Method for attaching adhesive threads and adhesive threads with temporary support
The method of attaching thread-like adhesive bodies using a temporary support addresses the challenges of adhesive tape suitability for complex shapes by enabling easy, cost-effective, and twist-free attachment with improved handling and particle incorporation.
Patent Information
- Application Number
- JP2020159074
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-09-27
- Filing Date
- 2020-09-23
- Publication Date
- 2025-12-03
- Estimated Expiration
- 2040-09-23
AI Technical Summary
Existing adhesive tapes, such as double-sided adhesive tapes, face challenges when bonding complex or narrow-shaped articles, including unsuitability for curved surfaces, difficulty in handling due to twisting, high processing costs, and difficulty in incorporating hard particles into the adhesive layer.
A method for attaching thread-like adhesive bodies using a temporary support, where the adhesive is applied in a shape inverse to the desired form, allowing easy shaping and attachment to adherends, with a peel adhesive strength of 0.30 N/50 mm or more on the temporary support.
Enables easy and cost-effective attachment of adhesive threads in complex shapes without twisting, facilitating the incorporation of hard particles and reducing labor and material waste.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a method for applying adhesive threads and adhesive threads with temporary supports. [Background technology]
[0002] When bonding articles together, an adhesive such as a double-sided adhesive tape may be used. However, double-sided adhesive tapes usually have a certain width, and are not suitable when the shapes of the articles to be bonded are complex or when the width of the adhesive area is narrow. Possible methods for achieving such bonding include using double-sided adhesive tape cut to a narrow width or using double-sided adhesive tape cut to the desired shape by punching. For example, Patent Document 1 discloses an adhesive film with excellent cuttability, that is, an adhesive film in which the adhesive is prevented from forming strings when cut. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] International Publication No. 2017 / 064925 Summary of the Invention [Problem to be solved by the invention]
[0004] However, double-sided adhesive tapes cut to narrow widths have problems such as being unsuitable for application to curved surfaces and being difficult to handle as they tend to twist from one side to the other. Although double-sided adhesive tape cut into a desired shape by punching does not have such problems, it does have problems such as the time required for processing and the cost being high because a large portion of the tape is discarded during processing. Furthermore, in the manufacturing process of any of the above pressure-sensitive adhesive tapes, the pressure-sensitive adhesive layer is cut, but when the pressure-sensitive adhesive layer contains hard particles such as fillers, there is also the problem that cutting the pressure-sensitive adhesive layer is difficult.
[0005] One method for solving the above problems is to use a thread-like adhesive material. The thread-like adhesive material can be bent and deformed in various directions and angles, and since there is no concept of a front or back, handling is not impaired by twisting, and deforming it into a desired shape does not require labor or cost. Furthermore, since the manufacturing process does not involve cutting the adhesive layer, it is easy to incorporate hard particles into the adhesive layer. However, when the shape to be attached is complex, a high level of skill may be required for attachment, or an attachment device may be required.
[0006] The present invention has been made in consideration of the above, and aims to provide a method for applying a thread-like adhesive body that can easily apply the thread-like adhesive body in a desired shape, and a thread-like adhesive body with a temporary support to be used in said application method. [Means for solving the problem]
[0007] The method for attaching a thread-like adhesive of the present invention, which solves the above-mentioned problems, is a method for attaching a thread-like adhesive to an adherend in a desired shape, and includes pressing the surface of the thread-like adhesive on the adherend of a thread-like adhesive with a temporary support, in which the thread-like adhesive is attached to a temporary support in a shape that is the inverse of the desired shape, onto the adherend. One embodiment of the method for attaching adhesive threads of the present invention may further comprise peeling and removing the temporary support from the adhesive threads after pressure-bonding. In one embodiment of the method for attaching a thread-like adhesive material of the present invention, the temporary support may be removed from the thread-like adhesive material by peeling. In one embodiment of the method for applying a thread-like adhesive material of the present invention, the thread-like adhesive material may include a thread-like core material and an adhesive layer that covers the circumferential surface of the core material. In one embodiment of the method for attaching a thread-like adhesive material of the present invention, the temporary support may have a 5% strain stress of 20 N or more. In one embodiment of the method for attaching a thread-like adhesive material of the present invention, the surface of the temporary support to which the thread-like adhesive material is attached may have a peel adhesive strength of 0.30 N / 50 mm or more as measured by the peel test described below. (Method for measuring peel adhesive strength by peel test) First, 40 parts by weight of ion-exchanged water is placed in a reaction vessel equipped with a condenser, a nitrogen inlet pipe, a thermometer, and a stirrer, and nitrogen substitution is carried out by stirring at 60° C. for at least 1 hour while introducing nitrogen gas. Next, 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine]n hydrate was added to the reaction vessel. Furthermore, while maintaining the system at 60°C, a monomer emulsion prepared by emulsifying 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan, 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane, and 2 parts by weight of sodium polyoxyethylene lauryl sulfate in 30 parts by weight of ion-exchanged water was gradually added dropwise to the reaction vessel over a period of 4 hours to allow the emulsion polymerization reaction to proceed. After the monomer emulsion addition was completed, the system was maintained at 60°C for 3 hours, cooled to room temperature, and then the pH was adjusted to 7 by adding 10% by weight of aqueous ammonia to obtain an acrylic polymer emulsion (water-dispersed acrylic polymer). Thereafter, 10 parts by weight (solids basis) of a tackifier resin emulsion (aqueous emulsion of polymerized rosin ester with a softening point of 160°C) is added per 100 parts by weight of the acrylic polymer contained in the obtained water-dispersible acrylic polymer. Furthermore, the pH is adjusted to 7.2 and the viscosity to 10 Pa s using 10 wt% ammonia water as a pH adjuster and polyacrylic acid as a thickener, to obtain a water-dispersible acrylic pressure-sensitive adhesive composition. The obtained water-dispersible acrylic adhesive composition is then applied using an applicator to a 700 mm x 250 mm, 25 μm thick PET substrate, and dried at 100°C for 2 minutes to form an adhesive layer with a thickness of 40 μm, thereby obtaining an adhesive tape for evaluating peelability. Then, using double-sided adhesive tape, the surface of the temporary support opposite to the surface where the thread-like adhesive material is attached is attached to a SUS plate, and then the adhesive tape for peelability evaluation is cut to a width of 50 mm and a length of 100 mm, attached to the surface of the temporary support where the thread-like adhesive material is attached, and pressed against the surface by rolling it back and forth with a 2 kg roller. 20 minutes after pressing, the adhesive tape for peelability evaluation is peeled from the temporary support at a peel angle of 180° and a peel speed of 300 mm / min, and the peel adhesive strength is measured. In one embodiment of the method for attaching a thread-like adhesive of the present invention, the peel adhesion strength measured by a peel test of the surface of the temporary support to which the thread-like adhesive is attached may be smaller than the peel adhesion strength measured by a peel test of the surface of the adherend to which the thread-like adhesive is attached. The adhesive thread with a temporary support of the present invention is an adhesive thread with a temporary support used for attaching the adhesive thread in a desired shape to an adherend, A temporary support and a thread-like adhesive body having a shape that is an inverted version of a desired shape on the temporary support are provided, The surface of the temporary support to which the thread-like adhesive material is attached has a peel adhesive strength of 0.30 N / 50 mm or more as measured by the above peel test. In one embodiment of the thread-like adhesive material with a temporary support of the present invention, the thread-like adhesive material may comprise a thread-like core material and an adhesive layer that covers the circumferential surface of the core material. [Effects of the Invention]
