Manufacturing method of magnetic silica gel nail ornament

By designing nail tips made of silicone or composite nail tips combining silicone and plastic, and incorporating magnetic connectors, the problem of skin bruising caused by impacts to the tips of artificial nail tips has been solved, achieving a beautiful and safe nail decoration effect.

CN121312936APending Publication Date: 2026-01-13张虹燕
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Patent Information

Application Number
CN202511763504.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-01-13

AI Technical Summary

Technical Problem

The tips of existing artificial nails are prone to impact and stress, which can cause the hard material to bruise the skin around the nail, resulting in pain and discomfort.

Method used

Nail tips made of silicone or a combination of silicone and plastic are attached to the nail surface with multi-pole magnetized magnetic connectors. The silicone part is in contact with the skin, and the soft silicone elastically deforms to relieve stress, avoiding skin bruising caused by hard materials.

Benefits of technology

When nail tips are subjected to force, the silicone material can deform elastically, avoiding skin abrasions caused by hard materials, maintaining both aesthetics and safety. The elastic deformation of silicone makes the magnetic adhesion more complete and prevents detachment.

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Abstract

The invention discloses a manufacturing method of a magnetic silica gel nail ornament. The manufacturing method comprises the following steps: step 1, manufacturing a sheet-shaped nail piece matched with the shape of a nail of a person; the fingernail piece is a silica gel fingernail piece made of silica gel, or the fingernail piece is a composite fingernail piece formed by combining silica gel and plastic; step 2, manufacturing a first magnetic connecting piece, wherein the first magnetic connecting piece is a multi-pole magnetized magnet; thirdly, the first magnetic connecting piece is embedded into the fingernail piece; step 4, carrying out surface treatment on the nail piece through a UV printer or manual coating surface mounting so as to form a decorative pattern on the surface of the nail piece; 5, a second magnetic connecting piece connected with the first magnetic connecting piece in a magnetic attraction mode is manufactured, and the second magnetic connecting piece is used for being fixed to the surface of the fingernail of the person; therefore, the problem that when the tip end of an existing false nail piece is collided and stressed, the false nail piece is prone to bruise the skin around the nail of a person, pain is caused, and discomfort is generated is solved.
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Description

Technical Field

[0001] This invention relates to the field of nail ornaments, and in particular to a method for manufacturing a magnetic silicone nail ornament. Background Technology

[0002] In today's world, loving and pursuing beauty has become an integral part of people's lives, especially for women. To enhance their figure and appearance, women not only engage in exercise but also utilize various makeup techniques to care for and adorn their hands. Nails are an important part of a woman's beauty, showcasing her personality and charm, and increasingly, women are beautifying their hands by getting artificial nail extensions.

[0003] There are many types of artificial nail tips, mainly including shallow, partial, and full-coverage tips. Most existing artificial nail tips are made of hard materials such as plastic. During manufacturing, they are curved to fit the natural nail, resulting in a portion protruding beyond the nail tip. This makes them susceptible to impacts. Furthermore, the hardness of plastic and other hard materials can cause the nail tip to bruise the skin around the nail, leading to pain and discomfort.

[0004] Therefore, a new technology needs to be developed to solve the above problems. Summary of the Invention

[0005] In view of this, the present invention addresses the deficiencies of the existing technology, and its main objective is to provide a method for manufacturing magnetic silicone nail ornaments, which solves the problem that existing artificial nail pieces are prone to causing pain and discomfort by rubbing the skin around the nails when the tips of the artificial nail pieces are bumped or subjected to force.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A method for manufacturing magnetic silicone nail ornaments includes the following steps:

[0008] Step 1: Make a nail tip that matches the shape of a person's nail; the nail tip is a silicone nail tip, or a composite nail tip that combines silicone and plastic.

[0009] The composite nail tip includes a plastic body and a silicone surrounding contact portion connected to the body. The surrounding contact portion is formed at the part of the body that comes into contact with the skin around the nail.

