Wood-based material sheets, methods for manufacturing wood-based material sheets, molded articles, and methods for manufacturing molded articles.

A wood-based sheet with separate adhesive layers and a thermoplastic shape-following layer addresses appearance defects by suppressing substance movement, ensuring durability and maintaining the wood's original texture and appearance.

JP7836976B2Active Publication Date: 2026-03-30PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2020-10-09
Publication Date
2026-03-30

AI Technical Summary

Technical Problem

Existing wood-based decorative panels suffer from appearance defects due to processing and changes over time, such as convex bubbles, resin seepage, and stickiness, which are not adequately addressed by current technologies.

Method used

A wood-based sheet configuration comprising a natural wood material with a protective layer, a support layer, a first adhesive layer, a second adhesive layer, and a thermoplastic shape-following layer, where the first and second adhesive layers are separate and have a boundary, with the second adhesive layer acting as a barrier to suppress substance movement.

Benefits of technology

The configuration effectively prevents appearance defects by limiting the movement of water vapor and resin within the wood material, maintaining the original texture and appearance of the wood sheet.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007836976000001
    Figure 0007836976000001
  • Figure 0007836976000002
    Figure 0007836976000002
  • Figure 0007836976000003
    Figure 0007836976000003
Patent Text Reader

Abstract

To provide a wood material sheet which can inhibit poor appearance from being caused during processing and due to temporal change.SOLUTION: A wood material sheet according to the disclosure includes: a natural wood material; a protection layer disposed on one surface of the wood material; a support layer disposed on the other surface of the wood material; a first adhesion layer provided on a wood material side surface in the protection layer; a second adhesion layer provided between the first adhesion layer and the wood material; and a thermoplastic shape follow-up layer provided between the wood material and the support layer. The first adhesion layer and the second adhesion layer are not integrated. A border is formed between the first adhesion layer and the second adhesion layer.SELECTED DRAWING: Figure 1A
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present disclosure relates to a wood sheet and a molded product using natural wood, a method for manufacturing the wood sheet, and a method for manufacturing the molded product.

Background Art

[0002] In recent years, in the field of surface decoration techniques for parts and panels used in the exterior of home appliances and in-vehicle interiors, etc., due to the diversification of customer preferences and the current trend towards authenticity and high quality, a wide range of design expressions and high-quality design properties are required. Among these, wood sheets using natural wood are actively used as decorative materials in order to provide users with a high-class feeling expression that is excellent in the texture and appearance derived from the material and the design property. In this specification, the decorative material refers to a sheet-shaped material with a thickness of 5 mm or less.

[0003] Patent Document 1 discloses a wood veneer with a transfer layer formed on the upper part of the veneer. FIGS. 9 and 10 show the wood veneer described in Patent Document 1.

[0004] As shown in FIG. 9, the wood veneer described in Patent Document 1 is composed of a transfer layer 101, a veneer 102, a non-woven fabric 103, and a first adhesive layer 104. The transfer layer 101 is transferred onto one side of the veneer 102 by hot pressing, and irregularities 106 having a similar shape to the surface irregularities of the veneer 102 are formed. Further, the veneer 102 is impregnated with a resin such as polyethylene glycol as required.

[0005] As shown in FIG. 10, the transfer layer 101 is composed of a hard coat layer 108 and an adhesive layer 107 for veneer on the release layer 109 of the base film 110. The transfer layer 101 has the role of a protective layer on the surface of the veneer 102. Since the transfer layer 101 is a thin film, while maintaining the original texture and appearance of the veneer 102, the durability of the product is improved.

Prior Art Documents

Patent Documents

[0006] [Patent Document 1] Japanese Patent Publication No. 2019-64168 [Overview of the project] [Problems that the invention aims to solve]

[0007] However, the wood-based decorative panel described in Patent Document 1 still has room for improvement in terms of suppressing defects in appearance.

[0008] This disclosure aims to solve the aforementioned problems by providing a wood-based material sheet in which the occurrence of appearance defects due to processing and changes over time is suppressed. [Means for solving the problem]

[0009] A wood-based sheet according to one aspect of the present disclosure comprises a natural wood material, a protective layer disposed on one side of the wood material, a support layer disposed on the other side of the wood material, a first adhesive layer provided on the wood material side of the protective layer, a second adhesive layer provided between the first adhesive layer and the wood material, and a thermoplastic shape-following layer provided between the wood material and the support layer, wherein the first adhesive layer and the second adhesive layer are not integral and have a boundary between them.

[0010] A method for manufacturing a wood-based sheet according to one aspect of the present disclosure includes the steps of: forming a first adhesive layer on one side of a protective layer; forming a second adhesive layer on one side of a wood-based material; and sequentially laminating a protective layer, a wood-based material with the second adhesive layer facing the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer facing the other side of the wood-based material, and a support layer, and then heat-pressing them to form a laminate.

[0011] A molded article according to one aspect of the present disclosure comprises a wood-based material sheet and a resin housing disposed on the support layer side of the wood-based material sheet.

