The fabric manufacturing method which uses the scrap of clothodd of yardage of the natural dyeing fabric

KR1020260122709APending Publication Date: 2026-08-12조현호
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Patent Information

Authority / Receiving Office
KR · KR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-08-12

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Abstract

The present invention relates to a method for manufacturing fabric using scraps of naturally dyed fabric, and more specifically, a fabric background pattern forming step in which scraps generated in large quantities when producing clothing, etc., from naturally dyed fabric are arranged at regular intervals or overlapped on top of alginate foil, wherein said scraps are redefined in color, shape, and size to produce a color tone and style desired by a worker; and a sewing step in which, after the fabric background pattern forming step using the scraps of naturally dyed fabric is completed, alginate foil is covered again over the top to connect and fix multiple scraps. A pattern formation step in which scraps of naturally dyed fabric are arranged in a specific shape, pattern, color, and size on top of the scrap fabric completed through the above sewing step, and then an alginate foil is placed over them and irregular stitching is performed; An immersion step in which the scrap fabric, having completed the above pattern formation step, is immersed at a lukewarm temperature of 20 to 35°C for 40 to 60 minutes to allow the kelp component of the alginate foil to be absorbed into the scrap fabric; The present invention is characterized by presenting a method for manufacturing fabric comprising a drying step in which the above-mentioned scrap fabric is naturally dried outdoors for 2 to 3 hours. Accordingly, the present invention recycles a large amount of scraps generated when manufacturing clothing, etc., using conventional natural dyed fabrics, thereby preventing the waste of rare natural dyed fabrics and further providing a fabric with a new aesthetic that utilizes the characteristics of natural dyed fabrics.
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Description

Technology Field

[0001] The present invention relates to a method for manufacturing fabric using scraps of naturally dyed fabric, and more specifically, to obtaining a fabric with a new shape and pattern by recycling scraps of expensive and rare naturally dyed fabric remaining after use in clothing, etc., and at the same time, to enable the production of unique and creative naturally dyed clothing using said fabric. Background Technology

[0002] Generally, natural dyed fabrics are dyed by boiling or fermenting the bark, flowers, and leaves of dye plants to produce natural colors. Additionally, plant dyeing is repeated at least 7 to 60 times through a repetitive dyeing process, during which the fabric absorbs the essential oil components of the plants to express low-saturation, deep colors.

[0003] Furthermore, naturally dyed fabrics possess the infinite advantage of unique artistic expression—that is, the creation of new colors—due to the colorful color development process that reacts to numerous variables such as water, fire, light, and time; moreover, they are characterized by their eco-friendliness.

[0004] Therefore, naturally dyed fabrics, which possess such scarcity and command high costs due to small-batch production, are receiving significant attention for clothing manufacturing both domestically and internationally, and are widely used as materials for various garments, bags, and accessories.

[0005] However, when manufacturing clothing, various bags, and accessories using naturally dyed fabrics, a large amount of scraps is generated, and these scraps are all disposed of, resulting in the waste of rare fabrics. In other words, naturally dyed fabrics exhibit different colors and characteristics during the dyeing process, making mass production of identical products impossible and possessing uniqueness.

[0006] Therefore, it has been pointed out that even scraps remaining after clothing production possess high value due to the aforementioned characteristics, and simply disposing of them would result in a serious waste of their value and usability. The problem to be solved

[0007] Accordingly, the present invention focuses on the technical problem of preventing waste of rare natural dyed fabrics by recycling large amounts of scraps generated when making clothing, etc., with conventional natural dyed fabrics, and furthermore, manufacturing fabrics with a new aesthetic sense utilizing the characteristics of natural dyed fabrics and clothing made therefrom. means of solving the problem

[0008] A fabric background pattern formation step in which scraps generated in large quantities during production are arranged at regular intervals or overlapped, and said scraps are redefined in color, shape, and size to produce a color tone and style desired by the worker; and a sewing step in which, once the fabric background pattern formation step using natural dyed fabric scraps is completed, alginate foil is placed over the top to connect and secure multiple scraps;

[0009] A pattern formation step in which scraps of naturally dyed fabric are arranged in a specific shape, pattern, color, and size on top of the scrap fabric completed through the above sewing step, and then an alginate foil is placed over them and irregular stitching is performed;

[0010] The present invention is characterized by a method for manufacturing a fabric using scraps of naturally dyed fabric, comprising: a soaking step in which the scrap fabric obtained through the above pattern forming step is soaked in water at a lukewarm temperature of 20 to 35°C for 40 to 60 minutes to allow the kelp component of the alginate foil to be absorbed into the scrap fabric; and a drying step in which the scrap fabric is naturally dried outdoors for 2 to 3 hours. Effects of the invention

[0011] Therefore, the present invention, which provides the above means, enables the production of a fabric with a unique, creative, and novel aesthetic sense by utilizing scraps of naturally dyed fabric, thereby preventing waste and promoting new uses of expensive and rare naturally dyed fabrics. Furthermore, by incorporating the main components of alginate foil into the fabric, it presents the beneficial effects of kelp to the user when producing clothing using the scraps, while simultaneously ensuring that the natural dyeing lasts for a long period. Brief explanation of the drawing