[0008] According to the present invention, there are provided a method for attaching adhesive threads that can easily attach adhesive threads in a desired shape, and adhesive threads with temporary supports that can be used in said attachment method. [Brief explanation of the drawings]
[0009] [Figure 1] FIG. 1 is a schematic perspective view of a thread-like adhesive body with a temporary support according to one embodiment of the present invention. [Figure 2] FIG. 2 is a schematic perspective view of the thread-like adhesive body with temporary support shown in FIG. 1, with the surface of the thread-like adhesive body facing the adherend being pressed against an adherend. [Figure 3] FIG. 3 is a schematic perspective view showing a state in which the temporary support has been peeled off from the state shown in FIG. [Figure 4] FIG. 4 is a schematic diagram of the thread-like adhesive body with a temporary support used in Test Example 3. DETAILED DESCRIPTION OF THE INVENTION
[0010] The method for attaching a thread-like adhesive of the present invention is a method for attaching a thread-like adhesive to an adherend in a desired shape, and includes pressing the surface of the thread-like adhesive on the adherend of a thread-like adhesive with a temporary support, in which the thread-like adhesive is attached to a temporary support in a shape that is the inverse of the desired shape. The thread-like adhesive body with a temporary support of the present invention is a thread-like adhesive body with a temporary support used to attach a thread-like adhesive body to an adherend in a desired shape, and comprises a temporary support and a thread-like adhesive body on the temporary support in a shape that is the inverse of the desired shape, and the surface of the temporary support on which the thread-like adhesive body is attached has a peel adhesion strength of 0.30 N / 50 mm or more as measured by the peel test described below. Hereinafter, embodiments of the method for applying adhesive threads of the present invention and adhesive threads with temporary supports will be described in detail. It should be noted that the present invention is not limited to the embodiments described below. Furthermore, in the drawings, components and parts that perform the same function may be denoted by the same reference numerals, and redundant explanations may be omitted or simplified. Furthermore, the embodiments shown in the drawings are schematic in order to clearly explain the present invention, and do not necessarily accurately represent the size or scale of the actual product.
[0011] [Thread-like adhesive substance] First, the thread-like adhesive body in this embodiment will be described. The thread-like adhesive body is an adhesive body that is thread-shaped and has adhesiveness on its peripheral surface. Thread-like means a shape in which the longitudinal length is sufficiently longer than the width length, and the ratio (longest axis passing through the center of gravity of the cross-sectional shape) of the length of the long axis (the longest axis passing through the center of gravity of the cross-sectional shape) to the length of the short axis (the shortest axis passing through the center of gravity of the cross-sectional shape) in the cross-sectional shape perpendicular to the longitudinal direction (hereinafter also referred to as the "cross-sectional shape") (long axis / short axis) is, for example, 200 or less, preferably 100 or less, more preferably 50 or less, even more preferably 10 or less, still more preferably 5 or less, and particularly preferably 3 or less, and also means a state in which it can be bent in various directions and angles like a thread.
[0012] The cross-sectional shape of the thread-like adhesive body in this embodiment is typically circular, but is not limited thereto and may be various shapes other than circular, such as elliptical, polygonal, etc. Furthermore, the length and thickness of the thread-like adhesive body in this embodiment are not particularly limited and may be adjusted appropriately depending on the application.
[0013] The adhesive threads in this embodiment may comprise a core material and an adhesive layer made of an adhesive that coats the circumferential surface of the core material, or may comprise only an adhesive without a core material. From the viewpoints of strength and handleability, it is preferable that the adhesive threads comprise a core material.
[0014] A thread-like adhesive body consisting of only an adhesive can be obtained, for example, by applying the adhesive in a line shape onto a separator and, if necessary, drying it by heating. Furthermore, a thread-like adhesive body having a core material can be obtained, for example, by applying a pressure-sensitive adhesive composition to the surface of a core material by dipping, immersion, coating, etc., and optionally drying by heating. The pressure-sensitive adhesive composition can be applied using a conventional coater such as a gravure roll coater, a reverse roll coater, a kiss roll coater, a dip roll coater, a bar coater, a knife coater, or a spray coater.
[0015] The type of adhesive used is not particularly limited, and examples thereof include acrylic adhesives, rubber adhesives, vinyl alkyl ether adhesives, silicone adhesives, polyester adhesives, polyamide adhesives, urethane adhesives, fluorine-based adhesives, and epoxy adhesives. Among these, rubber adhesives and acrylic adhesives are preferred from the viewpoint of adhesiveness, with acrylic adhesives being particularly preferred. Note that only one type of adhesive may be used alone, or two or more types may be used in combination.
[0016] Acrylic adhesives are made primarily of polymers containing alkyl (meth)acrylate esters such as ethyl acrylate, butyl acrylate, 2-ethylhexyl acrylate, isooctyl acrylate, and isononyl acrylate, to which modifying monomers such as acrylonitrile, vinyl acetate, styrene, methyl methacrylate, acrylic acid, maleic anhydride, vinylpyrrolidone, glycidyl methacrylate, dimethylaminoethyl methacrylate, hydroxyethyl acrylate, and acrylamide may be added as needed.
[0017] Rubber-based adhesives are made primarily from rubber polymers such as natural rubber, styrene-isoprene-styrene block copolymer, styrene-butadiene-styrene block copolymer, styrene-ethylene-butylene-styrene block copolymer, styrene-butadiene rubber, polybutadiene, polyisoprene, polyisobutylene, butyl rubber, chloroprene rubber, and silicone rubber.
[0018] These adhesives may also be appropriately blended with various additives such as tackifying resins such as rosin-based, terpene-based, styrene-based, aliphatic petroleum-based, aromatic petroleum-based, xylene-based, phenol-based, coumarone-indene-based, and hydrogenated versions of these, as well as crosslinking agents, viscosity modifiers (thickeners, etc.), leveling agents, release modifiers, plasticizers, softeners, fillers, colorants (pigments, dyes, etc.), surfactants, antistatic agents, preservatives, antioxidants, UV absorbers, antioxidants, and light stabilizers.
