Embroidery handicraft taking ceramic as basic carrier

By connecting ceramic and embroidered pieces with magnetic sheets, the problem of ceramic handicrafts being unable to present complex patterns and embroidered handicrafts being easily affected by the environment is solved. This achieves a deep integration and artistic expression of ceramics and embroidery, enhancing the personalization and diversification of the handicrafts.

CN223764103UActive Publication Date: 2026-01-06GUIZHOU XIU NIANG CULTURE DEV CO LTD
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Patent Information

Application Number
CN202520627539.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-01-06
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

Traditional ceramic handicrafts struggle to achieve intricate patterns or gradient colors, while embroidered handicrafts are susceptible to environmental humidity and difficult to adhere stably to ceramic surfaces. High-temperature firing can cause embroidery materials to carbonize or deform, and existing bonding processes cannot achieve deep integration, resulting in products that lose their ceramic texture and the expressive power of embroidery art.

Method used

Magnets are used to connect ceramic and embroidered pieces. By setting recessed areas and magnet mounting grooves on the ceramic surface, and using a combination of magnetic and buffer layers, the embroidered pieces can be stably attached to the ceramic surface. The honeycomb skeleton and ceramic substrate design enhance the connection stability and artistic expression.

Benefits of technology

It achieves a deep integration of ceramics and embroidery techniques, maintaining the weighty texture of ceramics and the artistic expression of embroidery. The magnetic connection avoids damage to the embroidery material from high temperatures, and the detachable component design enhances the personalization and diversification of the handicrafts.

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Abstract

The utility model discloses an embroidery handicraft taking ceramic as a basic carrier. The embroidery handicraft comprises a ceramic bottle body, a ceramic bottle cap, a ceramic handle, a ceramic tray and an embroidery piece, the embroidery piece located in the concave area is in magnetic connection with the ceramic bottle body, and the embroidery piece and the protruding lines on the surface of the ceramic bottle body are in a yin-yang carving expression mode. And the ceramic lifting handle and the ceramic tray which are magnetically connected with the ceramic bottle body can be quickly replaced. The ceramic bottle cap is in threaded connection with the ceramic bottle body. According to the utility model, the application limitation of the traditional embroidery technology on the ceramic handicraft is broken through through the magnetic connection technology, meanwhile, the organic unification of the artistic performance and the use functionality of the handicraft is realized through the structural innovation, and the ceramic handicraft has the remarkable advantages of strong process compatibility, rich decorative effects, convenience in maintenance and the like.
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Description

Technical Field

[0001] This utility model relates to a handicraft, and more particularly to an embroidered handicraft using ceramic as a base material. Background Technology

[0002] Traditional ceramic handicrafts are mainly made through processes such as shaping clay, applying glazes, and high-temperature firing. They possess a unique, substantial texture, making them suitable for expressing classical or minimalist artistic themes. However, the artistic characteristics of traditional ceramic crafts are relatively monotonous. The variations in glaze color depend on the glaze material, making it difficult to achieve the fine presentation of complex patterns or gradient colors. Furthermore, the fixed shape and structure of the vessels make it difficult to adjust the artistic features of their details.

[0003] Embroidery, through combinations of different stitches and the matching of silk thread colors, can create artworks with a three-dimensional sense of layering and dynamic visual effects, and is particularly adept at depicting delicate artistic themes. However, embroidery usually uses textiles as a medium, which has problems such as susceptibility to environmental humidity, insufficient durability, and limitations in the form of the medium, making it difficult to meet the requirements of high-end handicrafts for material stability and diverse forms.