[0012] A method for manufacturing a molded article according to one aspect of the present disclosure includes the steps of: forming a first adhesive layer on one surface of a protective layer; forming a second adhesive layer on one surface of a wood material; sequentially laminating a protective layer, a wood material with the second adhesive layer facing the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer facing the other surface of the wood material, and a support layer, and heat-pressing them to form a laminate; and forming a resin housing on the support layer side of the laminate. [Effects of the Invention]

[0013] According to this disclosure, it is possible to provide a wood-based material sheet in which the occurrence of appearance defects due to processing and changes over time is suppressed. [Brief explanation of the drawing]

[0014] [Figure 1A] This is a schematic cross-sectional view showing the cross-sectional structure of a wood-based material sheet according to Embodiment 1 of this disclosure. [Figure 1B] This is a magnified SEM image of a section of the wood-based sheet shown in Figure 1A. [Figure 2] This is a cross-sectional view of a transfer film used in the manufacture of a wood-based material sheet according to Embodiment 1 of this disclosure. [Figure 3] This is a cross-sectional view of the second adhesive layer and the wood material, which constitute a part of the wood material sheet according to Embodiment 1 of the present disclosure. [Figure 4] This is a cross-sectional view of the wood-based material sheet according to Embodiment 1 of the present disclosure, before the heat-pressing process. [Figure 5] This is a cross-sectional view of the heat-pressing process of a wood-based material sheet according to Embodiment 1 of the present disclosure. [Figure 6] This is a cross-sectional view of a wood-based material sheet after the heat-pressing process according to Embodiment 1 of the present disclosure. [Figure 7] This is a cross-sectional view of a modified example of the wood-based sheet according to Embodiment 1 of the present disclosure. [Figure 8] This is a schematic cross-sectional view showing the cross-sectional structure of a molded product according to Embodiment 2 of this disclosure. [Figure 9] This is a cross-sectional view of a wood-based decorative molded product as described in Patent Document 1. [Figure 10]It is a cross-sectional view of the transfer film of Patent Document 1.

Mode for Carrying Out the Invention

[0015] (Background Leading to the Present Disclosure) When applying a wood sheet to the exterior of home appliances or the interior of vehicles, etc., in order to improve the durability of the product while maintaining the original tactile sensation and appearance, a protective layer following the shape is formed on the surface of the veneer formed of wood. The protective layer is formed by hot pressing on the wood.

[0016] During hot pressing, the moisture in the wood becomes water vapor and flows out from the wood toward the protective layer. However, further outflow of the water vapor to the outside is blocked by the protective layer, so convex bubbles are generated on the surface of the protective layer, resulting in a defective appearance of the wood sheet.

[0017] Also, when the wood contains resin, due to the heat during hot pressing, the resin softens and bleeds out onto the surface of the protective layer, causing stickiness or greasiness, etc., resulting in a defective appearance of the wood sheet. Furthermore, there is also a possibility of a defective appearance due to changes over time.

[0018] Therefore, the inventors of the present invention intensively studied the occurrence of defective appearance due to processing and changes over time. As a result, they considered a configuration in which a second adhesive layer different from the first adhesive layer is formed in advance on the surface of the wood to serve as a barrier layer on the surface of the wood. By this configuration, the movement of substances from the wood to the protective layer is suppressed. Thus, it has been found that the defective appearance of the wood sheet can be suppressed.

[0019] Based on these new findings, the inventors of the present invention have arrived at the following disclosure.

[0020] A wood-based sheet according to a first aspect of this disclosure comprises a natural wood material, a protective layer disposed on one side of the wood material, a support layer disposed on the other side of the wood material, a first adhesive layer provided on the wood material side of the protective layer, a second adhesive layer provided between the first adhesive layer and the wood material, and a thermoplastic shape-following layer provided between the wood material and the support layer, wherein the first adhesive layer and the second adhesive layer are not integral and have a boundary between them.

[0021] With this configuration, a second adhesive layer is provided on the surface of the wood material, which suppresses the movement of substances from the wood material to the protective layer, and thus prevents defects in the appearance of the wood material sheet.

[0022] In the second embodiment of the present disclosure, the wood-based material sheet has a surface uneven shape, the second adhesive layer penetrates into the recesses of the surface uneven shape of the wood-based material, and there may be no air layer between the second adhesive layer and the surface uneven shape of the wood-based material.

[0023] With this configuration, there is no air layer between the wood material and the second adhesive layer, so substances leaking from the wood material cannot move across the surface of the wood material, thus limiting the movement of substances to within the wood material.

[0024] In a third aspect of this disclosure, the wood-based sheet may have a first adhesive layer and a second adhesive layer, each having a cross-linked structure.

[0025] With this configuration, the first adhesive layer and the second adhesive layer have a dense structure.

[0026] In a fourth aspect of the present disclosure, the wood-based sheet has a first adhesive layer containing a blocked isocyanate-based curing agent, and the first adhesive layer may have a urethane bond.

[0027] With this configuration, a cross-linked structure is formed within the first adhesive layer.

[0028] The wood-based sheet of the fifth aspect of this disclosure may have an average film thickness of 3 μm or more and 100 μm or less for the first adhesive layer, and an average film thickness of 10 μm or more and 100 μm or less for the second adhesive layer.

[0029] This configuration improves the adhesion of the first adhesive layer and the barrier function of the second adhesive layer, while also reducing the manufacturing cost of the wood-based sheet.

[0030] A wood-based sheet according to a sixth aspect of the present disclosure further comprises a release layer disposed on the side of the protective layer opposite to the first adhesive layer, and a base film disposed on the side of the release layer opposite to the protective layer, wherein the protective layer has an overall film thickness of 3 μm or more and 100 μm or less, has a hard coat function and a UV cut function, and the release layer and the base film may be removable from the protective layer at the interface between the release layer and the protective layer.

