather energy and light speed to achieve the most complete quantum superposition and magnetic field resonance, and can resonate with the human body through the body's temperature to achieve a soothing effect similar to that after acupuncture. Background Technology
[0002] The common structure of anti-inflammatory and analgesic patches mainly involves extracting essential oils from medicinal herbs with anti-inflammatory and analgesic properties, fusing them with an adhesive to form a medicated adhesive layer, applying this layer to a patch substrate, and finally bonding a release paper layer to the surface of the medicated adhesive layer. This creates an anti-inflammatory and analgesic patch with the therapeutic effects of herbal essential oils. For example, the heating patch disclosed in existing patent CN209048421U uses the heat energy of the heating layer to heat the dressing layer, achieving a heat therapy effect. The health care patch disclosed in existing patent CN215193943U uses an adhesive layer comprising far-infrared powder, methylthiomethylmethane, glucosamine, and herbal essential oils to soothe muscle aches and pains, and the aromatic fragrance released by the herbal essential oils provides deodorizing and antibacterial effects. The existing patent CN217219619U discloses a graphene patch loaded with nanomedicine, which includes a graphene heating component, a drug loading layer loaded with nanomedicine and a cover plate, and a heat treatment switch disposed on the cover plate. Through the switch and microcontroller, the diffusion and release of the drug are accelerated, and different local areas can be heated at different times.
[0003] The above-mentioned existing technology has the following shortcomings: 1. The patch directly mixes essential oils into the adhesive layer and comes into direct contact with the skin, which can easily cause skin irritation, allergies and other discomforts. In severe cases, it may cause redness, swelling, rashes and allergic reactions on the affected skin.
[0004] 2. When the patch is first used, the high concentration of essential oils makes it more irritating and has a faster effect. However, the essential oils also evaporate quickly, so the effect of the patch is too short-lived.
[0005] 3. Among them, patent CN217219619U is a heat-compressing patch with a heating component. It uses a heating control system composed of electronic components, which not only makes the patch structure too complicated, but also raises safety concerns about the micro-batteries in the electronic components.
[0006] 4. It is difficult to achieve a proper fit when applying the patch, especially on affected areas such as the neck, shoulders, back, or joints of the limbs. The patch may even lift up or fall off easily.
[0007] 5. It only has the effects of anti-inflammatory and analgesic or sore relief. It can only barely treat the symptoms of the affected area and does not cure the root cause. Not only is the treatment time long, but it also cannot help strengthen the muscles and bones of the affected area.
[0008] In view of this, the applicant, through continuous research and experimentation, came up with the idea of designing a grid-patterned conductive graphene titanium germanium patch, specifically a patch that can gather energy and light speed to achieve the most complete quantum superposition and magnetic field resonance, and can resonate with the human body through the body's temperature to achieve a soothing effect similar to that after acupuncture. Summary of the Invention
[0009] The main objective of this invention is to provide a grid-patterned conductive graphene titanium germanium patch. Through the structural interaction between the graphene titanium germanium grid pattern and the paste, energy and light speed are concentrated to achieve the most complete quantum superposition and magnetic field resonance. This makes the enhanced far-infrared rays conductive and thermally conductive. By resonating with the human body through the body's temperature, the body can quickly feel the heat from the inside out. Through energy conduction, it can penetrate deep into the sore areas, relieve muscle and bone fatigue, and achieve the soothing effect similar to that after acupuncture.
[0010] The aforementioned grid-patterned conductive graphene titanium-germanium patch mainly comprises: a surface layer, which is an elastic base fabric with a graphene titanium-germanium grid pattern composed of graphene powder, titanium powder, and germanium powder; a middle layer, located below the surface of the surface layer, which is a paste composed of a mixture of energy powder, broad-leaved soybean extract, essential oils, and additives; and a bottom layer, located below the surface of the middle layer, which is a release paper that can be peeled off from the middle layer. Through the structural interaction of the graphene titanium-germanium grid pattern and the paste, energy and light speed are concentrated to achieve the most complete quantum superposition and magnetic field resonance, making the enhanced far-infrared rays conductive and thermally conductive. Resonating with the body's temperature, the patch allows the body to quickly feel heat from the inside out. Through energy conduction, it penetrates deeply into sore areas, relieving muscle and bone fatigue, achieving a soothing effect similar to that after acupuncture.