[0004] Currently, the combination of ceramics and embroidery faces the following technical challenges: First, the smooth and dense surface of ceramics makes it difficult for conventional embroidery techniques to form a stable adhesion directly on its surface; second, high-temperature firing processes can cause traditional embroidery materials to carbonize or deform, making them unable to withstand the high-temperature environment of over 1200℃ required for ceramic firing; third, existing combination processes are mostly simple surface bonding or low-temperature curing, which cannot achieve a deep integration of the two processes, resulting in products that lose both the substantial texture of ceramics and the artistic expressiveness of embroidery. Utility Model Content

[0005] To address the shortcomings of the aforementioned technologies, this utility model provides an embroidery craft using ceramics as the base material.

[0006] To solve the above technical problems, the technical solution adopted by this utility model is: an embroidered handicraft using ceramic as the base carrier, which includes:

[0007] The ceramic bottle has a recessed area on its surface, and a magnet mounting slot is provided in the center of the recessed area, in which a magnet is installed.

[0008] The embroidered piece has another magnetic piece attached to its back;

[0009] The embroidered piece is fixed to the recessed area of ​​the ceramic bottle by the force of two magnets.

[0010] Furthermore, the magnet sheet includes a magnetic layer and a buffer layer.

[0011] Furthermore, the ceramic bottle body includes a honeycomb skeleton, ceramic fiber cloth, and a ceramic matrix;

[0012] The honeycomb-shaped skeleton is covered with ceramic fiber cloth and ceramic matrix in sequence.

[0013] Furthermore, the bottleneck of the honeycomb skeleton is provided with magnet plate mounting slots on both sides, and the bottom is provided with magnet plate mounting slots distributed in a circle; magnet plates are installed in all the magnet plate mounting slots.

[0014] The ceramic substrate has a groove for mounting a ceramic handle.

[0015] Furthermore, detachable ceramic handles are installed on both sides of the neck of the ceramic bottle, with magnetic strips installed on the handles and a bent section at the bottom of the handles.

[0016] Furthermore, the ceramic handle is connected to the spherical surface of the ceramic substrate by being snapped into the ceramic handle mounting groove through a bent portion;

[0017] The magnetic strip of the ceramic handle attracts the magnetic piece at the bottleneck of the internal honeycomb skeleton, so that the ceramic handle is attached to the bottleneck of the ceramic bottle.

[0018] Furthermore, it also includes a ceramic tray with circumferentially distributed magnet mounting slots; each magnet mounting slot is fitted with a magnet.

[0019] Furthermore, the ceramic tray is connected to the ceramic bottle body by the magnetic force of the magnets at the bottom of the honeycomb skeleton.

[0020] Furthermore, a ceramic bottle cap is connected to the neck of the ceramic bottle body, and the ceramic bottle cap and the ceramic bottle mouth are provided with a matching set of threads; the ceramic bottle cap and the ceramic bottle body are threadedly connected.

[0021] Furthermore, an annular sealing gasket is installed between the ceramic bottle body and the ceramic bottle cap.

[0022] This invention provides an embroidered handicraft using ceramic as the base material. It solves the problem of embroidery failing to adhere stably to ceramic surfaces by connecting the ceramic bottle body and the embroidered piece using magnetic strips. Simultaneously, the embroidered piece is placed in the recessed area of ​​the ceramic bottle body, creating a "yin-yang" artistic expression with the raised texture of the ceramic surface, effectively blending the substantial texture of ceramic with the artistic expressiveness of embroidery. Furthermore, this invention includes a detachable ceramic handle and tray, with each component allowing for quick assembly and replacement via built-in magnets. Attached Figure Description

[0023] Figure 1 This is an exploded view of the overall structure of this utility model.

[0024] Figure 2 This is a schematic diagram of the structure of the ceramic bottle body of this utility model.

[0025] Figure 3 This is a cross-sectional view of the ceramic bottle body of this utility model.

[0026] Figure 4 This is a schematic diagram of the honeycomb skeleton of this utility model.

[0027] Figure 5 This is a bottom view of the honeycomb skeleton of this utility model.

[0028] Figure 6 This is a top view of the ceramic tray of this utility model.

[0029] Figure 7 This is a schematic diagram of the structure of the ceramic handle of this utility model.