[0019] The adhesive may be either a solvent-based adhesive or a water-dispersed adhesive, with water-dispersed adhesives being preferred because they allow high-speed coating, are environmentally friendly, and have minimal effects on the core material (swelling, dissolution) due to the solvent.
[0020] In a thread-like adhesive body having a core material, from the viewpoint of adhesive strength, it is preferable that a large amount of adhesive is attached to the core material. Specifically, the amount of adhesive attached (weight of adhesive layer per unit length) is preferably 5 mg / m or more, more preferably 8 mg / m or more, and even more preferably 16 mg / m or more. On the other hand, if the amount of adhesive attached is excessive, the adhesive must be applied to the core material multiple times during the manufacturing process, and the applied adhesive takes a long time to dry, resulting in low manufacturing efficiency. Therefore, the amount of adhesive attached is preferably 200 mg / m or less, more preferably 180 mg / m or less, and even more preferably 160 mg / m or less.
[0021] The core material in a thread-like adhesive body having a core material is not particularly limited in shape or material as long as it is a thread-like member, and may be adjusted appropriately depending on the required properties such as strength, weight, hardness, etc. The cross-sectional shape of the core material is typically circular, but it can also be various other shapes such as oval or polygonal. The core material may be a monofilament consisting of a single filament, or a multifilament consisting of multiple filaments, or may be a spun yarn, a processed yarn that has been subjected to crimping or bulking processing, generally referred to as textured yarn, bulky yarn, or stretch yarn, a hollow yarn, or a yarn that is a combination of these by twisting them together, etc. The thickness of the core material is not particularly limited, and may be adjusted appropriately together with the thickness of the adhesive layer so that the thickness of the thread-like adhesive body is appropriate depending on the width of the gap.
[0022] The material for the core may be selected appropriately depending on the required properties such as strength, weight, hardness, etc. Examples of materials that can be used for the core include rayon, cupra, acetate, promix, nylon, aramid, vinylon, vinylidene, polyvinyl chloride, polyester, acrylic, polyethylene (PE), polypropylene (PP), polyolefins such as ethylene-propylene copolymer and ethylene-vinyl acetate copolymer, polyesters such as polyethylene terephthalate (PET), various polymeric materials such as vinyl chloride resin, vinyl acetate resin, polyimide resin, polyamide resin, fluororesin, polyurethane, polychlor, and polylactic acid; various rubbers such as natural rubber and synthetic rubbers such as polyurethane; inorganic materials such as glass, carbon materials, and metals; natural materials such as cotton and wool; and foams such as foamed polyurethane and foamed polychloroprene rubber.
[0023] The core material may contain various additives, such as fillers (inorganic fillers, organic fillers, etc.), antioxidants, antioxidants, ultraviolet absorbers, antistatic agents, lubricants, plasticizers, colorants (pigments, dyes, etc.), etc. The surface of the core material may be subjected to known or conventional surface treatments, such as corona discharge treatment, plasma treatment, or application of a primer.
[0024] In a thread-like adhesive body having a core material, the core material does not necessarily have to be entirely coated with an adhesive layer on its periphery, and may have a portion that does not have an adhesive layer as long as the effects of the present invention are achieved. Furthermore, the end surface of the core material may or may not be coated with an adhesive layer. For example, if the adhesive body is cut during manufacturing or use, the end surface of the core material may not be coated with an adhesive layer.
[0025] [Thread-like adhesive body with temporary support] FIG. 1 shows a schematic perspective view of a thread-like adhesive body with a temporary support in this embodiment. In this embodiment, the thread-like adhesive body 1 with a temporary support is obtained by attaching the above-mentioned thread-like adhesive body 3 to a temporary support 2. The shape of the temporary support is not particularly limited, but it is preferably in the form of a film, for example, as shown in Figure 1. The shape of the thread-like adhesive bodies on the temporary support will be described below. In the following description, the shape of the thread-like adhesive bodies refers to the shape of the thread-like adhesive bodies attached to a surface (the surface of the temporary support or the adherend) when observed from the side of the surface to which the thread-like adhesive bodies are attached. The thread-like adhesive body with a temporary support of this embodiment is used to attach the thread-like adhesive body to an adherend in a desired shape, and when attaching, the thread-like adhesive body on the temporary support is transferred to the adherend and attached as described below. Therefore, the shape of the thread-like adhesive body attached to the adherend is an inverted shape of the thread-like adhesive body in the thread-like adhesive body with a temporary support. Therefore, when attaching a thread-like adhesive body to a temporary support to form a thread-like adhesive body with a temporary support, the thread-like adhesive body is attached to the temporary support in a shape that is an inverted shape of the desired shape.
[0026] If the surface of the temporary support to which the thread-like adhesive is attached (hereinafter also referred to as the "attachment surface") has low peelability from the thread-like adhesive, the thread-like adhesive can be stably attached to the attachment surface of the temporary support, making it easier to attach it in an inverted shape of the desired shape. An index of the releasability of the adhesive surface of the temporary support from the thread-like adhesive body is, for example, the peel adhesive strength measured by the peel test described below. The greater the peel adhesive strength, the lower the releasability. From the above, the peel adhesive strength of the attachment surface of the temporary support in this embodiment is preferably 0.30 N / 50 mm or more, more preferably 0.50 N / 50 mm or more, even more preferably 1 N / 50 mm or more, and particularly preferably 2 N / 50 mm or more. On the other hand, if the releasability of the temporary support from the filamentous adhesive is lower than that of the adherend from the filamentous adhesive, it may be difficult to peel and remove the temporary support from the filamentous adhesive after the filamentous adhesive has been attached to the adherend. Therefore, in this embodiment, the peel adhesive strength of the temporary support is preferably lower than the peel adhesive strength of the adherend. For example, in this embodiment, the peel adhesive strength of the attachment surface of the temporary support is preferably 55 N / 50 mm or less, more preferably 45 N / 50 mm or less, and even more preferably 35 N / 50 mm or less.
[0027] <Peel test explanation> In the peel test, first, an adhesive tape for evaluating peelability is produced, and then the tape is attached to a temporary support and peeled off to measure the adhesive strength (peel adhesive strength). The method for producing the pressure-sensitive adhesive tape for evaluating peelability and the method for measuring the peel adhesive strength will be described in detail below.