[0011] The aforementioned grid-patterned conductive graphene titanium germanium patch features a graphene titanium germanium grid pattern with multiple continuously arranged hexagonal grid units arranged in a honeycomb-like layout. The hexagonal grid unit crystals generate the strongest light beam and magnetic field, as well as the fastest and most accurate long-distance light transmission speed, with the lowest impedance to unwanted harmonics. This results in the best efficiency and frequency stabilization state, and can enhance the spectral wavelength and light wave resonance effects and speed of far-infrared rays, rare earth elements, titanium germanium, and graphene, achieving a convergence of consistency and enhanced functionality.
[0012] The aforementioned grid-patterned conductive graphene titanium germanium patch, wherein the graphene titanium germanium grid pattern is composed of graphene powder, titanium powder, germanium powder and thermal sublimation transfer ink, which are combined and transferred onto an elastic base fabric using high temperature and pressure.
[0013] The aforementioned grid-patterned conductive graphene titanium-germanium patch contains a middle layer of energy powder, which is a mixture of graphene powder, titanium powder, and germanium powder.
[0014] The aforementioned grid-patterned conductive graphene titanium germanium patch contains essential oils such as lavender essential oil, ginger essential oil, peppermint essential oil, eucalyptus essential oil, wintergreen essential oil, or sandalwood essential oil.
[0015] The aforementioned grid-patterned conductive graphene titanium germanium patch contains additives such as resin, zinc oxide, or food coloring. Attached Figure Description
[0016] Figure 1 is a perspective view of the present invention; Figure 2 is an exploded perspective view of the present invention; Figure 3 is a block diagram of the components of the present invention; Figure 4 is a partial enlarged planar view of the present invention; Figure 5 is a cross-sectional view of the present invention from A to A'; wherein, 1, surface layer; 11, graphene powder; 12, titanium powder; 13, germanium powder; 14, thermal sublimation transfer ink; 2, middle layer; 21, energy powder; 22, broadleaf soybean extract; 23, essential oil; 231, lavender essential oil; 232, ginger essential oil; 233, peppermint essential oil; 234, eucalyptus essential oil; 235, wintergreen essential oil; 236, sandalwood essential oil; 24, additives; 241, resin; 242, zinc oxide; 243, food coloring; 3, bottom layer; 4, graphene titanium-germanium mesh pattern; A, mesh pattern conductive graphene titanium-germanium adhesive. Detailed Implementation
[0017] Please refer to Figures 1 and 2, and Figure 3, which are perspective views, exploded perspective views, and block diagrams of the present invention. As shown, the present invention includes a surface layer 1, a middle layer 2 disposed below the lower surface of the surface layer 1, and a bottom layer 3 disposed below the lower surface of the middle layer 2. The surface layer 1 is an elastic base fabric with a graphene-titanium-germanium mesh pattern 4 on its surface. The graphene-titanium-germanium mesh pattern 4 has multiple continuously arranged hexagonal grid units arranged in a honeycomb-like layout. It is composed of graphene powder 11, titanium powder 12, germanium powder 13, and thermal sublimation transfer ink 14, which are used to transfer the combined raw materials onto the elastic base fabric using high temperature and pressure.
[0018] The aforementioned graphene powder 11 is a material with excellent electrical and thermal conductivity. Through the temperature of the human body, the graphene powder 11 can excite far-infrared light waves to resonate with the human body. Far-infrared light is a kind of light that is beneficial to the human body, making the human body feel the heat from the inside out.
[0019] The aforementioned titanium powder 12 is an ultra-white, durable raw material. It is stable, non-toxic, and has excellent covering power, and is commonly used in the manufacture of coatings, paper, toothpaste, and plastics. It is an excellent surface coating agent. Titanium powder 12 is stable at room temperature and has extremely strong chemical combining ability at high temperatures, capable of combining with oxygen, carbon, nitrogen, hydrogen, and many other elements. Pure titanium powder has oxygen-absorbing properties at high temperatures, making it readily applicable in resins. Furthermore, nano-titanium, after surface coating treatment, can be stored for extended periods without oxidation.
[0020] The aforementioned germanium powder 13 is a semiconductor element. Its characteristic is that it releases negative ions at room temperature (above 32 degrees Celsius) without requiring strong external forces such as light or electricity. Germanium powder 13 also emits far-infrared rays at room temperature, and its powerful natural tetrahydropalmatism allows for rapid absorption through the skin. Due to its semi-conductive properties, it increases skin vitality, quickly oxygenates, removes acidic substances, and eliminates dullness. Furthermore, if germanium ions enter the body, they are eliminated along with harmful substances within 20 to 30 hours; therefore, it is harmless and has no side effects.
