Label

By employing a nonwoven fabric substrate and a polyamide or polyurethane resin printing layer, along with a hot melt adhesive, the label effectively prevents fraying and ensures clean removal from fabric products, addressing the issues of fraying and adhesive-induced inflexibility in traditional labels.

JP2025079528APending Publication Date: 2025-05-22EID SYST CO LTD
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Patent Information

Application Number
JP2023192256
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-10
Publication Date
2025-05-22

AI Technical Summary

Technical Problem

Traditional labels made from woven polyester fabric tend to fray after repeated cleaning, leading to contamination risks, and when adhesive is applied to prevent fraying, it reduces flexibility and causes the label to tear when removed from fabric products.

Method used

Using a nonwoven fabric as the substrate for the label, which is less prone to fraying, and incorporating a printing layer made of polyamide or polyurethane resin, along with a hot melt adhesive layer for attachment to fabric products.

Benefits of technology

The nonwoven fabric substrate prevents fraying during cleaning, while the adhesive layer ensures strong attachment without reducing flexibility, allowing for clean removal of the label from fabric products.

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Abstract

To provide a label which solves the problem that using polyester fabric as a base material of a label causes the label to unravel resulting in appearance of long threads and posing a risk of foreign matter contamination.SOLUTION: A label L is provided, comprising a base material 1 consisting of non-woven fabric, and a print layer 2 formed on one surface of the base material, the print layer more preferably being made of a polyamide resin, polyurethane resin, or the like.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present invention relates to a label, and more particularly to a label to be attached to a fabric product. [Background technology]

[0002] Clothing such as work clothes and workwear, particularly when clothing of the same shape and color is lent such as uniforms, often has a label with the user's name, control number, barcode, etc. attached so that the clothing can be easily managed even after cleaning or replacement due to damage. Also, clothing and bedding used in large quantities in hotels, hospitals, etc. often have labels attached so that they can be easily managed. Labels affixed to such fabric products must have excellent washability and dry-cleanability.

[0003] Generally, a label has a printing layer on the surface of a substrate, and an ink image is recorded on the printing layer. An adhesive layer for adhering to a fabric product is disposed on the opposite side of the substrate from the printing layer. Providing an adhesive layer on the label makes it easy to attach the label to a fabric product. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] JP 2016-071313 A Summary of the Invention [Problem to be solved by the invention]

[0005] Traditionally, woven polyester fabric has been used as the base material for labels. Polyester fabric is inexpensive, lightweight, and durable against cleaning, so it is widely used as the base material for labels. However, repeated cleaning can cause fraying, resulting in long threads sticking out from the polyester fabric. Fraying can pose a risk of contamination.

[0006] On the other hand, even in woven fabrics, strong adhesion of the threads from the back of the label may make the fabric less likely to fray. However, such labels have another problem. Applying adhesive to the threads makes them less likely to fray, but it also makes them less flexible. When a label attached with adhesive is to be peeled off from a fabric product, it cannot be peeled off cleanly, but rather tears off and small pieces of the label remain attached to the fabric product, and it takes time to completely remove them.

[0007] As a result of intensive research into the above-mentioned problems, the inventors discovered that by using a nonwoven fabric as the material for the substrate, fraying is unlikely to occur even after repeated cleaning, and thus achieved the present invention. The present invention relates to the following technical matters. [Means for solving the problem]

[0008] [1] A substrate made of a nonwoven fabric; A printing layer formed on one surface of the substrate. [2] The label described in [1], further comprising a first adhesive layer arranged on the side of the substrate opposite the printing layer for adhering to a fabric product. [3] The label described in [1], wherein the printing layer is made of polyamide resin, polyurethane resin, or the like. [4] The label described in [1], wherein the first adhesive layer is composed of a hot melt adhesive.

