Laminated member

By integrating a waterproof member and adhesive auxiliary member in the laminated structure, water infiltration is prevented, thereby maintaining the shape and functionality of the laminated member.

JP7837814B2Active Publication Date: 2026-03-31INOAC CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-06-24
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The laminated member described in existing technologies is prone to shape changes due to water infiltration through its water-permeable layers, which affects the integrity and functionality of the structure.

Method used

Incorporating a waterproof member on the lower surface of the upper layer member, along with a base member and a surface member protected by an adhesive auxiliary member, to prevent water infiltration and subsequent shape changes.

Benefits of technology

The solution effectively suppresses shape changes in the laminated member by preventing water ingress from both upper and lower surfaces, maintaining structural integrity and functionality.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a laminated member capable of suppressing shape change due to water infiltration.SOLUTION: Laminated members 10, 110, 210 comprise upper layer members 20, 120 and waterproofing members 30, 230 provided on the underside of the upper layer members 20, 120.SELECTED DRAWING: Figure 1
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Description

Technical Field

[0001] The present invention relates to a laminated member.

Background Art

[0002] As a laminated member, Patent Document 1 discloses a water-permeable cushion material layer (cloth, cold gauze, etc.) made of at least the vulcanized rubber sponge crushed material among the vulcanized rubber crushed material and the vulcanized rubber sponge crushed material, and the crushed materials are adhered to each other, a water-permeable sheet layer adhered to the lower surface of the cushion material layer, and a water-permeable artificial turf layer adhered to the upper surface of the cushion material layer. An elastic pavement material with artificial turf is disclosed.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In the laminated member disclosed in Patent Document 1 described above, there is a risk that water infiltrates into the water-permeable cushion material layer through the water-permeable sheet layer and the water-permeable artificial turf layer, and due to this infiltration, the shape of the water-permeable cushion material layer changes, and consequently, the shape of the laminated member changes.

[0005] The present invention has been made to solve the above problems, and an object thereof is to provide a laminated member capable of suppressing shape changes due to water infiltration.

Means for Solving the Problems

[0006] In order to solve the above problems, the laminated member according to the present invention is characterized by including an upper layer member and a waterproof member provided on the lower surface of the upper layer member.

[0007] According to the laminated member of this invention, since a waterproof member is provided on the lower surface of the upper layer member, water infiltration (penetration) from the lower surface of the upper layer member can be suppressed. Therefore, changes in the shape of the upper layer member due to water infiltration can be suppressed, and consequently, changes in the shape of the laminated member can be suppressed.

[0008] Furthermore, in the laminated member according to the present invention, it is preferable that the upper layer member comprises a base member and a surface member provided on the upper side of the base member. This makes it possible to protect the upper side of the base member, which is protected from water infiltration from the lower side by the waterproofing member, with the surface member.

[0009] Furthermore, in the laminated member according to the present invention, it is preferable that the upper layer member further comprises an adhesive assisting member provided between the base member and the surface member to assist in the adhesion of the base member to the lower surface of the surface member. This allows the adhesive assisting member to assist in the adhesion between the base member and the surface member, thereby enabling the base member and the surface member to be properly bonded with a desired adhesive strength.

[0010] Furthermore, in the laminated member according to the present invention, it is preferable that the base member comprises crushed material. This makes it possible to provide a waterproof member on the lower surface of the base member comprising crushed material, thereby suppressing water infiltration from the lower side of the upper layer member comprising crushed material, which is relatively prone to expansion due to infiltration. Thus, it is possible to suppress changes in the shape of the upper layer member due to water infiltration, and consequently, changes in the shape of the laminated member can be suppressed.

[0011] Furthermore, in the laminated member according to the present invention, the surface member is preferably artificial turf. When artificial turf is used as the surface member, deformation can be absorbed by the surface member layer even if expansion occurs in the base member, thus suppressing changes in the overall shape of the laminated member.

[0012] Furthermore, in the laminated member according to the present invention, it is preferable that the adhesive auxiliary member is waterproof. This makes it possible to provide a waterproof adhesive auxiliary member on the upper surface of the base member, thereby suppressing water infiltration from the upper surface of the base member. Thus, it is possible to suppress changes in the shape of the base member and, consequently, the upper layer member due to water infiltration. [Effects of the Invention]

[0013] This invention makes it possible to provide a laminated member that can suppress shape changes due to water infiltration. [Brief explanation of the drawing]

[0014] [Figure 1] This is a cross-sectional view showing one embodiment of the laminated member 10 according to the present invention. [Figure 2A] This is a cross-sectional view showing one embodiment of a method for manufacturing a laminated member 10 according to the present invention. [Figure 2B] This is a cross-sectional view showing one embodiment of a method for manufacturing a laminated member 10 according to the present invention. [Figure 3] This is a cross-sectional view showing the laminated member 110 according to the first modified example. [Figure 4] This is a cross-sectional view showing the laminated member 210 according to a second modified example. [Modes for carrying out the invention]

[0015] Hereinafter, an embodiment of the laminated member 10 and its manufacturing method according to the present invention will be described with reference to the drawings. However, the present invention is not limited to this embodiment and can be implemented in various forms with various modifications and improvements based on the knowledge of those skilled in the art.

