Decorative outer-cover material, decorative member, display system, manufacturing method for decorative outer-cover material, and manufacturing method for decorative member
The decorative skin material with recesses in the light-shielding layer and a thermoplastic resin portion enhances design quality by hiding non-decorative portions when the light source is off, maintaining aesthetic appeal.
Patent Information
- Application Number
- JP2025118404
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2022-11-09
- Filing Date
- 2025-07-14
- Publication Date
- 2025-10-22
AI Technical Summary
Decorative skin materials with visible non-decorative portions when the light source is off reduce the design quality.
A decorative skin material with a design layer and a light-shielding layer, featuring recesses that penetrate the light-shielding layer but not the design layer, and a thermoplastic resin portion bonded to the second surface, enhancing the design visibility.
Improves the design quality by ensuring the non-decorative portions are not visible when the light source is off, maintaining aesthetic appeal.
Smart Images

Figure 2025160248000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a decorative skin material, a decorative member, a display system, a method for manufacturing a decorative skin material, and a method for manufacturing a decorative member. [Background technology]
[0002] As disclosed in JP2017-65168A, a decorative skin material having a decorative portion including a design layer and a non-decorative portion not including a design layer is known. In JP2017-65168A, the design layer is removed from the non-decorative portion. In JP2017-65168A, the decorative skin material is illuminated from behind by light from a light source. Light passing through the decorative skin material is transmitted through the non-decorative portion, and an illumination pattern having the same shape as the non-decorative portion can be observed.
[0003] In the decorative skin material disclosed in JP2017-65168A, the non-decorated portions are visible even when the light source is not emitting light. The visibility of the non-decorated portions reduces the design quality of the decorative skin material disclosed in JP2017-65168A. DISCLOSURE OF THE INVENTION
[0004] The present disclosure aims to improve the design of decorative skin materials.
[0005] A decorative skin material according to one embodiment of the present disclosure includes: A decorative skin material having a first surface and a second surface opposite to the first surface, A design layer and a light-shielding layer are provided in this order from the first surface to the second surface, a recessed portion that is open to the second surface; The recess penetrates the light-shielding layer but does not penetrate the design layer.
[0006] A display system according to an embodiment of the present disclosure includes: A decorative member; a light source facing the decorative member, the decorative member includes a decorative skin material having a first surface and a second surface opposite to the first surface, and a thermoplastic resin portion bonded to the second surface of the decorative skin material, the thermoplastic resin portion is located between the light source and the decorative skin material, the decorative skin material includes a light-shielding layer, The decorative skin material includes a recess that opens to the second surface and penetrates the light-shielding layer.
[0007] A method for manufacturing a decorative member according to an embodiment of the present disclosure includes: A step of molding a decorative sheet including a light-shielding layer; a step of removing a portion of the light-shielding layer from the decorative sheet to produce a decorative skin material including recesses from the decorative sheet; and forming a thermoplastic resin portion bonded to the decorative skin material.
[0008] According to the present disclosure, the design of decorative skin materials can be improved. [Brief explanation of the drawings]
[0009] [Figure 1] FIG. 1 is a diagram for explaining an embodiment, and is a perspective view that schematically shows an example of a display system. [Figure 2] FIG. 2 is a plan view showing the display system of FIG. 1 from the front, with the light source turned off. [Figure 3] FIG. 3 is a plan view showing the display system of FIG. 1 from the front, showing the state when the light source is turned on. [Figure 4] FIG. 4 is a partial cross-sectional view of the display system of FIG. [Figure 5] FIG. 5 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 6] FIG. 6 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 7] FIG. 7 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 8]FIG. 8 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 9] FIG. 9 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 10] FIG. 10 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 11] FIG. 11 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 12] FIG. 12 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 13] FIG. 13 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 14] FIG. 14 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 15] FIG. 15 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 16] FIG. 16 is a cross-sectional view showing a cross section similar to that of FIG. 4, and is a partial cross-sectional view showing a modified example of the display system. [Figure 17] FIG. 17 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 18] FIG. 18 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 19] FIG. 19 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 20] FIG. 20 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 21] FIG. 21 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 22] FIG. 22 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 23] FIG. 23 is a diagram showing an example of a method for manufacturing the decorative member shown in FIG. [Figure 24]FIG. 24 is a cross-sectional view showing a cross section similar to that of FIG. 4, and is a partial cross-sectional view showing another modified example of the display system. [Figure 25] FIG. 25 is a diagram showing an example of a method for manufacturing the decorative skin material shown in FIG. [Figure 26] FIG. 26 is a cross-sectional view showing a cross section similar to that of FIG. 4, and is a partial cross-sectional view showing yet another modified example of the display system. DETAILED DESCRIPTION OF THE INVENTION
[0010] An embodiment of the present disclosure relates to the following [1] to
[19] .