[0028] (Method of manufacturing adhesive tape for evaluating peelability) First, 40 parts by weight of ion-exchanged water is placed in a reaction vessel equipped with a condenser, a nitrogen inlet pipe, a thermometer, and a stirrer, and nitrogen substitution is carried out by stirring at 60° C. for 1 hour or more while introducing nitrogen gas. Next, 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine]n hydrate (polymerization initiator) is added to the reaction vessel. Furthermore, while maintaining the system at 60°C, a monomer emulsion prepared by adding 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan (chain transfer agent), 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane (manufactured by Shin-Etsu Chemical Co., Ltd., trade name "KBM-503"), and 2 parts by weight of sodium polyoxyethylene lauryl sulfate (emulsifier) to 30 parts by weight of ion-exchanged water and emulsifying it was gradually added dropwise over 4 hours to the reaction vessel to allow the emulsion polymerization reaction to proceed. After the dropwise addition of the monomer emulsion is completed, the system is maintained at 60°C for 3 hours, and then cooled to room temperature. After that, the pH is adjusted to 7 by adding 10% by weight of aqueous ammonia to obtain an acrylic polymer emulsion (water-dispersed acrylic polymer). Thereafter, 10 parts by weight (solids basis) of a tackifier resin emulsion (aqueous emulsion of polymerized rosin ester with a softening point of 160°C, manufactured by Arakawa Chemical Industries, Ltd., product name "E-865NT") is added per 100 parts by weight of the acrylic polymer contained in the resulting water-dispersible acrylic polymer. The pH is then adjusted to 7.2 and the viscosity to 10 Pa·s using 10% by weight ammonia water as a pH adjuster and polyacrylic acid (manufactured by Toagosei Co., Ltd., product name "Aron B-500") as a thickener, to obtain a water-dispersible acrylic pressure-sensitive adhesive composition. The obtained water-dispersible acrylic pressure-sensitive adhesive composition was then applied using an applicator to a 700 mm × 250 mm, 25 μm-thick PET substrate (manufactured by Toray Industries, Inc., trade name "Lumirror S10") and dried at 100°C for 2 minutes to form a 40 μm-thick pressure-sensitive adhesive layer, thereby obtaining a pressure-sensitive adhesive tape for evaluating peelability.
[0029] (peel test) Using double-sided adhesive tape (manufactured by Nitto Denko Corporation, product name "VR-5300"), the surface of the temporary support opposite the surface for which releasability is to be evaluated is attached to a SUS plate, and then the adhesive tape for evaluating releasability is cut to a width of 50 mm and a length of 100 mm, attached to the surface of the temporary support for which releasability is to be evaluated, and pressed against the surface with a 2 kg roller by rolling it back and forth once. After 20 minutes of pressing, the adhesive tape for evaluating releasability is peeled from the temporary support at a peel angle of 180° and a peel speed of 300 mm / min to measure the adhesive strength (peel adhesive strength).
[0030] The releasability of the temporary support can be controlled by appropriately changing the material of the temporary support, or by subjecting the surface of the temporary support to a roughening treatment or release treatment. Examples of methods for providing the uneven surface include embossing and blasting. Alternatively, a composition containing a binder resin and particles may be applied to the temporary support, and then the composition may be cured to form an uneven surface on the temporary support. Other known methods may also be used, such as screen printing, gravure printing, or transfer by nanoimprinting. Among these, embossing is particularly preferred because it is easy to obtain the desired releasability. The release treatment can be carried out by applying a release agent to the temporary support. Any appropriate release agent can be used. For example, a silicone-based release agent, a fluorine-based release agent, a long-chain alkyl-based release agent, a low-molecular-weight polyethylene-based release agent, a low-molecular-weight polypropylene-based release agent, a rubber-based polymer, a phosphate ester-based surfactant, etc. can be used.
[0031] The hardness of the temporary support is not particularly limited, and may be appropriately set depending on the application, the shape of the thread-like adhesive body, etc. For example, when the surface of the adherend has an uneven shape, a soft temporary support is preferred because it can deform along the uneven shape. On the other hand, when the temporary support is required to have strength, a hard temporary support is preferred.
[0032] Furthermore, the temporary support preferably has a 5% strain stress of 20 N or more, more preferably 25 N or more, and even more preferably 30 N or more. When a temporary support with a 5% strain stress of 20 N or more is peeled off, the rigidity (repulsive force) of the temporary support allows the thread-like adhesive to be pressed against the adherend while being peeled off, which is thought to make it easier for the thread-like adhesive to be transferred to the adherend. The 5% strain stress of the temporary support can be measured by the method described in the Examples.
[0033] The temporary support is preferably embossed. It is believed that the use of an embossed temporary support reduces the adhesion area between the temporary support and the thread-like adhesive body, making it possible to easily transfer the thread-like adhesive body to the adherend even if the temporary support is soft.
[0034] When the adherend is soft and easily deformed, a suitable peel angle as described below can be achieved by deforming the adherend without deforming the temporary support. The thickness of the temporary support is not particularly limited, and may be adjusted appropriately depending on the desired hardness and other factors.
[0035] The material of the temporary support in this embodiment is not particularly limited, and may be appropriately selected depending on the desired releasability, hardness, and the like. For example, paper, resin film, metal foil, or the like that has been subjected to a surface treatment such as unevenness treatment or release treatment as necessary can be used as the temporary support. Examples of resins that can be used to form the resin film include polyester resins, polyolefin resins, polyamide resins, polyimide resins, polyphenylene sulfide resins, polycarbonate resins, polyurethane resins, ethylene-vinyl acetate resins, fluorine-based resins such as polytetrafluoroethylene, and acrylic resins such as polymethyl methacrylate. The resin film may be formed using a resin material containing one of these resins alone, or may be formed using a resin material in which two or more of these resins are blended. The resin film may be unstretched or stretched (uniaxially or biaxially stretched).
[0036] By heating the temporary support to, for example, 40 to 80°C, preferably 50 to 70°C, the drawability of the thread-like adhesive body with temporary support can be improved. This is thought to be because the application of heat changes the component distribution on the surface of the temporary support, changing the modulus of elasticity and increasing tackiness.
[0037] If the drawability is improved, the pressure required to apply the thread-like adhesive body can be reduced. A low pressure can prevent wrinkles or creases from remaining on the temporary support, even if the temporary support is thin or soft.
[0038] The thread-like adhesive body with a temporary support of this embodiment may further include a separator on the surface facing the thread-like adhesive body. That is, in the thread-like adhesive body with a temporary support of this embodiment, the thread-like adhesive body may be sandwiched between the temporary support and the separator. The separator is provided to protect the surface of the thread-like adhesive body that is to be attached to the adherend.
[0039] The material, thickness, hardness, etc. of the separator are not particularly limited, but when attaching the thread-like adhesive body to an adherend, it is first necessary to peel only the separator from the thread-like adhesive body sandwiched between the temporary support and the separator. Therefore, it is preferable that the releasability of the separator from the thread-like adhesive body is greater than the releasability of the temporary support from the thread-like adhesive body. In other words, it is preferable that the peel adhesive strength of the separator is smaller than the peel adhesive strength of the temporary support.
[0040] The back surface of the temporary support may also be used as a separator. That is, the surface of the thread-like adhesive body that is attached to the adherend may have a temporary support for another thread-like adhesive body with a temporary support attached to it. Methods for achieving this state include a method of stacking multiple thread-like adhesive bodies with temporary supports (Method A) and a method of winding a single temporary support to which multiple thread-like adhesive bodies have been attached (Method B).