[0016] (Laminated material) As shown in FIG. 1, the laminated member 10 includes an upper layer member 20 and a waterproof member 30 provided on the lower surface of the upper layer member 20. The upper layer member 20 includes a surface member 21, a base member 22, and an adhesion assisting member 23. In the upper layer member 20, these surface member 21, adhesion assisting member 23, and base member 22 are laminated in this order. The surface member 21 is adhered to the adhesion assisting member 23 via a first adhesive layer 24, and the base member 22 is adhered to the adhesion assisting member 23 via a second adhesive layer 25. The waterproof member 30 is adhered to the base member 22 via a third adhesive layer 26.

[0017] The surface member 21 is artificial turf formed in a plate shape. The surface member 21 includes a turf portion 21a, a sheet portion 21b, and a rib portion 21c. The turf portion 21a has a number of lanceolate linear members. The lanceolate linear member is a flat, elongated member with a pointed tip and a slightly wider base, and is formed of, for example, polyethylene, polypropylene, or the like.

[0018] The sheet portion 21b is a sheet-like (or plate-like) member on which the turf portion 21a is planted, and is formed of, for example, polypropylene. The base of the lanceolate linear member of the turf portion 21a is planted in the sheet portion 21b. For example, the base of the lanceolate linear member is sewn to the sheet portion 21b. The sewing portion protrudes from the back surface (lower surface) of the sheet portion 21b and forms the rib portion 21c. Thus, the rib portion 21c is provided on the back surface of the surface member 21, that is, the back surface of the sheet portion 21b. The rib portion 21c is preferably formed of the same material as the sheet portion 21b or the same material as the turf portion 21a. The rib portion 21c is preferably a linear convex portion. Note that the rib portion 21c may be provided with a plurality of convex portions intermittently on a straight line.

[0019] Note that the rib portion 21c protrudes from the back surface of the sheet portion 21b for planting the turf portion 21a. For example, the base of the turf portion 21a penetrates the sheet portion 21b, and the rib portion 21c may be formed to fix the protruding portion. Note that the protruding portion may directly form the rib portion 21c, or the rib portion 21c may be formed to cover the protruding portion.

[0020] Furthermore, the back surface of the surface member 21 is preferably coated with a rubber material, for example. Examples of rubber materials include natural rubber and synthetic rubber. Examples of synthetic rubbers include isoprene rubber, butadiene rubber, styrene-butadiene rubber, acrylic rubber, urethane rubber, and silicone rubber.

[0021] Furthermore, the surface member 21 is not limited to artificial turf, and other materials such as outdoor flooring materials or indoor flooring materials that have a shock-absorbing function may be used. The surface member 21 may be formed in the form of a sheet rather than a plate.

[0022] The base member 22 is the member to which the surface member 21 is bonded. The base member 22 is a member that maintains a high level of strength of the surface member 21 by being bonded to it. The base member 22 is formed in the shape of a plate or a sheet.

[0023] The base member 22 is preferably made of natural rubber or synthetic rubber such as ethylene propylene diene rubber (EPDM), styrene butadiene rubber (SBR), nitrile rubber (NBR), butadiene rubber (BR), butyl rubber (isobutylene / isoprene rubber) (IIR), silicone rubber, or fluororubber. The base member 22 is preferably made of foamed rubber obtained by foaming rubber material, rubber pellets obtained by crushing rubber material or foamed rubber and forming them into granules of a predetermined shape such as spherical or cylindrical, and then solidifying them, or pellet aggregates obtained by agglomerating these pellets. Thus, it is preferable for the base member 22 to include crushed material. The base member 22 may also be made as a single piece.

[0024] Furthermore, a shade cloth may be provided on the foundation member 22. For example, it is preferable to laminate the shade cloth on the lower surface of the foundation member 22. This makes it possible to suppress swelling due to water infiltration into the foundation member 22 and prevent deformation (warping) of the foundation member 22.

[0025] The adhesive assist member 23 is a member that assists in the adhesion between the surface member 21 and the base member 22. In other words, the adhesive assist member 23 can also be described as a member provided on the back surface (bottom surface) of the surface member 21 to assist in the adhesion of the base member 22 to the bottom side of the surface member 21. In this case, the base member 22 is the member to be adhered to the surface member 21. Alternatively, the adhesive assist member 23 can also be described as a member provided on the surface (top surface) of the base member 22 to assist in the adhesion of the surface member 21 to the surface side of the base member 22. In this case, the surface member 21 is the member to be adhered to the base member 22.

[0026] The adhesive auxiliary member 23 is formed in a plate shape. The thickness of the adhesive auxiliary member 23 is preferably set to a value greater than the height of the protruding portion 21c. In this embodiment, since the height of the protruding portion 21c is about 3 mm, the thickness of the adhesive auxiliary member 23 is preferably set to a value greater than 5 mm. The adhesive auxiliary member 23 is formed of a soft material with a hardness less than a predetermined value. The hardness is preferably 80 (Shore A) or less, and more preferably 60 (Shore A) or less. Examples of soft materials include polyurethane, polystyrene, polyethylene (PE, including foamed), polypropylene (PP, including foamed), nonwoven fabric, ethylene vinyl acetate (EVA), and thermoplastic elastomer. Examples of thermoplastic elastomers include olefin-based thermoplastic elastomer (TPO), polyurethane-based thermoplastic elastomer (TPU), styrene-based thermoplastic elastomer (TPS), and soft polyvinyl chloride (PVC).