[0031] With this configuration, the protective layer is protected by the base film, so the surface irregularities of the protective layer are not crushed. Therefore, a protective layer can be formed on the surface of the wood material while maintaining the original feel and appearance of the wood. Furthermore, the protective layer improves the protective function and shape conformability on the surface of the wood material. In addition, the protective layer has hard coat and UV cut functions, protecting the wood material from damage, deformation, and deterioration due to ultraviolet rays.

[0032] In the seventh aspect of this disclosure, the wood-based sheet may have a third adhesive layer between the wood material and the thermoplastic shape-following layer.

[0033] With this configuration, adhesive layers that function as barrier layers are formed on both sides of the wood material, further suppressing the movement of substances from the wood material to the protective layer, and thus further suppressing the occurrence of defects in the appearance of the wood material sheet.

[0034] A molded article according to the eighth aspect of this disclosure comprises a wood-based material sheet and a resin housing disposed on the support layer side of the wood-based material sheet.

[0035] This configuration can suppress the occurrence of defects in the appearance of molded products and improve their strength.

[0036] A method for manufacturing a wood-based sheet according to the ninth aspect of this disclosure includes the steps of: forming a first adhesive layer on one side of a protective layer; forming a second adhesive layer on one side of a wood-based material; and sequentially laminating a protective layer, a wood-based material with the second adhesive layer facing the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer facing the other side of the wood-based material, and a support layer, and then heat-pressing them to form a laminate.

[0037] In this manner, the first adhesive layer and the second adhesive layer are formed in separate processes.

[0038] In a tenth aspect of the present disclosure, the method for manufacturing a wood-based sheet may be such that the second adhesive layer is formed by applying it to the surface of the wood material in a liquid state.

[0039] This method prevents the formation of an air layer between the second adhesive layer and the wood material.

[0040] In the eleventh aspect of the present disclosure, the method for manufacturing a wood-based sheet is such that the second adhesive layer may be cured before the step of forming the laminate.

[0041] In this manner, the second adhesive layer is cured before the heat-pressing of the wood sheet and can function as a barrier layer during the heat-pressing process.

[0042] A method for manufacturing a molded article according to a twelfth aspect of the present disclosure includes the steps of: forming a first adhesive layer on one side of a protective layer; forming a second adhesive layer on one side of a wood material; sequentially laminating a protective layer, a wood material with the second adhesive layer facing the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer facing the other side of the wood material, and a support layer, and heat-pressing them to form a laminate; and forming a resin housing on the support layer side of the laminate.

[0043] By this method, a molded product having a resin housing can be formed.

[0044] (Embodiment 1) [Overall structure] Figure 1A is a cross-sectional view of a laminate comprising a wood-based sheet 31, a base film 51, and a release layer 52 according to Embodiment 1 of the present invention. Figure 1B is a partially magnified SEM image of the wood-based sheet 31 in Figure 1A. Figure 2 is a cross-sectional view of the transfer film 50.

[0045] As shown in Figure 1A, the wood-based sheet 31 is composed of a laminate in which a protective layer 1, a first adhesive layer 2, a second adhesive layer 3, wood-based material 4, a thermoplastic shape-following layer 5, and a support layer 6 are sequentially laminated when viewed from the surface side.

[0046] The following describes the various components that make up this wood-based sheet 31, as well as the base film 51 and the release layer 52.

[0047] <Transfer film> As shown in Figure 2, the transfer film 50 is a film consisting of a first adhesive layer 2 protective layer 1, which is part of the wood material sheet 31, as well as a base film 51 and a release layer 52. The transfer film 50 plays the role of transferring the protective layer 1 to the wood material 4 during the manufacturing process of the wood material sheet 31. After the protective layer 1 has been transferred to the wood material 4, the base film 51 and the release layer 52 may be removed from the wood material sheet 31 at the interface between the release layer 52 and the protective layer 1, if necessary.

[0048] <Base film> The base film 51 is positioned on the side of the release layer 52 opposite to the protective layer 1 and plays a role in protecting the surface irregularities of the protective layer 1, described later, during the manufacturing process of the wood material sheet 31. The base film 51 is formed from a polymer material such as polyethylene terephthalate resin, acrylic resin, or polycarbonate resin. The average film thickness of the base film 51 may be, for example, 20 μm or more and 50 μm or less. Because the film thickness of the base film 51 is 20 μm or more, it is possible to suppress the occurrence of wrinkles, tears, warping, etc. in the base film 51 during heat drying, etc., during the process of forming each layer of the transfer film 50. Also, because the film thickness of the base film 51 is 50 μm or less, it is possible to improve the conformability of the base film 51 to the wood material 4. Furthermore, if the film thickness of the base film 51 is 50 μm or less, when the transfer film 50 is formed as a roll film, the overall weight is reduced, improving the handling of the transfer film 50 during transport, etc., and reducing manufacturing costs.

[0049] <Exfoliation layer> The release layer 52 is positioned on the side of the protective layer 1 opposite to the first adhesive layer 2 and plays the role of peeling the base film 51 from the wood sheet 31. For example, the release layer 52 is formed of a thermosetting melamine resin, a two-component curing urethane resin, a thermosetting silicone resin, etc. The thickness of the release layer 52 is not particularly limited and can be arbitrarily selected as long as a thickness that provides a peeling effect is obtained.

