Metal wire embroidery method

By embroidering the metal bottom wire and metal arch wire on the fabric to form a second preset flower shape, the problem of insufficient three-dimensional and aesthetics of the metal wire flower shape is solved, and the three-dimensional and aesthetics of the metal wire flower shape in the dense flower shape is achieved.

CN120273116APending Publication Date: 2025-07-08ZHEJIANG MAYA MECHANICAL & ELECTRICAL TECH CO LTD
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Patent Information

Application Number
CN202510420998.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The three-dimensional and beautiful feeling of the flower shape formed by wire tiling on the fabric is poor, especially in dense areas of flower shape, which cannot highlight its three-dimensional and beautiful feeling.

Method used

By embroidering the metal bottom wire and the metal arch wire on the fabric, the metal arch wire spans the metal bottom wire to form a second preset flower shape, the middle position of the metal arch wire is highly protruded, enhancing the three-dimensional sense, and the support of the metal arch wire makes the second preset flower shape and the surrounding flower shape have a height difference.

Benefits of technology

It enhances the three-dimensional and aesthetic sense of the wire flower shape, especially in the dense areas of the flower shape, highlighting the height of the wire flower shape, making it have a significant height difference from other flower shapes, and enhancing the beauty and three-dimensional sense of the overall pattern.

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Abstract

The invention discloses a metal wire embroidering method, which is characterized in that metal arch wires are arranged across metal bottom wires, a plurality of metal arch wires form a second preset pattern, and the second preset pattern formed by the metal arch wires covers the metal bottom wires, so that the metal bottom wires are prevented from influencing the presentation effect of the second preset pattern. The second preset pattern is supported based on the metal bottom wire below, so that the height of the middle position of the metal arch wire protrudes, that is, the height of the middle position of the metal arch wire is the sum of the diameter of the metal arch wire and the diameter of the metal bottom wire, the whole second preset pattern can be highlighted, and the stereoscopic impression of the second preset pattern is enhanced. Especially for a pattern dense area, the height of the second preset pattern is higher than the heights of the bead pattern, the sequin pattern and the bead pattern around, so that the height difference exists between the second preset pattern and the bead pattern, the sequin pattern and the bead pattern, and the metal wire pattern is highlighted.
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Description

Technical Field

[0001] The present invention generally relates to the technical field of computer embroidery machines, and particularly relates to a method for embroidering with metal wires. Background Art

[0002] A metal wire embroidery device is used for automatically embroidering metal wires. The metal wire embroidery device cuts the raw material into metal wires of a preset length, and then the surface thread passes through the center of the metal wire and spreads the metal wire on the fabric.

[0003] In practical applications, considering that the metal wire is spread on the fabric, the flower shape formed by the metal wire is slightly monotonous and has poor three-dimensional sense. Especially in the area where the flower shapes are dense, for example, the dense flower shape area includes flower shapes formed by tube beads, gold flakes, and metal wires. Each flower shape is relatively compact and dense, and the flower shape formed by the spread metal wire is slightly monotonous and cannot prominently display its three-dimensional sense and beauty. Summary of the Invention

[0004] The present invention provides a method for embroidering with metal wires, including: Obtaining a first preset flower shape in the pattern according to the pattern plate, and generating a reference line based on the first preset flower shape; Embroidery metal bottom wires on the fabric based on the reference line; Embroidery metal arch wires on the fabric based on the first preset flower shape. The metal arch wires straddle the metal bottom wires, and several metal arch wires form a second preset flower shape, and the second preset flower shape covers the metal bottom wires.

[0005] As an implementable manner, the projections of the metal bottom wires and the metal arch wires are on the same horizontal plane, and the projection of the metal bottom wire is perpendicular to the projection of the metal arch wire or at a preset angle.

[0006] As an implementable manner, the distance between adjacent metal bottom wires is d, and d ≤ D, where D is the diameter of the metal arch wire.

[0007] As an implementable manner, the length of the metal bottom wire is between 2 mm and 14 mm.

[0008] As an implementable manner, the metal arch wire straddles the metal bottom wire in an arched shape, and the middle part of the metal arch wire is arranged corresponding to the upper and lower parts of the metal bottom wire.

[0009] As an implementable manner, the metal arch wire includes a first end and a second end, and the first end and the second end are locked on the fabric by the surface thread.