[0027] Furthermore, it is preferable that the adhesive auxiliary member 23 is waterproof. This means that the adhesive auxiliary member 23 provided on the upper surface of the base member 22 is waterproof, making it possible to suppress water seeping in from above the base member 22. Thus, it is possible to suppress changes in the shape of the base member 22 and, consequently, the upper layer member 20 due to water seepage, and furthermore, it is possible to suppress changes in the shape of the laminated member 10.

[0028] Nonwoven fabrics include short-fiber nonwoven fabrics and long-fiber nonwoven fabrics. Short-fiber nonwoven fabrics include spunlace nonwoven fabrics, which are manufactured by entangling the fibers (especially short fibers) in the web with a high-pressure water flow without using a binder (adhesive); needle-punched nonwoven fabrics, which entangle the fibers by moving a needle back and forth; and thermal-bonded nonwoven fabrics, which use heat-welded fibers. Long-fiber nonwoven fabrics include spunbond nonwoven fabrics, meltblown nonwoven fabrics, and flash-spun nonwoven fabrics. Spunbond nonwoven fabrics are made by laminating continuous fibers (filaments) spun from a nozzle by melting or dissolving a polymer onto a moving screen using one or more bonding methods. Meltblown nonwoven fabrics are made by spinning a polymer into fibers in a high-speed hot gas flow, which are then cooled and accumulated on a moving screen using one or more bonding methods. Flash-spun nonwoven fabrics are nonwoven fabrics made of highly fibrillated filaments created by spinning a polymer solution from a nozzle under specific conditions, evaporating the solvent immediately after spinning, and laminating these fibers on a moving screen using one or more bonding methods. The aforementioned polymers are high-molecular-weight organic compounds, such as thermoplastic resins (synthetic resins) like polyamides, polyethylene, polypropylene, and polyurethane.

[0029] Furthermore, it is preferable that the strain of the adhesive auxiliary member 23 is set to a value greater than the strain of the base member 22. The adhesive auxiliary member 23 is a member whose strain is within a predetermined range. The predetermined range is preferably 25 to 75%, and more preferably 40 to 60%. Note that the strain is the ratio of the deformation amount ΔL to the original (pre-deformation) length L (strain = ΔL / L).

[0030] The first adhesive layer 24 is a layer formed with the first adhesive. The first adhesive is preferably an adhesive that does not contain organic solvents. For example, the first adhesive can be a hot melt adhesive. A hot melt adhesive is an adhesive that adheres by melting with heat, and as the material, a thermoplastic synthetic resin such as ethylene vinyl acetate (EVA) is used. In this embodiment, a moisture-curing hot melt adhesive is used as the hot melt adhesive. The second adhesive layer 25 is a layer formed in the same way as the first adhesive layer 24 and is formed with the same second adhesive as the first adhesive. The third adhesive layer 26 is a layer formed in the same way as the first adhesive layer 24 and is formed with the same third adhesive as the first adhesive.

[0031] Moisture-curing hot-melt adhesives are urethane-based moisture-curing hot-melt adhesives, mainly composed of urethane prepolymers. Moisture-curing hot-melt adhesives are obtained by the reaction of a polyester polyol with an isocyanate compound and have isocyanate groups (NCO) at their ends. Particularly preferred are those with a terminal NCO content of 1-3%. Examples of polyester polyols include those obtained by polycondensation of aliphatic carboxylic acids such as malonic acid, succinic acid, and adipic acid, or aromatic carboxylic acids such as phthalic acid, with aliphatic glycols such as ethylene glycol, diethylene glycol, and propylene glycol. Polyester polyols made from dicarboxylic acids with 6 or more carbon atoms (adipic acid, sebacic acid, etc.) are preferred, and even more preferably those containing 80% or more by weight of crystalline ester polyols with a melting point of 45°C or higher as the polyol component. The glycol constituting the polyester polyol can be an alcohol with 4 or more carbon atoms (1,4-butanediol, 1,6-hexanediol, etc.). Furthermore, aromatic isocyanates are preferred as the isocyanate compound, and diphenylmethane diisocyanate (MDI) is particularly preferred. The moisture-curing hot melt adhesive may also contain additives such as tackifiers, waxes, nucleating agents, and antioxidants as needed. Moreover, the moisture-curing hot melt adhesive is not limited to urethane-based moisture-curing hot melt adhesives; polyester-based or acrylic-based moisture-curing hot melt adhesives may also be used.

[0032] When bonding the surface member 21 and the adhesive auxiliary member 23, the moisture-curing hot melt adhesive is applied to the back surface (the surface to be coated) of the surface member 21 by roll coating using a roll coater. The moisture-curing hot melt adhesive may be applied not only to the back surface of the surface member 21, but also only to the surface (the surface to be coated) of the adhesive auxiliary member 23, or to both the back surface of the surface member 21 and the surface of the adhesive auxiliary member 23. Furthermore, when bonding the adhesive auxiliary member 23 to the base member 22, the moisture-curing hot melt adhesive may be applied to the back surface of the adhesive auxiliary member 23 and / or the surface of the base member 22. Additionally, when bonding the base member 22 to the waterproofing member 30, the moisture-curing hot melt adhesive may be applied to the back surface of the base member 22 and / or the surface of the waterproofing member 30.