[0050] <Protective layer> The protective layer 1 is positioned on one surface of the wood material 4, conforming to its shape, via the first adhesive layer 2 and the second adhesive layer 3 described later. The protective layer 1 protects the wood material 4 from damage, deformation, and deterioration due to ultraviolet rays, and is formed from a material having both hard coat and UV cut functions. An example of a material having a hard coat function is an after-cure type UV-curing acrylic resin. When using an after-cure type material, a laminate consisting of a wood material sheet 31, a base film 51, and a release layer 52 is formed, and after removing the base film 51 and the release layer 52, the protective layer 1 is cured by ultraviolet and EB irradiation. With this formation method, the protective layer 1 is not completely cured when the laminate is formed, and the protective layer 1 has improved conformability and is less prone to cracking.

[0051] On the other hand, as the material for protective layer 1, a pre-cured UV-curing acrylic resin, a heat-drying one-component acrylic resin, a heat-drying two-component urethane acrylic resin, or an EB (electron beam) curing acrylic resin may be used. Furthermore, other materials having both hard coat functionality and UV-cut functionality may be used.

[0052] The average thickness of protective layer 1 may be, for example, 3 μm or more and 100 μm or less. In this specification, the average thickness refers to the value obtained by measuring the thickness of the layer at multiple points and calculating the average. Furthermore, it is even more desirable that the average thickness of protective layer 1 be 3 μm or more and 20 μm or less. Because the average thickness of protective layer 1 is 20 μm or less, the distance to the wood material 4 is reduced, and the original texture of the wood material 4 can be expressed without feeling the depth or glossiness caused by the protective layer 1.

[0053] The protective layer 1 may be provided together with other functional layers such as a layer to which additives such as fillers, a colored layer, or a pattern layer have been added using general printing techniques.

[0054] <First adhesive layer> The first adhesive layer 2 is positioned between the protective layer 1 and the second adhesive layer 3, and its role is to bond the protective layer 1 and the second adhesive layer 3 together. The first adhesive layer 2 is composed of a resin. For example, the main adhesive agent of the first adhesive layer 2 is composed of resins such as vinyl chloride copolymer resin, olefin-based, polyolefin-based, urethane-based, or acrylic-based resins, which form a crosslinked structure within the layer. In addition, a blocked isocyanate-based curing agent is added as a curing agent to the first adhesive layer 2, which forms a crosslinked structure of urethane bonds with the main adhesive agent.

[0055] The first adhesive layer 2 is formed on the surface of the protective layer 1, for example, by screen printing or a coater.

[0056] The average thickness of the first adhesive layer 2 may be, for example, 3 μm or more and 100 μm or less. To improve the conformability to the surface of the wood material 4, it is even more desirable that the average thickness of the first adhesive layer 2 be 10 μm or more and 50 μm or less.

[0057] <Second adhesive layer> The second adhesive layer 3 is pre-positioned between the first adhesive layer 2 and the wood material 4, along the surface of the wood material 4, and acts as a barrier layer to prevent substances within the wood material 4 from moving into the protective layer 1. In the manufacturing method described later, since the second adhesive layer 3 is cured before bonding with the first adhesive layer 2, a boundary 9 is formed between the first adhesive layer 2 and the second adhesive layer 3, as shown in Figures 1A and 1B, and they are not integrated. Furthermore, the second adhesive layer 3 penetrates into the recesses of the uneven surface shape of the wood material 4. Therefore, as shown in Figure 1B, no air layer is formed between the second adhesive layer 3 and the wood material 4, especially within the recesses of the uneven surface shape of the wood material 4, thus improving the function of the second adhesive layer 3 as a barrier layer.

[0058] The second adhesive layer 3 is composed of a resin. For example, the main adhesive agent of the second adhesive layer 3 is composed of resins such as vinyl chloride copolymer resin, olefin-based, polyolefin-based, urethane-based, or acrylic-based resins, and has a cross-linked structure within the layer. Processes for forming the cross-linked structure include, for example, ultraviolet light, EB irradiation, thermosetting, and catalytic reactions.

[0059] The average thickness of the second adhesive layer 3 may be, for example, 10 μm or more and 100 μm or less. Furthermore, it is even more desirable that the average thickness of the second adhesive layer 3 be 20 μm or more and 80 μm or less.

[0060] <Wood materials> The wood-based material 4 is made from natural wood containing moisture internally, and as shown in Figure 1B, it has a surface irregular shape with conduits and depressions. The wood-based material 4 is a thinly sliced ​​sheet-shaped board material, and its average board thickness may be, for example, 0.1 mm or more and 2 mm or less. Since the average board thickness of the wood-based material 4 is 0.1 mm or more, it prevents breakage and improves workability, while since the average board thickness is 2 mm or less, the wood-based material 4 is sufficiently molded into the product shape.

[0061] To improve the mechanical strength and toughness of the wood material 4, an organic resin is impregnated into the wood material 4. A chain-structured organic resin may be used for impregnation. For example, impregnation with a chain-structured organic resin such as polyethylene glycol or phenolic resin improves the flexibility of the wood material 4, making it easier to deform.

[0062] Furthermore, to improve the appearance or functionality, other materials such as pigments, phosphorescent paints, dyes, or flame retardants may be added to one or both sides of the wood material 4. In addition, one or both sides of the wood material 4 may be subjected to treatments such as decolorization or the application of patterns.

[0063] <Thermoplastic shape-following layer> The thermoplastic shape-following layer 5 is placed between the wood material 4 and the support layer 6 and serves to bond the wood material 4 and the support layer 6 together. The thermoplastic shape-following layer 5 is made of a transparent thermoplastic material. For example, the thermoplastic shape-following layer 5 is made of olefin-based or polyolefin-based components. The average film thickness of the thermoplastic shape-following layer 5 may be, for example, 50 μm or more and 200 μm or less. Since the average film thickness of the thermoplastic shape-following layer 5 is 50 μm or more, the adhesion between the wood material 4 and the support layer 6 is improved, and since the average film thickness of the thermoplastic shape-following layer 5 is 200 μm or less, manufacturing costs can be reduced.

