A gold thread embroidery method

By using connectors in the sequin embroidery method to coaxially set the sequins and process them at a preset temperature, the problem of limited patterns is solved, achieving efficient and diversified sequin embroidery and enhancing the aesthetics of the fabric.

CN117661204BActive Publication Date: 2026-03-31ZHEJIANG MAYA MECHANICAL & ELECTRICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-28
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing gold sequin embroidery techniques are limited in variety and aesthetic appeal.

Method used

By obtaining stacked gold sheet units and using connectors such as hot melt adhesive, hot melt film, non-woven fabric or water-soluble adhesive to make several gold sheets coaxially arranged, and then processing them at a preset temperature to form dispersed gold sheet units, multiple gold sheets can be embroidered simultaneously.

Benefits of technology

It improved production efficiency and the diversity of patterns, and enhanced the aesthetic appeal of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a gold sheet embroidery method, which comprises the following steps: obtaining a gold sheet unit in a stacked state, wherein the gold sheet unit comprises a plurality of gold sheets, and any two of the plurality of gold sheets are coaxially arranged when the gold sheet unit is in the stacked state; embroidering the gold sheet unit in the stacked state on a cloth by a bead tube embroidery device; and processing the gold sheet unit in the stacked state in a preset mode to obtain the gold sheet unit in a dispersed state. The gold sheet embroidery method can embroider multiple gold sheets at one time, greatly improves production efficiency, and is flexible. Meanwhile, different numbers of gold sheets can be embroidered on the cloth, the pattern diversity of the cloth is improved, and the aesthetic degree of the pattern is improved.
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Description

Technical Field

[0001] This invention relates to the field of computerized embroidery machine technology, and in particular to a method for sequin embroidery. Background Technology

[0002] In related technologies, the gold-embroidered device uses the movement pattern of one gold sequin per needle to embroider.

[0003] However, this method is limited in variety and has its limitations. Summary of the Invention

[0004] The present invention aims to at least solve one of the technical problems existing in the prior art. To this end, one object of the present invention is to provide a method for sequin embroidery, which can embroider different numbers of sequins onto fabric, thereby increasing the variety of patterns on the fabric and improving the aesthetic appeal of the patterns.

[0005] The gold sequin embroidery method according to the present invention includes:

[0006] Obtain a stacked gold sheet unit, wherein the gold sheet unit includes a plurality of gold sheets, and when the gold sheet unit is in the stacked state, any two of the plurality of gold sheets are coaxially arranged;

[0007] The beaded embroidery device embroiders the stacked sequin units onto the fabric;

[0008] The gold sheet units in the stacked state are processed according to a preset method to obtain the gold sheet units in the dispersed state.

[0009] The gold sequin embroidery method of this embodiment can embroider multiple gold sequins at once, greatly improving production efficiency and flexibility; at the same time, different numbers of gold sequins can be embroidered on the fabric, enhancing the variety of patterns and improving the aesthetics of the patterns.

[0010] According to some embodiments of the present invention, obtaining the gold sheet units in a stacked state includes: stacking a plurality of the gold sheets using a connector, so that the gold sheet units are in the stacked state.

[0011] According to some embodiments of the present invention, the connector is a hot melt adhesive, and the hot melt adhesive is provided between adjacent pairs of the plurality of gold sheets. At a first preset temperature, the viscosity of the hot melt adhesive is greater than the fluidity of the hot melt adhesive.

[0012] According to some embodiments of the present invention, processing the stacked gold flake units in a preset manner to obtain the dispersed gold flake units includes:

[0013] The gold sheet units in the stacked state are placed at a second preset temperature, and the hot melt adhesive at the second preset temperature has a flowability greater than its viscosity.

[0014] The hot melt adhesive detaches from the gold sheet unit to form the gold sheet unit in the dispersed state.

[0015] According to some embodiments of the present invention, the connector is a hot melt film, and at a first preset temperature, the hot melt film wraps around a plurality of stacked gold sheets so that the gold sheet units are in the stacked state.

[0016] According to some embodiments of the present invention, processing the stacked gold flake units in a preset manner to obtain the dispersed gold flake units includes:

[0017] The gold sheet units in the stacked state are placed at a second preset temperature, which is greater than the first preset temperature, and the hot melt film melts at the second preset temperature;

[0018] The hot melt film detaches from the gold sheet unit to form the gold sheet unit in the dispersed state.