[0010] As an implementable manner, the metal bottom wire supports the middle part of the metal arch wire.

[0011] As an implementable mode, the length of the metal arch wire ranges from 5 mm to 14 mm.

[0012] As an implementable mode, the diameter of the metal arch wire is equal to the diameter of the metal bottom wire.

[0013] In the above solution, in the present application, the metal arch wire straddles the metal bottom wire, and a plurality of metal arch wires form a second preset flower shape. The second preset flower shape formed by the metal arch wires covers the metal bottom wire, avoiding the influence of the metal bottom wire on the presentation effect of the second preset flower shape. The second preset flower shape is supported by the metal bottom wire below, making the height of the middle position of the metal arch wire prominent, that is, the height of the middle position of the metal arch wire is the sum of the diameter of the metal arch wire and the diameter of the metal bottom wire. In this way, the entire second preset flower shape can be highlighted, thereby enhancing the three-dimensional sense of the second preset flower shape. Especially for the area where the flower shapes are dense, the height of the second preset flower shape is higher than the heights of the surrounding tube bead flower shapes, gold sheet flower shapes, and bead flower shapes, resulting in a height difference between the second preset flower shape and the tube bead flower shapes, gold sheet flower shapes, and bead flower shapes, so as to highlight the metal wire flower shape. Description of the Drawings

[0014] By reading the detailed description of the non-limiting embodiments with reference to the following drawings, other features, purposes, and advantages of the present application will become more obvious: Figure 1 Schematic diagram of a flower board provided by an embodiment of the present invention; Figure 2 Schematic diagram of the flower shape formed by a plurality of metal arch wires provided by an embodiment of the present invention Figure 1 ; Figure 3 is Figure 2 partial enlarged schematic diagram; Figure 4 Schematic diagram of the arrangement of the metal bottom wire provided by an embodiment of the present invention; Figure 5 Schematic diagram of the arrangement of the metal bottom wire and the metal arch wire provided by an embodiment of the present invention; Figure 6 Another schematic diagram of the metal wire flower shape provided by an embodiment of the present invention; Figure 7 Schematic diagram of the flower shape formed by a plurality of metal arch wires provided by an embodiment of the present invention Figure 2 ; Figure 8 Another schematic diagram of the metal wire flower shape provided by an embodiment of the present invention; Figure 9 Schematic diagram of the flower shape formed by a plurality of metal arch wires provided by an embodiment of the present invention Figure 3 ; Metal wire flower shape 10, metal bottom wire 11, metal arch wire 12, reference line 13; Bead tube flower shape 20, gold flake flower shape 30, bead flower shape 40. Detailed implementation mode

[0015] The present application will be further described in detail below in conjunction with the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the related invention, rather than limiting the invention. Additionally, it should be noted that for the convenience of description, only the parts related to the invention are shown in the drawings.

[0016] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present application will be described in detail below with reference to the drawings and embodiments.

[0017] The metal wire is also called spring wire and Indian wire. It is a copper-based spring-shaped material made through electroplating, and its diameter can reach 0.02 mm. It is corrosion-resistant and has strong reflectivity. Compared with ordinary embroidery threads, it is more colorful and eye-catching. Due to its spring-shaped characteristics, it can bend and stretch, making it easier to express the texture and contour of an object. From a distance, the reflective metal wire looks like a bead tube, with delicate patterns, rich metallic luster and texture, which can well decorate clothing and enhance the aura. The metal wire embroidery device is used for automatically embroidering metal wires. The metal wire embroidery device cuts the raw material into metal wires of a preset length, then the face thread passes through the center of the metal wire, and the metal wire is laid flat on the fabric.

[0018] In practical applications, considering that the metal wire is laid flat on the fabric, the flower shape formed by the metal wire is slightly monotonous and has poor three-dimensional sense. Especially in the area where the flower shapes are dense, for example, the area where the flower shapes are dense includes the flower shape formed by bead tubes, the flower shape formed by gold flakes, and the flower shape formed by metal wires. Each flower shape is relatively compact and dense, and the flower shape formed by the laid flat metal wire is slightly monotonous and cannot prominently display its three-dimensional sense and beauty.