[0033] An example of a roll coater used in roll coating is the roll coater described in Japanese Patent Publication No. 2018-184000. This roll coater comprises a feed roll, a supply roll, a coating roll, and a hot melt adhesive storage tank. The molten moisture-curing hot melt adhesive stored in the hot melt adhesive storage tank is supplied from the discharge section between the supply roll and the coating roll while the object to be coated is being fed in one direction by the feed roll. The molten moisture-curing hot melt adhesive supplied between the supply roll and the coating roll is supplied to the upper surface (coating surface) of the object to be coated by the rotation of the supply roll and the coating roll. The molten moisture-curing hot melt adhesive supplied to the upper surface of the object to be coated comes into contact with the lower end of the outer circumference of the rotating coating roll and is applied to the upper surface of the object to be coated.

[0034] To facilitate and ensure good roll coating, the moisture-curing hot melt adhesive is preferably solid at room temperature, molten at 100°C or higher, and has a melt viscosity (JIS K 6862) of 5 to 15 Pa·s (Pascal-seconds) at 140°C. Note that "solid at room temperature" means solid at 20°C. The molten temperature range can be appropriately set within the range of 100 to 160°C. Furthermore, the moisture-curing hot melt adhesive is preferably a urethane prepolymer containing a crystalline ester polyol. The crystalline polyester polyol is preferably (1) solid at room temperature with a melting point of 45°C or higher, and (2) has a solidification time of 1 to 5 minutes at room temperature after melt coating, even considering seasonal variations. In other words, for a moisture-curing hot melt adhesive to be applied to a long sheet while being rolled up, and to dry and cure quickly at room temperature within a predetermined equipment length, it is preferable that the adhesive contains a crystalline ester polyol, has an NCO content of 1-3% in the urethane prepolymer, and has a number average molecular weight of 1000-4000, more preferably 1500-2500.

[0035] Furthermore, the application rate for moisture-curing hot melt adhesive is 30-200 g / m². 2 Preferably, it is 50-150 g / m 2 This is more preferable. Furthermore, the application method is not limited to roll coating; spray coating may also be used.

[0036] As a spray coating method, a curtain spray method is particularly preferred, in which a moisture-curing hot-melt adhesive is extruded from multiple nozzles arranged in a row under heated and pressurized conditions, and sprayed onto the surface while being spun into threads to create layers. According to the curtain spray method, thread-like molten resin is spun and stretched by a high-temperature, high-speed airflow, and then sprayed directly onto the surface material to create layers.

[0037] In spray coating, hot melt adhesive is applied using a well-known spray coating apparatus. A known spray coating apparatus is disclosed in Japanese Patent Application Publication No. 2017-136735. The spray coating apparatus applies molten moisture-curing hot melt adhesive, supplied from a moisture-curing hot melt adhesive storage tank, to the adhesive application surface to which the adhesive is to be applied.

[0038] The waterproof member 30 is formed from a waterproof material in the shape of a plate or sheet. The thickness of the waterproof member 30 is preferably set to 3 mm to 7 mm, depending on the material. In this embodiment, the thickness of the waterproof member 30 is set to 5 mm. The waterproof material is a material that has waterproof properties, and examples of waterproof materials include polyurethane, polystyrene, polyethylene (PE, including foamed), polypropylene (PP, including foamed), nonwoven fabric, ethylene vinyl acetate (EVA), and thermoplastic elastomer. Examples of thermoplastic elastomers include olefin-based thermoplastic elastomer (TPO), polyurethane-based thermoplastic elastomer (TPU), styrene-based thermoplastic elastomer (TPS), and flexible polyvinyl chloride (PVC).

[0039] The waterproofing member 30 prevents water from entering the foundation member 22 from the bottom side, thereby preventing changes in the shape of the foundation member 22 (for example, warping of the four corners, warping of the central part, overhang, undulation, depression, etc.), and consequently preventing changes in the shape of the laminated member 10.

[0040] (Manufacturing method for laminated components (manufacturing process)) Next, the manufacturing method (manufacturing process) for the laminated member 10 described above will be explained with reference to Figures 2A and 2B. The manufacturing method for the laminated member 10 comprises a first coating step S1, a first pressing step S3, a second coating step S5, a second pressing step S7, a third coating step S9, a third pressing step S11, and a curing step S13.

[0041] (First coating process, first pressing process) The first coating step S1 involves applying hot melt adhesive 25a to at least one of the surfaces (top) of the base member 22 and the back surface (bottom) of the adhesive auxiliary member 23. In this case, it is preferable that the hot melt adhesive 25a is applied by roll coating (as described above). In this embodiment, the hot melt adhesive 25a is applied to both the surface of the base member 22 and the back surface of the adhesive auxiliary member 23. In roll coating, the hot melt adhesive 25a is applied by a well-known roll coating device (roll coater). The application amount is 30 to 200 g / m². 2 Preferably, it is 50-150 g / m 2 It is more preferable that this be the case. Furthermore, the application method may be spray coating instead of roll coating.