[0019] According to some embodiments of the present invention, the connector is a non-woven fabric, which wraps around a plurality of stacked gold sheets so that the gold sheet units are in the stacked state.

[0020] According to some embodiments of the present invention, processing the stacked gold flake units in a preset manner to obtain the dispersed gold flake units includes:

[0021] The gold sheet units in the stacked state are immersed in a liquid;

[0022] The nonwoven fabric detaches from the gold sheet unit to form the gold sheet unit in the dispersed state.

[0023] According to some embodiments of the present invention, the connector is a hydrosol, and the hydrosol is disposed between adjacent pairs of the plurality of gold sheets.

[0024] According to some embodiments of the present invention, processing the stacked gold flake units in a preset manner to obtain the dispersed gold flake units includes:

[0025] The gold sheet units in the stacked state are immersed in water, and the hydrosol dissolves upon contact with water;

[0026] The hydrosol detaches from the gold flake unit to form the gold flake unit in the dispersed state.

[0027] Additional aspects and advantages of the invention will be set forth in the description which follows, and these aspects will become apparent from the description or may be learned by practice of the invention. Attached Figure Description

[0028] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0029] Figure 1 This is a flowchart of a gold sequin embroidery method according to an embodiment of the present invention;

[0030] Figure 2 This is a schematic diagram of the structure of a beaded embroidery device according to an embodiment of the present invention. Implementation

[0031] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0032] The following disclosure provides numerous different embodiments or examples for implementing various structures of the invention. To simplify the disclosure, specific examples of components and arrangements are described below. These are merely examples and are not intended to limit the invention. Furthermore, reference numerals and / or letters may be repeated in different examples. Such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed. Additionally, examples of various specific processes and materials are provided in this invention; however, those skilled in the art will recognize the applicability of other processes and / or the use of other materials.

[0033] Beaded embroidery is an embroidery technique that uses an embroidery machine to fix connected beads onto fabric. Connected beads (or embroidery beads) can be divided into bead tubes or beads.

[0034] In related technologies, such as Figure 2 As shown, the bead tube is conveyed by the feeding mechanism of the bead tube embroidery device. The principle is to place the bead tube in the material cup and, through stirring or other means, make the bead tube pass through a vertical guide rod. The upper end of the guide rod is connected to the material cup.

[0035] The bead tube on the guide rod slides down the guide rod under the influence of gravity. Multiple clamps are installed along the sliding path of the guide rod to hold the guide rod in place. The multiple clamps are driven to open and close by a motor. When the clamps are open, the bead tube can pass through the clamps, and when the clamps are closed, the bead tube is blocked by the clamps and cannot fall further.

[0036] In addition, multiple chucks are driven by alternating opening and closing to ensure that the bead tube can pass through multiple chucks, and that the guide rod is always held by at least one chuck during the process, so as to prevent the guide rod from shaking and coming off the chuck.

[0037] After being guided by the bead guide rod, the beads are sent to the supply device under the action of gravity. The beads are then held by the bead clamps in the supply device and finally transported to the fabric for subsequent embroidery processes.

[0038] The gold sequin embroidery method of this application is implemented based on a bead tube embroidery device.

[0039] In the first embodiment, as Figure 1 As shown, the gold sequin embroidery method includes:

[0040] S10, Obtain a stacked gold sheet unit, wherein the gold sheet unit includes several gold sheets, and when the gold sheet unit is in a stacked state, any two of the several gold sheets are coaxially arranged;

[0041] It should be noted that obtaining stacked gold flake units includes:

[0042] Several gold sheets are stacked together using connectors, so that the gold sheet units are in a stacked state.

[0043] The connector is a hot melt adhesive. Hot melt adhesive is applied between adjacent gold sheets. At a first preset temperature, the viscosity of the hot melt adhesive is greater than its fluidity. The gold sheets are bonded together by the hot melt adhesive, so that the gold sheets are in a stacked state. The overall shape of the stacked gold sheets is equivalent to the aforementioned bead tube.

[0044] S20, the beaded tube embroidery device embroiders stacked sequin units onto the fabric;

[0045] S30, processing the stacked gold flake units according to a preset method to obtain dispersed gold flake units, including:

[0046] S301, the stacked gold sheet units are placed at a second preset temperature, and the hot melt adhesive at the second preset temperature has a flowability greater than its viscosity.

