Method for manufacturing functional structure

The described manufacturing method enhances the precision and accuracy of functional structures by forming the adhesive layer at a lower temperature and heat pressing at a higher temperature, addressing the precision issues in existing methods.

JP2025127718APending Publication Date: 2025-09-02TOYOTA INDUSTRIES CORP +1
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Patent Information

Application Number
JP2024024597
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-21
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

Existing methods for manufacturing functional structures, such as those with a functional layer, protective layer, and adhesive layer, suffer from a decrease in accuracy and precision due to the softening of materials at inappropriate temperatures.

Method used

A manufacturing method involving a laminate formation process, integration process, and heat pressing process, where the adhesive layer is formed at a temperature lower than the protective layer's softening point, followed by heat pressing at a higher temperature to curve the laminate, ensuring precise bonding without distorting the protective layer.

Benefits of technology

This method effectively suppresses a decrease in accuracy and precision of the functional structure by maintaining the integrity of the protective layer while ensuring strong adhesive bonding.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a method for manufacturing a functional structure capable of suppressing a decrease in an accuracy of the functional structure.SOLUTION: A method for manufacturing a functional structure 1 having a functional layer 10, a protective layer 20, and an adhesive layer 30 includes: a laminate formation step in which a laminate is formed by laminating a protective layer, an adhesive layer forming material, and a functional layer; an integration step in which the adhesive layer forming material is softened to form an adhesive layer, thereby forming a laminate unit in which the functional layer and the protective layer are integrated via the adhesive layer; and a heat pressing step in which the laminate unit is pressed while being heated so that the laminate unit is curved convexly from the functional layer toward the protective layer or from the protective layer toward the functional layer. In the integration step, the adhesive layer forming material is softened at a first temperature that is lower than a softening temperature of the protective layer 20 to form the adhesive layer. In the heat pressing step, the laminate unit is heat pressed at a second temperature higher than the first temperature.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] This disclosure relates to a method for manufacturing a functional structure. [Background technology]

[0002] Conventionally, functional roofs (such as photovoltaic panels and dimming roofs) provided on the upper surface of a vehicle body have been known. For example, Japanese Patent Application Laid-Open No. 2023-167475 discloses a functional roof including a functional layer, a sealing layer, a front barrier sheet, and a surface protection material. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2023-167475 Summary of the Invention [Problem to be solved by the invention]

[0004] In the functional roof described in JP 2023-167475 A, it is desirable that the precision of the functional roof is high.

[0005] The above problem is not limited to functional roofs provided on the upper surface of a vehicle body, but applies broadly to structures that include a functional layer, a protective layer, and an adhesive layer.

[0006] An object of the present invention is to provide a method for manufacturing a functional structure that can suppress a decrease in the accuracy of the functional structure. [Means for solving the problem]

[0007] A method for manufacturing a functional structure according to one aspect of this disclosure is a method for manufacturing a functional structure comprising a functional layer having a predetermined function, a protective layer made of resin and protecting the functional layer, and an adhesive layer adhering the functional layer to the protective layer, and comprises: a laminate formation process for forming a laminate by stacking the protective layer, an adhesive layer forming material that forms the adhesive layer, and the functional layer; an integration process for softening the adhesive layer forming material in the laminate to form the adhesive layer, thereby forming a laminate unit in which the functional layer and the protective layer are integrated via the adhesive layer; and a heat pressing process for pressing the laminate unit while heating it so that the laminate unit curves convexly from the functional layer toward the protective layer, or from the protective layer toward the functional layer; in the integration process, the adhesive layer forming material is softened at a first temperature lower than the softening temperature of the protective layer to form the adhesive layer, and in the heat pressing process, the laminate unit is heat pressed at a second temperature higher than the first temperature. [Effects of the Invention]

[0008] According to this disclosure, it is possible to provide a method for manufacturing a functional structure that can suppress a decrease in the accuracy of the functional structure. [Brief explanation of the drawings]

