Methods for producing heat-dissipating graphene in paints and coatings
Patent Information
- Application Number
- TW113117408
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-05-10
- Publication Date
- 2026-07-11
- Estimated Expiration
- 2044-05-09
Smart Images

Figure IMG-2_DRAW_113117408-A0101-14-0001-1 
Figure IMG-2_DRAW_113117408-A0101-14-0004-4 
Figure IMG-2_DRAW_113117408-A0101-14-0004-5
Abstract
Description
Technical Field
[0001] The present invention relates to a method for producing heat-dissipating graphene in paint coatings. It is mainly applied to the technology of adding graphene, sub-graphite, and boron nitride fermented powder with heat dissipation function to paint coatings, making the paint coating non-toxic, non-conductive, and heat-dissipating, and forming a fast heat dissipation protective layer when brushed on the exterior wall. Prior Technology
[0002] Paints and coatings are divided into two types: "water-based" and "oil-based." The difference lies in the substance used to dilute the paint during application. Water-based paint uses water as a thinner, while oil-based paint uses organic solvents (such as toluene and turpentine) as thinners. For health reasons, paints are manufactured without adding formaldehyde or heavy metals, and have low levels of volatile organic compounds (VOCs) to ensure the health of consumers in their homes.
[0003] The applicant filed this patent application on April 8, 2022 (Republic of China year 111), application number 111113526, and it was approved and published on August 11, 2023 (Republic of China year 112), certificate number I812151. The invention patent is titled "Method for Making Graphene Transparent by Fermentation". The main process involves heating graphene raw materials twice to obtain graphene powder. The graphene powder and yeast are then added to warm water to cultivate graphene mother bacteria. The mixture is then stirred evenly with edible powder, sugar powder, and warm water, and placed in a temperature-controlled chamber for fermentation for a period of time. After fermentation, the graphene enzyme powder is crushed and evenly dispersed, and then dried in a temperature-controlled chamber for a period of time. After being refined in a mixer, the fermentation is repeated for a second time. The graphene enzyme powder is then soaked in warm water for a period of time, and the edible powder will naturally settle and clump together. The water on top is then removed, which yields transparent graphene containing probiotics.
[0004] Note that graphene is a single-layer two-dimensional crystal composed of carbon atoms arranged in a hexagonal honeycomb crystal lattice with sp2 mixed orbitals. Graphene has a very stable structure, and this stable lattice structure gives it excellent thermal conductivity. During their research, the developers of this invention discovered that adding heat-dissipating graphene to paint makes the paint non-toxic, non-conductive, and heat-dissipating, forming a rapid heat-dissipating protective layer when applied to exterior walls. Summary of the Invention
[0005] In view of this, the inventor, who is currently engaged in the manufacturing and design of related products, has accumulated many years of practical experience and insights. In order to help everyone's health, the inventor actively invests in innovation and improvement and has systematically developed a method for manufacturing a paint coating containing heat-dissipating graphene.
[0006] The technical means applied to solve the problem and the advantages compared with prior art are as follows: Fermented graphene, sub-graphite, and boron nitride are added to warm water and placed in a temperature-controlled room for several days to cultivate bacteria; fermented graphene, sub-graphite, and boron nitride, along with edible powder and sugar powder, are poured into a container, warm water is added, and the mixture is stirred evenly and placed in a temperature-controlled room, where the temperature is increased for several days of fermentation; the finished product after fermentation is in block form, which must be crushed with a tool and evenly spread on a platform, and then placed in a temperature-controlled room to dry for several days to ensure dryness; the dried enzyme product is placed in a mixer, and the enzyme product is refined during the stirring process. After the first fermentation is completed, a second fermentation is repeated; finally, the powder of fermented graphene, sub-graphite, and boron nitride is added to the paint coating to form a paint coating with heat dissipation function, making the paint coating non-toxic, non-conductive, and heat dissipating. When brushed on the exterior wall, it forms a protective layer that dissipates heat quickly, thus improving its effectiveness and achieving its main objective.
[0007] The above-mentioned paint coating contains a method for producing heat-dissipating graphene, wherein: the paint coating is an oil-based paint mixed with banana oil, graphene, sub-graphite, and boron nitride, and the resulting powder is fermented to form 5-10 grams of powder.