[0021] Both titanium dioxide powder (12) and germanium powder (13) can envelop everything like gravity, thus enveloping far-infrared rays and preventing them from easily disappearing over time. Furthermore, both titanium dioxide powder (12) and germanium powder (13) can release negative ions, which can neutralize harmful positive ions, promote blood circulation, increase blood oxygen levels, eliminate fatigue, and enhance self-healing abilities.
[0022] The graphene titanium germanium mesh pattern 4 of the aforementioned invention is designed as a hexagonal mesh structure, consistent with the profound wisdom theory of Hua Tuo's traditional Chinese medicine Tai Chi Yi Jing Zhou Shu. AI big data and the research of Japanese scientist Dr. Emoto on the crystals of diamonds and water and light waves have found that hexagonal crystals generate the strongest beam and magnetic field, and have the fastest and most accurate long-distance light transmission speed, the lowest impedance and bad harmonics, and the best efficiency and frequency stability. It is similar to the light speed generated by the hexagonal diamond in medical devices such as positron emission tomography and X-ray examinations, and has the same shape and principle as the US military's most powerful military weapon [20K watt laser hexagonal laser head]: it gathers energy and light speed, resonates most completely with the magnetic field, and the hexagonal crystal has the best energy presentation effect. The hexagonal lattice unit crystal generates the strongest beam and magnetic field, as well as the fastest and most accurate long-distance light transmission speed, with the lowest impedance to undesirable harmonics, thus achieving the best efficiency and frequency stability. It can also enhance the quantum superposition and magnetic field resonance of far-infrared rays with graphene powder 11, titanium powder 12, and germanium powder 13, so that the spectrum wavelength and light wave resonance benefits and speed can be achieved, thus achieving a convergence presentation of consistency and enhanced function.
[0023] The middle layer 2 is a paste composed of a mixture of energy powder 21, broadleaf soybean extract 22, essential oil 23, and additives 24. Energy powder 21 is a mixture of graphene powder 11, titanium powder 12, and germanium powder 13. Broadleaf soybean extract 22 is an extract of the roots of various soybean plants, commonly known as "Yitiaogen," which has functions such as calming the liver, strengthening the body, stopping night sweats, and invigorating the body; it can be used to treat rheumatism, strengthen muscles and bones, and invigorate the body. It can also be used to make medicinal wine, tea, patches, ointments, and sprays. Essential oil 23 is any one of lavender essential oil 231, ginger essential oil 232, peppermint essential oil 233, eucalyptus essential oil 234, wintergreen essential oil 235, or sandalwood essential oil 236, which can accelerate penetration, allowing far-infrared rays to be absorbed through the skin surface to achieve the desired effect. Additive 24 is any one of resin 241, zinc oxide 242, or food coloring 243.
[0024] A bottom layer 3 is disposed below the lower surface of the middle layer 2, and it is release paper that can be peeled off from the middle layer 2.
[0025] The aforementioned components combine to form a grid-patterned conductive graphene titanium-germanium patch A. In use, the release paper of the bottom layer 3 is removed for application to different parts of the body. Through the interaction of the graphene titanium-germanium grid pattern 4 (composed of graphene powder 11, titanium powder 12, and germanium powder 13) in the surface layer 1 and the paste in the middle layer 2, energy and light speed are concentrated, achieving the most complete quantum superposition and magnetic field resonance. This gives the enhanced far-infrared rays conductivity and thermal conductivity, resonating with the body's temperature, allowing the body to quickly feel heat from the inside out. Through energy conduction, it penetrates deeply into sore areas, relieving muscle and bone fatigue, achieving a soothing effect similar to that after acupuncture.
[0026] Please refer to Figures 4 and 5, which are enlarged plan views and cross-sectional views A-A' of the present invention. As shown, the present invention uses high temperature and pressure to transfer a combination of graphene powder 11, titanium powder 12, germanium powder 13, and thermal sublimation transfer ink 14 onto the surface of the elastic base fabric of the surface layer 1. This results in a graphene-titanium-germanium grid pattern 4 composed of multiple continuously arranged hexagonal lattice units on the surface layer 1, giving the graphene-titanium-germanium grid pattern 4 a honeycomb-like layout. This allows it to interact with the paste in the middle layer 2, concentrating energy and light speed to achieve the most complete quantum superposition and magnetic field resonance, giving the enhanced far-infrared rays electrical and thermal conductivity.
