A three-dimensional decorative embroidery of multi-material composite

CN224754708UActive Publication Date: 2026-09-15DONGGUAN YALI EMBROIDERY DESIGN CO LTD
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Patent Information

Application Number
CN202521973140.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-09-15
Estimated Expiration
2035-09-12

AI Technical Summary

Technical Problem

[0005]为了弥补以上不足,本实用新型提供了一种多材料复合的立体装饰绣,旨在改善现有技术中立体装饰绣花瓣多为单一材料或简单堆叠、缺乏自然肌理与层次的问题

Benefits of technology

[0026] 1. In this utility model, by layering and fixing the base layer, middle layer and edge layer of the petal structure, the three layers are brought together to form an integral petal structure with gradient three-dimensionality and tactile gradation, thereby achieving an effect that is closer to the shape and texture of natural petals. This solves the problem that existing three-dimensional decorative embroidered petals are mostly made of a single material or simply stacked, lacking natural texture and layers. The above structure improves the biomimetic realism of the petal part.

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Abstract

The utility model relates to the technical field of three -dimensional decorative embroidery, disclose a kind of three -dimensional decorative embroidery of multi -material composite, including ground cloth, for carrying each decorative embroidery component, provide basic support surface for overall structure, sphere, set in the top of ground cloth, as the core area component of flower decoration, for with other components are connected, petal structure, with sphere adjacent suture connection, around sphere annular distribution, for constitute the petal part of flower, flower stem structure, with petal structure suture connection, for connecting and supporting petal structure, leaf structure, with flower stem structure suture connection, for enriching the plant morphological performance of overall decorative embroidery. In the utility model, through the layered superposition and the fixing of overlock of base layer one, middle layer, edge layer, drive three form overall and have gradient three -dimensional and touch gradually change petal structure, to reach more close to natural petal form and the effect of texture, improve the bionic reality of petal part by above-mentioned structure.
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Description

Technical Field

[0001] This utility model relates to the field of three-dimensional decorative embroidery technology, and in particular to a three-dimensional decorative embroidery using multi-material composite materials. Background Technology

[0002] Three-dimensional decorative embroidery, as a craft form that combines artistic beauty and decoration, is widely used in clothing, home decoration and other fields. Three-dimensional decorative embroidery is a design exploration to meet people's demand for more realistic and layered floral decorative embroidery.

[0003] In existing three-dimensional decorative embroidery techniques, the production of flower petals often involves using a single type of fabric, which is simply cut, stacked, and then sewn together. Alternatively, only two materials are used in combination without obvious layering, relying on manual shaping of a single material to create a three-dimensional effect. For example, the petal shape is cut directly from silk fabric of the same thickness, and the three-dimensional shape of the petals is simulated by folding the edges of the fabric.

[0004] However, this approach has obvious shortcomings. Existing three-dimensional decorative embroidery petals are mostly made of a single material or simply stacked, lacking the textural variations and three-dimensional layers from the base to the edge that natural petals have. It is difficult to accurately present the shape and texture of natural petals, which are thick at the base, soft in the middle, and light at the edges. This results in a low biomimicry realism of the embroidery and fails to meet people's aesthetic and usage needs for high-quality three-dimensional decorative embroidery. Therefore, a multi-material composite three-dimensional decorative embroidery is proposed to solve the above problems. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides a multi-material composite three-dimensional decorative embroidery, which aims to improve the problem that the petals of existing three-dimensional decorative embroidery are mostly made of a single material or simply stacked, lacking natural texture and layers.

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

[0007] A three-dimensional decorative embroidery made of multiple materials, comprising:

[0008] The base fabric is used to support the various decorative embroidery components and provides a basic support surface for the overall structure.

[0009] The sphere, positioned above the base fabric, serves as the core component of the floral decoration and is used to connect with other components;

[0010] The petal structure, which is sewn together adjacent to the sphere, is distributed in a ring around the sphere and is used to form the petals of the flower;

[0011] The flower stem structure is stitched together with the petal structure to connect and support the petal structure.

[0012] The leaf structure is stitched together with the flower stem structure to enrich the overall decorative embroidery's representation of plant forms.