[0042] The first pressing step S3, which follows the first coating step S1, involves pressing the base member 22 and the adhesive auxiliary member 23 together. In the first pressing step S3, the base member 22 and the adhesive auxiliary member 23 are first placed on top of each other with the adhesive 25a applied to the sides (adhesive-coated sides) (if adhesive is applied to only one side, the surface of the base member 22 and the back surface of the adhesive auxiliary member 23 are placed together). Then, the stacked base member 22 and adhesive auxiliary member 23 are compressed by a press device to a predetermined amount of compression. This forms the first stage base member 41, which is the base member 22 to which the adhesive auxiliary member 23 is bonded.

[0043] The predetermined compression amount is preferably such that it is 40-60% of the thickness of the object to be compressed, and in this embodiment, that ratio is set to 50%. The compression is performed for a predetermined time (for example, 40 seconds). The predetermined time is preferably set to 40-80 seconds.

[0044] (Second coating process, second pressure bonding process) The second coating step S5 involves applying hot melt adhesive 26a to at least one of the surfaces of the waterproofing member 30 and the back surface of the base member 22. In this case, it is preferable that the hot melt adhesive 26a is applied by roll coating (as described above). In this embodiment, the hot melt adhesive 26a is applied to both the surface of the base member 22 and the back surface of the waterproofing member 30. The application amount is 30 to 200 g / m². 2 Preferably, it is 50-150 g / m 2 It is more preferable that this be the case. Furthermore, the application method may be spray coating instead of roll coating.

[0045] The second pressing step S7, which takes place after the second coating step S5, involves pressing the first-stage base member 41 and the waterproof member 30 together. In the second pressing step S7, first, the first-stage base member 41 and the waterproof member 30 are placed on top of each other with the adhesive 26a applied (adhesive-coated surfaces) facing each other (if adhesive is applied to only one side, the surface of the waterproof member 30 and the back surface of the base member 22 are brought together). Then, the stacked first-stage base member 41 and waterproof member 30 are compressed by a press device to a predetermined amount of compression. As a result, the waterproof member 30 is bonded to the lower surface of the first-stage base member 41 (base member 22), forming the second-stage base member 42. In the second-stage base member 42, the adhesive auxiliary member 23 is bonded to the upper surface of the base member 22, and the waterproof member 30 is bonded to the lower surface of the base member 22. It is preferable that the predetermined amount of compression and the compression time be set in the same way as in the first pressing step S3 described above.

[0046] Furthermore, it is preferable to cure the adhesives 25a and 26a of the second-stage base members 42 laminated in the second-stage base members 42 after the second-stage bonding step S7. In this curing step, for example, the second-stage base members 42 after the second-stage bonding step S7 are stored at a predetermined temperature and humidity for a predetermined time, allowing the hot-melt adhesive to react with natural cooling and moisture (humidification) in the air, thus promoting curing. The curing time required for the hot-melt adhesive to completely harden due to moisture curing is, for example, several hours to more than ten hours. The predetermined time is preferably set to 24 to 72 hours, and in this embodiment, it is set to 24 hours. The predetermined temperature is preferably set to 5 to 40°C, and in this embodiment, it is set to 15 to 30°C (so-called room temperature). The predetermined humidity is preferably set to a relative humidity of 40 to 95%, and in this embodiment, it is set to 45 to 85% (so-called normal humidity).

[0047] (Third coating process, third pressure bonding process) The third coating step S9 involves applying hot melt adhesive 24a to at least one of the surfaces of the adhesive auxiliary member 23 (second stage base member 42) and the surface of the surface member 21. In this case, it is preferable that the hot melt adhesive 24a is applied by roll coating (as described above). In this embodiment, the hot melt adhesive 24a is applied to both the surface of the adhesive auxiliary member 23 and the surface of the surface member 21. The application amount is 30 to 200 g / m². 2 Preferably, it is 50-150 g / m 2 It is more preferable that this is the case. The amount applied is preferably set to an amount that can achieve the desired adhesive strength and does not fill the gaps between the protrusions 21c, i.e., the recesses of the surface member 21. Furthermore, the application method may be spray application instead of roll coating.

[0048] The third pressing step S11, which occurs after the third coating step S9, involves pressing the second-stage base member 42 and the surface member 21 together. In the third pressing step S11, first, the second-stage base member 42 and the surface member 21 are placed on top of each other with the adhesive 24a applied to the sides (adhesive-coated sides) (if adhesive is applied to only one side, the surface of the adhesive auxiliary member 23 and the back surface of the surface member 21 are placed together). Then, the stacked second-stage base member 42 and surface member 21 are compressed by a press device to a predetermined amount of compression. As a result, the surface member 21 is bonded to the second-stage base member 42, forming the stacked member 10. It is preferable that the predetermined amount of compression and the compression time be set in the same way as in the first pressing step S3 described above.

[0049] The curing step S13 cures the adhesive 24a of the laminated members 10 that were laminated in the third pressing step S11, thereby completing the laminated members 10. In the curing step S13, the laminated members 10 after the third pressing step S11 are stored at a predetermined temperature and humidity for a predetermined time, allowing the hot melt adhesive to react with natural cooling and moisture (humidification) in the air, thus proceeding with curing. In addition, the curing step S13 is carried out in the same manner as the curing step performed after the second pressing step S7 described above. [Examples]

[0050] The present invention will be described in more detail below with reference to examples. However, the present invention is not limited to these examples and can be implemented in various forms with various modifications and improvements based on the knowledge of those skilled in the art.