[0041] When using Method B, it is preferable to set the compressive modulus of the temporary support to 1.5 MPa or less, or to further provide a separator on the surface of the thread-like adhesive body side as described above, and set the compressive modulus of the separator to 1.5 MPa or less. By setting the compressive modulus to 1.5 MPa or less, the pressure applied to the adhesive tape due to tight winding during roll production can be reduced. Furthermore, tight winding of the roll due to stacking of rolls and changes in temperature and humidity can be reduced during storage and transportation of the roll.
[0042] The compressive modulus can be measured by the following compression test using, for example, an autograph (a small tabletop tester EXtest manufactured by Shimadzu Corporation). In a room at 23°C, the test substance (4 cm long x 4 cm wide) was placed on an acrylic stand and a cylindrical indenter (SUS, indenter area: 100 mm 2 ) is pressed vertically against the center of the test substance at a compression rate of 0.1 mm / min, while measuring the compressive stress, and the compressive modulus E (MPa) is calculated using the following formula.
[0043] E(MPa)=(σ2-σ1) / (ε2-ε1) Compressive stress σ1: 0.005 (MPa) Compressive stress σ2: 0.01 (MPa) Compressive strain value ε1: Compressive strain value at compressive stress σ1 Compressive strain value ε2: Compressive strain value at compressive stress σ2
[0044] Furthermore, when using Method B, it is more preferable that the compressive modulus of the separator be 1.5 MPa or less. The use of a separator prevents the thread-like adhesive from being exposed when using the thread-like adhesive with a temporary support of this embodiment. It also prevents the temporary support from becoming flexible, which makes it difficult to perform drawing while pressing the nozzle against the support.
[0045] When a separator is used, it is preferable that there is a difference between the peel adhesive strength of the temporary support and that of the separator. The difference in peel adhesive strength ("peel adhesive strength of temporary support" - "peel adhesive strength of separator") is preferably 0.5 N / 50 mm or more, more preferably 5 N / 50 mm or more, and even more preferably 10 N / 50 mm or more.
[0046] [How to apply the adhesive thread] 2 shows a schematic perspective view of the above-mentioned thread-like adhesive body 1 with temporary support, with the surface of the thread-like adhesive body 3 side pressed against the adherend 4. In the method for attaching a thread-like adhesive body of this embodiment, by pressing the above-mentioned thread-like adhesive body 1 with temporary support in this manner, the thread-like adhesive body 3 is attached (transferred) to the adherend 4 in a desired shape. The method of pressure bonding is not particularly limited as long as the thread-like adhesive body can be adhered to the adherend, and for example, it may be pressed with a roller or fingers via a temporary support.
[0047] The temporary support 2 is then peeled off from the adhesive threads 3 to expose the adhesive threads 3. Figure 3 shows a schematic perspective view of the state after the temporary support 2 has been peeled off. By attaching an article to the adhesive threads 3 thus exposed, the article can be attached to the adherend 4.
[0048] In order to reliably transfer the thread-like adhesive, i.e., to prevent the thread-like adhesive from peeling off from the adherend and remaining on the temporary support, peeling is preferably performed when peeling and removing the temporary support from the adherend, with the peel angle being preferably 5° or more, more preferably 10° or more, and even more preferably 20° or more. When peeling by peeling, the temporary support may be peeled off while deforming, or the adherend may be peeled off while deforming, or both the temporary support and the adherend may be peeled off while deforming. A suitable peeling method may be selected depending on the hardness (ease of deformation) of the temporary support and the adherend.
[0049] As described above, in the method for attaching a thread-like adhesive body of this embodiment, the thread-like adhesive body is formed (drawn) into a shape that is an inverse of the desired shape on a temporary support and then transferred, so that the thread-like adhesive body is attached to the adherend in the desired shape. In this way, the thread-like adhesive body can be easily attached to the adherend even if the attachment shape is complex. Due to these characteristics, the method for attaching a thread-like adhesive material of this embodiment is suitable as a method for attaching a thread-like adhesive material to fix, in a desired shape, cables such as electric wires and optical fibers, LED fiber lights, optical fiber sensors such as FBGs (Fiber Bragg Gratings), various wires (linear members) such as threads, strings, and wires, and thin members. Even in cases where a wire or thin member with a complex shape is to be fixed to another member, the method for attaching a thread-like adhesive material of this embodiment makes it possible to easily attach the thread-like adhesive material to the member to which the wire or thin member is to be attached, in accordance with the complex shape that the wire or thin member should have. The method for attaching a thread-like adhesive body of this embodiment is also suitable, for example, as a method for attaching a thread-like adhesive body for temporarily fixing (temporarily fastening) one item to the surface of another item. For example, it is suitable as a method for attaching a thread-like adhesive body for temporary fixing (temporarily fastening) purposes when manufacturing textile products such as clothing, shoes, bags, and hats, as well as leather products. For example, when sewing textile products or leather products, temporary fixing using a thread-like adhesive body makes it easy to temporarily fix the product while avoiding the sewn area, and easily prevents the adhesive from adhering to the needle. However, if the item to be sewn has a complex shape or is easily deformed, it may not be easy to attach the thread-like adhesive body. Even in such cases, the method for attaching a thread-like adhesive body of this embodiment allows the thread-like adhesive body to be easily attached. The uses described above are merely examples, and the uses to which the method for attaching a thread-like adhesive material of this embodiment can be applied are not limited to these.
[0050] The above describes an embodiment of the present invention with reference to the drawings, but the present invention is not limited to the above embodiment and can be modified as appropriate without departing from the technical scope of the present invention. [Example]
[0051] The present invention will be explained in more detail below with reference to examples, but the present invention is not limited to these examples.
[0052] <Production of thread-like adhesive body> (Preparation of Water-Dispersible Acrylic Adhesive for Forming Adhesive Layer) A reaction vessel equipped with a condenser, nitrogen inlet tube, thermometer, and stirrer was charged with 40 parts by weight of ion-exchanged water, and nitrogen gas was introduced while stirring at 60°C for at least 1 hour to perform nitrogen substitution. 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine]n hydrate (polymerization initiator) was added to the reaction vessel. While maintaining the system at 60°C, the monomer emulsion was gradually added dropwise over 4 hours to allow the emulsion polymerization reaction to proceed. The monomer emulsion used was prepared by adding 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan (chain transfer agent), 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane (manufactured by Shin-Etsu Chemical Co., Ltd., trade name "KBM-503"), and 2 parts by weight of sodium polyoxyethylene lauryl sulfate (emulsifier) to 30 parts by weight of ion-exchanged water and emulsifying them. After the dropwise addition of the monomer emulsion was completed, the system was maintained at 60°C for an additional 3 hours, cooled to room temperature, and then the pH was adjusted to 7 by adding 10% aqueous ammonia, yielding an acrylic polymer emulsion (water-dispersible acrylic polymer). For every 100 parts by weight of the acrylic polymer contained in the acrylic polymer emulsion, 20 parts by weight (solids) of a tackifier resin emulsion (manufactured by Arakawa Chemical Industries, Ltd., product name "E-865NT") was added. Furthermore, the pH was adjusted to 7.2 and the viscosity to 10 Pa·s using 10% by weight ammonia water as a pH adjuster and polyacrylic acid (manufactured by Toagosei Co., Ltd., product name "Aron B-500") as a thickener. In this way, a water-dispersible acrylic adhesive for the adhesive layer was obtained.