[0030] Figure 8 This is a front view of the magnet sheet of this utility model.

[0031] In the image: 1. Ceramic bottle body; 2. Embroidered piece; 3. Ceramic handle; 4. Ceramic bottle cap; 5. Annular sealing gasket; 6. Ceramic tray; 7. Magnetic piece; 11. Honeycomb skeleton; 12. Ceramic substrate; 13. Ceramic fiber cloth; 14. Recessed area; 15. Magnetic piece mounting groove; 16. Ceramic handle mounting groove; 17. Magnetic layer; 18. Buffer layer; 19. Magnetic strip; 20. Bending part. Detailed Implementation

[0032] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0033] This utility model discloses an embroidered handicraft using ceramic as the base material, the overall structure of which is as follows: Figure 1 As shown, it includes: a ceramic bottle body 1, an embroidered piece 2, a ceramic handle 3, a ceramic tray 6, and a ceramic bottle cap 4.

[0034] Among them, such as Figure 2 The ceramic bottle 1 shown serves as the basic carrier of the entire craft. It adopts a double-layer composite structure design, consisting of an inner honeycomb skeleton 11 and an outer ceramic substrate 12. A ceramic fiber cloth 13 is placed between the honeycomb skeleton 11 and the ceramic substrate 12.

[0035] like Figure 4 and Figure 5As shown, the honeycomb skeleton 11 is made of lightweight and high-strength carbon fiber material, and is formed into a regularly arranged circular lattice structure through a precision molding process. This design effectively reduces the overall weight while ensuring structural strength. Secondly, the bottleneck of the honeycomb skeleton 11 has magnetic plate mounting slots 15 on both sides, in which magnetic plates 7 are installed for magnetic connection with the ceramic handle 3; the bottom of the honeycomb skeleton 11 has circumferentially distributed magnetic plate mounting slots 15, in which magnetic plates 7 are installed. Several magnetic plates 7 are arranged with specific magnetic pole faces (e.g., arranged with "SNNSNN" magnetic poles in a clockwise direction) for magnetic connection with the ceramic tray 6.

[0036] Ceramic fiber cloth 13 covers the outside of the honeycomb skeleton 11, and has good thermal insulation properties. It can protect the internal honeycomb skeleton 11 and the magnet pieces 7 during the ceramic firing process. At the same time, ceramic fiber cloth 13 can separate the honeycomb skeleton 11 and the ceramic substrate 12, preventing grout from seeping into the honeycomb skeleton 11 during the grouting process.

[0037] The ceramic substrate 12 is formed by coating the ceramic fiber cloth 13 with ceramic slurry through a slip casting process. Its surface is finely engraved to form recessed areas 14 and raised textures. A magnet mounting groove 15 is provided in the center of the recessed area 14, and a magnet 7 is installed in the groove for magnetic connection with the embroidered piece 2. Furthermore, a ceramic handle mounting groove 16 is provided on the spherical surface of the ceramic substrate 12 for fixing the ceramic handle 3.

[0038] A magnetic piece 7 is laminated to the back of the embroidered piece 2 using a hot-pressing process. The magnetic force of the magnetic piece 7 attracts the embroidered piece 2 into the recessed area 14 of the ceramic bottle body 1. At this point, the depth of the recessed area 14 is slightly greater than the thickness of the embroidered piece 2, with a smooth edge transition. The embroidered piece 2 in the recessed area 14 and the raised texture of the ceramic bottle body 1 create a unique "yin-yang engraving" visual effect. The textures of the two processes complement each other, preserving the rustic texture of the ceramic while highlighting the delicate layers of the embroidery.