[0051] [Table 1]

[0052] Using the surface member 21, base member 22, adhesive auxiliary member 23 (waterproof), waterproof member 30, and adhesive shown in Table 1, the laminated member 10 of Comparative Example 1 and the laminated members 10 of Examples 1 and 2 were prepared.

[0053] The laminated member of Comparative Example 1 comprises a surface member 21, a base member 22, and an adhesive auxiliary member 23, but does not include a waterproof member 30. The surface member 21 is artificial turf, and the base member 22 is foamed rubber pellets (with a thickness of 15 mm). The adhesive auxiliary member 23 is made of foamed polyethylene and has a thickness of 5 mm. The surface member 21 and the adhesive auxiliary member 23, and the adhesive auxiliary member 23 and the base member 22 are bonded together with a urethane-based hot melt adhesive. The urethane-based hot melt adhesive is applied by the method described above.

[0054] Unlike Comparative Example 1, the laminated member 10 of Example 1 includes not only a surface member 21, a base member 22, and an adhesive auxiliary member 23, but also a waterproof member 30. The surface member 21 is artificial turf, and the base member 22 is foamed rubber pellets (with a thickness of 15 mm). The adhesive auxiliary member 23 is made of foamed polyethylene and has a thickness of 5 mm. The waterproof member 30 is made of foamed polyethylene and has a thickness of 5 mm. The surface member 21 and the adhesive auxiliary member 23, and the adhesive auxiliary member 23 and the base member 22 are bonded together with an organic solvent-free urethane-based hot melt adhesive. The base member 22 and the waterproof member 30 are bonded together with an organic solvent-free urethane-based hot melt adhesive.

[0055] The laminated member of Example 2 comprises a surface member 21, a base member 22, and a waterproof member 30, and unlike Example 1, does not include an adhesive auxiliary member 23. The surface member 21 is artificial turf, and the base member 22 is foamed rubber pellets (with a thickness of 15 mm). The waterproof member 30 is made of foamed polyethylene and has a thickness of 5 mm. The surface member 21 and the base member 22 are bonded together with a chloroprene rubber-based solvent adhesive. The base member 22 and the waterproof member 30 are bonded together with a urethane-based hot melt adhesive that does not contain organic solvents.

[0056] The deformability due to infiltration was evaluated for the laminated members 10 of each example and comparative example. Specifically, the laminated member 10 of Example 2 and the laminated members of Comparative Example 1 and Comparative Example 2 (with predetermined dimensions (e.g., 50 cm x 50 cm)) were placed in a constant temperature and humidity chamber at a predetermined temperature (e.g., 90°C) and a predetermined humidity (e.g., 95%), and then the change in shape of the laminated members 10 (especially the amount of warping) was observed (to check the change over time).

[0057] In Comparative Example 1, all three test samples exhibited warping at all four corners. The amount of warping varied from 5 to 17 mm, with an average warping of 9.8 mm per sample. In Comparative Example 1, a waterproof adhesive auxiliary member 23 is laminated on the upper surface of the base member 22, which can suppress water ingress from the upper surface of the base member 22. However, it cannot suppress water ingress from the lower surface of the base member 22, so the base member 22 is infiltrated from the lower side. At this time, the adhesive auxiliary member 23 and the surface member 21 are laminated on the upper surface of the base member 22, but nothing is laminated on the lower surface of the base member 22. Therefore, the infiltrated and expanded base member 22 expands more on the lower side than on the upper side, causing the upper side of the base member 22 to warp.

[0058] On the other hand, in Example 1, although warping occurred in all four corners of almost all three test samples, the amount of warping for each was 1 to 4 mm, and the average amount of warping per sample was 2.9 mm. In Example 1, a waterproof adhesive auxiliary member 23 is laminated on the upper surface of the base member 22, and a waterproof member 30 is laminated on the lower surface of the base member 22, making it possible to suppress water ingress from both the upper and lower surfaces of the base member 22. As a result, the expansion of the base member 22 due to water ingress (soaking) can be suppressed overall (and consequently, the expansion of the lower side can be suppressed more than the upper side), and deformation that causes the upper side of the base member 22 to warp can be suppressed.

[0059] In Example 2, while warping did not occur in the four corners of almost all three test samples, warping (convex portion) occurred in the central part of the samples. The amount of warping in each sample was about half that of Comparative Example 1, and the average amount of warping per sample was about 5 mm. In Example 2, the waterproofing member 30 is laminated on the lower surface of the base member 22, which makes it possible to suppress water ingress from the lower surface of the base member 22, but it is not possible to suppress water ingress from the upper surface of the base member 22, so the base member 22 is infiltrated from the upper side. At this time, since the waterproofing member 30 is laminated on the lower surface of the base member 22 and the surface member 21 is laminated on the upper surface, the infiltrated and expanded base member 22 expands more on the upper side than on the lower side, and deforms so that the lower side of the base member 22 warps (i.e., the central part becomes convex).