[0010] Step 2: Fabricate the first magnetic connector, which is a multi-pole magnetized magnet;

[0011] Step 3: Embed the first magnetic connector onto the nail plate;

[0012] Step 4: Apply a surface treatment to the nail tips using a UV printer or by hand coating to create a decorative pattern on the surface of the nail tips.

[0013] Step 5: Make a second magnetic connector that is magnetically connected to the first magnetic connector. The second magnetic connector is used to fix the fingernail to the surface of the fingernail.

[0014] As a preferred option, in step one, the nail tip is manufactured by injection molding, hot pressing, or 3D printing.

[0015] As a preferred method, when making silicone nail pieces by injection molding, the silicone raw material is first heated and melted into a liquid state, and then injected into the cavity of the injection mold through the material tube. The mold is locked and pressure is applied to form the silicone nail piece, and the silicone nail piece is demolded after the mold is opened and cooled.

[0016] As a preferred method, when making composite nail tips by injection molding, the silicone raw material and the plastic raw material are first heated and melted into liquid state, and then injected into the cavity of the injection mold through two injection ports of the injection mold through two tubes. The mold is locked and pressure is applied to form a composite nail tip that combines both silicone and plastic materials. The composite nail tip is then demolded after the mold is opened and cooled.

[0017] As a preferred embodiment, in step two, the first magnetic connector is a multipole magnet made of ferrite, samarium iron nitrogen or neodymium iron boron through sintering, bonding, injection molding or rolling.

[0018] As a preferred embodiment, in step two, the magnet is made of isotropic or anisotropic ferrite, samarium iron nitrogen (made by sintering, injection molding or calendering), bonded neodymium iron boron (made by sintering, injection molding or calendering), or sintered neodymium iron boron (made by pressing, injection molding or calendering).

[0019] As a preferred embodiment, in step five, the second magnetic connector is a magnetically conductive sheet that conforms to the shape of a person's fingernail surface, and the magnetically conductive sheet is used to adhere to the surface of a person's fingernail.

[0020] As a preferred embodiment, the magnetic sheet is made of a high-permeability material (such as a permalloy sheet).

[0021] As a preferred embodiment, the magnetic sheet is made of isotropic or anisotropic ferrite, samarium iron nitrogen, bonded neodymium iron boron, or sintered neodymium iron boron.

[0022] Compared with existing technologies, this invention has significant advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly involves designing the nail tip as a silicone nail tip. This allows the soft silicone nail tip to elastically deform and absorb force when pressure is applied to the tip, preventing the nail tip from injuring the skin around the nail due to the hardness of the silicone material, thus avoiding pain and discomfort. It also prevents the nail tip from bending and detaching under pressure, achieving both aesthetic appeal and preventing injury. Furthermore, the soft silicone nail tip allows for more complete magnetic adhesion through its own elastic deformation. Alternatively, by designing the nail tip as a silicone... This invention relates to a composite nail tip combining adhesive and plastic. The composite nail tip comprises a plastic body and a silicone contact portion connected to the body. The contact portion is formed at the point where the body contacts the skin around the nail. Thus, when the tip of the nail tip is subjected to force, the soft silicone contact portion allows the nail tip to make contact with the skin around the nail even when it is bumped or impacted. This provides a soft contact and prevents injury to the skin around the nail. This avoids the pain and discomfort caused by the hardness of the silicone material causing injury to the skin around the nail when the nail tip is subjected to force. Furthermore, the plastic body helps maintain the shape of the nail tip.

[0023] To more clearly illustrate the structural features, technical means, and specific objectives and functions achieved by the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0024] Fig. 1 This is an exploded view of Embodiment 1 of the present invention;

[0025] Fig. 2 This is another exploded view of Embodiment 1 of the present invention;

[0026] Fig. 3 This is another exploded view of Embodiment 1 of the present invention;

[0027] Fig. 4 This is an exploded view of Embodiment 2 of the present invention;

[0028] Fig. 5 This is another exploded view of Embodiment 2 of the present invention;

[0029] Fig. 6 This is another exploded view of Embodiment 2 of the present invention.