[0039] Preferably, the magnet piece 7 is formed by hot-pressing and bonding a magnetic layer 17 and a buffer layer 18 together. The magnetic layer 17 is a neodymium iron boron composite material with excellent magnetic properties. The buffer layer 18 is a rubber magnet piece, which not only prevents the magnet piece 7 from colliding and damaging the ceramic substrate 12 and the embroidered piece 2, but also enhances the magnetic field of the magnetic layer 17. Specifically, the magnet piece 7 contacts the ceramic object surface or the embroidered surface with the magnetic layer 17, preventing collision damage to the ceramic substrate 12 or the embroidered piece 2 caused by the strong magnetic force of the neodymium iron boron material when two magnet pieces are attracted together by magnetic force.

[0040] It should be noted that the ceramic and ceramic fiber cloth of this invention do not obstruct the magnetic force of the magnets, and the magnet sheets are made of neodymium iron boron composite material, which possesses excellent magnetic properties. The thickness of the ceramic matrix is ​​insufficient to affect the attraction between the magnet sheets set on the internal honeycomb skeleton and the magnet sheets on the outside of the matrix.

[0041] like Figure 3 As shown, the bottom of the ceramic handle 3 is provided with a bent portion 20, the curvature of which matches the shape of the ceramic handle mounting groove 16 on the ceramic substrate 12. Furthermore, a magnetic strip 19 is embedded in the ceramic handle 3 along its axial direction, and the magnetic strip 19 has a polarity opposite to that of the magnet piece 7 installed at the bottleneck of the honeycomb skeleton 11.

[0042] The ceramic handle 3, through its bent portion 20, engages with the ceramic handle mounting groove 16 and connects to the spherical surface of the ceramic bottle body 1, achieving initial positioning. Subsequently, the magnetic strip 19 of the ceramic handle 3 and the magnetic piece 7 at the neck of the honeycomb skeleton 11 generate a magnetic force, ensuring a tight fit between the ceramic handle 3 and the ceramic bottle body 1. This structural design not only meets basic functional requirements but also enables the replacement of the ceramic handle component, allowing users to choose different handle shapes according to usage scenarios or aesthetic preferences, thus enhancing the personalization and expansion capabilities of the craft.

[0043] like Figure 6 As shown, the ceramic tray 6 has an installation groove 15 that matches the magnetic pieces at the bottom of the honeycomb-shaped skeleton 11 inside the ceramic bottle 1. A magnetic piece 7 is installed in the groove to match the magnetic pole arrangement of the magnetic piece 7 at the bottom of the honeycomb-shaped skeleton 11 (e.g., arranged clockwise with "NSSNSS" magnetic poles). The two sets of specially arranged magnetic pieces 7 on the ceramic tray 6 and the ceramic bottle 1 allow the ceramic tray 6 and the ceramic bottle 1 to be automatically positioned by magnetic force, thus enabling rapid installation of the ceramic tray 6. Simultaneously, the magnetic force of multiple sets of magnetic pole pieces ensures the connection stability between the ceramic tray 6 and the ceramic bottle 1, reducing the risk of the ceramic bottle 1 accidentally falling off.

[0044] The ceramic bottle cap 4 and the ceramic bottle body 1 are connected by threads and are equipped with an annular sealing gasket 5 to achieve a high airtightness closure, effectively isolating external air and moisture, and preventing the contents of the cavity from getting damp or oxidized.

[0045] In summary, this invention overcomes the limitations of ceramic and embroidery techniques through magnetic connection technology, achieving both physical separation and artistic fusion of the two processes. The embroidered piece is produced independently of the ceramic, avoiding damage to the embroidery material from high temperatures and eliminating the potential harm to the ceramic glaze by replacing traditional adhesives with magnetic connections. Simultaneously, the textured surface of the ceramic substrate complements the lines of the embroidery pattern, presenting an artistic expression of "yin-yang carving," creating a unique three-dimensional visual effect with strong artistic expression. Furthermore, the honeycomb-like skeleton structure of the inner layer of the ceramic bottle not only reduces the overall weight but also enhances the structural strength of the ceramic bottle; the recessed areas and raised textures of the outer ceramic substrate not only protect the embroidered piece but also enhance its artistic expression through changes in light and shadow.

