Method for fusing pearls, hair and manganese dioxide into crystals

Through the fusion method of pearls, hair and manganese dioxide, customers can observe and participate in some non-high temperature links throughout the process, solving customers' concerns about the manufacturer's wrong gems and achieving transparent crystal production that shortens the production cycle.

CN120250136APending Publication Date: 2025-07-04SHANGHAI CHIAI JEWELRY CO LTD
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Patent Information

Application Number
CN202510460895.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

In the prior art, the process of using hair to make diamonds is secret and the cycle is too long, and customers are worried about whether the manufacturer will get the wrong diamond, which will cause customers to give up making it.

Method used

The method of fusion of pearls, hair and manganese dioxide into crystals is used. Customers can observe the whole process. Non-high temperature parts can be operated by themselves. The hair can be processed by high temperature to generate silicon carbide, and the pearls are used to generate calcium oxide and react with phosphoric acid to form crystal embryos, and finally melt with manganese dioxide to form transparent crystals.

Benefits of technology

This has achieved the production process of customers participating in the entire process, solved the customer's concerns about whether the manufacturer would get the wrong gems, and shortened the production cycle to about 5 hours.

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Abstract

The invention discloses a method for fusing pearls, hair and manganese dioxide into crystals, which comprises the following steps: step 1, baking the hair at high temperature but not burning to obtain hair carbon, smashing the hair carbon, putting the smashed hair carbon into nano silicon powder, fully stirring the smashed hair carbon and the nano silicon powder, compacting the smashed hair carbon, putting the compacted hair carbon into a sealable crucible, and reacting the compacted hair carbon and the compacted hair carbon at high temperature to obtain silicon carbide; step 2, generating calcium oxide at high temperature by utilizing the characteristic that the main component of pearl is calcium carbonate, and reacting the calcium oxide with phosphoric acid to generate a crystal embryo at 450 DEG C; and step 3, mixing the two with manganese dioxide, and melting the mixture in a muffle furnace to obtain the transparent crystal containing hair carbon. The transparent crystal containing the hair carbon obtained by the method has a flame combustion effect under ultraviolet rays.
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Description

Technical Field

[0001] The present invention belongs to the field of artificial gemstone production, and particularly relates to a method for fusing pearls, hair, and manganese dioxide into crystals. Background Art

[0002] Using hair to make diamonds has a broad market prospect. However, in actual promotion, due to the secretive production process and overly long cycle, customers may worry that the manufacturer will take the wrong diamond and thus give up the production.

[0003] To address this issue, a solution is proposed where customers can accompany the whole process and can see with their own eyes the hair fixed inside the gemstone. To increase the uniqueness of this artificial gemstone, a certain amount of manganese dioxide needs to be added during the processing. The final product is a transparent crystal and has an effect of flame burning under ultraviolet light. Its physical and chemical properties are stable, and it can be cut, polished, inlaid, and worn like other gemstones. Summary of the Invention

[0004] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a method for fusing pearls, hair, and manganese dioxide into crystals. This invention takes a different approach and abandons the idea of using only carbon to make gemstones. Instead, it makes carbon-containing gemstones according to the carbon content ratio in hair.

[0005] To achieve the above purpose, the present invention provides the following technical solution: In this content, hair is adopted as one kind of hair, and the application steps of other hairs are the same. Bake the hair at a high temperature but without burning to obtain hair carbon (also known as "xieyutan" in folk terms). After crushing, put it into nano-silicon powder, stir well and compact it, then put it into a sealable corundum crucible and make it react at a high temperature to obtain silicon carbide.

[0006] Utilize the characteristic that the main component of pearls or shells is calcium carbonate (pearls can also be replaced by shells), generate calcium oxide at a high temperature, and the product after reacting it with phosphoric acid generates crystal embryos at 450 °C. The crystal embryos are mainly used to dissolve silicon carbide.

[0007] Mix the above two with a certain amount of manganese dioxide and put them into a muffle furnace for melting, then a transparent crystal containing hair carbon can be obtained. The whole process only requires a small amount of equipment and takes about 5 hours. Customers can observe the whole process, and they can operate the non-high-temperature parts themselves, solving the customers' doubts about whether the manufacturer will take the wrong one or "discard the hair and directly take a ready-made gemstone".

[0008] A method for fusing pearls, hair, and manganese dioxide into crystals, comprising the following steps: Step 1: Bake the hair at a high temperature but without burning to obtain hair carbon. After crushing, put it into nano-silicon powder, stir well and compact it, then put it into a sealable crucible and make it react at a high temperature to obtain silicon carbide; Step 2: Utilize the characteristic that the main component of pearls is calcium carbonate to generate calcium oxide at high temperature. React the product with phosphoric acid and generate crystal embryos at 450 °C. Step 3: Mix the above two with manganese dioxide and put them into a muffle furnace for melting to obtain a transparent crystal containing hair carbon.