[0011] [1] A decorative skin material having a first surface and a second surface opposite to the first surface, A design layer and a light-shielding layer are provided in this order from the first surface to the second surface, a recessed portion that is open to the second surface; The recessed portion penetrates the light-shielding layer but does not penetrate the design layer.
[0012] [2] The recess includes a bottom portion and a wall portion connecting the bottom portion and the second surface, The decorative skin material according to [1], wherein the wall portion is not formed by the design layer.
[0013] [3] The decorative skin material according to [1] or [2], wherein the recesses are not formed in the design layer.
[0014] [4] The decorative skin material according to any one of [1] to [3], wherein the recesses are formed by removing portions of the light-shielding layer using a laser irradiated from the second surface side.
[0015] [5] A base layer is further provided between the design layer and the light-shielding layer, The decorative skin material according to any one of [1] to [4], wherein the bottom of the recess is formed by the base layer.
[0016] [6] The decorative skin material according to any one of [1] to [5], wherein the first surface has an uneven shape.
[0017] [7] A decorative skin material according to any one of [1] to [6]. a thermoplastic resin portion bonded to the second surface of the decorative skin material.
[0018] [8] A light source; [7] A decorative member superimposed on the light source, The thermoplastic resin portion is positioned between the light source and the decorative skin material.
[0019] [9] A decorative sheet including a design layer and a light-shielding layer in this order from a first surface to a second surface, the decorative sheet including a design layer and a light-shielding layer, and a step of removing a part of the light-shielding layer from the second surface side to form a recess; The method for manufacturing a decorative skin material, wherein the recesses penetrate the light-shielding layer but do not penetrate the design layer.
[0020]
[10] The recess includes a bottom portion and a wall portion connecting the bottom portion and the second surface, The method for manufacturing a decorative skin material according to [9], wherein the wall portion is not formed by the design layer.
[0021]
[11] The method for manufacturing a decorative skin material according to [9] or
[10] , wherein the recesses are not formed in the design layer.
[0022]
[12] The method for producing a decorative skin material according to any one of [9] to
[11] , wherein the recesses are formed in the molded decorative sheet.
[0023]
[13] A step of molding a decorative sheet including a design layer and a light-shielding layer in this order from the first surface to the second surface; a step of removing a portion of the light-shielding layer from the second surface side of the decorative sheet to form a decorative skin material including recesses from the decorative sheet; forming a thermoplastic resin portion bonded to the decorative skin material, The method for manufacturing a decorative member, wherein the recess penetrates the light-shielding layer but does not penetrate the design layer.
[0024]
[14] The recess includes a bottom portion and a wall portion connecting the bottom portion and the second surface, The method for manufacturing a decorative member according to
[13] , wherein the wall portion is not formed by the design layer.
[0025]
[15] The method for manufacturing a decorative member according to
[13] or
[14] , wherein the recess is not formed in the design layer.
[0026]
[16] The method for manufacturing a decorative member according to any one of
[13] to
[15] , wherein the portion of the light-shielding layer is removed by a laser irradiated from the second surface side.