[0019] Based on this, the present application proposes a metal wire embroidery method. This metal wire embroidery method can make the contour edge of the flower shape formed by the metal wire more three-dimensional and closer to the original pattern, avoiding the monotony of the flower shape. Especially for the area where the flower shapes are dense, it highlights the flower shape formed by the metal wire, and the height of the flower shape formed by the metal wire is higher than other surrounding flower shapes (for example, the flower shape formed by bead tubes, the flower shape formed by gold flakes, the flower shape formed by beads), so as to increase the beauty and three-dimensional sense of the entire pattern.

[0020] The following is at least in conjunction with the accompanying drawings Figures 1-9 , to describe the metal wire embroidery method: S1. Obtain a first preset flower shape according to the flower plate, and generate a reference line 1313 based on the first preset flower shape; As Figure 1 shown, Figure 1Shows a pattern plate of a computer embroidery machine. The pattern plate includes a wire flower shape 10, a tube bead flower shape 20, a gold flake flower shape 30, and a bead flower shape 40. The wire flower shape 10, the tube bead flower shape 20, the gold flake flower shape 30, and the bead flower shape 40 are relatively compact, and each flower shape is densely arranged. Of course, it can be understood that the pattern plate may but is not limited to including the wire flower shape 10, the tube bead flower shape 20, the gold flake flower shape 30, and the bead flower shape 40, and may also include a ribbon flower shape, a rope flower shape, etc. This embodiment does not limit this.

[0021] Obtain a first preset flower shape according to the pattern plate. The first preset flower shape is a flower shape formed by a wire, that is, the wire flower shape 10. In the plate-making software, a reference line 13 is generated based on the first preset flower shape.

[0022] As Figure 2 Shown, the wire flower shape 10 is a parallelogram. The short side of the parallelogram can be the length of the wire. Based on the parallelogram, a reference line 13 is generated. The reference line 13 is the center line of the parallelogram, and the extending direction of this center line is parallel to the extending direction of the long side of the parallelogram; the length of the reference line 13 is equal to the length of the long side of the parallelogram.

[0023] Of course, it can be understood that the wire flower shape 10 can be but is not limited to a parallelogram. For example, as Figure 6 Shown, the wire flower shape 10 can be an annular shape. The radial dimension of the annular shape can be the length of the wire. Based on the annular shape, a reference line 13 is generated. The reference line 13 is the middle circle of the annular shape, that is, the circle in the middle of the two circles in the ring. Or, for example, as Figure 8 Shown, the wire flower shape 10 can be an S shape. The width dimension of the S shape is equal to the length of the wire. Based on the S shape, a reference line 13 is generated. The reference line 13 is the middle curve of the S shape, that is, the curve in the middle of the two curves in the S shape. The extending direction of the middle curve is parallel to the extending direction of the curve of the S shape. For example, the wire flower shape 10 can be a rectangle, a square, a sector, etc. This embodiment does not list them one by one. The extending direction of the reference line 13 corresponding to the wire flower shape 10 is parallel to the extending direction of the contour line length of the shape corresponding to the wire flower shape 10, and the contour line length is not equal to the length of the wire.

[0024] S2. Embroider a metal base wire 11 on the fabric based on the reference line 13; The control system of the computer embroidery machine receives the pattern plate. The control system of the computer embroidery machine sends corresponding feedback information to the wire embroidery device based on the reference line 13 of the pattern plate, and the wire embroidery device embroiders the metal base wire 11 on the fabric.

[0025] As Figure 2As shown, the wire flower shape 10 is a parallelogram. Based on the parallelogram, a reference line 13 is generated, and the length of the reference line 13 is equal to the length of the long side of the parallelogram. Based on the reference line 13, a number of equally spaced wire bases 11 are embroidered on the fabric.

[0026] As Figure 6 shown, the wire flower shape 10 is an annular shape. Based on the annular shape, a reference line 13 is generated. The reference line 13 is the middle circle of the annular shape, that is, the circle between the two circles in the ring. Based on the reference line 13, a number of wire bases 11 are embroidered on the fabric, and a number of wires are arranged in an angular annular array.

[0027] As Figure 8 shown, the wire flower shape 10 can be an S shape. Based on the S shape, a reference line 13 is generated. The reference line 13 is the middle curve of the S shape, that is, the curve between the two curves in the S shape. Based on the reference line 13, a number of wire bases 11 are embroidered on the fabric, and a number of wires are arranged at equal distances.