[0009] Preferably, the specific steps of Step 1 are as follows. Take 5 g of hair, put it into a covered crucible, place it at 450 °C for 15 minutes to obtain hair carbon. After grinding, pass it through a 100-mesh sieve. Take 1 g of 30-nm silicon powder and mix it fully with the hair carbon. Then put it into a tablet press mold and extrude it with a pressure of ≥3 tons to make the carbon powder and silicon powder contact fully. Put the compacted particles into a sealed crucible, preheat it and then put it into a muffle furnace at 1200 °C for heating to react the carbon powder and silicon powder into silicon carbide. After two hours, take out the crucible, and after cooling, take out the internal silicon carbide and set it aside for use.

[0010] Preferably, the specific steps of Step 2 are as follows. Take 6 g of pearls, break them into particles with a diameter less than 1 mm using a mortar, bake them at a high temperature of 1200 °C for 20 minutes. After cooling, slowly add 15 ml of 85% concentrated phosphoric acid while stirring, and then bake it at 450 °C for 40 minutes to obtain crystal embryos and set them aside for use.

[0011] Preferably, the specific steps of Step 3 are as follows. Take 1 g of manganese dioxide. After mixing the above silicon carbide, crystal embryos, and manganese dioxide, put them into a muffle furnace at 1200 °C. After 30 minutes, pour them into a mold to obtain a transparent crystal containing hair carbon.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: Customers can observe the whole process, and they can operate the non-high-temperature parts by themselves, which solves the doubts of customers about whether the manufacturer will take the wrong ones or "discard the hair and directly take a ready-made gemstone". Specific Embodiments

[0013] Next, the technical solutions in the embodiments of the present invention will be described clearly and completely in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention. Embodiment

[0014] Take 5g of hair, put it into a covered crucible, place it at 450℃ for 15 minutes, and get about 1g of hair carbon. After grinding, pass it through a 100-mesh sieve, take 1g of 30-nanometer silicon powder, mix it thoroughly with the hair carbon, and then put it into a tableting mold, and extrude it with a pressure of ≥3 tons to make the carbon powder and silicon powder fully contact. Put the compacted particles into a sealable crucible, preheat it, and heat it in a muffle furnace at 1200℃ to make the carbon powder and silicon powder react into silicon carbide. Take out the crucible after two hours, take out the silicon carbide inside after cooling, and put it aside for use.

[0015] Take 6g of pearls, use a mortar or other tool to break them into particles with a diameter of less than 1mm, bake them at a high temperature of 1200 degrees Celsius for about 20 minutes, slowly add 15ml of 85% concentrated phosphoric acid while stirring after cooling, and then bake them at 450℃ for 40 minutes to obtain a crystal embryo, and set it aside for later use.

[0016] Take 1g of manganese dioxide.

[0017] After mixing the above silicon carbide, embryo and manganese dioxide, put them into a muffle furnace at 1200℃ and pour them into a mold after 30 minutes to obtain transparent crystals containing hair carbon, which have the effect of flame burning under ultraviolet light.

[0018] It is understandable that the pearls may be replaced by shells, which are also within the scope of protection of this application.

[0019] It can be understood that the present application uses hair as an embodiment of hair, and other hair can also be used to replace the hair in the above steps.

[0020] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A method for fusing pearls, hair, and manganese dioxide into crystals, characterized in that: The steps include: Step 1, baking hair at high temperature but not burning it to obtain hair carbon, crushing it and adding nano silicon powder, stirring it thoroughly and compacting it, putting it into a sealable crucible, and reacting it at high temperature to obtain silicon carbide; Step 2: Calcium carbonate is the main component of pearls. Calcium oxide is generated at high temperature, and the product of the reaction with phosphoric acid is heated to 450°C to generate a crystal embryo; Step 3: Mix the above two together with manganese dioxide, put them into a muffle furnace for melting, and obtain transparent crystals containing hair carbon.

2. A method for fusing pearls, hair, and manganese dioxide into crystals according to claim 1, characterized in that: The step 1 is specifically as follows: Take 5g of hair, put it into a covered crucible, place it at 450℃ for 15 minutes to obtain hair charcoal. Grind it and pass it through a 100-mesh sieve. Take 1g of 30-nanometer silicon powder, mix it thoroughly with the hair charcoal, and then put it into a tableting mold. Extrude it with a pressure of ≥3 tons to make the carbon powder and silicon powder fully contact. Put the compacted particles into a sealed crucible, preheat it, and heat it in a muffle furnace at 1200℃ to make the carbon powder and silicon powder react into silicon carbide. Take out the crucible after two hours, take out the silicon carbide inside after cooling, and put it aside for use.

3. A method for fusing pearls, hair, and manganese dioxide into crystals according to claim 2, characterized in that: The step 2 is specifically as follows: Take 6g of pearls, crush them into particles with a diameter of less than 1mm with a mortar, bake them at a high temperature of 1200 degrees Celsius for 20 minutes, and after cooling, slowly add 15ml of 85% concentrated phosphoric acid while stirring, and then bake them at 450℃ for 40 minutes to obtain a crystal embryo, which is set aside for later use.

4. A method for fusing pearls, hair, and manganese dioxide into crystals according to claim 3, characterized in that: The step 3 is as follows: Take 1 g of manganese dioxide, mix the above silicon carbide, embryo and manganese dioxide, put them into a muffle furnace at 1200°C, and pour them into a mold after 30 minutes to obtain a transparent crystal containing hair carbon.