[0027]
[17] The method for manufacturing a decorative member according to any one of
[13] to
[16] , wherein the decorative skin material is transported into a mold including a first mold and a second mold, and while the decorative skin material is contained in the mold, a thermoplastic resin is injected into a cavity formed between the first mold and the second mold, thereby forming the thermoplastic resin portion bonded to the decorative skin material.
[0028]
[18] The decorative sheet is molded using a first mold, forming recesses in the decorative sheet placed in the first mold to produce the decorative skin material; The method for manufacturing a decorative member according to any one of
[13] to
[17] , wherein a second mold is placed on the first mold with the decorative skin material placed in the first mold, and a thermoplastic resin is injected into a cavity formed between the first mold and the second mold, thereby forming the thermoplastic resin portion bonded to the decorative skin material.
[0029]
[19] The first mold has an uneven shape in a portion facing the decorative skin material placed in the first mold, The method for manufacturing a decorative member according to
[17] or
[18] , wherein the decorative skin material is pressed against the concave and convex shape of the first mold by the thermoplastic resin injected from the cavity.
[0030] Hereinafter, an embodiment of the present disclosure will be described with reference to the drawings. In the drawings accompanying this specification, the scale and aspect ratios have been appropriately changed and exaggerated from the actual size for the sake of convenience and ease of understanding.
[0031] The terms "plate," "sheet," and "film" are not distinguished from one another solely on the basis of differences in name. For example, "plate" is a concept that includes members that can be called sheets or films, and therefore a "light diffusion plate" cannot be distinguished from members called "light diffusion sheets" or "light diffusion films" solely on the basis of differences in name.
[0032] Terms that specify shapes and geometric conditions and their degrees, such as "parallel," "orthogonal," and "identical," as well as values of lengths and angles, are not limited to their strict meanings but are interpreted to include the range within which similar functions can be expected.
[0033] In the present disclosure, terms such as "sheet," "film," and "plate" are not distinguished from one another solely on the basis of differences in name. For example, a "decorative sheet" cannot be distinguished from a member called a decorative film or a decorative plate solely on the basis of differences in name.
[0034] To clarify the relationship between directions between drawings, common directions are indicated in several drawings by arrows with common symbols. The tip of the arrow is the first side of each direction. An arrow pointing toward the viewer in a direction perpendicular to the plane of the drawing is indicated by a symbol with a dot in a circle, as shown in Figure 2, for example. An arrow pointing toward the viewer in a direction perpendicular to the plane of the drawing is indicated by a symbol with an X in a circle, as shown in Figure 4, for example.
[0035] In the present disclosure, when multiple upper limit candidates and multiple lower limit candidate values are listed for a certain parameter, the numerical range of the parameter may be constructed by combining any one upper limit candidate with any one lower limit candidate. As an example, consider the following statement: "Parameter B may be greater than or equal to A1, greater than or equal to A2, or greater than or equal to A3. Parameter B may be less than or equal to A4, less than or equal to A5, or less than or equal to A6." In this example, the numerical range of parameter B may be greater than or equal to A1 and less than or equal to A4, greater than or equal to A1 and less than or equal to A5, greater than or equal to A1 and less than or equal to A6, greater than or equal to A2 and less than or equal to A4, greater than or equal to A2 and less than or equal to A5, greater than or equal to A2 and less than or equal to A6, greater than or equal to A3 and less than or equal to A4, greater than or equal to A3 and less than or equal to A5, or greater than or equal to A3 and less than or equal to A6.
[0036] 1 to 15 are diagrams illustrating an embodiment. FIG. 1 is a perspective view schematically illustrating a specific example of a display system. As shown in FIG. 1, the display system 10 includes a light source 15 and a decorative member 20 overlaid on the light source 15. The display system 10 can be observed from a display surface 11. The display surface 11 may display a design. The display surface 11 may display an image. The image may be formed by light from the light source 15 emitted from the display surface 11.
[0037] The display system 10 can be applied to various applications. The display system 10 may be applied to the interior or exterior of a mobile body, which is a movable device. Examples of mobile bodies include automobiles, ships, and airplanes. As a specific example, the display system 10 may be applied to the interior or exterior of an automobile. The display system 10 may be applied to the interior of a building, such as a wall, door, or ceiling. The display system may be applied to various devices, such as furniture and home appliances.