[0009] [Figure 1] 1 is a cross-sectional view schematically illustrating a functional structure according to an embodiment of the present disclosure. [Figure 2] 1A to 1C are cross-sectional views schematically showing a method for manufacturing a functional structure. [Figure 3] 1A to 1C are cross-sectional views schematically showing a method for manufacturing a functional structure. [Figure 4] FIG. 10 is a cross-sectional view schematically showing a modified example of the functional structure. [Figure 5] 5A to 5C are cross-sectional views schematically showing a method for manufacturing the functional structure shown in FIG. [Figure 6] FIG. 10 is a cross-sectional view schematically showing a modified example of the functional structure. [Figure 7] 7A to 7C are cross-sectional views schematically showing a method for manufacturing the functional structure shown in FIG. 6. DETAILED DESCRIPTION OF THE INVENTION

[0010] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be described with reference to the accompanying drawings, in which the same or equivalent components are designated by the same reference numerals.

[0011] 1 is a cross-sectional view schematically illustrating a functional structure according to an embodiment of the present disclosure. The functional structure 1 is preferably used in a vehicle as, for example, a functional roof.

[0012] As shown in FIG. 1, the functional structure 1 includes a functional layer 10, a protective layer 20, an adhesive layer 30, and a back surface protective material 40.

[0013] The functional layer 10 has a predetermined function. Examples of the predetermined function include a power generation function, a light control function, a display function, a heat reflective layer, a heat insulating layer, and a low-reflection layer. When the predetermined function is a power generation function, the functional layer 10 is composed of a solar power generation panel (such as a crystalline silicon solar cell, a polycrystalline silicon solar cell, an amorphous silicon solar cell, a copper indium selenide solar cell, a compound semiconductor solar cell, an organic thin-film solar cell, a gallium arsenide solar cell, or a perovskite solar cell). In this case, the functional structure 1 may have multiple functional layers 10. When the predetermined function is a light control function, the functional layer 10 is composed of a light control film (a film whose light transmittance can be adjusted by applying a voltage). When the predetermined function is a display function, the functional layer 10 is composed of a display device (such as an LED, an organic EL, or a liquid crystal display). As shown in FIG. 1, the functional layer 10 is formed in a generally flat plate shape.

[0014] The protective layer 20 protects the functional layer 10. The protective layer 20 is disposed on one side of the functional layer 10 in the thickness direction of the functional layer 10 (the upper side in FIG. 1). The protective layer 20 is made of a resin. The protective layer 20 is preferably made of a resin that is optically transparent. The protective layer 20 is made of, for example, polycarbonate (PC), polymethyl methacrylate (PMMA), polyethylene terephthalate (PET), or polypropylene (PP).

[0015] The adhesive layer 30 bonds the functional layer 10 to the protective layer 20. In this embodiment, the adhesive layer 30 seals the functional layer 10. More specifically, the adhesive layer 30 seals the entire area of ​​each main surface and end surface of the functional layer 10. The adhesive layer 30 is preferably made of a light-transmitting resin. The adhesive layer 30 is made of, for example, ethylene vinyl acetate (EVA), polyolefin, silicone, ionomer, or epoxy-based resin. The adhesive layer 30 is formed by heating multiple sheets (adhesive layer-forming materials) made of the above resin in a stacked state. The adhesive layer-forming material may be a single sheet, or may be a coated paste-like adhesive instead of a sheet. The resin material forming the adhesive layer 30 is selected from materials having a softening temperature lower than that of the protective layer 20.

[0016] 1, the functional structure 1 is curved convexly from the functional layer 10 toward the protective layer 20. Note that the functional structure 1 may also be curved convexly from the protective layer 20 toward the functional layer 10.

[0017] The back surface protection material 40 protects the surface 30S of the adhesive layer 30 opposite to the side on which the protective layer 20 is provided. The thickness of the back surface protection material 40 may be smaller than the thickness of the protective layer 20. The back surface protection material 40 is made of, for example, polycarbonate (PC), ABS resin, or a mixture of these. The back surface protection material 40 may be omitted.

[0018] Next, a method for manufacturing the functional structure 1 will be described with reference to Figures 2 and 3. This manufacturing method includes a laminate forming step, an integration step, and a heat pressing step.