[0030] Explanation of reference numerals in the attached diagram:

[0031] 10. Silicone nail tips; 20. Composite nail tips

[0032] 21. Main body; 22. Surrounding contact area

[0033] 30. First magnetic connector; 40. Second magnetic connector

[0034] 50. Human fingernails. Detailed Implementation

[0035] Please refer to Figs. 1 to 6 As shown, it illustrates the specific structures of two embodiments of the present invention.

[0036] A magnetic silicone nail ornament includes a sheet-shaped nail piece that matches the shape of a human nail, a first magnetic connector 30, and a second magnetic connector 40. The nail piece is a silicone nail piece 10 made of silicone material, or a composite nail piece 20 made of silicone and plastic. The composite nail piece 20 includes a plastic body 21 and a silicone surrounding contact portion 22 connected to the body 21. The surrounding contact portion 22 is formed at the part of the body 21 that contacts the skin around the human nail. The first magnetic connector 30 is embedded in the nail piece, and the second magnetic connector 40 is magnetically connected to the first magnetic connector 30. The second magnetic connector 40 is used to fix it to the surface of the human nail, and the surface of the nail piece is formed with a decorative pattern.

[0037] like Figs. 1 to 3 As shown in Embodiment 1, a method for manufacturing a magnetic silicone nail ornament includes the following steps:

[0038] Step 1: Create a flat nail piece 10 that matches the shape of a person's fingernail 50. This nail piece is made of silicone. It can be made through injection molding, thermoforming, or 3D printing. When making the silicone nail piece 10 through injection molding, the silicone raw material is first heated and melted into a liquid state, then injected into the cavity of the injection mold through a feed tube. The mold is then locked and pressurized to form the silicone nail piece 10. After the mold is opened and cooled, the silicone nail piece 10 is demolded. By designing the nail piece as a silicone nail piece 10, the soft silicone nail piece 10 can elastically deform and absorb force when the nail tip is subjected to pressure. This prevents the nail piece from scratching the skin around the fingernail 50 due to the hardness of the material, causing pain and discomfort. It also prevents the nail piece from bending and detaching under pressure. This design is both aesthetically pleasing and prevents injury. Furthermore, the soft silicone nail piece 10 allows for a more complete magnetic adhesion through its own elastic deformation. Food-grade silicone can be used.

[0039] Step 2: Fabricate the first magnetic connector 30, which is a multi-pole magnet. Here, the first magnetic connector 30 is a multi-pole magnet made of high-performance magnetic powders such as ferrite, samarium iron nitrogen, or neodymium iron boron through sintering, bonding, injection molding, or calendering. Specifically, the magnet is made of isotropic or anisotropic ferrite, samarium iron nitrogen (made by sintering, injection molding, or calendering), or bonded neodymium iron boron (made by sintering, injection molding, or calendering), or sintered neodymium iron boron (made by pressing, injection molding, or calendering). The first magnetic connector 30 can be a sheet-like cylinder or a columnar body, which can be a cylinder or a polygonal columnar body. One first magnetic connector 30 is provided.

[0040] Step 3: Embed the first magnetic connector 30 into the nail plate; here, the first magnetic connector 30 can be embedded into the nail plate on the side near the second magnetic connector 40, and the lower end of the first magnetic connector 30 is in contact with the second magnetic connector 40.

[0041] Step 4: Apply a surface treatment to the nail tips using a UV printer or by hand coating to create decorative patterns on the surface of the nail tips, thereby increasing their decorative appeal.