[0038] The light source 15 is capable of emitting light. The light source 15 can be in a state in which it is emitting light (a lit state) or a state in which it is not emitting light (an extinguished state). The light source 15 may include a cold cathode fluorescent lamp as a light emitter. The light source 15 may include a light emitting diode (LED) as a light emitter. The light source 15 may further include an optical member capable of adjusting the direction of light from the light emitter. The light source 15 may be a surface light source device that emits light in a planar form.
[0039] 1 and 4, the light source 15 is covered by the decorative member 20 and the decorative skin material 40. The decorative skin material is a sheet in which a portion has been removed from a decorative sheet. The light source 15 includes a portion that faces a recess 45 (described later) of the decorative skin material 40. The light source 15 is hidden by the decorative skin material 40 from an observer who observes the decorative skin material 40.
[0040] 1 to 3, the decorative member 20 is spread out in a sheet-like shape when viewed from a broad perspective. The decorative member 20 spreads out in a first direction D1 and a second direction D2 perpendicular to the first direction D1. The decorative member 20 includes a decorative skin material 40 and a thermoplastic resin portion 32 overlapping the decorative skin material 40 in a third direction D3. The thermoplastic resin portion 32 is bonded to the decorative skin material 40. The thermoplastic resin portion 32 is located between the light source 15 and the decorative skin material 40 in the third direction D3.
[0041] 1 to 4, the decorative member 20 has a first surface 20a and a second surface 20b opposite to the first surface 20a. The first surface 20a constitutes the display surface 11 of the display system 10. A viewer of the display system 10 views the display surface 11. The decorative member 20 can be viewed from the first surface 20a. The second surface 20b of the decorative member 20 faces the light source 15.
[0042] The decorative member 20 displays the design expressed by the decorative skin material 40. The design displayed by the decorative member 20 is also displayed as a design in the display system 10. In the decorative member 20 shown in Figures 2 and 3, a wood grain design can be observed as the design expressed by the decorative skin material 40.
[0043] In the example shown in FIGS. 1 to 3 , the decorative member 20 has a transmissive portion 21 and a light-shielding portion 22. The transmissive portion 21 is transparent to visible light. The light-shielding portion 22 is shading to visible light. In the display system 10, light emitted from the light source 15 toward the decorative member 20 can pass through the transmissive portion 21. The light emitted from the light source 15 toward the decorative member 20 can be absorbed by the light-shielding portion 22. In this decorative member 20, the transmissive portion 21 can be distinguished from the light-shielding portion 22 due to the difference in transmittance between the transmissive portion 21 and the light-shielding portion 22. A viewer can observe the transmissive portion 21 as a display pattern. The transmissive portion 21 only needs to have visible light transparency that allows it to transmit visible light to an extent that it can be distinguished from the light-shielding portion 22. The transmissive portion 21 does not need to have visible light transparency that allows it to transmit visible light to an extent that it is called transparent. The transmissive portion 21 may be smoke-colored. The light-shielding portion 22 only needs to have a visible light-shielding property that can block visible light to an extent that it can be distinguished from the transmitting portion 21 .
[0044] "Visible light transmissive" means that the visible light transmittance is 3% or more. "Transparent" means that the visible light transmittance is 50% or more, preferably 80% or more. "Visible light blocking" means that the visible light transmittance is 1% or less, preferably 0.2% or less. The visible light transmittance is specified as the average value of the transmittance at each wavelength when measured at an incident angle of 0° in 1 nm increments within a measurement wavelength range of 380 nm to 780 nm. The transmittance at each wavelength is measured using a haze meter (manufactured by Murakami Color Research Laboratory, product number: HM-150) in accordance with JIS K 7361.
[0045] 3 is capable of displaying the pattern of the transmissive portion 21 as an image due to the difference in visible light transmittance between the transmissive portion 21 and the light-shielding portion 22. In the illustrated example, a cross, a triangle, and a square are displayed.