[0064] <Support layer> The support layer 6 plays a role in improving the strength of the wood-based sheet 31. When pressure is applied to the wood-based sheet 31, the support layer 6 buffers its deformation, thereby suppressing damage to the wood-based sheet 31. The support layer 6 is formed from, for example, a polymer film such as polyethylene terephthalate or acrylic, or a nonwoven fabric.

[0065] [effect] The wood-based sheet 31 according to Embodiment 1 can achieve the following effects.

[0066] The wood-based sheet 31 comprises a natural wood material 4, a protective layer 1 disposed on one side of the wood material 4, and a support layer 6 disposed on the other side of the wood material 4. The first adhesive layer 2 is provided on the side of the protective layer 1 facing the wood material 4, and the second adhesive layer 3 is provided between the first adhesive layer 2 and the wood material 4. The thermoplastic shape-following layer 5 is provided between the wood material 4 and the support layer 6. The first adhesive layer 2 and the second adhesive layer 3 are not integral, and there is a boundary 9 between the first adhesive layer 2 and the second adhesive layer 3.

[0067] With this configuration, a second adhesive layer 3 is formed on the surface of the wood material 4, thus suppressing the movement of water vapor and impregnating resin from the wood material 4 to the protective layer 1 during heat bonding and over time. The second adhesive layer 3 provided on the surface of the wood material 4 suppresses the occurrence of convex bubbles caused by water vapor, seepage of impregnating resin, stickiness, or glossiness on the surface of the protective layer 1, thereby suppressing the occurrence of defects in the appearance of the wood material sheet 31.

[0068] The wood material 4 has an uneven surface shape, and the second adhesive layer 3 penetrates into the recesses S3 of the uneven surface shape of the wood material 4, and there is no air layer between the second adhesive layer 3 and the uneven surface shape of the wood material 4.

[0069] With this configuration, there is no air layer between the wood material 4 and the second adhesive layer 3, or on the surface of the wood material 4, through which substances that may leak out of the wood material 4 can move. Therefore, the movement of substances that may leak out of the wood material 4 can be limited to movement within the wood material 4 toward its end face.

[0070] The first adhesive layer 2 and the second adhesive layer 3 each have a cross-linked structure.

[0071] This configuration gives the first adhesive layer 2 and the second adhesive layer 3 a dense structure. This dense structure improves the strength of the first adhesive layer 2 and prevents damage to the wood material sheet 31 during the evaluation process performed after the manufacturing process. On the other hand, this dense structure also prevents water vapor and impregnating resin contained in the wood material 4 from leaking out of the wood material 4.

[0072] The first adhesive layer 2 contains a blocked isocyanate-based curing agent and has urethane bonds.

[0073] This configuration forms a cross-linked structure within the first adhesive layer 2.

[0074] The average thickness of the first adhesive layer 2 is 3 μm or more and 100 μm or less, and the average thickness of the second adhesive layer 3 is 10 μm or more and 100 μm or less.

[0075] With this configuration, the average thickness of the first adhesive layer 2 is 3 μm or more, which improves the adhesion between the protective layer 1 and the second adhesive layer 3. The average thickness of the second adhesive layer 3 is 10 μm or more, which allows it to function as a barrier layer. Furthermore, since the average thickness of the first adhesive layer 2 and the second adhesive layer 3 is 100 μm or less, manufacturing costs can be reduced, the flexibility of the wood material 4 can be maintained, and the overall shapeability of the wood material sheet 31 is improved.

[0076] The wood-based sheet 31 further comprises a release layer 52 disposed on the side of the protective layer 1 opposite to the first adhesive layer 2, and a base film 51 disposed on the side of the release layer 52 opposite to the protective layer 1. The protective layer 1 has an overall film thickness of 3 μm or more and 100 μm or less, and has a hard coat function and a UV cut function. At the interface between the release layer 52 and the protective layer 1, the release layer 52 and the base film 51 can be removed from the protective layer 1.

[0077] With this configuration, the protective layer 1 is protected by the base film 51, so the surface irregularities of the protective layer 1, which are formed by conforming to the surface of the wood material 4, are not crushed, and the wood material sheet 31 can be formed. The surface irregularities of the protective layer 1 maintain the original feel and appearance of the wood, and a high-quality expression with excellent texture and design derived from the material is achieved in the wood material sheet 31.

[0078] Furthermore, since the protective layer 1 has a thickness of 3 μm or more, it can provide protection on the surface of the wood material 4. Because the thickness is 100 μm or less, its conformability to the surface irregularities of the wood material 4 is improved. In addition, the protective layer 1 has both a hard coat function and a UV cut function, thus protecting the wood material 4 from damage, deformation, and deterioration due to ultraviolet rays.

[0079] [Manufacturing method] Next, a method for manufacturing the wood-based material sheet 31 will be described.

[0080] Figure 3 is a cross-sectional view of the second adhesive layer 3 and the wood material 4. Figure 4 is a cross-sectional view of the wood material sheet 31 before the heat-sealing process. Figure 5 is a cross-sectional view of the wood material sheet during the heat-sealing process. In Figure 5, arrows indicate the X direction along the cross-sectional direction and the Y direction perpendicular to the cross-sectional direction. Figure 6 is a cross-sectional view of the wood material sheet after the heat-sealing process.