[0060] As is clear from the above description, in the laminated member of Comparative Example 1, the four corners of the sample warp relatively significantly due to infiltration, so the deformability cannot be said to be good from the standpoint of appearance and usability. On the other hand, in the laminated member of Example 1, although the four corners of the sample warp due to infiltration, the amount of warping is reduced to a small extent, so the deformability can be said to be good from the standpoint of appearance and usability. Furthermore, in the laminated member of Example 2, although the central part of the sample warps due to infiltration, the warping of the four corners can be suppressed, so the deformability can be said to be good from the standpoint of appearance and usability.

[0061] (First variation) In the embodiment described above, a raised ridge 21c is formed on the back surface of the surface member 21 and the surface of the adhesive auxiliary member 23 is formed flat. However, a raised ridge 123c may be formed on the surface of the adhesive auxiliary member 23 and the back surface of the surface member 121 may be formed flat. In this case, as shown in Figure 3, the laminated member 110 comprises an upper layer member 120 and a waterproof member 30, similar to the laminated member 10 described above. The upper layer member 120 comprises a surface member 121, a base member 22, and an adhesive auxiliary member 123. The surface member 121 is bonded to the adhesive auxiliary member 123 via a first adhesive layer 24, and the base member 22 is bonded to the adhesive auxiliary member 123 via a second adhesive layer 25. The waterproof member 30 is bonded to the base member 22 via a third adhesive layer 26.

[0062] The surface member 121 is a plate-shaped shock-absorbing member. The surface member 121 is a member with at least a flat back surface, and is made of, for example, polyethylene, polypropylene, or the like. The adhesive auxiliary member 123 comprises a sheet portion 123b formed in a sheet shape, and a protruding portion 123c that protrudes from the surface of the sheet portion 123b. The protruding portion 123c is formed in the same way as the protruding portion 21c described above. The adhesive auxiliary member 123 is made of the same material as the adhesive auxiliary member 23 described above.

[0063] Furthermore, the aforementioned laminated member 110 is manufactured using the same manufacturing method (manufacturing process) as the laminated member 10 described above.

[0064] (Second variation) Furthermore, in the embodiment described above, a water channel 51 may be formed on the lower surface of the waterproof member 30 described above. Specifically, as shown in Figure 4, the laminated member 210 comprises an upper member 20, a waterproof member 230, and a water channel 51, similar to the laminated member 10 described above. The upper layer member 20 is bonded to the waterproof member 230 via the third adhesive layer 26.

[0065] The waterproof member 230, like the adhesive auxiliary member 123 described above, comprises a sheet portion 230b formed in a sheet shape, and a plurality of protruding ridges 230c protruding from the back surface (bottom surface) of the sheet portion 230b. The protruding ridges 230c are formed in the same manner as the protruding ridges 21c described above. The waterproof member 230 comprises grooves 230d formed between adjacent protruding ridges 230c and a water channel 51.

[0066] The water channel 51 is formed between the waterproofing member 230 (groove 230d) and the installation surface SF on which the waterproofing member 230 is installed. The water channel 51 extends horizontally along the protruding ridge 230c and has openings (not shown) at both ends. In other words, the laminated member 210 has multiple water channels 51 that are parallel to each other. This water channel 51 makes it possible to improve the drainage between the laminated member 210 and the installation surface SF.

[0067] Furthermore, the waterproofing member 230 may be provided with connecting passages that link adjacent water channels 51. This makes it possible to further improve the drainage between the laminated member 210 and the installation surface SF. Additionally, water channels (formed similarly to the water channels 51) may be formed on the lower surface of the surface member 21, or water channels may be formed on the upper surface of the adhesive auxiliary member 23. Furthermore, water channels may be formed on the upper surface of the base member 22, or water channels may be formed on the lower surface of the base member 22.

[0068] Furthermore, although the aforementioned water channels are formed along the horizontal direction of the laminated member, through holes may be formed to connect these horizontally formed water channels in the vertical direction.

[0069] (Other variations) Furthermore, in the laminated member 10 described above, the adhesive auxiliary member 23 may be omitted. In this case, the modified laminated member will include a surface member 21, a base member 22, and a waterproof member 30. Because it has a waterproof member 30, it can suppress water penetration into the base member 22 and, consequently, into the laminated member. Furthermore, in the laminated member 10 described above, the surface member 21 can also be omitted. In this case, the modified laminated member will include a base member 22 and a waterproof member 30, but because it has a waterproof member 30, it is possible to suppress water infiltration into the base member 22 and, consequently, the laminated member.

[0070] Furthermore, the surface member described above may be made waterproof. In this case, the laminated member preferably comprises a surface member, a base member, and a waterproof member. With this configuration, the base member is sandwiched between the waterproof surface member and the waterproof member, making it possible to suppress water infiltration from both sides (top and bottom) of the base member, and thus suppressing changes in the shape of the laminated member. For example, the laminated member comprises the surface member 121 (which is waterproof), the base member 22, and the waterproof member 30. In this case, the adhesive auxiliary member 123 can be omitted.

[0071] (Effects and mechanisms of the embodiment) The laminated members 10, 110, and 210 according to the above-described embodiment include upper members 20 and 120, and waterproof members 30 and 230 provided on the lower surface of the upper members 20 and 120.