[0053] (Core material manufacturing) A core material (fineness 280 dtex) was obtained by twisting 48 polyester yarns at 150 times / m.
[0054] (Production of thread-like adhesive body) The obtained water-dispersible acrylic adhesive was applied to the obtained core material by dipping so that the adhesive adhesion amount in the obtained thread-like adhesive body was 22 mg / m, and then dried at 80°C for 5 minutes to form an adhesive layer, thereby obtaining a thread-like adhesive body.
[0055] <Preparing the temporary support> The following temporary supports were prepared. Temporary support 1: PET film with silicone release treatment (manufactured by Mitsubishi Chemical Corporation, product name "Diafoil MRF") Temporary support 2: Silicone separator (manufactured by Toyobo Co., Ltd., product number "E7006") Temporary support 3: Silicone separator (manufactured by Toyobo Co., Ltd., product number "E7001") Temporary support 4: Non-silicone separator (manufactured by Toyobo Co., Ltd., product number "TN100") Temporary support 5: high-density polyethylene film (manufactured by Sankyo Polyethylene Co., Ltd.) Temporary support 6a: non-silicone separator (manufactured by Toyobo Co., Ltd., product number "TN200") Temporary support 6b: non-silicone separator (manufactured by Toyobo Co., Ltd., product number "TN200") Temporary support 7: embossed polyurethane film (manufactured by Nihon Matai Co., Ltd., product name "ESMER PX-II") Temporary support 8: polyethylene film (manufactured by Okura Kogyo Co., Ltd.) Temporary support 9: Toray Industries, Inc., product name "Torayfan BO YT42" Temporary support 10: Embossed sheet made of polyethylene (matt finish, manufactured by Okura Kogyo Co., Ltd.) Temporary support 11: PET film (manufactured by Toray Industries, Inc., product name "Lumirror S10")
[0056] The temporary support 1 is generally used as a separator for double-sided adhesive tapes and the like. The thickness of each temporary support is as shown in Tables 1 to 3 below.
[0057] {Test Example 1} <Evaluation of releasability of temporary support> An adhesive tape for evaluating peelability was produced as described below, and this was attached to the temporary support of each example, and peeled off to measure the adhesive strength (peel adhesive strength). The method for producing the pressure-sensitive adhesive tape for evaluating peelability and the method for measuring the peel adhesive strength will be described in detail below.
[0058] (Production of adhesive tape for peelability evaluation) First, 40 parts by weight of ion-exchanged water was placed in a reaction vessel equipped with a condenser, a nitrogen inlet pipe, a thermometer and a stirrer, and nitrogen substitution was carried out by stirring at 60° C. for 1 hour or more while introducing nitrogen gas. Next, 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine]n hydrate (polymerization initiator) was added to the reaction vessel. Furthermore, while maintaining the system at 60°C, a monomer emulsion prepared by adding 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan (chain transfer agent), 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane (manufactured by Shin-Etsu Chemical Co., Ltd., trade name "KBM-503"), and 2 parts by weight of polyoxyethylene sodium lauryl sulfate (emulsifier) to 30 parts by weight of ion-exchanged water and emulsifying it was gradually added dropwise to the reaction vessel over a period of 4 hours to allow the emulsion polymerization reaction to proceed. After the dropwise addition of the monomer emulsion was completed, the system was maintained at 60°C for 3 hours, and then cooled to room temperature. The pH was then adjusted to 7 by adding 10% by weight of aqueous ammonia to obtain an acrylic polymer emulsion (water-dispersed acrylic polymer). Thereafter, 10 parts by weight (solids basis) of a tackifier resin emulsion (aqueous emulsion of polymerized rosin ester with a softening point of 160°C, manufactured by Arakawa Chemical Industries, Ltd., product name "E-865NT") was added per 100 parts by weight of the acrylic polymer contained in the resulting water-dispersible acrylic polymer. The pH was then adjusted to 7.2 and the viscosity to 10 Pa s using 10 wt% aqueous ammonia as a pH adjuster and polyacrylic acid (manufactured by Toagosei Co., Ltd., product name "Aron B-500") as a thickener, to obtain a water-dispersible acrylic pressure-sensitive adhesive composition. The obtained water-dispersible acrylic pressure-sensitive adhesive composition was then applied using an applicator to a 700 mm × 250 mm, 25 μm-thick PET substrate (manufactured by Toray Industries, Inc., trade name "Lumirror S10") and dried at 100°C for 2 minutes to form a 40 μm-thick pressure-sensitive adhesive layer, thereby obtaining a pressure-sensitive adhesive tape for evaluating peelability.
[0059] (peel test) Using double-sided adhesive tape (manufactured by Nitto Denko Corporation, product name "VR-5300"), the surface of the temporary support opposite the surface for which releasability was to be evaluated was attached to a SUS plate. The adhesive tape for evaluating releasability was then cut to a width of 50 mm and a length of 100 mm, attached to the surface of the temporary support for which releasability was to be evaluated, and pressed against the surface with a 2 kg roller in one stroke. After 20 minutes of pressing, the adhesive tape for evaluating releasability was peeled from the temporary support at a peel angle of 180° and a peel speed of 300 mm / min to measure the adhesive strength (peel adhesive strength). The measurement results are shown in Table 1.
[0060] <Production of thread-like adhesive body with temporary support and evaluation of drawing properties> The adhesive threads prepared as described above were attached to the surface of each temporary support where the peel adhesive strength was measured, while being lightly pressed with a hand or a stick, so that they formed an equilateral triangle with a side of 60 mm. The results were evaluated according to the following criteria. The results are shown in Table 1.
[0061] 1: Even when the load was increased or the thickness of the adhesive thread was increased, the adhesive thread could not be attached in an equilateral triangle shape. 2: By increasing the load or by making the adhesive threads thicker, the adhesive threads could be attached in the shape of an equilateral triangle. 3: The adhesive threads were able to be attached in the shape of an equilateral triangle. 4: The adhesive threads could be attached in an equilateral triangle shape, and even when the temporary support was bent, the adhesive threads remained firmly attached and were resistant to movement.