[0019] In the laminate formation step, the laminate 1L (see FIG. 2) is formed by laminating the protective layer 20, the adhesive layer-forming material 30f that forms the adhesive layer 30, and the functional layer 10. In the laminate formation step in this embodiment, the functional layer 10 is disposed between the adhesive layer-forming materials 30f. In the laminate formation step, for example, the protective layer 20, the adhesive layer-forming material 30f, and the functional layer 10 are laminated on the plate-like member 101 to form the laminate 1L.

[0020] In the integration process, the adhesive layer-forming material 30f in the laminate 1L is softened to form the adhesive layer 30, thereby forming a laminate unit 1U (see FIG. 3) in which the functional layer 10 and the protective layer 20 are integrated via the adhesive layer 30. In the integration process of this embodiment, the adhesive layer-forming material 30f is softened to form the adhesive layer 30 having a shape that seals the functional layer 10. In the integration process, the adhesive layer-forming material 30f is softened at a first temperature (for example, about 130°C) that is lower than the softening temperature of the protective layer 20, to form the adhesive layer 30.

[0021] 3, in the integration step, for example, the laminate 1L is placed on a heated plate-like member 101, and in a state where the laminate 1L is covered with a rubber sheet 102, the space between the plate-like member 101 and the sheet 102 is evacuated to integrate the laminate unit 1U. The plate-like member 101 may also be a rubber sheet.

[0022] In the heat pressing process, the multilayer unit 1U is pressed while being heated so that the multilayer unit 1U is curved convexly from the functional layer 10 toward the protective layer 20. In the heat pressing process, the multilayer unit 1U is heat pressed at a second temperature (for example, about 150°C to 160°C) higher than the first temperature. The second temperature is set to about the softening temperature of the material forming the protective layer 20.

[0023] As described above, in the manufacturing method of the functional structure 1 in this embodiment, the adhesive layer 30 is formed by softening the adhesive layer-forming material 30f at a first temperature lower than the softening temperature of the protective layer 20 in the integration step, thereby suppressing softening of the protective layer 20 in the integration step. Therefore, it is possible to suppress a decrease in the precision of the functional structure 1 while ensuring the adhesive strength between the functional layer 10 and the protective layer 20. The precision of the functional structure 1 refers to the precision with which the functional structure 1 obtained by hot pressing has a desired shape, and a state in which there is little dimensional distortion or warpage relative to the desired shape is a state in which a decrease in the precision of the functional structure is suppressed.

[0024] Modifications of the above embodiment will now be described.

[0025] <First Modification> As shown in Fig. 4, the adhesive layer 30 may be disposed only between the functional layer 10 and the protective layer 20. In this example, the integration step uses a bonding apparatus shown in Fig. 5. The bonding apparatus includes a transport roller 103, a heating roller 104, and a support roller 105.

[0026] The conveying roller 103 conveys the flat protective layer 20 downstream in the conveying direction (the direction indicated by the arrow in FIG. 5). The heating roller 104 presses the functional layer 10 against the protective layer 20 while heating the functional layer 10. The heating roller 104 is heated by a heat source (not shown). The temperature of the heating roller 104 is controlled by a control unit (not shown). The support roller 105 sends the protective layer 20 downstream in the conveying direction together with the heating roller 104. The support roller 105 may also be heated.

[0027] In the integration process in this example, the adhesive layer forming material 30f is heated through the functional layer 10 while the heating roller 104 presses the functional layer 10 against the protective layer 20, thereby softening the adhesive layer forming material 30f and forming the adhesive layer 30.

[0028] <Second Modification> As shown in FIG. 6, the functional structure 1 may further include another functional layer 12 and another adhesive layer 32.

[0029] The other functional layer 12 is disposed on the side of the protective layer 20 opposite to the side on which the functional layer 10 is disposed (the upper side in FIG. 6). The other functional layer 12 may have the same function as the functional layer 10, or may have a different function. The thickness of the other functional layer 12 may be the same as or different from the thickness of the functional layer 10.

[0030] Another adhesive layer 32 bonds the other functional layer 12 to the protective layer 20 .

[0031] In this example, the protective layer 20 functions as a support layer that supports the functional layer 10 and other functional layers 12 .