[0072] With these laminated members 10, 110, and 210, waterproof members 30 and 230 are provided on the lower surfaces of the upper members 20 and 120, so that water infiltration (penetration) from the lower side of the upper members 20 and 120 can be suppressed. Therefore, changes in the shape of the upper members 20 and 120 due to water infiltration can be suppressed, and consequently, changes in the shape of the laminated members 10, 110, and 210 can be suppressed.

[0073] Furthermore, in the laminated members 10, 110, and 210, it is preferable that the upper members 20 and 120 comprise a base member 22 and surface members 21 and 121 provided on the upper side of the base member 22. This makes it possible to protect the upper side of the base member 22, which is protected from water infiltration from the lower side by the waterproofing member, with the surface members 21 and 121. For example, by giving the surface members 21 and 121 functions such as abrasion resistance and waterproofing, it becomes possible to protect the base member 22 from the viewpoint of abrasion resistance and waterproofing.

[0074] Furthermore, in the laminated members 10, 110, and 210, it is preferable that the upper members 20 and 120 further include adhesive assist members 23 and 123 provided between the base member 22 and the surface members 21 and 121 to assist in the adhesion of the base member 22 to the lower surface of the surface members 21 and 121. This allows the adhesive assist members 23 and 123 to assist in the adhesion of the base member 22 and the surface members 21 and 121, thereby enabling the base member 22 and the surface members 21 and 121 to be properly bonded with a desired adhesive strength.

[0075] Furthermore, in the laminated members 10, 110, and 210, it is preferable that the base member 22 is equipped with crushed material. This makes it possible to provide waterproof members 30 and 230 on the lower surface of the base member 22 equipped with crushed material, thereby suppressing water infiltration from the lower side of the upper members 20 and 120 equipped with crushed material that is relatively prone to expansion due to infiltration. Thus, it is possible to suppress changes in the shape of the upper members 20 and 120 due to water infiltration, and consequently, changes in the shape of the laminated members 10, 110, and 210.

[0076] Furthermore, in the laminated members 10,210, it is preferable that the surface member 21 is artificial turf. If artificial turf is used as the surface member 21, even if expansion occurs in the base member 22, the deformation can be absorbed by the surface member 21 layer (the thickness and elasticity of the artificial turf are utilized), making it possible to suppress changes in the overall shape of the laminated members 10,210.

[0077] Furthermore, in the laminated members 10, 110, and 210, it is preferable that the adhesive auxiliary members 23 and 123 have waterproof properties. This makes it possible to provide waterproof adhesive auxiliary members 23 and 123 on the upper surface of the base member 22, thereby suppressing water infiltration from the upper side of the base member 22. Thus, it is possible to suppress changes in the shape of the base member 22 and, consequently, the upper layer members 20 and 120 due to water infiltration. [Explanation of Symbols]

[0078] 10, 110, 210... Laminated members, 20, 120... Upper layer members, 22... Base members, 21, 121... Surface members, 23, 123... Adhesion support members, 30, 230... Waterproofing members.

Claims

1. Upper layer member, A waterproof member provided on the lower surface of the upper layer member, Equipped with, The upper layer member comprises a base member, a surface member provided on the upper side of the base member, and an adhesive assisting member provided between the base member and the surface member to assist in the adhesion of the base member to the lower side of the surface member. The aforementioned adhesive auxiliary member has waterproof properties, The laminated member is characterized in that the surface member includes a sheet portion and a plurality of protruding ridges that protrude from the lower surface of the sheet portion and are arranged on the upper surface side of the adhesive auxiliary member while maintaining a distance from each other.

2. The laminated member according to claim 1, characterized in that the adhesive auxiliary member is formed of a soft material.

3. The laminated member according to claim 2, characterized in that the soft material includes polyurethane, polystyrene, polyethylene (including foamed), polypropylene (including foamed), ethylene vinyl acetate, and thermoplastic elastomer.

4. The laminated member according to claim 1 or 2, characterized in that the base member is formed from natural rubber, synthetic rubber such as ethylene propylene diene rubber (EPDM), styrene butadiene rubber (SBR), nitrile rubber (NBR), butadiene rubber (BR), butyl rubber (isobutylene / isoprene rubber) (IIR), silicone rubber, fluororubber, foamed rubber obtained by foaming rubber material, rubber pellets obtained by crushing rubber material or foamed rubber and forming it into granules of a predetermined shape, and then solidifying them, or pellet aggregates obtained by agglomerating these pellets.

5. The laminated member according to claim 1 or 2, characterized in that the surface member is artificial turf.

6. The laminated member according to claim 1 or 2, characterized in that a plurality of water channels are provided on the lower surface of the waterproof member.

7. The laminated member according to claim 6, characterized in that a connecting passage is provided that connects adjacent waterways.

8. The laminated member according to claim 1 or 2, characterized in that the thickness of the adhesive auxiliary member is set to a value greater than the height of the protruding portion.

Citation Information

Patent Citations

  • Take slope leisure artificial turf

    CN206902509U

  • Artificial lawn laying structure

    JP1989122049U

  • Laying of artificial lawn

    JP1990101210A

  • Elastic paving material and elastic paving material with artificial lawn, and manufacture of long elastic paving material and manufacture of elastic paving material

    JP1993247904A

  • artificial grass for golf

    JP1995031906U