[0046] Secondly, this invention also achieves modular design of functional components through magnetic connection technology, giving the craftsmanship the possibility of changing its form. The ceramic bottle body, embroidered pieces, handles, and tray are all connected by magnetic force, allowing users to assemble and disassemble accessories of different styles to adapt to diverse scenarios.

[0047] The above embodiments are not intended to limit the present utility model, nor is the present utility model limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the technical solution of the present utility model are also within the protection scope of the present utility model.

Claims

1. A ceramic-based embroidery craft, characterized by, The utility model relates to a ceramic bottle body (1) is provided with a recessed area (14) on the surface, a magnetic sheet mounting groove (15) is opened in the central part of the recessed area (14), and a magnetic sheet (7) is mounted in the magnetic sheet mounting groove (15). An embroidery piece (2) is provided with another magnetic sheet (7) on the back surface. The embroidery piece (2) is fixed in the recessed area (14) of the ceramic bottle body (1) by the force of the two magnetic sheets (7). The magnetic sheet (7) comprises a magnetic layer (17) and a buffer layer (18).

2. A ceramic-based support for embroidery according to claim 1, characterized in that: The ceramic bottle body (1) comprises a honeycomb framework (11), a ceramic fiber cloth (13) and a ceramic matrix (12).

3. A ceramic-based support for embroidery according to claim 1, characterized in that: The honeycomb framework (11) is coated with the ceramic fiber cloth (13) and the ceramic matrix (12) in sequence outside. Magnetic sheet mounting grooves (15) are opened on both sides of the neck of the honeycomb framework (11), and a plurality of magnetic sheet mounting grooves (15) are opened in a circumferential distribution at the bottom; the magnetic sheet mounting grooves (15) are all mounted with magnetic sheets (7).

4. A ceramic-based support for embroidery according to claim 3, characterized in that: The ceramic matrix (12) is provided with a ceramic handle mounting groove (16). A detachable ceramic handle (3) is mounted on both sides of the neck of the ceramic bottle body (1), a magnetic strip (19) is mounted on the ceramic handle (3), and a bending part (20) is arranged at the bottom of the ceramic handle (3).

5. A ceramic-based support for embroidery according to claim 4, characterized in that: The ceramic handle (3) is buckled into the ceramic handle mounting groove (16) through the bending part (20) and is connected with the spherical surface of the ceramic matrix (12); 6. A ceramic-based support for embroidery according to claim 5, characterized in that: The magnetic strip (19) of the ceramic handle (3) is attracted to the magnetic sheet (7) at the neck of the internal honeycomb framework (11), so that the ceramic handle (3) is adsorbed at the neck of the ceramic bottle body (1). A detachable ceramic tray (6) is mounted at the bottom of the ceramic bottle body (1), the ceramic tray (6) is provided with a plurality of magnetic sheet mounting grooves (15) in a circumferential distribution; the magnetic sheet mounting grooves (15) are all mounted with magnetic sheets (7).

7. A ceramic-based support for embroidery according to claim 4, characterized in that: The ceramic tray (6) is connected with the ceramic bottle body (1) through the magnetic force of the magnetic sheets (7) at the bottom of the honeycomb framework (11).

8. A ceramic-based support for embroidery according to claim 7, characterized in that: A ceramic bottle cap (4) is connected at the neck of the ceramic bottle body (1), a set of matching threads are arranged between the ceramic bottle cap (4) and the ceramic bottle mouth; the ceramic bottle cap (4) is threadedly connected with the ceramic bottle body (1).

9. A ceramic-based support for embroidery according to claim 1, characterized in that: A ring-shaped sealing gasket (5) is mounted between the ceramic bottle body (1) and the ceramic bottle cap (4).

10. A ceramic-based support for embroidery according to claim 9, characterized in that: ​