[0047] It should be noted that the fabric embroidered with sequin units can be placed at a second preset temperature, wherein the second preset temperature is higher than the first preset temperature, and the hot melt adhesive has a greater fluidity than viscosity at the second preset temperature. For example, the fabric embroidered with sequin units can be placed in water at the second preset temperature and left to stand for a certain period of time.

[0048] S302, hot melt adhesive detaches from the gold flake units to form dispersed gold flake units.

[0049] It should be noted that at the second preset temperature, the hot melt adhesive detaches from the gold sheet, so that two adjacent gold sheets are no longer connected, and the overall shape of the gold sheet unit is no longer equivalent to the aforementioned bead tube. At the current moment, the gold sheet unit is in a dispersed state.

[0050] The gold sequin embroidery method of this embodiment can embroider multiple gold sequins at once, greatly improving production efficiency and flexibility; at the same time, different numbers of gold sequins can be embroidered on the fabric, enhancing the variety of patterns and improving the aesthetics of the patterns.

[0051] In the second embodiment, as Figure 1 As shown, the gold sequin embroidery method includes:

[0052] S10, Obtain a stacked gold sheet unit, wherein the gold sheet unit includes several gold sheets, and when the gold sheet unit is in a stacked state, any two of the several gold sheets are coaxially arranged;

[0053] It should be noted that obtaining stacked gold flake units includes:

[0054] Several gold sheets are stacked together using connectors, so that the gold sheet units are in a stacked state.

[0055] The connector is a hot-melt film. A hot-melt film is provided between adjacent gold sheets. At a first preset temperature, the viscosity of the hot-melt film is greater than its fluidity. The hot-melt film bonds the gold sheets together, so that the gold sheets are in a stacked state. The overall shape of the stacked gold sheets is equivalent to the aforementioned bead tube.

[0056] S20, the beaded tube embroidery device embroiders stacked sequin units onto the fabric;

[0057] S30, processing the stacked gold flake units according to a preset method to obtain dispersed gold flake units, including:

[0058] S301, the stacked gold sheet units are placed at a second preset temperature, and the hot melt film melts at the second preset temperature.

[0059] It should be noted that the fabric embroidered with sequin units can be placed at a second preset temperature, wherein the second preset temperature is higher than the first preset temperature, and the heat-melting film melts at the second preset temperature. For example, the fabric embroidered with sequin units can be placed in water at the second preset temperature and left to stand for a certain period of time.

[0060] S302, the hot melt film detaches from the gold foil unit to form a dispersed gold foil unit.

[0061] It should be noted that at the second preset temperature, the melted hot melt film detaches from the gold sheet, so that two adjacent gold sheets are no longer connected, and the overall shape of the gold sheet unit is no longer equivalent to the bead tube mentioned above. At the current moment, the gold sheet unit is in a dispersed state.

[0062] In the third embodiment, as Figure 1 As shown, the gold sequin embroidery method includes:

[0063] S10, Obtain a stacked gold sheet unit, wherein the gold sheet unit includes several gold sheets, and when the gold sheet unit is in a stacked state, any two of the several gold sheets are coaxially arranged;

[0064] It should be noted that obtaining stacked gold flake units includes:

[0065] Several gold sheets are stacked together using connectors, so that the gold sheet units are in a stacked state.

[0066] The connector is made of non-woven fabric, which wraps around several stacked gold sheets to put them in a stacked state. The overall shape of the stacked gold sheets is equivalent to the aforementioned bead tube.

[0067] S20, the beaded tube embroidery device embroiders stacked sequin units onto the fabric;

[0068] S30, processing the stacked gold flake units according to a preset method to obtain dispersed gold flake units, including:

[0069] S301, the stacked gold sheet units are immersed in a liquid;

[0070] It should be noted that the liquid can be water, as non-woven fabric will decompose when exposed to water, breaking down into flocculent material. Currently, the non-woven fabric cannot encapsulate the gold sheets, and multiple gold sheets cannot be stacked together.

[0071] S302, the nonwoven fabric detaches from the gold flake units to form dispersed gold flake units.

[0072] It should be noted that after the nonwoven fabric decomposes, it detaches from the gold sheet, and the overall shape of the gold sheet unit is no longer equivalent to the aforementioned bead tube. At the current moment, the gold sheet unit is in a dispersed state.

[0073] In the fourth embodiment, as Figure 1 As shown, the gold sequin embroidery method includes:

[0074] S10, Obtain a stacked gold sheet unit, wherein the gold sheet unit includes several gold sheets, and when the gold sheet unit is in a stacked state, any two of the several gold sheets are coaxially arranged;

[0075] It should be noted that obtaining stacked gold flake units includes:

[0076] Several gold sheets are stacked together using connectors, so that the gold sheet units are in a stacked state.