[0013] As a further description of the above technical solution:

[0014] The petal structure includes a base layer, a locking edge, a middle layer, and an edge layer. The base layer is disposed on the upper surface of the base fabric, the middle layer is disposed above the base layer, the edge layer is disposed on the side wall of the middle layer, and the locking edge is disposed on the upper surface of the base fabric. The locking edge is used to fix the edges of the base layer, the middle layer, and the edge layer, so that the three form an integral petal structure.

[0015] As a further description of the above technical solution:

[0016] The base layer is used to ensure the stability of the basic shape of the petal structure and prevent the petals from deforming due to external forces. The middle layer is used to increase the three-dimensionality of the petals and the texture of the middle part, while providing a mounting base for the edge layer. The edge layer is used to cover the edge of the middle layer and form the outer edge of the petal.

[0017] As a further description of the above technical solution:

[0018] The sphere has a circular structure and serves as the central part of the flower decoration. It works in conjunction with the petal structure to present the central shape of the flower and provides a central positioning for the petal structure.

[0019] As a further description of the above technical solution:

[0020] The flower stem structure includes a silicone tube, protrusions, and copper wires. The silicone tube is sleeved on the side wall of the copper wires. The silicone tube is used to simulate the external shape of the flower stem, increasing the soft touch and realistic appearance of the flower stem. The copper wire is used to provide rigid support for the flower stem structure, enabling the flower stem to maintain a specific shape. The protrusions are set on the outer wall of the silicone tube to simulate the segmented morphological features on the flower stem.

[0021] As a further description of the above technical solution:

[0022] The leaf structure includes a second base layer, which is disposed on the side wall of the silicone tube and is used to form the basic shape of the leaf. When combined with the flower stem structure, it presents a shape in which the leaf and flower stem are connected.

[0023] As a further description of the above technical solution:

[0024] The second base layer is elliptical in shape, with a narrower end connected to the silicone tube and a wider end away from the silicone tube, used to simulate the natural shape of a leaf.

[0025] This utility model has the following beneficial effects:

[0026] 1. In this utility model, by layering and fixing the base layer, middle layer and edge layer of the petal structure, the three layers are brought together to form an integral petal structure with gradient three-dimensionality and tactile gradation, thereby achieving an effect that is closer to the shape and texture of natural petals. This solves the problem that existing three-dimensional decorative embroidered petals are mostly made of a single material or simply stacked, lacking natural texture and layers. The above structure improves the biomimetic realism of the petal part.

[0027] 2. In this utility model, the combination of copper wire providing rigid support in the flower stem structure and silicone tube simulating the external shape with protrusions simulating segment-like features enables the flower stem to maintain a specific shape while possessing a soft touch and biomimetic appearance, thereby enhancing the biomimetic effect of the flower stem. This solves the problem that existing three-dimensional decorative embroidered flower stems are mostly made of single hard or soft materials, with stiff shapes or lack of detail. The above structure improves the simulation expressiveness of the flower stem part. Attached Figure Description

[0028] Figure 1 This is a three-dimensional schematic diagram of a multi-material composite three-dimensional decorative embroidery proposed in this utility model;

[0029] Figure 2 This is a schematic diagram of the structure of the base layer of a multi-material composite three-dimensional decorative embroidery proposed in this utility model;

[0030] Figure 3 This is a schematic diagram of the structure of the second base layer of a multi-material composite three-dimensional decorative embroidery proposed in this utility model;

[0031] Figure 4 This is a schematic diagram of the structure of a silicone tube for a multi-material composite three-dimensional decorative embroidery proposed in this utility model.

[0032] Legend:

[0033] 1. Base fabric; 2. Sphere; 3. Base layer one; 4. Seam lock; 5. Middle layer; 6. Edge layer; 7. Silicone tube; 8. Base layer two; 9. Protrusion; 10. Copper wire. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0035] Reference Figures 1-3This utility model provides an embodiment of a multi-material composite three-dimensional decorative embroidery, comprising: a base fabric 1, made of cotton fabric, a common material used for supporting decorative embroidery, serving to support various decorative embroidery components and providing a basic support surface for the overall structure; a sphere 2, made of elastic polyester fiber filled sphere, positioned above the base fabric 1, serving as the core area component of the flower decoration, used to connect with the petal structure; a petal structure, sewn adjacent to the sphere 2, distributed in a ring around the sphere 2, used to form the petal part of the flower; a flower stem structure, sewn to the petal structure, used to connect and support the petal structure; and a leaf structure, sewn to the flower stem structure, used to enrich the overall plant morphological expression of the decorative embroidery.