[0046] The decorative member 20 may have a three-dimensional shape. In the example shown in Fig. 1, the decorative member 20 is bent in a third direction D3 at both ends in the first direction D1. The bent portions of the decorative member 20 extend in the second direction D2.
[0047] 4, the decorative skin material 40 has a first surface 40a and a second surface 40b opposite the first surface 40a. The first surface 40a constitutes the first surface 20a of the decorative member 20. Therefore, the first surface 40a of the decorative skin material 40 constitutes the display surface 11 of the display system 10. In the illustrated example, the first surface 40a is flat. The decorative skin material 40 is bonded to the thermoplastic resin portion 32 at the second surface 40b.
[0048] The decorative skin material 40 includes, from the first surface 40a to the second surface 40b, a design layer 51 and a light-shielding layer 52. In the example shown in Fig. 4, the design layer 51 and the light-shielding layer 52 are stacked in a third direction D3. That is, in the illustrated decorative skin material 40, the third direction D3 is the stacking direction.
[0049] The decorative skin material 40 may include layers other than the design layer 51 and the light-shielding layer 52. In the example shown in Fig. 4, the decorative skin material 40 includes, in this order from the first surface 40a to the second surface 40b, a surface layer 62, a design layer 51, a base layer 61, a light-shielding layer 52, and a bonding layer 63.
[0050] 2 to 4, the decorative skin material 40 has a transmissive portion 41 and a light-shielding portion 42. In the example shown in FIG. 4, the transmissive portion 41 and the light-shielding portion 42 are adjacent to each other in the first direction D1. The transmissive portion 41 transmits visible light. The light-shielding portion 42 blocks visible light. In the illustrated decorative skin material 40, the light-shielding portion 42 is located in a portion that includes the light-shielding layer 52. The transmissive portion 41 is located in a portion that does not include the light-shielding layer 52.
[0051] In the illustrated display system 10, the transmissive portions 41 are capable of transmitting light emitted from the light source 15. The light-shielding portions 42 can absorb light emitted from the light source 15. In the decorative member 20 including the decorative skin material 40, the transmissive portions 21 may be formed by the transmissive portions 41 of the decorative skin material 40. The light-shielding portions 22 may be formed by the light-shielding portions 42 of the decorative skin material 40.
[0052] 4, the decorative skin material 40 includes a recess 45 that opens to the second surface 40b. The recess 45 does not open to the first surface 40a. In other words, the recess 45 does not penetrate the decorative skin material 40 in the stacking direction. The decorative skin material 40 is recessed at the recess 45 in the third direction D3, which is the stacking direction.
[0053] 4 has three recesses 45 aligned in the first direction D1. The thermoplastic resin portion 32 bonded to the decorative skin material 40 is located within the recesses 45. The decorative skin material 40 is capable of transmitting light emitted from the light source 15 through the recesses 45.
[0054] The recesses 45 penetrate the light-shielding layer 52. By penetrating the light-shielding layer 52, the decorative skin material 40 can be transparent to visible light at the recesses 45. Therefore, the recesses 45 can form the transmissive portions 41 of the decorative skin material 40. As shown in FIG. 4 , the recesses 45 may penetrate layers other than the light-shielding layer 52 of the decorative skin material 40. In the illustrated example, the recesses 45 also penetrate the bonding layer 63. The recesses 45 are formed by a portion that penetrates the light-shielding layer 52 and a portion that penetrates the bonding layer 63. The recesses 45 may be formed by removing a portion of the light-shielding layer 52 from the second surface 40b side of the decorative skin material 40. The light-shielding layer 52 may be removed by a laser irradiated from the second surface 40b side of the decorative skin material 40.
[0055] The recesses 45 do not penetrate the design layer 51. As shown in Fig. 4, the recesses 45 do not have to penetrate any layers other than the design layer 51 of the decorative skin material 40. In the illustrated example, the recesses 45 do not penetrate the base layer 61 either. In the decorative skin material 40, unlike the illustrated example, the recesses 45 may be formed in part of the base layer 61. In the decorative skin material 40, unlike the illustrated example, the recesses 45 may penetrate the base layer 61.