[0042] Step 5: Fabricate a second magnetic connector 40 that is magnetically connected to the first magnetic connector 30. This second magnetic connector 40 is used to fix the fingernail 50 to the surface. Here, the second magnetic connector 40 is a magnetic sheet or magnet that conforms to the shape of the surface of the fingernail 50. The magnetic sheet is used to adhere to the surface of the fingernail 50. The magnetic sheet is made of a high-permeability material (such as permalloy), or the material of the magnetic sheet is isotropic or anisotropic ferrite, samarium iron nitrogen, bonded neodymium iron boron, or sintered neodymium iron boron.

[0043] like Figs. 4 to 6 As shown in Embodiment 2, a method for manufacturing a magnetic silicone nail ornament includes the following steps:

[0044] Step 1: Create a flat nail piece that matches the shape of a human fingernail 50. This nail piece is a composite nail piece 20 made of silicone and plastic. The composite nail piece 20 includes a plastic body 21 and a silicone surrounding contact portion 22 connected to the body 21. The surrounding contact portion 22 is formed at the part of the body 21 that contacts the skin around the human fingernail 50. Here, the nail piece can be made by injection molding, thermoforming, or 3D printing. When making the composite nail piece 20 by injection molding, the silicone raw material and the plastic raw material are first heated and melted into liquid form, and then injected into the injection mold through two injection ports through two tubes. In the mold cavity, a composite nail tip 20, made of both silicone and plastic, is formed by clamping and pressing. After mold opening and cooling, the composite nail tip 20 is demolded. Thus, when the tip of the nail tip is subjected to force, because the silicone surrounding contact portion 22 is soft, even if the nail tip is impacted, it can still make contact with the skin around the nail 50 through this soft surrounding contact portion 22, providing soft contact without causing abrasions to the skin around the nail 50. This avoids the pain and discomfort caused by the hardness of the silicone material causing abrasions to the skin around the nail 50. Furthermore, the plastic body 21 can maintain the shape of the nail tip. Also, food-grade silicone can be used.

[0045] Step 2: Fabricate the first magnetic connector 30, which is a multi-pole magnet. Here, the first magnetic connector 30 is a multi-pole magnet made of high-performance magnetic powders such as ferrite, samarium iron nitrogen, or neodymium iron boron through sintering, bonding, injection molding, or calendering. Specifically, the magnet is made of isotropic or anisotropic ferrite, samarium iron nitrogen (made by sintering, injection molding, or calendering), or bonded neodymium iron boron (made by sintering, injection molding, or calendering), or sintered neodymium iron boron (made by pressing, injection molding, or calendering). The first magnetic connector 30 can be a sheet-like cylinder or a columnar body, which can be a cylinder or a polygonal columnar body. One first magnetic connector 30 is provided.

[0046] Step 3: Embed the first magnetic connector 30 into the nail plate; here, the first magnetic connector 30 can be embedded into the nail plate on the side near the second magnetic connector 40, and the lower end of the first magnetic connector 30 is in contact with the second magnetic connector 40.

[0047] Step 4: Apply a surface treatment to the nail tips using a UV printer or by hand coating to create decorative patterns on the surface of the nail tips, thereby increasing their decorative appeal.

[0048] Step 5: Fabricate a second magnetic connector 40 that is magnetically connected to the first magnetic connector 30. This second magnetic connector 40 is used to fix the fingernail 50 to the surface. Here, the second magnetic connector 40 is a magnetic sheet or magnet that conforms to the shape of the surface of the fingernail 50. The magnetic sheet is used to adhere to the surface of the fingernail 50. The magnetic sheet is made of a high-permeability material (such as permalloy), or the material of the magnetic sheet is isotropic or anisotropic ferrite, samarium iron nitrogen, bonded neodymium iron boron, or sintered neodymium iron boron.