[0008] The above-mentioned paint coating contains a method for producing heat-dissipating graphene, wherein: the paint coating is a water-based paint mixed with water and 5-10 grams of graphene, sub-graphite, and boron nitride powder after fermentation.
[0009] The above-mentioned paint coating contains a method for producing heat-dissipating graphene, wherein the incubation time is two days.
[0010] The above-mentioned paint coatings contain heat-dissipating graphene, wherein the fermentation time is three days.
[0011] The above-mentioned paint coatings contain heat-dissipating graphene, wherein the drying time is three to four days.
[0012] The above-mentioned method for producing heat-dissipating graphene in paint coatings includes a temperature control chamber with a temperature of 38℃~40℃.
[0013] The above-mentioned paint coating contains a method for producing heat-dissipating graphene, wherein: 150 grams of graphene mother bacteria, 3 kilograms of edible powder, 100 grams of sugar powder, and 3000 cc of warm water are mixed and fermented to form graphene fermentation powder.
[0014] The above-mentioned paint coating contains a method for producing heat-dissipating graphene, wherein the platform is made of stainless steel.
[0015] The above-mentioned method for producing heat-dissipating graphene in paint coatings includes the following: the container is either a plastic bucket or a glass bucket. Simple Explanation of the Diagram
[0016] Figure 1: A block diagram illustrating the production process of the graphene fermentation powder of this invention.
[0017] Figure 2: A schematic diagram of the mixing ratio of the graphene fermentation powder of the present invention.
[0018] Figure 3: A block diagram illustrating the manufacturing process of graphene, sub-graphite, and boron nitride fermentation powder according to the present invention.
[0019] Figure 4: A block diagram illustrating the application of this invention in oil-based paint coatings.
[0020] Figure 5: A block diagram illustrating the application of this invention in water-based paints and coatings. Implementation
[0021] To facilitate a thorough understanding of the structure and functional benefits of this invention for those skilled in this art, a specific embodiment is provided below, along with detailed descriptions and accompanying drawings: A method for producing heat-dissipating graphene in paint coatings, please refer to Figure 1: a block diagram illustrating the production process of the graphene fermentation powder of this invention. The production method is as follows: The composition of the graphene mother culture is: graphene, water, sugar, and corn flour; the graphene mother culture is prepared by uniformly mixing graphene, water, sugar, and corn flour, then heating to 38℃~40℃, and fermenting for two days to complete the fermentation; the edible powder is corn flour; the graphene mother culture is first added to warm water and placed in a temperature-controlled room for two days for incubation; Step 1: Pour graphene starter culture, edible powder, and sugar into a container, then add warm water and stir well (as shown in the second picture). The ratio is 150 grams of graphene starter culture, 3 kilograms of edible powder, 100 grams of sugar, and 3000 cc of warm water to form graphene fermentation powder. Place it in a temperature-controlled room and adjust the temperature to between 38℃ and 40℃ for fermentation for about three days. Step 2: The fermented product is in block form. It must be crushed with a tool and evenly spread on a stainless steel platform. Then place it in a temperature-controlled room and dry it for three to four days to ensure dryness. Step 3: Put the dried enzyme product into a mixer and stir to refine the enzyme product. The color is grayish-black powder. After completing the first fermentation, repeat steps one to three to complete the second fermentation. The color is white powder.
[0022] A method for producing a paint containing heat-dissipating graphene is shown in Figure 3: a block diagram illustrating the production process of graphene, sub-graphite, and boron nitride fermentation powder according to the present invention. The preparation method is as follows: Add 50 grams of fermented graphene, 50 grams of sub-graphite (meteorite), and 50 grams of boron nitride (white graphene) to warm water and place in a temperature-controlled room for two days for bacterial growth; Step 1: Pour 50 grams of fermented graphene, 50 grams of sub-graphite, and 50 grams of boron nitride, along with edible powder and sugar powder, into a container, add warm water, stir well, and place in a temperature-controlled room. Adjust the temperature to between 38℃ and 40℃ and ferment for about three days; Step 2: The finished product after fermentation is in block form. It must be crushed with a tool and evenly spread on a stainless steel platform, then placed in a temperature-controlled room to dry for three to four days to ensure dryness; Step 3: Place the dried enzyme product into a mixer and stir to refine the enzyme product, which will be a grayish-black powder; After completing the first fermentation, repeat steps one to three to complete the second fermentation, which will result in a white powder.