[0032] In the integration step in this example, a bonding device similar to that in the first modified example is used, as shown in Fig. 7. In this example, the support roller 105, like the heating roller 104, presses the other functional layer 12 against the protective layer 20 while heating the other functional layer 12.

[0033] That is, in the integration process, a pair of heating rollers 104 and support rollers 105 clamp the laminate 1L from both sides in the stacking direction, pressing the functional layer 10 and the other functional layers 12 toward the protective layer 20 while heating the adhesive layer forming material 30f through the functional layer 10 and heating the other adhesive layer forming materials 32f through the other functional layers 12, thereby softening the adhesive layer forming material 30f and the other adhesive layer forming materials 32f and forming the adhesive layer 30 and the other adhesive layer 32.

[0034] It will be appreciated by those skilled in the art that the exemplary embodiments described above are examples of the following aspects.

[0035] [Aspect 1] A method for manufacturing a functional structure including a functional layer having a predetermined function, a protective layer made of resin and protecting the functional layer, and an adhesive layer that bonds the functional layer to the protective layer, comprising: a laminate formation step of forming a laminate by laminating the protective layer, an adhesive layer forming material that forms the adhesive layer, and the functional layer; an integration step of forming a laminate unit in which the functional layer and the protective layer are integrated via the adhesive layer by softening the adhesive layer-forming material in the laminate to form the adhesive layer; a heat pressing step of pressing the laminate unit while heating it so that the laminate unit is convexly curved from the functional layer toward the protective layer or from the protective layer toward the functional layer, In the integrating step, the adhesive layer is formed by softening the adhesive layer-forming material at a first temperature that is lower than the softening temperature of the protective layer; In the heat pressing step, the laminate unit is heat pressed at a second temperature higher than the first temperature.

[0036] In this manufacturing method for a functional structure, the adhesive layer is formed by softening the adhesive layer-forming material at a first temperature lower than the softening temperature of the protective layer in the integration step, which prevents the protective layer from softening during the integration step. This allows for both effective bonding of the functional layer and the protective layer with the adhesive layer and reduced precision of the functional structure.

[0037] [Aspect 2] In the laminate forming step, the functional layer is disposed between the adhesive layer forming materials, Aspect 2 is a method for producing a functional structure according to aspect 1, wherein the integrating step comprises softening the adhesive layer-forming material to form the adhesive layer having a shape that seals the functional layer.

[0038] In this embodiment, the functional layer is sealed by the adhesive layer, and therefore the functional layer is effectively protected.

[0039] [Aspect 3] In the laminate forming step, the adhesive layer forming material is disposed between the functional layer and the protective layer, A method for manufacturing a functional structure according to aspect 1, wherein in the integration process, the adhesive layer forming material is heated through the functional layer while pressing the functional layer against the protective layer with a heating roller, thereby softening the adhesive layer forming material and forming the adhesive layer.

[0040] [Aspect 4] the functional structure includes another functional layer having a predetermined function and another adhesive layer that adheres the other functional layer to the protective layer; In the laminate formation step, the laminate is formed by laminating the other functional layer, the other adhesive layer-forming material that forms the other adhesive layer, the protective layer, the adhesive layer-forming material, and the functional layer in this order, In the integration process, a pair of heating rollers clamp the laminate from both sides in the stacking direction, pressing the functional layer and the other functional layer toward the protective layer while heating the adhesive layer forming material through the functional layer and heating the other adhesive layer forming material through the other functional layer, thereby softening the adhesive layer forming material and the other adhesive layer forming material to form the adhesive layer and the other adhesive layer, a method for manufacturing a functional structure described in aspect 1.