[0049] In summary, the key design feature of this invention lies in using silicone nail tips. This allows the soft silicone nail tip to elastically deform and absorb force when pressure is applied, preventing the nail tip from rubbing against the surrounding skin and causing pain or discomfort due to the hardness of the silicone material. It also prevents the nail tip from bending or detaching under pressure. This achieves both aesthetic appeal and prevents injury. Furthermore, the soft silicone nail tip allows for a more complete magnetic adhesion through its elastic deformation. Alternatively, the nail tip can be designed as a composite nail combining silicone and plastic. The composite nail tip consists of a plastic body and a silicone contact portion connected to the body. The contact portion is formed at the point where the body contacts the skin around the nail. Thus, when the tip of the nail tip is subjected to force, the silicone contact portion is soft, so even if the nail tip is bumped or impacted, it can still make contact with the skin around the nail through this soft contact portion, providing a soft contact without causing abrasions to the skin around the nail. This avoids the phenomenon of the nail tip causing abrasions to the skin around the nail due to the hardness of the material, resulting in pain and discomfort. In addition, the plastic body can maintain the shape of the nail tip.

[0050] The above description is merely a preferred embodiment of the present invention and does not constitute any limitation on the technical scope of the present invention. Therefore, any minor modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present invention shall still fall within the scope of the technical solution of the present invention.

Claims

1. A method for manufacturing a magnetic silicone nail ornament, characterized in that: Includes the following steps: Step 1: Make a nail tip that matches the shape of a person's nail; the nail tip is a silicone nail tip, or a composite nail tip that combines silicone and plastic. The composite nail tip includes a plastic body and a silicone surrounding contact portion connected to the body. The surrounding contact portion is formed at the part of the body that comes into contact with the skin around the nail. Step 2: Fabricate the first magnetic connector, which is a multi-pole magnetized magnet; Step 3: Embed the first magnetic connector onto the nail plate; Step 4: Apply a surface treatment to the nail tips using a UV printer or by hand coating to create a decorative pattern on the surface of the nail tips. Step 5: Make a second magnetic connector that is magnetically connected to the first magnetic connector. The second magnetic connector is used to fix the fingernail to the surface of the fingernail.

2. The method for manufacturing magnetic silicone nail ornaments according to claim 1, characterized in that: In step one, nail tips are made by injection molding, hot pressing, or 3D printing.

3. The method for manufacturing magnetic silicone nail ornaments according to claim 2, characterized in that: When making silicone nail tips by injection molding, the silicone raw material is first heated and melted into a liquid state, and then injected into the cavity of the injection mold through the material tube. The mold is locked and pressure is applied to form the silicone nail tip. The mold is then opened and cooled to demold the silicone nail tip.

4. The method for manufacturing magnetic silicone nail ornaments according to claim 2, characterized in that: When making composite nail tips by injection molding, silicone and plastic raw materials are first heated and melted into liquid form. Then, they are injected into the cavity of the injection mold through two injection ports through two tubes. The mold is locked and pressure is applied to form a composite nail tip that combines silicone and plastic materials. The composite nail tip is then demolded after the mold is opened and cooled.

5. The method for manufacturing magnetic silicone nail ornaments according to claim 1, characterized in that: In step two, the first magnetic connector is a multipole magnet made of ferrite, samarium iron nitrogen or neodymium iron boron through sintering, bonding, injection molding or rolling.

6. The method for manufacturing magnetic silicone nail ornaments according to claim 1, characterized in that: In step two, the magnet is made of isotropic or anisotropic ferrite, samarium iron nitrogen, bonded neodymium iron boron, or sintered neodymium iron boron.

7. The method for manufacturing magnetic silicone nail ornaments according to claim 1, characterized in that: In step five, the second magnetic connector is a magnetic conductive sheet that conforms to the shape of a person's fingernail surface, and the magnetic conductive sheet is used to adhere to the surface of a person's fingernail.

8. The method for manufacturing magnetic silicone nail ornaments according to claim 7, characterized in that: The magnetic sheet is made of a high-permeability material.

9. The method for manufacturing magnetic silicone nail ornaments according to claim 7, characterized in that: The magnetic sheet is made of isotropic or anisotropic ferrite, samarium iron nitrogen, bonded neodymium iron boron, or sintered neodymium iron boron.