[0009] The present invention should not be interpreted as being limited to the above configuration or the configurations of the examples described in the embodiments described below, and it goes without saying that various modifications are possible without departing from the technical concept of the present invention. Effect of the Invention

[0010] By using nonwoven fabric as the base material of the label, it is less likely to fray even after repeated cleaning. [Brief description of the drawings]

[0011] [Figure 1]FIG. 1 is a cross-sectional view of a label of the present invention being attached to a fabric product 5. As shown in FIG. [Diagram 2] FIG. 2 is a cross-sectional view of a label of the present invention, which has been treated with a release paper 7 to make it easier to handle, prior to application to a fabric product 5. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0012] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.

[0013] Example 1 FIG. 1 is a diagram showing a state in which a label L is attached to the fabric surface of a fabric product 5. The label L is composed of a first adhesive layer 4, a substrate 1, a second adhesive layer 3, and a print layer 2 from the fabric surface. Before being attached to a fabric product, the label L may be provided with a temporary adhesive layer 6 and a release paper 7 for protecting the temporary adhesive layer 6 on the surface of the first adhesive layer 4 that is in contact with the substrate 1, as shown in FIG. 2, for ease of handling. By providing the release paper 7, the label is easy to handle before pressure bonding, while being easily peeled off immediately before pressure bonding. Each component will be described in order.

[0014] (Base material 1) The base material 1 constitutes the framework of the label and is made of a flexible material that needs to be strong but can also follow the flexibility of the fabric product 5 . According to the investigations conducted by the present inventors, the most preferable material for the substrate 1 is a nonwoven fabric.

[0015] Nonwoven fabrics can be made by directly forming fibers into a sheet, so unlike woven or knitted fabrics, there is no need to spin fibers into threads, and there is no process of "weaving and knitting", so they can be produced quickly in large quantities at low cost. Nonwoven fabrics are broadly classified into long fiber nonwoven fabrics and short fiber nonwoven fabrics depending on the length of the fibers that compose them, and either short fiber nonwoven fabrics or long fiber nonwoven fabrics can be used in the present invention. Therefore, any fiber length of 1 μm or more can be used.

[0016] The fiber diameter of the fiber filaments of the nonwoven fabric used as the substrate 1 is not particularly limited, but may be, for example, 0.1 μm or more and 1000 μm or less.

[0017] The basis weight of the nonwoven fabric used as the substrate 1 in the present invention is not particularly limited, but is preferably 1 g / m 2 More than 200g / m 2 The following is the result.

[0018] The thickness of the nonwoven fabric used as the substrate 1 in the present invention is not particularly limited, but is preferably 10 μm or more and 300 μm or less.

[0019] The shape of the substrate 1 is not particularly limited and can be appropriately selected depending on the purpose of the label. For example, the label to be affixed to a textile product may be printed with the user's name, a barcode or a QR code (registered trademark) for management purposes, etc. For example, in the case of a user's name or a barcode, a roughly rectangular shape is preferable, and in this case, the fiber direction is aligned along the length of the rectangle. By doing this, the label can be peeled off cleanly without tearing when it is peeled off from the fabric product.

[0020] The long fibers of the nonwoven fabric used as the substrate 1 are mainly formed by melt spinning a thermoplastic resin. The thermoplastic resin is not particularly limited as long as it is a thermoplastic resin that can be processed by melt spinning, but it is preferable to use a thermoplastic resin with good stretchability and molecular orientation, such as polyethylene terephthalate (PET) resin, polypropylene (PP) resin, polyamide (PA) resin (particularly nylon 6 (PA6) and nylon 12 (PA12)), and polylactic acid (PLA) resin. The thermoplastic resin may contain various additives as necessary.

[0021] The nonwoven fabric used as the substrate 1 may be a commercially available product.

[0022] Nonwoven fabric manufacturing methods basically consist of a web formation process and a web adhesion (bonding) process. The web formation process can be performed using wet methods, dry methods (air laying method, carding method, burst fiber method), or direct methods (spunbond method, meltblown method, flash spinning method), and the web adhesion (joining) process can be performed using thermal bond method, chemical bond method, needle punch method, or water punch method. The method for manufacturing the nonwoven fabric used as the substrate 1 is not particularly limited, but any conventional method can be used. For example, the web forming process may be a combination of the meltblown method and the spunbond method, and the web bonding (joining) process may be a thermal bond method.