[0036] The petal structure includes a base layer 3, a edging 4, a middle layer 5, and an edge layer 6. The base layer 3 is made of 2mm thick canvas and is placed on the upper surface of the base fabric 1 to ensure the basic stability of the petal structure and prevent the petals from deforming due to external forces. The middle layer 5 is made of 1mm thick silk fabric and is placed above the base layer 3 to increase the three-dimensionality of the petals and the texture of the middle part, while also providing a base for the edge layer 6. The edge layer 6 is made of tulle and is placed on the side wall of the middle layer 5 to create a light visual effect at the edge of the petals. The edge layer 6 covers the edge of the middle layer 5, forming the outer edge of the petals. The edging 4 is made of polyester edge thread and is placed on the upper surface of the base fabric 1 to fix the edges of the base layer 3, the middle layer 5, and the edge layer 6, so that the three form a whole petal structure. The base layer 3, the middle layer 5, and the edge layer 6 work together to create a gradient three-dimensional effect and a gradual change in tactile feel from the base to the edge of the petals, which is closer to the shape and texture of natural petals.

[0037] Sphere 2 is a circular structure with a diameter of 1.5cm. As the central part of the flower decoration, it works in conjunction with the petal structure to present the central shape of the flower, while also providing a central positioning for the petal structure.

[0038] The flower stem structure includes a silicone tube 7, a protrusion 9, and a copper wire 10. The silicone tube 7 is made of transparent medical-grade silicone and is fitted onto the side wall of the copper wire 10 to simulate the external shape of the flower stem, increasing its soft touch and realistic appearance. The copper wire 10 is made of 0.8mm diameter brass wire to provide rigid support for the flower stem structure, allowing it to maintain a specific shape. The protrusion 9 is made of silicone and is integrally molded on the outer wall of the silicone tube 7 to simulate the segmented morphological features on the flower stem. The silicone tube 7 and the copper wire 10 work together, with the copper wire 10 providing rigid support and the silicone tube 7 simulating the external shape, achieving the effect of allowing the flower stem to maintain a specific shape while possessing a soft touch and a biomimetic appearance. Green cotton rope is used on the outside of the silicone tube 7 to simulate the velvety texture of the flower stem. Spiral wrapping embroidery is applied to the outside of the silicone tube 7, with 8 turns per centimeter. Green silk thread is used to embroider and wrap the outside of the protrusion 9 to enhance the biomimetic effect of the flower stem.

[0039] The leaf structure includes a second base layer 8, which is made of the same canvas material as the first base layer 3 and is set on the side wall of the silicone tube 7 to form the basic shape of the leaf. It works in conjunction with the flower stem structure to present the shape of the leaf connected to the flower stem. The second base layer 8 is an oval shape with a length of 3cm and a width of 1.5cm. The end connected to the silicone tube 7 is narrower and the end away from the silicone tube 7 is wider to simulate the natural shape of the leaf.

[0040] Working principle: In this decorative embroidery, the base fabric 1 serves as the basic support surface, supporting all decorative embroidery components such as the sphere 2, petal structure, flower stem structure, and leaf structure, providing a stable support foundation for the whole;

[0041] Sphere 2 is positioned above the base fabric 1, serving as the core component of the flower decoration. It works in conjunction with the petal structure to form the central part of the flower's shape. The petal structure is distributed in a ring around sphere 2 and is sewn together adjacent to sphere 2. The base layer 3 provides underlying support for the petals, ensuring the stability of the petal structure's basic form. The middle layer 5 overlaps on the base layer 3, increasing the three-dimensionality of the petals and the texture of the middle section. The edge layer 6 overlaps on the middle layer 5, creating a light and airy visual effect at the petal edges. The edging 4 secures the edges of the base layer 3, middle layer 5, and edge layer 6, forming a unified petal structure that collectively constitutes the flower's petal portion.