[0062] <Evaluation of transferability of thread-like adhesive bodies> The adhesive filaments with temporary supports obtained by the above-mentioned evaluation of drawing properties were placed on an acrylic plate with the adhesive filaments facing downwards, and the adhesive filaments were pressed against the temporary supports with a 2 kg roller in one stroke. The temporary supports were then peeled off at a peel angle of 90° and a peel speed of approximately 50 mm / min. Depending on the state of the adhesive filaments after that, the transferability of the adhesive filaments with temporary supports was evaluated according to the following criteria. The results are shown in Table 1. The transferability of the thread-like adhesive body 1 with temporary support obtained using the temporary support 1 was not evaluated.
[0063] 1: The adhesive thread could not be transferred to the acrylic plate. 2: Although the adhesive threads were successfully transferred to the acrylic plate, they were lifted and the equilateral triangle shape was distorted. 3: Although the adhesive threads were successfully transferred to the acrylic plate, some of the adhesive threads were lifted, and there were some areas where the adhesive threads on the acrylic plate side were not adhered to the acrylic plate. 4: The adhesive threads could be transferred to the acrylic plate, and the entire surface of the adhesive threads facing the acrylic plate was adhered to the acrylic plate. 5: The adhesive threads could be transferred to the acrylic plate without applying pressure, and the entire surface of the adhesive threads facing the acrylic plate was adhered to the acrylic plate.
[0064] <5% strain stress measurement> Each temporary support was cut to a width of 10 mm and a length of 50 mm, and clamped in an autograph (Shimadzu Corporation, small tabletop testing machine EXtest) with a chuck distance of 10 mm, and pulled at 200 mm / min to measure the stress at 5% strain. The results are shown in Table 1.
[0065] [Table 1]
[0066] The thread-like adhesive bodies were attached to temporary supports 1 to 11 in the shape of an equilateral triangle, thereby obtaining thread-like adhesive bodies with temporary supports 1 to 11. By using these thread-like adhesive bodies with temporary supports to transfer the thread-like adhesive bodies to an adherend, the thread-like adhesive bodies can be attached to the adherend in the shape of an equilateral triangle.
[0067] The transferability of the temporary support-attached filamentous adhesive bodies 2 to 11 was actually evaluated, and it was possible to transfer the filamentous adhesive bodies to the adherend (acrylic plate) in all cases. Of these, the temporary support-attached filamentous adhesive bodies 2 to 4 and 6 were particularly excellent in transferability.
[0068] Furthermore, it was found from Examples 1-5 and 1-6 that, if the peel adhesive strength is the same, the temporary support having a higher 5% strain stress provides better transferability.
[0069] Furthermore, it was found from Examples 1-9 and 1-10 that, if the peel adhesive strength was the same, the use of an embossed temporary support provided superior transferability.
[0070] {Test Example 2} <Production of thread-like adhesive body with temporary support and evaluation of drawing properties> Except for not pressing the adhesive threads with hands or a stick, the adhesive threads were applied in the same manner as in Test Example 1, forming an equilateral triangle with a side length of 60 mm. The results were evaluated according to the following criteria. The results are shown in Table 2.
[0071] 1: The adhesive thread could not be attached in the shape of an equilateral triangle. 2: Only the straight part of the adhesive thread could be attached. 3: The adhesive threads were able to be attached in the shape of an equilateral triangle (the corners also stuck). 4: The adhesive threads could be attached in an equilateral triangle shape, and even when the temporary support was bent, the adhesive threads remained firmly attached and were resistant to movement.
[0072] The temporary support was placed on a hot plate heated to 60° C., and then the drawing properties were evaluated. The results are shown in Table 2.
[0073] <Evaluation of transferability of thread-like adhesive bodies> The transferability of the thread-like adhesive body with temporary support was evaluated in the same manner as in Test Example 1. The results are shown in Table 2.
[0074] [Table 2]
[0075] From Examples 2-4, 2-5 and 2-7, it was found that the drawing property was improved by heating the temporary support.
[0076] {Test Example 3} <Production of thread-like adhesive body with temporary support and evaluation of drawing properties> Except for the fact that the thread-like adhesive body was pressed down so that the thickness was reduced to half, the evaluation was carried out in the same manner as in Test Example 1. The results are shown in Table 3.
[0077] <Evaluation of transferability of thread-like adhesive bodies> A thread-like adhesive material 3 produced in the same manner as in Test Example 1 was pressed down so that the thickness was reduced to half and attached to a temporary support 2 so as to form a rectangular shape as shown in Figure 4, thereby obtaining a thread-like adhesive material 1 with a temporary support. The obtained thread-like adhesive material 1 with a temporary support was placed on an acrylic plate with the side of the thread-like adhesive material 3 facing downwards, and the thread-like adhesive material 3 was pressed back and forth once with a 2 kg roller via the temporary support 2. The temporary support 2 was then peeled off from directions 6 to 8 (corner direction, side direction) shown in Figure 4 at a peel angle of 90° and a peel speed of approximately 50 mm / min. Transferability was evaluated using the same criteria as in Test Example 1. The results are shown in Table 3.
[0078] The transferability was evaluated in the same manner as above, except that the peeling direction was set to direction 5 (start point direction or end point direction) shown in Figure 4. The results are shown in Table 3.
[0079] [Table 3]
[0080] From Example 3-1, it was found that the transferability was improved when peeling was performed from the starting point direction or the ending point direction.
[0081] When peeling from directions 6 to 8 (corner directions, side directions) shown in Figure 4, it is thought that the degree of pressure applied to the acrylic plate during transfer is small. Furthermore, the shape of the side of the thread-like adhesive body facing the acrylic plate is round, and stress is concentrated on that side during peeling, making it easier for the thread-like adhesive body to peel off from the acrylic plate.