[0028] S3. Embroider wire arches 12 on the fabric. The wire arches 12 straddle the wire bases 11, and a number of wire arches 12 form a second preset flower shape, and the second preset flower shape covers the wire bases 11.

[0029] The control system of the computer embroidery machine receives the pattern plate. The control system of the computer embroidery machine sends corresponding feedback information to the wire embroidery device based on the wire flower shape 10 of the pattern plate, and the wire embroidery device embroiders wire arches 12 on the fabric.

[0030] As Figure 2 、 Figure 3 and Figure 5 shown, the wire flower shape 10 is a parallelogram. Based on the parallelogram, a number of wire arches 12 are embroidered on the fabric. The wire arches 12 straddle the wire bases 11. The wire arches 12 are arched, and the wire arches 12 are located above the wire bases 11. The middle area of the length of the wire arches 12 is arranged corresponding to the upper and lower positions of the wire bases 11, so that the wire bases 11 support the middle part of the wire arches 12. A number of wire arches 12 form a second preset flower shape, that is, a parallelogram. The second preset flower shape is on the fabric, and the second preset flower shape is embroidered by the wire embroidery device according to the first preset flower shape in the pattern plate, so the second preset flower shape is the same as the first preset flower shape.

[0031] The second preset flower shape formed by the metal arch wires 12 covers the metal bottom wire 11, preventing the metal bottom wire 11 from affecting the presentation effect of the second preset flower shape. The second preset flower shape is supported by the metal bottom wire 11 below, making the height of the middle position of the metal arch wires 12 prominent, that is, the height of the middle position of the metal arch wires 12 is the sum of the diameter of the metal arch wires 12 and the diameter of the metal bottom wire 11. This can highlight the entire second preset flower shape, thereby enhancing the three-dimensional sense of the second preset flower shape. Especially for the area where the flower shapes are dense, the height of the second preset flower shape is higher than the heights of the surrounding tube bead flower shapes 20, gold sheet flower shapes 30, and bead flower shapes 40, creating a height difference between the second preset flower shape and the tube bead flower shapes 20, gold sheet flower shapes 30, and bead flower shapes 40 to highlight the metal wire flower shape 10.

[0032] As Figure 2 and Figure 3 shown, the metal bottom wire 11 and the metal arch wires 12 are projected on the same horizontal plane, and the projection of the metal bottom wire 11 and the projection of the metal arch wires 12 form a preset angle, and each angle is a.

[0033] Among them, the metal arch wires 12 have a first end and a second end arranged oppositely. The first end is locked to the fabric by the surface thread, and the second end is locked to the fabric by the surface thread. This helps the metal bottom wire 11 stably support the middle part of the metal arch wires 12.

[0034] As Figure 6 shown, the metal wire flower shape 10 is a circular ring. Based on the circular ring, several metal arch wires 12 are embroidered on the fabric, and the metal arch wires 12 straddle the metal bottom wire 11. The metal arch wires 12 are arched, the metal arch wires 12 are located above the metal bottom wire 11, and the middle area of the length of the metal arch wires 12 is arranged corresponding to the metal bottom wire 11 up and down. In this way, the metal bottom wire 11 supports the middle part of the metal arch wires 12. Several metal arch wires 12 form the second preset flower shape, which is a circular ring.

[0035] The metal bottom wire 11 and the metal arch wires 12 are projected on the same horizontal plane. The projection of the metal bottom wire 11 is perpendicular to the projection of some of the metal arch wires 12, and the projection of the metal bottom wire 11 and the projection of some of the metal arch wires 12 form a preset angle.

[0036] As Figure 8 shown, the metal wire flower shape 10 can be an S shape. Based on the S shape, several metal arch wires 12 are embroidered on the fabric, and the metal arch wires 12 straddle the metal bottom wire 11. The metal arch wires 12 are arched, the metal arch wires 12 are located above the metal bottom wire 11, and the middle area of the length of the metal arch wires 12 is arranged corresponding to the metal bottom wire 11 up and down. In this way, the metal bottom wire 11 supports the middle part of the metal arch wires 12. Several metal arch wires 12 form the second preset flower shape, which is an S shape.