[0042] The stem structure is stitched together with the petal structure, serving to connect and support the petal structure. The copper wire 10 in the stem structure provides rigid support for the stem, allowing it to maintain a specific shape. The silicone tube 7 is fitted over the copper wire 10 to simulate the external shape of the stem, increasing its soft touch and realistic appearance. The protrusions 9 on the outer wall of the silicone tube 7 simulate the segmented features on the stem. Green cotton rope is used on the outside of the silicone tube 7 to simulate the velvety texture of the stem. Spiral embroidery is applied to the outside of the silicone tube 7, with 8 turns per centimeter. Green silk thread is used to embroider and wrap the outside of the protrusions 9, enhancing the biomimetic effect of the stem.

[0043] The leaf structure is sewn together with the flower stem structure. The base layer 2 8 is made of the same fabric as the base layer 1 3 and is stacked on the side of the flower stem structure to form the basic shape of the leaf. The base layer 2 8 is elliptical, with a narrower end connected to the silicone tube 7 and a wider end away from the silicone tube 7, which simulates the natural shape of the leaf and enriches the overall plant form expression of the decorative embroidery.

Claims

1. A three-dimensional decorative embroidery made of multiple materials, characterized in that, include: The base fabric (1) is used to support the various decorative embroidery components and provide a basic support surface for the overall structure; The sphere (2) is set above the base fabric (1) and serves as the core component of the flower decoration, used to connect with other components; The petal structure is sewn together adjacent to the sphere (2) and distributed in a ring around the sphere (2) to form the petal part of the flower; The flower stem structure is stitched together with the petal structure to connect and support the petal structure. The leaf structure is sewn together with the flower stem structure to enrich the overall plant morphological expression of the decorative embroidery; The petal structure includes a base layer (3), a locking edge (4), a middle layer (5), and an edge layer (6). The base layer (3) is disposed on the upper surface of the base fabric (1), the middle layer (5) is disposed above the base layer (3), the edge layer (6) is disposed on the side wall of the middle layer (5), and the locking edge (4) is disposed on the upper surface of the base fabric (1). The locking edge (4) is used to fix the edges of the base layer (3), the middle layer (5), and the edge layer (6) so that the three form an integral petal structure.

2. The three-dimensional decorative embroidery made of multiple materials according to claim 1, characterized in that: The base layer (3) is used to ensure the stability of the basic shape of the petal structure and prevent the petals from deforming due to external forces. The middle layer (5) is used to increase the three-dimensionality of the petals and the texture of the middle part, while providing an installation base for the edge layer (6). The edge layer (6) is used to cover the edge of the middle layer (5) and form the outer edge of the petal.

3. The three-dimensional decorative embroidery made of multiple materials according to claim 1, characterized in that: The sphere (2) is a circular structure. As the central part of the flower decoration, it works with the petal structure to present the central shape of the flower, while providing the central positioning for the petal structure.

4. The three-dimensional decorative embroidery made of multiple materials according to claim 1, characterized in that: The flower stem structure includes a silicone tube (7), a protrusion (9), and a copper wire (10). The silicone tube (7) is sleeved on the side wall of the copper wire (10). The silicone tube (7) is used to simulate the external shape of the flower stem, increase the soft touch and appearance simulation of the flower stem. The copper wire (10) is used to provide rigid support for the flower stem structure, so that the flower stem can maintain a specific shape. The protrusion (9) is set on the outer wall of the silicone tube (7) to simulate the segmental morphological features on the flower stem.

5. The three-dimensional decorative embroidery made of multiple materials according to claim 4, characterized in that: The leaf structure includes a second base layer (8), which is disposed on the side wall of the silicone tube (7) to form the basic shape of the leaf and, together with the flower stem structure, presents a shape in which the leaf and flower stem are connected.

6. The three-dimensional decorative embroidery made of multiple materials according to claim 5, characterized in that: The second base layer (8) is elliptical in shape, with a narrower end connected to the silicone tube (7) and a wider end away from the silicone tube (7), which is used to simulate the natural shape of a leaf.