[0041] [Aspect 5] A method for manufacturing a functional structure comprising: a first functional layer having a predetermined first function; a second functional layer having a predetermined second function; a support layer made of resin and supporting the first functional layer and the second functional layer; a first adhesive layer adhering the first functional layer to the support layer; and a second adhesive layer adhering the second functional layer to the support layer, a laminate formation process of forming a laminate by laminating the first functional layer, a first adhesive layer forming material that forms the first adhesive layer, the support layer, a second adhesive layer forming material that forms the second adhesive layer, and the second functional layer in this order; an integration process in which the first adhesive layer-forming material is softened to form the first adhesive layer and the second adhesive layer-forming material is softened to form the second adhesive layer, thereby forming a laminate unit in which the first functional layer and the support layer are integrated via the first adhesive layer and the second functional layer and the support layer are integrated via the second adhesive layer; a heat pressing process of pressing the laminate unit while heating it so that the laminate unit is convexly curved from the first functional layer toward the second functional layer or from the second functional layer toward the first functional layer, In the integrating step, the first adhesive layer-forming material and the second adhesive layer-forming material are softened at a first temperature that is lower than the softening temperature of the support layer to form the first adhesive layer and the second adhesive layer; In the heat pressing step, the laminate unit is heat pressed at a second temperature higher than the first temperature.

[0042] [Aspect 6] In the integration process, a pair of heating rollers clamp the laminate from both sides in the stacking direction of the laminate, pressing the first functional layer and the second functional layer toward the support layer while heating the first adhesive layer forming material through the first functional layer and heating the second adhesive layer forming material through the second functional layer, thereby softening the first adhesive layer forming material and the second adhesive layer forming material to form the first adhesive layer and the second adhesive layer, a method for manufacturing a functional structure described in aspect 5.

[0043] It should be noted that the embodiments disclosed herein are illustrative in all respects and should not be considered limiting. The scope of the present invention is defined by the claims rather than the description of the above embodiments, and further includes all modifications within the meaning and scope of the claims. [Explanation of symbols]

[0044] 1 functional structure, 1L laminate, 1U laminate unit, 10 functional layer, 12 other functional layer, 20 protective layer, 30 adhesive layer, 32 other adhesive layer, 40 back surface protective material, 101 plate-shaped member, 102 sheet, 103 conveying roller, 104 heating roller, 105 support roller.

Claims

1. A method for manufacturing a functional structure including a functional layer having a predetermined function, a protective layer made of resin and protecting the functional layer, and an adhesive layer that bonds the functional layer to the protective layer, comprising: a laminate formation step of forming a laminate by laminating the protective layer, an adhesive layer forming material that forms the adhesive layer, and the functional layer; an integration step of forming a laminate unit in which the functional layer and the protective layer are integrated via the adhesive layer by softening the adhesive layer-forming material in the laminate to form the adhesive layer; a heat pressing step of pressing the laminate unit while heating it so that the laminate unit is convexly curved from the functional layer toward the protective layer or from the protective layer toward the functional layer, In the integrating step, the adhesive layer is formed by softening the adhesive layer-forming material at a first temperature that is lower than the softening temperature of the protective layer; In the heat pressing step, the laminate unit is heat pressed at a second temperature higher than the first temperature.

2. In the laminate forming step, the functional layer is disposed between the adhesive layer forming materials, The method for manufacturing a functional structure according to claim 1 , wherein the integration step comprises softening the adhesive layer-forming material to form the adhesive layer having a shape that seals the functional layer.

3. In the laminate forming step, the adhesive layer forming material is disposed between the functional layer and the protective layer, The method for manufacturing a functional structure described in claim 1, wherein in the integration process, the adhesive layer forming material is heated through the functional layer while pressing the functional layer toward the protective layer with a heating roller, thereby softening the adhesive layer forming material and forming the adhesive layer.

4. the functional structure includes another functional layer having a predetermined function and another adhesive layer that adheres the other functional layer to the protective layer; In the laminate formation step, the laminate is formed by laminating the other functional layer, the other adhesive layer-forming material that forms the other adhesive layer, the protective layer, the adhesive layer-forming material, and the functional layer in this order, The method for manufacturing a functional structure described in claim 1, wherein in the integration process, a pair of heating rollers clamp the laminate from both sides in the stacking direction, pressing the functional layer and the other functional layer toward the protective layer while heating the adhesive layer forming material through the functional layer and heating the other adhesive layer forming material through the other functional layer, thereby softening the adhesive layer forming material and the other adhesive layer forming material to form the adhesive layer and the other adhesive layer.

Citation Information

Patent Citations

  • Functional roof and manufacturing method of the same

    JP2023167475A