[0082] On the other hand, when peeling from direction 5 (starting point direction or ending point direction) shown in Figure 4, the shape of the side portion is not round, and the thread-like adhesive can be pressed against the adherend with the temporary support while being peeled off, which is thought to improve transferability. [Explanation of symbols]
[0083] 1. Thread-like adhesive body with temporary support 2 Temporary support 3. Thread-like adhesive body 4 Adherent 5,6,7,8 Peeling direction
Claims
1. A method for attaching a thread-like adhesive body to an adherend in a desired shape, comprising: The thread-like adhesive body is attached to a temporary support in a shape that is an inversion of the desired shape, and the surface of the thread-like adhesive body on the side of the thread-like adhesive body is pressed against the adherend, The thread-like adhesive body includes a thread-like core material and an adhesive layer that covers the circumferential surface of the core material, the adhesive layer of the thread-like adhesive body is a water-dispersible acrylic adhesive, the peel adhesive strength, measured by the following peel test, of the surface of the temporary support to which the thread-like adhesive bodies are attached is smaller than the peel adhesive strength, measured by the peel test, of the surface of the adherend to which the thread-like adhesive bodies are attached, A method for attaching a thread-like adhesive body, wherein the surface of the temporary support to which the thread-like adhesive body is attached has a peel adhesive strength of 0.30 N / 50 mm or more and less than 31 N / 50 mm as measured by the peel test described below. (Method for measuring peel adhesive strength by peel test) First, 40 parts by weight of ion-exchanged water is placed in a reaction vessel equipped with a condenser, a nitrogen inlet pipe, a thermometer, and a stirrer, and nitrogen substitution is carried out by stirring at 60° C. for at least 1 hour while introducing nitrogen gas. Next, 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine] n-hydrate was added to the reaction vessel. Furthermore, while maintaining the system at 60°C, a monomer emulsion prepared by emulsifying 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan, 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane, and 2 parts by weight of polyoxyethylene sodium lauryl sulfate in 30 parts by weight of ion-exchanged water was gradually added dropwise to the reaction vessel over a period of 4 hours to allow the emulsion polymerization reaction to proceed. After completion of the dropwise addition of the monomer emulsion, the system was maintained at 60°C for 3 hours, cooled to room temperature, and then the pH was adjusted to 7 by adding 10% by weight of aqueous ammonia to obtain an acrylic polymer emulsion (water-dispersed acrylic polymer). Thereafter, 10 parts by weight (solids basis) of a tackifier resin emulsion (aqueous emulsion of polymerized rosin ester having a softening point of 160°C) is added per 100 parts by weight of the acrylic polymer contained in the obtained water-dispersible acrylic polymer. Furthermore, the pH is adjusted to 7.2 and the viscosity to 10 Pa s using 10 wt% aqueous ammonia as a pH adjuster and polyacrylic acid as a thickener, to obtain a water-dispersible acrylic pressure-sensitive adhesive composition. The obtained water-dispersible acrylic pressure-sensitive adhesive composition is then applied using an applicator to a PET substrate measuring 700 mm x 250 mm and having a thickness of 25 μm, and dried at 100°C for 2 minutes to form a pressure-sensitive adhesive layer having a thickness of 40 μm, thereby obtaining a pressure-sensitive adhesive tape for evaluating peelability. Then, using double-sided adhesive tape, the surface of the temporary support opposite to the surface to which the thread-like adhesive bodies were attached was attached to an SUS plate, and then the adhesive tape for evaluating releasability was cut to a width of 50 mm and a length of 100 mm, and attached to the surface of the temporary support to which the thread-like adhesive bodies were attached, and pressed against the surface by rolling a 2 kg roller once back and forth. After 20 minutes had passed since pressing, the adhesive tape for evaluating releasability was peeled from the temporary support at a peel angle of 180° and a peel speed of 300 mm / min, and the peel adhesive strength was measured.
2. The method for attaching a thread-like adhesive body according to claim 1 , further comprising peeling and removing the temporary support from the thread-like adhesive body after the pressure-bonding.
3. The method for attaching a thread-like adhesive body according to claim 2, wherein the temporary support is peeled off and removed from the thread-like adhesive body.
4. The method for attaching a thread-like adhesive body according to any one of claims 1 to 3, wherein the temporary support has a 5% strain stress of 20 N or more.
5. A thread-like adhesive body with a temporary support used to attach the thread-like adhesive body to an adherend in a desired shape, A temporary support and a thread-like adhesive body having a shape that is an inverted version of the desired shape on the temporary support, The thread-like adhesive body includes a thread-like core material and an adhesive layer that covers the circumferential surface of the core material, the adhesive layer of the thread-like adhesive body is a water-dispersible acrylic adhesive, the peel adhesive strength, measured by the following peel test, of the surface of the temporary support to which the thread-like adhesive bodies are attached is smaller than the peel adhesive strength, measured by the peel test, of the surface of the adherend to which the thread-like adhesive bodies are attached, The surface of the temporary support to which the thread-like adhesive body is attached has a peel adhesive strength of 0.30 N / 50 mm or more and less than 31 N / 50 mm as measured by the peel test described below. (Method for measuring peel adhesive strength by peel test) First, 40 parts by weight of ion-exchanged water is placed in a reaction vessel equipped with a condenser, a nitrogen inlet pipe, a thermometer, and a stirrer, and nitrogen substitution is carried out by stirring at 60° C. for at least 1 hour while introducing nitrogen gas. Next, 0.1 parts by weight of 2,2'-azobis[N-(2-carboxyethyl)-2-methylpropionamidine] n-hydrate was added to the reaction vessel. Furthermore, while maintaining the system at 60°C, a monomer emulsion prepared by emulsifying 98 parts by weight of 2-ethylhexyl acrylate, 1.25 parts by weight of acrylic acid, 0.75 parts by weight of methacrylic acid, 0.05 parts by weight of lauryl mercaptan, 0.02 parts by weight of γ-methacryloxypropyltrimethoxysilane, and 2 parts by weight of polyoxyethylene sodium lauryl sulfate in 30 parts by weight of ion-exchanged water was gradually added dropwise to the reaction vessel over a period of 4 hours to allow the emulsion polymerization reaction to proceed. After completion of the dropwise addition of the monomer emulsion, the system was maintained at 60°C for 3 hours, cooled to room temperature, and then the pH was adjusted to 7 by adding 10% by weight of aqueous ammonia to obtain an acrylic polymer emulsion (water-dispersed acrylic polymer). Thereafter, 10 parts by weight (solids basis) of a tackifier resin emulsion (aqueous emulsion of polymerized rosin ester having a softening point of 160°C) is added per 100 parts by weight of the acrylic polymer contained in the obtained water-dispersible acrylic polymer. Furthermore, the pH is adjusted to 7.2 and the viscosity to 10 Pa s using 10 wt% aqueous ammonia as a pH adjuster and polyacrylic acid as a thickener, to obtain a water-dispersible acrylic pressure-sensitive adhesive composition. The obtained water-dispersible acrylic pressure-sensitive adhesive composition is then applied using an applicator to a PET substrate measuring 700 mm x 250 mm and having a thickness of 25 μm, and dried at 100°C for 2 minutes to form a pressure-sensitive adhesive layer having a thickness of 40 μm, thereby obtaining a pressure-sensitive adhesive tape for evaluating peelability. Then, using double-sided adhesive tape, the surface of the temporary support opposite to the surface to which the thread-like adhesive bodies were attached was attached to an SUS plate, and then the adhesive tape for evaluating releasability was cut to a width of 50 mm and a length of 100 mm, and attached to the surface of the temporary support to which the thread-like adhesive bodies were attached, and pressed against the surface by rolling a 2 kg roller once back and forth. After 20 minutes had passed since pressing, the adhesive tape for evaluating releasability was peeled from the temporary support at a peel angle of 180° and a peel speed of 300 mm / min, and the peel adhesive strength was measured.
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