[0081] The method for manufacturing the wood-based material sheet 31 includes the steps of: step S11 of forming a first adhesive layer 2 on one side of the protective layer 1; step S12 of forming a second adhesive layer 3 on one side of the wood-based material 4; and step S14 of forming a laminate by thermocompression bonding. In step S14, along the Y direction in Figure 5, the protective layer 1 with the first adhesive layer 2 positioned on the bottom, the wood-based material 4 with the second adhesive layer 3 positioned on the top, the thermoplastic shape-following layer 5, and the support layer 6 are laminated and thermocompressed together from top to bottom.

[0082] First, a first adhesive layer 2 is formed on one side of the protective layer 1 to form the transfer film 50 (step S11). The transfer film 50 may be formed as a single-sheet film, or, to improve productivity, as a continuous roll film.

[0083] Next, as shown in Figure 3, the second adhesive layer 3 is formed by applying it to one surface of the wood material 4 in a liquid state using a process such as spray application, roll coating, or inkjet coating (step S12). Since the second adhesive layer 3 is formed in a fluid liquid state, it can penetrate into the recess S3 sandwiched between the protrusions S1 and S2 on the surface of the wood material 4. In addition, although the surface of the second adhesive layer 3 shown in Figure 3 is flat, the surface of the second adhesive layer 3 may be a wavy curved surface that follows the shape of the wood material 4.

[0084] Next, in order to cure the second adhesive layer 3, it is treated using an appropriate curing process for the adhesive main agent and the added curing agent, such as heat curing or UV curing (step S13). The second adhesive layer 3 is cured while embedded in the recess S3.

[0085] After step S13, as shown in Figure 4, the transfer film 50, the wood material 4, the thermoplastic shape-following layer 5, and the support layer 6 are arranged in that order. The surface of the transfer film 50 on which the first adhesive layer 2 is formed and the surface of the wood material 4 on which the second adhesive layer 3 is formed are arranged to face each other.

[0086] Next, as shown in Figure 5, each layer is heat-pressed by the heat-pressing device N (step S14). The heat-melted first adhesive layer 2 adheres to the protective layer 1 and the second adhesive layer 3, which was cured in step S13. Since the adhesive layers 2 and 3 are cured by different processes, a boundary 9 is formed between the first adhesive layer 2 and the second adhesive layer 3. The heat-melted thermoplastic shape-following layer 5 adheres to the wood material 4 and the support layer 6. The surface irregularities of the wood material 4 are followed and transferred to the first adhesive layer 2 and the protective layer 1. Furthermore, the base film 51 prevents the protective layer 1 from directly touching the heat-pressing device N and protects it from its pressure, so the surface irregularities transferred to the protective layer 1 are not crushed in step S14. Step S14 forms a laminate of the wood material sheet 31, the release layer 52, and the base film 51.

[0087] During heat-sealing, water vapor is generated from inside the wood material 4, but because a barrier layer is formed on the surface of the wood material 4 by the hardened second adhesive layer 3, outflow in the Y direction towards the protective layer 1 is suppressed. Furthermore, since no air layer remains in the recess S3 after the formation of the second adhesive layer 3, there is no layer to which water vapor can move between the wood material 4 and the second adhesive layer 3, or on the surface of the wood material 4. Therefore, the movement of water vapor is limited to the X direction toward the end face of the wood material 4, and the water vapor flows out from that end face. In addition, if a chain-like organic resin is impregnated inside the wood material 4, the heat and pressure during the heat-sealing process form the second adhesive layer 3 on the surface of the wood material 4, which suppresses the seepage of the impregnating resin in the Y direction, similar to water vapor. Seepage of the impregnating resin due to changes over time can also be suppressed in the same way. The movement of the impregnating resin is also limited to the X direction, similar to water vapor.

[0088] Next, as shown in Figure 6, after the heat-sealing is complete, the release layer 52 and the base film 51 are removed from the wood sheet 31 at the interface with the protective layer 1, and the wood sheet 31 is obtained (step S15).

[0089] [effect] The method for manufacturing the wood-based sheet 31 according to Embodiment 1 can achieve the following effects.

[0090] The second adhesive layer 3 is formed by applying it to the surface of the wood material 4 in a liquid state.

[0091] In this manner, the liquid second adhesive layer 3 can expel air from the recesses S3 on the surface of the wood material 4 during step S12, and no air layer is formed between the second adhesive layer 3 and the wood material 4.

[0092] The second adhesive layer 3 is cured before step S14, which is the step of forming the laminate.

[0093] By this method, the second adhesive layer 3, which is cured before step S14, suppresses the movement of water vapor and impregnating resin toward the protective layer 1 during step S14, thereby suppressing the occurrence of bubbles due to water vapor, seepage of impregnating resin, glossiness, stickiness, etc., in the protective layer 1. As a result, a wood-based sheet 31 with suppressed appearance defects is obtained. Furthermore, the second adhesive layer 3 can suppress the occurrence of appearance defects in the completed wood-based sheet 31 due to seepage of impregnating resin over time.

[0094] In Embodiment 1, the release layer 52 was described as being formed from a thermosetting melamine resin, a two-component curing urethane resin, a thermosetting silicone resin, etc. However, the material is not limited to these materials; any material that can achieve a similar effect is acceptable.