[0023] The present invention, composed of the above-mentioned components, provides a method for manufacturing a paint coating containing heat-dissipating graphene. In practical application, please refer to Figure 4, which is a block diagram illustrating the application of this invention in oil-based paint coatings. 5-10 grams of powdered oil-based paint coating, containing banana oil, graphene, sub-graphite, and boron nitride after fermentation, are added to form a heat-dissipating oil-based paint coating. This results in a non-toxic, non-conductive, and heat-dissipating oil-based paint coating that, when applied to exterior walls, creates a protective layer that rapidly dissipates heat.
[0024] Please refer to Figure 5: a block diagram illustrating the application of this invention in water-based paint coatings. Water-based paint coatings are mixed with water and 5-10 grams of graphene, sub-graphite, and boron nitride powder after fermentation to form a water-based paint coating with heat dissipation properties. This water-based paint coating is non-toxic, non-conductive, and heat-dissipating, creating a rapidly cooling protective layer when applied to exterior walls.
[0025] In summary, the present invention provides a method for producing heat-dissipating graphene in paint coatings. After the inventors have actually completed the production and repeated operation tests, it has been confirmed that the invention can indeed achieve the expected functional benefits and has industrial application value. It has indeed met the requirements for the establishment of an invention patent in terms of utility and inventiveness. Therefore, in accordance with the provisions of the Patent Law, an application for an invention patent is filed with this Office.
Claims
1. A method for preparing a paint coating containing heat-dissipating graphene, wherein: The preparation method for graphene fermentation powder is as follows: Preparatory work: First, add graphene starter culture to warm water and place in a temperature-controlled room for several days to cultivate the bacteria; Step 1: Pour graphene starter culture, edible powder, and sugar powder into a container, add warm water, stir well, and place in a temperature-controlled room. Increase the temperature and ferment for several days; Step 2: The fermented product is in block form. It must be crushed with a tool and evenly spread on a platform, then placed in a temperature-controlled room to dry for several days to ensure dryness; Step 3: Place the dried enzyme product into a mixer, and during the mixing process, refine the enzyme product; After completing the first fermentation, repeat the second fermentation; graphene, The preparation method of fermented graphene and boron nitride powder is as follows: Preparatory work: Add fermented graphene, graphene, and boron nitride to warm water and place in a temperature-controlled room for several days to cultivate bacteria; Step 1: Pour fermented graphene, graphene, and boron nitride, along with edible powder and sugar powder, into a container, add warm water, stir well, place in a temperature-controlled room, and increase the temperature for several days of fermentation; Step 2: The finished product after fermentation is in block form, which must be crushed with a tool and evenly spread on a platform, then placed in a temperature-controlled room to dry for several days to ensure dryness; Step 3: Place the dried enzyme product into a mixer, and during the stirring process, refine the enzyme product; After completing the first fermentation, repeat the second fermentation; Add the fermented powder of graphene, graphene, and boron nitride to paint coatings to form paint coatings with heat dissipation properties.
2. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The paint is an oil-based paint mixed with banana oil, graphene, sub-graphite, and boron nitride, fermented to form a powder weighing 5-10 grams.
3. A method for manufacturing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The paint is a water-based paint mixed with water, and 5-10 grams of graphene, sub-graphite, and boron nitride were fermented to form a powder.
4. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: For those whose pre-treatment incubation period is two days.
5. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The fermentation time for step one is three days.
6. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The drying time for step two is three to four days.
7. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: Step two: The temperature of the temperature-controlled room is 38~40℃.
8. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The graphene yeast is made by mixing 150 grams of graphene mother bacteria, 3 kilograms of edible powder, 100 grams of sugar powder, and 3000 cc of warm water and fermenting the mixture.
9. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein the platform in step two of producing the graphene mother culture and graphene is made of stainless steel.
10. A method for producing a paint coating containing heat-dissipating graphene as described in claim 1, wherein: The first step in the preparation of graphene mother bacteria and graphene involves using either a plastic bucket or a glass bucket as the container.