[0027] The far-infrared emissivity measured by the Industrial Technology Research Institute on behalf of the present invention is significant for the human body in the far-infrared emission wavelength range of 5 μm to 14 μm. The test verification specification for the far-infrared emissivity is that in the wavelength range of 5 μm to 14 μm, its stable average emissivity exceeds 0.80 (80%) or more, that is, it meets the qualified standard. The grid-patterned conductive graphene titanium germanium patch A of the present invention, through the measurement results, has an average emissivity of 0.951 in the wavelength range of 8 μm to 13 μm, indicating that the present invention has a better far-infrared conduction effect.
[0028] The present invention has at least the following advantages compared with general patches: 1. The far-infrared rays of the present invention, through the structural effect generated by the graphene titanium germanium grid pattern 4 on the surface layer 1 and the paste in the middle layer 2, can improve joint pain, and the penetration force can reach deep into the muscles and joints, making the body warm inside, relaxing the muscles, promoting the oxygen and nutrient exchange of the microvascular network, and discharging the fatigue substances and aging wastes such as lactic acid accumulated in the body, and has a remarkable effect on eliminating internal swelling and relieving soreness.
[0029] 2. The far-infrared rays of the present invention, through the structural effect generated by the graphene titanium germanium grid pattern 4 on the surface layer 1 and the paste in the middle layer 2, can restore cell vitality and relieve soreness and pain, and the effect is remarkable.
[0030] 3. The far-infrared rays of the present invention, through the structural effect generated by the graphene titanium germanium grid pattern 4 on the surface layer 1 and the paste in the middle layer 2, can promote blood circulation and improve the condition of cold and weakness, and the effect is remarkable.
[0031] 4. The far-infrared rays of the present invention, through the structural effect generated by the graphene titanium germanium grid pattern 4 on the surface layer 1 and the paste in the middle layer 2, can improve muscle and joint problems, and help relieve stress and anxiety, so that your body can be comprehensively cared for, and it has safety and convenience in use.
[0032] The foregoing embodiments are only for illustrating the preferred embodiments of the present invention, rather than limiting the scope of the present invention. Any slight modification or change still does not deviate from the essence of the present invention and does not depart from the spirit of the present invention.
[0033] In summary, the present invention is composed of a surface layer provided with a graphene titanium germanium grid pattern, and a middle layer composed of a mixture of energy powder, broad-leaved soybean extract, essential oil and additives, forming a grid-patterned conductive graphene titanium germanium patch. Through the structural effect of the graphene titanium germanium grid pattern and the paste, energy and light speed are聚集, achieving the most complete quantum superposition and magnetic field resonance, making the enhanced far-infrared rays have conductivity and heat conductivity, resonating with the human body through the human body temperature, enabling the human body to quickly feel heat from the inside out, and through energy conduction, focusing on deeply penetrating into the sore parts, relieving the fatigue of muscles and bones, and achieving the soothing effect after actual acupuncture, which is a practical design.
Claims
1. A grid-patterned conductive graphene titanium-germanium patch, characterized in that, include: The top layer is an elastic base fabric with a graphene titanium germanium grid pattern on its surface, which is composed of multiple continuously arranged hexagonal grid units; the middle layer is a paste composed of a mixture, located below the lower surface of the top layer; the bottom layer is a release paper, located below the lower surface of the middle layer, and is peeled off from the middle layer.
2. The grid-patterned conductive graphene titanium-germanium patch as described in claim 1, characterized in that, The graphene-titanium-germanium mesh pattern uses high temperature and pressure to transfer the combined raw materials onto the elastic base fabric. The combined raw materials are composed of graphene powder, titanium powder, germanium powder, and thermal sublimation transfer ink.
3. The grid-patterned conductive graphene titanium-germanium patch as described in claim 1, characterized in that, The middle layer of the paste is composed of a mixture of energy powder, broad-leaf soybean extract, essential oils, and additives.
4. The grid-patterned conductive graphene titanium-germanium patch as described in claim 3, characterized in that, The energy powder is a mixture of graphene powder, titanium powder, and germanium powder.
5. The grid-patterned conductive graphene titanium-germanium patch as described in claim 3, characterized in that, The essential oil is lavender essential oil, ginger essential oil, peppermint essential oil, eucalyptus essential oil, wintergreen essential oil, or sandalwood essential oil.
6. The grid-patterned conductive graphene titanium-germanium patch as described in claim 3, characterized in that, The additive is resin, zinc oxide, or food coloring.
Citation Information
Patent Citations
Heating patch
CN209048421U
Graphene patch loaded with nano-drug
CN217219619U