[0095] In Embodiment 1, when an after-cure type material is used for the protective layer 1, it was explained that curing occurs in the final step after peeling off the release layer 52 by UV and EB irradiation. However, the order is not limited to this, and the protective layer 1 may be cured at an appropriate timing in the manufacturing process of the wood-based sheet 31, depending on the application.

[0096] In Embodiment 1, the wood material 4 was described as a single sheet of natural wood, but it is not limited to this. The wood material 4 may be a processed sheet-shaped wooden board made by laminating multiple sheets of natural wood and slicing them to an average thickness of 0.1 mm or more and 2 mm or less. It may also be decorated with marquetry.

[0097] The first adhesive layer 2 and the second adhesive layer 3 may be formed from the same material. Even when the first adhesive layer 2 and the second adhesive layer 3 are formed from the same material, the boundary 9 is formed between the first adhesive layer 2 and the second adhesive layer 3 because the second adhesive layer 3 is cured before the heat-compression bonding process S14.

[0098] In Embodiment 1, it was explained that the release layer 52 and the base film 51 are removed after the heat-sealing process S14. However, the removal of the release layer 52 and the base film 51 can be performed at any time during the process. Therefore, it is also possible to store the wood material sheet 31 with the release layer 52 and the base film 51 attached, without removing them.

[0099] In Embodiment 1, an example was described in which the second adhesive layer 3 is formed on one side of the wood material 4, but the invention is not limited to this. The second adhesive layer 3 may be provided on both sides of the wood material 4. That is, the second adhesive layer 3 may be formed on the side of the wood material 4 that has the second adhesive layer and on the side that has the thermoplastic shape-following layer 5. Alternatively, the second adhesive layer 3 may be formed on one side of the wood material 4 and cured, and then the second adhesive layer 3 may be formed on the other side and cured. Or, the second adhesive layer 3 may be formed on both sides of the wood material 4 simultaneously by dipping or the like, and then cured.

[0100] (Variation 1) Figure 7 is a cross-sectional view of a wood-based sheet 31 in which a second adhesive layer 3 and a third adhesive layer 3A are formed on both sides of the wood-based material 4. As shown in Figure 3, a third adhesive layer 3A is also provided between the wood-based material 4 and the thermoplastic shape-following layer 5, and therefore, adhesive layers 3 and 3A are provided on both sides of the wood-based material 4.

[0101] With this configuration, adhesive layers 3 and 3A, which act as barrier layers, are formed on both sides of the wood material 4, allowing water vapor emitted from the wood material 4 during the heat-sealing process and the impregnating resin of the wood material 4 to escape more easily from the edges of the wood material 4. This further suppresses the occurrence of convex bubbles, seepage, stickiness, or gloss on the surface of the protective layer 1.

[0102] (Embodiment 2) A molded article 71 according to Embodiment 2 of this disclosure will now be described. In Embodiment 2, the differences from Embodiment 1 will be described primarily. In Embodiment 2, the same or equivalent components as in Embodiment 1 are denoted by the same reference numerals, and redundant descriptions are omitted.

[0103] Figure 8 is a schematic cross-sectional view showing the cross-sectional structure of a molded product 71 according to Embodiment 2 of this disclosure using a wood-based material sheet 31.

[0104] The molded product 71 according to Embodiment 2 differs from the wood sheet 31 according to Embodiment 1 in that it has a fourth adhesive layer 7 and a resin housing 8 on the side of the support layer 6 opposite to the thermoplastic shape-following layer 5.

[0105] On the support layer 6 side of the wood material sheet 31, the fourth adhesive layer 7 and the resin housing 8 are integrated, for example, by vacuum pressure molding or insert molding, to form a molded product 71. In Embodiment 2, the fourth adhesive layer 7 and the resin housing 8 are formed on the wood material sheet 31 before the base film 51 and the release layer 52 are removed.

[0106] <4th adhesive layer> The fourth adhesive layer 7 adheres the support layer 6 to the resin housing 8. For example, the fourth adhesive layer 7 may be composed of either a thermoplastic adhesive, such as a coating method or a sheet-shaped adhesive, or a thermosetting adhesive. The average film thickness of the fourth adhesive layer 7 may be, for example, 1 μm or more and 100 μm or less.

[0107] <Resin housing>

[0108] The resin housing 8 plays a role in improving the strength of the wood sheet 31. The resin housing 8 is formed from a general-purpose molding resin such as PMMA resin, ABS resin, PS resin, or PC resin. Alternatively, the resin housing 8 may be formed from a resin that requires molding at high temperatures, such as a resin for optical applications or a super engineering resin.

[0109] In the method for manufacturing the molded product 71, after carrying out steps S11 to S15 of Embodiment 1, a resin housing 8 is formed on the support layer 6 side of the laminate (step S16). The resin housing 8 may be injection molded in advance and bonded to the support layer 6 side of the laminate in step S16, or the resin housing 8 may be directly injection molded to the support layer 6 side of the laminate.

[0110] [effect] The molded article 71 according to Embodiment 2 can achieve the following effects.

[0111] The molded product 71 comprises a wood-based material sheet 31 and a resin housing 8 positioned on the support layer 6 side of the wood-based material sheet 31.

[0112] This configuration makes it possible to improve the strength of the molded product 71.

[0113] The method for manufacturing the molded product 71 includes the step of manufacturing a wood-based material sheet 31 in accordance with the manufacturing method described above, and then forming a resin housing 8 on the support layer 6 side of the laminate.

[0114] By this method, a molded product 71 having a resin housing 8 can be formed.