[0037] The metal bottom wires 11 and the metal arch wires 12 are projected on the same horizontal plane, and the projection of the metal bottom wires 11 and the projection of the metal arch wires 12 form a preset angle, and each angle is different.

[0038] As an implementable manner, such as Figure 4 shown, the distance between adjacent metal bottom wires 11 is d, and d ≤ D, where D is the diameter of the metal arch wire 12. Such a setting enables the flower shape formed by the metal arch wire 12 to better cover the underlying metal bottom wires 11 and avoids the metal bottom wires 11 from affecting the presentation effect of the flower shape formed by the metal arch wire 12. As an implementable manner, the length of the metal bottom wire 11 ranges from 2 mm to 14 mm.

[0039] In practical applications, considering that the metal bottom wire 11 only serves to support the metal arch wire 12 and the flower shape formed by the metal arch wire 12 covers the metal bottom wire 11, longer metal bottom wires 11 are preferably selected. This can reduce the number of metal bottom wires 11, thereby shortening the time for embroidering the metal bottom wires 11 and improving the overall embroidery efficiency of the metal wire flower shape.

[0040] As an implementable manner, the length of the metal arch wire 12 ranges from 5 mm to 14 mm.

[0041] In practical applications, those skilled in the art can select an appropriate length of the metal arch wire 12 according to the actual situation. For example, when the pattern formed by the metal arch wire 12 is annular, a metal arch wire 12 with a shorter length can be preferably selected.

[0042] As an implementable manner, the diameter of the metal arch wire 12 is the same as the diameter of the metal bottom wire 11. In this way, the metal wire embroidery device can embroider the metal arch wire 12 and the metal bottom wire 11 without replacing raw materials of different diameters, and the metal wire embroidery efficiency is high.

[0043] It should be understood that if terms such as "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are involved above, the orientation or positional relationship indicated is based on the orientation or positional relationship shown in the drawings. This is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation to the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "plurality" is two or more.

[0044] The above description is only a preferred embodiment of the present application and an explanation of the technical principles applied. Those skilled in the art should understand that the scope of the invention involved in the present application is not limited to the technical solutions formed by the specific combination of the above technical features, but should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the inventive concept. For example, the technical solutions formed by mutually replacing the above features with the technical features (but not limited to) disclosed in the present application that have similar functions.

Claims

1. A method for wire embroidery, characterized in that, Including: Obtain the first preset flower shape in the pattern according to the pattern plate, and generate a reference line (13) based on the first preset flower shape; Embroider a metal bottom wire (11) on the fabric based on the reference line (13); Embroider a metal arch wire (12) on the fabric based on the first preset flower shape. The metal arch wire (12) straddles the metal bottom wire (11), and several metal arch wires (12) form a second preset flower shape, and the second preset flower shape covers the metal bottom wire (11).

2. The metal wire embroidery method according to claim 1, wherein The metal bottom wire (11) and the metal arch wire (12) are projected on the same horizontal plane, and the projection of the metal bottom wire (11) is perpendicular to the projection of the metal arch wire (12) or at a preset angle.

3. The wire embroidery method according to claim 1, characterized in that, The distance between adjacent metal bottom wires (11) is d, and d ≤ D, where D is the diameter of the metal arch wire (12).

4. The wire embroidery method according to claim 1, characterized in that The length of the metal bottom wire (11) is between 2 mm and 14 mm.

5. The wire embroidery method according to claim 1, characterized in that, The metal arch wire (12) straddles the metal bottom wire (11) in an arched shape, and the middle part of the metal arch wire (12) is arranged corresponding to the upper and lower parts of the metal bottom wire (11).

6. The wire embroidery method according to claim 5, characterized in that, The metal arch wire (12) includes a first end and a second end, and the first end and the second end are locked on the fabric by surface thread.

7. The wire embroidery method according to claim 5, characterized in that, The metal bottom wire (11) supports the middle part of the metal arch wire (12).

8. The wire embroidery method according to claim 1, characterized in that, The length of the metal arch wire (12) is between 5 mm and 14 mm.

9. The wire embroidery method according to claim 1, characterized in that, The diameter of the metal arch wire (12) is equal to the diameter of the metal bottom wire (11).