[0023] Conventionally used woven polyester fabrics are made by weaving polyester fiber threads into cloth, and the threads are not bonded together, but nonwoven fabrics are made by bonding the fibers together into cloth, so they are less likely to fray. By using such nonwoven fabrics, it is possible to prevent the phenomenon of long threads coming out and reduce costs.

[0024] (printing layer) In the label L of the present invention, a print layer 2 is provided on the surface of a substrate 1, and an ink image is recorded on the print layer 2. The printing layer 2 is provided on the surface of the substrate 1 in order to obtain a label in which, when an ink image is recorded on the substrate 1, image bleeding or smudging does not occur and the recorded image is not easily removed by washing (excellent washing resistance). As described above, the printing layer 2 can be provided directly on the surface of the substrate 1, or, depending on the material of the printing layer 2, a second adhesive layer 3 can be provided between the substrate 1 and the printing layer 2, as shown in Figure 1, to strengthen the adhesion between the substrate 1 and the printing layer 2.

[0025] An ink image is recorded on the substrate 1 by fixing the ink to the substrate by thermal transfer. However, if most of the ink is on the surface of the substrate and is not fixed properly, or if the ink is not firmly attached to the substrate 1, the print is likely to come off when washed, so care must be taken. The printing layer 2 of the label L is not particularly limited as long as it can sufficiently fix and fix the ink to the substrate 1, and any layer that has traditionally been used as a printing layer can be used (a layer provided on a substrate to improve the adhesion of the ink is sometimes called an ink receiving layer, image receiving layer, or coating layer).

[0026] Examples of the printing layer 2 include a printing layer formed by coating a resin on the surface of the substrate 1, and a printing layer formed as a microporous layer containing a resin by a dry or wet film forming method. As the resin, a thermoplastic resin having a melting point (by DSC method) or a softening point (by Hikano method) of 150 to 250°C is used. Examples of such resins include polyvinyl butyral, polyvinyl chloride, polyvinylidene chloride, vinylidene chloride-acrylonitrile copolymer resin, fluorine-based resin, polyamide, polyethylene, polypropylene, polyester, NBR, ethylene-vinyl acetate copolymer resin, polyacrylonitrile, polyurethane, vinyl chloride-vinyl acetate copolymer resin, etc., among which polyamide resin or polyurethane resin has good resistance to cleaning solvents and ironing, and also has a good effect on thermal transferability. Polyurethane has cushioning properties, and even if there are irregularities in the nonwoven fabric of the substrate 1, the irregularities are unlikely to affect the printing surface of the printing layer 2 during printing.

[0027] The method for recording the image is not particularly limited, but examples include letterpress printing, screen printing, thermal transfer printing, inkjet printing, and a method in which liquid ink is applied with a writing instrument, and thermal transfer printing is preferred for printing numbers or bar codes that change on each page, as the data can be easily changed. In this specification, the printing layer 2 both before an ink image is recorded and after an ink image is recorded are referred to as the printing layer 2.

[0028] (First adhesive layer 4) The first adhesive layer 4 of the label L of the present invention adheres the surface of the fabric product 5 to the substrate 1. There are no particular limitations on the adhesive layer 4 as long as it is capable of adhering the substrate 1 to the surface of the fabric product 5, but it is preferable that the first adhesive layer 4 be made of a hot melt adhesive that can be easily attached to the washed item using an iron or the like, can withstand harsh washing conditions such as multiple washing processes without peeling off, and does not cause stains due to adhesive seeping out onto the fabric product.