[0115] In Embodiment 2, an example was described in which the wood-based sheet 31 and the resin housing 8 are integrated. However, it is also possible to attach the wood-based sheet 31 from Embodiment 1 as a single sheet, similar to wallpaper.

[0116] In Embodiment 2, an example was described in which the resin housing 8 is formed from a general-purpose molded resin, but other materials may be used as long as they have the required strength.

[0117] In Embodiment 2, an example of a molded product 71 provided with a fourth adhesive layer 7 was described, but the invention is not limited to this. For example, when insert molding is performed using a member having a fiber layer such as a nonwoven fabric for the support layer 6, the molding resin penetrates into the gaps between the fibers, creating an anchoring effect, and the molded product 71 can be formed without forming the fourth adhesive layer 7.

[0118] In Embodiment 2, an example was described in which the release layer 52 and the base film 51 were not removed and the wood material sheet 31 was integrated with the resin housing 8, but the invention is not limited to this. When integrating with the resin housing 8, the removal of the release layer 52 and the base film 51 can be arbitrarily selected depending on the application.

[0119] While this disclosure is adequately described in relation to preferred embodiments with reference to the accompanying drawings, various variations and modifications will be obvious to those skilled in the art. Such variations and modifications should be understood to be included within the scope of this disclosure as defined by the attached claims. [Industrial applicability]

[0120] The wood-based sheets and molded products disclosed herein are useful for decorating the exteriors of household electrical appliances and the interiors of automobiles. [Explanation of Symbols]

[0121] 1 protective layer 2 First adhesive layer 3 Second adhesive layer 3A 3rd adhesive layer 4 Wood material 5 Thermoplastic shape-following layer 6 Support layer 7 4th adhesive layer 8. Resin housing 9 boundaries 31 Wood-based sheet 50 Transfer Film 51 Base film 52 Exfoliation layer 71 Molded products

Claims

1. Natural wood materials, A protective layer is placed on one side of the aforementioned wood material, A support layer is placed on the other side of the aforementioned wood material, A first adhesive layer provided on the wood material side of the protective layer, A second adhesive layer is provided between the first adhesive layer and the wood material, A thermoplastic shape-following layer is provided between the wood material and the support layer, Equipped with, The first adhesive layer and the second adhesive layer are not integral, and there is a boundary between the first adhesive layer and the second adhesive layer. The average thickness of the first adhesive layer is smaller than the average thickness of the second adhesive layer. The aforementioned wood material has an uneven surface shape, The second adhesive layer fills the recesses of the surface irregularities of the wood material. A wood-based material sheet in which there is no air layer between the second adhesive layer and the surface irregular shape of the wood-based material.

2. The wood-based sheet according to claim 1, wherein the first adhesive layer and the second adhesive layer each have a cross-linked structure.

3. The average thickness of the first adhesive layer is 3 μm or more and 100 μm or less. The wood-based sheet according to claim 1 or 2, wherein the average film thickness of the second adhesive layer is 10 μm or more and 100 μm or less.

4. A release layer disposed on the side of the protective layer opposite to the first adhesive layer, A base film disposed on the side of the release layer opposite to the protective layer, Furthermore, The protective layer has an overall film thickness of 3 μm or more and 100 μm or less, and has a hard coat function and a UV cut function. The wood-based sheet according to any one of claims 1 to 3, wherein at the interface between the release layer and the protective layer, the release layer and the base film can be removed from the protective layer.

5. A wood-based sheet according to any one of claims 1 to 4, wherein a third adhesive layer is provided between the wood-based material and the thermoplastic shape-following layer.

6. The wood-based sheet according to any one of claims 1 to 5, A resin housing disposed on the support layer side of the wood-based sheet, A molded product having the following characteristics.

7. A step of forming a first adhesive layer on one side of the protective layer, A step of forming a second adhesive layer on one surface of a wood material having an uneven surface shape, such that it fills the recesses of the uneven surface shape of the wood material, The process involves sequentially laminating the protective layer, the wood material with the second adhesive layer positioned opposite the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer positioned opposite the other surface of the wood material, and a support layer, and then heat-pressing them together to form a laminate. Includes, The average thickness of the first adhesive layer is smaller than the average thickness of the second adhesive layer. A method for manufacturing a wood-based material sheet, wherein there is no air layer between the second adhesive layer and the surface irregular shape of the wood-based material.

8. The method for manufacturing a wood-based material sheet according to claim 7, wherein the second adhesive layer is formed by applying it to the surface of the wood-based material in a liquid state.

9. The method for manufacturing a wood-based sheet according to claim 7 or 8, wherein the second adhesive layer is cured before the step of forming the laminate.

10. A step of forming a first adhesive layer on one side of the protective layer, A step of forming a second adhesive layer on one surface of a wood material having an uneven surface shape, such that it fills the recesses of the uneven surface shape of the wood material, The process involves sequentially laminating the protective layer, the wood material with the second adhesive layer positioned opposite the first adhesive layer formed on the protective layer, a thermoplastic shape-following layer positioned opposite the other surface of the wood material, and a support layer, and then heat-pressing them together to form a laminate. The process of forming a resin housing on the support layer side of the laminate, Includes, The average thickness of the first adhesive layer is smaller than the average thickness of the second adhesive layer. A method for manufacturing a molded product, wherein there is no air layer between the second adhesive layer and the surface irregular shape of the wood material.

Citation Information

Patent Citations

  • Decorative sheet and decorative molded article

    JP2011206998A

  • Wooden decorative plate and production method thereof, and production method of insert molding using wooden decorative plate

    JP2019064168A