[0012] Figures 1 and 2 are simplified process diagrams for manufacturing a new fabric using scraps of naturally dyed fabric. FIGS. 3 and 4 are simplified process diagrams for forming a pattern using scraps of naturally dyed fabric as scrap fabric manufactured according to the present invention. FIG. 5 is an example of a scrap fabric completed by the manufacturing method presented in the present invention. FIG. 6 is an example of clothing made from leftover fabric according to the present invention. Specific details for implementing the invention

[0013] To examine the present invention more specifically through an example, first, as shown in the attached drawing Fig. 1, scraps (1) that are generated in large quantities when making clothing, etc., from natural dyed fabric are arranged at regular intervals or overlapped on top of an alginate foil (2). Then, a fabric background pattern formation step is performed in which the scraps (1) are redefined in color, shape, and size to form a fabric background pattern (pattern) with the color and style desired by the worker. Alginate foil (also called 'alginate') refers to a material made by manufacturing a translucent vinyl sheet from which a portion of the mucilaginous component of brown algae, such as kelp and wakame, which feel sticky and viscous when soaked in water, is alginate. Furthermore, the arrangement of the scraps (1) is determined in various ways according to the designer's preference. For example, a number of scraps (1) of various colors, sizes, and shapes are arranged at regular intervals or overlapped to express a specific pattern (including a specific shape or text).

[0014] When the step of forming a background pattern of the fabric using the above-mentioned natural dyed fabric scraps (1) is finished, a sewing step is performed to cover the top with alginate foil (2) again and connect and fix multiple scraps (1).

[0015] In the sewing stage, the upper and lower alginate foils (2) and the multiple scraps (1) on the inner side are sewn together simultaneously. At this time, the alginate foil (2) is used to prevent sewing defects caused by lifting or slipping of the scraps (1) during the sewing process of connecting the scraps (1).

[0016] When performing the above sewing work, it is desirable to perform as much stitching as possible so that multiple scraps (1) can be connected and fixed to each other. When performing the above sewing work, various colored threads (3) may be used or various stitching patterns may be performed depending on the designer's preference.

[0017] Then, when the scrap fabric (a) is completed through the above steps, a pattern forming step is performed in which scraps (1) of the natural dyed fabric are arranged on top of it in a specific shape, pattern, color, and size, and then covered with alginate foil (2) and irregularly stitched.

[0018] The pattern formation stage is a process for imparting aesthetic appeal to the scrap fabric (a) completed through the aforementioned method, and is a matter of the designer's inclination

[0019] Depending on the pattern (4), it is acceptable to exclude it. Additionally, the process is completed by sequentially performing a immersion step in which the scrap fabric (a), in which the pattern formation step is completed, is immersed in water at a lukewarm temperature of 20 to 35°C for 40 to 60 minutes to allow the kelp component of the alginate foil to be absorbed into the scrap fabric; and a drying step in which the scrap fabric (a) is naturally dried outdoors for 2 to 3 hours. Here, since the alginate foil has the characteristic of dissolving when in contact with water for a certain period of time, immersing the scrap fabric in water causes it to dissolve while simultaneously allowing the kelp component of the alginate foil to be absorbed into the scrap fabric. When the kelp component of the alginate foil is absorbed into the scrap fabric and then dried, it provides not only long-term preservation of the natural dye but also very beneficial effects for the user's body. That is, the kelp component of the alginate foil is a natural substance that absorbs heavy metals (sulfur, cadmium, lead, etc.), radioactivity, and cholesterol present in the body. Furthermore, kelp components possess an exceptional ability to absorb heavy metals and radioactivity into the body through their own molecular structures, rendering them inactive. Additionally, kelp is rich in iodine, a component of thyroid hormones, and is known to help prevent goiter; it is also widely recognized as a food that can prevent adult diseases such as hypertension, heart disease, and liver disease.

[0020] Therefore, the natural dyed scrap fabric produced through the aforementioned method allows for unique and creative expression according to the designer's preferences using handmade techniques. In particular, by utilizing natural dyed scraps, it is possible to obtain various clothing, bags, and accessories that express high-quality natural colors while minimizing the waste of expensive and rare natural dyed fabrics. Explanation of the symbols

[0021] 1 : Scrap 2 : Alginate foil 3 : Thread 4 : Pattern 5 : Scrap fabric

Claims

Claim 1 A fabric background pattern formation step in which scraps generated in large quantities when producing clothing, etc., using naturally dyed fabric are arranged at regular intervals or overlapped on top of alginate foil, and said scraps are redefined in color, shape, and size to produce the desired color tone and style by the worker; a sewing step in which, once the fabric background pattern formation step using naturally dyed fabric scraps is completed, alginate foil is placed over it again to connect and fix multiple scraps; a pattern formation step in which scraps of naturally dyed fabric are arranged in specific shapes, patterns, colors, and sizes on top of the scrap fabric completed through the sewing step, and then alginate foil is placed over them to perform irregular stitching; an immersion step in which the scrap fabric, after the pattern formation step is completed, is immersed in water at a lukewarm temperature of 20–35°C for 40–60 minutes to allow the kelp components of the alginate foil to be absorbed into the scrap fabric; and the said scrap fabric is placed outside for 2–3 hours A method for manufacturing fabric using scraps of naturally dyed fabric, characterized by a drying step of natural drying.