[0029] The hot melt adhesive is not particularly limited as long as it can be heat-pressed. For example, resins such as saturated polyester, polyurethane, polyamide, tackifiers, waxes, etc. can be appropriately used. Among them, saturated polyester resins are preferred in terms of adhesion to the adherend (surface of the fabric product 5). The melting points of the raw materials and adhesives used may be appropriately determined depending on the heat-pressure adhesive such as an iron to be used, but it is preferable that the melting point is 100°C or higher in order to maintain washing resistance at high temperatures, and is preferably 180°C or lower in consideration of adverse effects on the adherend such as thermal deterioration and discoloration. The amount of adhesion can be selected as needed, but it is preferable that the amount is 30 to 100 μm depending on the adhesion to the adherend and flexibility. As a processing method, a commonly used hot melt processing such as knife coating, T-die, and screen coating can be appropriately selected and performed. In addition, hot melt adhesives may be applied to the entire area that is to be bonded to the adherend in order to ensure that they maintain their adhesion to the adherend. Hot melt adhesives also have the advantage that they do not require protective covering with release paper or the like until they are used for bonding, and they do not generate waste such as separators during bonding.

[0030] In the embodiment, a hot melt adhesive is used, but an adhesive other than a hot melt adhesive can also be used to bond the surface of the fabric product 5 to the substrate 1. Examples of adhesives other than hot melt adhesives that have solvent resistance, chemical resistance, oil resistance, water resistance, and heat resistance include acrylic-based (acrylic acid ester, acrylic copolymer resin), silicone-based, synthetic rubber-based (styrene butadiene rubber (SBR), chloroprene), polyester-based, polyamide-based, and elastomer-based (hot melt type) adhesives.

[0031] (Temporary adhesive layer 6) Before being attached to a fabric product, the label L can be provided with a temporary adhesive layer 6 and a release paper 7 for protecting the temporary adhesive layer 6 on the side opposite to the side of the first adhesive layer 4 that is in contact with the substrate 1, as shown in FIG. 2, for ease of handling. The temporary adhesive layer 6 is provided for temporary adhesion to enable positioning when adhering with an iron, and is a layer made of a pressure sensitive adhesive, which is provided on top of the hot melt adhesive. The adhesive used for the temporary adhesive layer 6 can be acrylic or urethane resin. The amount of adhesion can be selected as required, but if it is small, the label will peel off, and if it is large, the unevenness of the applied surface will become large, making it easy for printing defects and adhesion defects to occur, so it is preferable that it is 5 to 60 μm. The processing method is not particularly limited as long as it is a processing method that can hold the temporary adhesive layer 6 on a specific part of the label, and gravure coating, screen coating, etc. can be appropriately selected. Processing can be performed on the label surface that has been processed with the hot melt adhesive layer (first adhesive layer), or the release paper 7 can be processed with an adhesive and laminated with the label so that the temporary adhesive layer 6 is fixed to the label side.

[0032] (Release Paper 7) The release paper 7 may be provided not only to protect the temporary adhesive layer 6, but also to prevent the hot melt adhesive from melting and adhering to the printer during thermal transfer printing. The label L is composed of a peelable label and a release paper 7 that supports the label L as a continuous sheet, and the label L is not in a state where the label L is continuously present on the entire surface of the release paper 7 at the time of printing, but may be a label L that can be separated into individual leaves of a predetermined length by a slit, or a label L in which only the label portion is die-cut so that the label L can be easily peeled from the release paper 7. In this case, the temporary adhesive layer 6 can prevent printing defects. Paper or film can be used as the base material for the release paper 7, but transparent film or glassine paper is more preferable in order to detect the position of the label with a sensor during printing.

[0033] Between the substrate 1 and the first adhesive layer 4, a layer for imparting adhesion may be provided, if necessary. [Industrial Applicability]

[0034] The present invention provides a label that is resistant to fraying and has excellent resistance to washing and dry cleaning. [Explanation of symbols]

[0035] L···Label 1...Base material 2. Printing layer 3...Second adhesive layer 4...First adhesive layer 5...cloth products 6. Temporary adhesive layer 7. Release paper

Claims

1. A substrate made of a nonwoven fabric; A printing layer formed on one surface of the substrate.

2. The label of claim 1 , further comprising a first adhesive layer disposed on a surface of the substrate opposite the print layer for adhering to a fabric product.

3. The label according to claim 1 , wherein the printing layer is made of a polyamide resin, a polyurethane resin, or the like.

4. The label of claim 1 , wherein the first adhesive layer is comprised of a hot melt adhesive.

Citation Information

Patent Citations

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    JP2016071313A