[0077] The connector is a water-soluble adhesive. Water-soluble adhesive is provided between adjacent gold pieces to bond the gold pieces together, so that the gold pieces are in a stacked state. The overall shape of the stacked gold pieces is equivalent to the aforementioned bead tube.

[0078] S20, the beaded tube embroidery device embroiders stacked sequin units onto the fabric;

[0079] S30, processing the stacked gold flake units according to a preset method to obtain dispersed gold flake units, including:

[0080] S301, the gold sheet units in the stacked state are immersed in water, and the hydrosol dissolves in water;

[0081] S302, the hydrosol detaches from the gold flake unit to form a dispersed gold flake unit.

[0082] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0083] In the description of this invention, "first feature" and "second feature" may include one or more of the features.

[0084] In the description of this invention, "a plurality of" means two or more.

[0085] In the description of this invention, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or it may include the first and second features not being in direct contact but being in contact through another feature between them.

[0086] In the description of this invention, the terms "above," "over," and "on top" for the first feature and the second feature include the first feature being directly above or diagonally above the second feature, or simply indicating that the first feature is at a higher horizontal level than the second feature.

[0087] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," and "some examples" indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0088] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A goldwork embroidery method characterized in that, The application relates to a gold sheet unit and a processing method thereof. The application comprises the following steps: obtaining a gold sheet unit in a stacked state, comprising: stacking a plurality of gold sheets by a connecting member, so that the gold sheet unit is in the stacked state, wherein the gold sheet unit comprises a plurality of gold sheets, and any two of the plurality of gold sheets are coaxially arranged when the gold sheet unit is in the stacked state; a bead tube embroidery device embroiders the gold sheet unit in the stacked state on a cloth; 2. The gold pique method according to claim 1, wherein processing the gold sheet unit in the stacked state in a preset mode to obtain the gold sheet unit in a dispersed state.

3. The pail- stitch embroidery method according to claim 2, characterized in that, The connecting member is hot melt adhesive, and the hot melt adhesive is arranged between adjacent two of the plurality of gold sheets. The processing of the gold sheet unit in the stacked state in the preset mode to obtain the gold sheet unit in the dispersed state comprises the following steps: placing the gold sheet unit in the stacked state at a second preset temperature, the hot melt adhesive has a flowability greater than a viscosity at the second preset temperature; 4. The gold pique method according to claim 1, wherein the hot melt adhesive is separated from the gold sheet unit to form the gold sheet unit in the dispersed state.

5. The pail-embroidering method according to claim 4, characterized by The connecting member is a hot melt film, and the hot melt film wraps the plurality of gold sheets stacked to make the gold sheet unit in the stacked state at a first preset temperature. The processing of the gold sheet unit in the stacked state in the preset mode to obtain the gold sheet unit in the dispersed state comprises the following steps: placing the gold sheet unit in the stacked state at a second preset temperature, the second preset temperature is greater than the first preset temperature, and the hot melt film is melted at the second preset temperature; 6. The gold pique method according to claim 1, wherein the hot melt film is separated from the gold sheet unit to form the gold sheet unit in the dispersed state.

7. The pail-embroidering method according to claim 6, wherein The connecting member is a non-woven fabric, and the non-woven fabric wraps the plurality of gold sheets stacked to make the gold sheet unit in the stacked state. The processing of the gold sheet unit in the stacked state in the preset mode to obtain the gold sheet unit in the dispersed state comprises the following steps: immersing the gold sheet unit in the stacked state in a liquid; 8. The gold pique method according to claim 1, wherein the non-woven fabric is separated from the gold sheet unit to form the gold sheet unit in the dispersed state.

9. The pail-embroidering method according to claim 8, characterized by The connecting member is a hydrosol, and the hydrosol is arranged between adjacent two of the plurality of gold sheets. The processing of the gold sheet unit in the stacked state in the preset mode to obtain the gold sheet unit in the dispersed state comprises the following steps: immersing the gold sheet unit in the stacked state in water, and the hydrosol is dissolved in water; the hydrosol is separated from the gold sheet unit to form the gold sheet unit in the dispersed state.

Citation Information

Patent Citations

  • Double-sequin embroidery method

    CN102978845A

  • Double-side transfer print jacquard-weaved sequin embroidery

    CN203472387U