[0056] As described above, the recess 45 penetrates the light-shielding layer 52 but does not penetrate the design layer 51. That is, the recess 45 penetrates only the light-shielding layer 52 out of the light-shielding layer 52 and the design layer 51. The recess 45 penetrates only the light-shielding layer 52 out of the light-shielding layer 52 and the design layer 51.
[0057] The recess 45 shown in FIG. 4 includes a bottom 46 and a wall 48 connecting the bottom 46 and the second surface 40b. In the illustrated decorative skin material 40, the bottom 46 is located closer to the first surface 40a than the wall 48. The "bottom" refers to the portion of the recess that forms an angle of 45° or more and 90° or less with respect to the stacking direction. The illustrated bottom 46 faces the third direction D3. That is, the illustrated bottom 46 forms an angle of 90° with respect to the stacking direction. The "wall" refers to the portion of the recess that forms an angle of 0° or more and less than 45° with respect to the stacking direction. The illustrated wall 48 extends in the third direction D3 between the bottom 46 and the second surface 40b. That is, the illustrated wall 48 forms an angle of 0° with respect to the stacking direction.
[0058] 4, the bottom 46 is formed by the base layer 61. In the illustrated decorative skin material 40, the wall 48 is formed by the light-shielding layer 52 and the bonding layer 63. In the illustrated decorative skin material 40, the recess 45 is not formed in the design layer 51. In the illustrated recess 45, neither the bottom 46 nor the wall 48 is formed by the design layer 51.
[0059] The components of the decorative skin material 40 will be described below mainly with reference to FIG.
[0060] In the example shown in FIG. 4 , the surface layer 62 forms the first surface 40a of the decorative skin material 40. The surface layer 62 may form the viewer-side surface of the decorative member 20. The surface layer 62 may be transparent. The surface layer 62 may be colored. In one specific example of the illustrated decorative skin material 40, the transparent surface layer 62 allows the design layer 51 to be observed. The surface layer 62 may perform various functions. The surface layer may be a hard coat layer that exhibits scratch resistance. The surface layer may be an anti-fouling layer that exhibits an anti-fouling function. The surface layer may be an anti-glare layer that exhibits an anti-glare function. The surface layer may be an anti-reflection layer that exhibits an anti-reflection function.
[0061] The surface layer 62 may contain a thermoplastic resin. The surface layer 62 may contain a cured product of a curable resin composition. The curable resin composition may contain one or more of an ionizing radiation curable resin and a thermosetting resin. The ionizing radiation curable resin may include an ultraviolet curable resin and an electron beam radiation resin. The thickness of the surface layer 62 is not particularly limited. The thickness of the surface layer 62 (length in the third direction D3 in FIG. 4) may be 1 μm or more, or 5 μm or more. The thickness of the surface layer 62 may be 1000 μm or less, 500 μm or less, 100 μm or less, or 30 μm or less. The surface layer 62 may be omitted from the decorative skin material 40.
[0062] 4, the design layer 51 is located between the surface layer 62 and the base layer 61 in the third direction D3. The design layer 51 is located across the light-transmitting portion 41 and the light-blocking portion 42 of the decorative skin material 40. In other words, the design layer 51 is located facing both the light-transmitting portion 41 and the light-blocking portion 42 of the decorative skin material 40. The design layer 51 forms the design displayed by the decorative skin material 40.
[0063] The design layer 51 is capable of transmitting light emitted from the light source 15. In the example shown in Fig. 4, the design layer 51 can transmit light emitted from the light source 15 in the portion overlapping with the recess 45. As a result, as shown in Fig. 3, the light that has transmitted through the design layer 51 and the surface layer 62 in the portion overlapping with the recess 45 can be displayed as display light.
[0064] The design layer 51 may be visible light transmissive. The visible light transmittance of the design layer 51 may be 10% or more, or 20% or more. The visible light transmittance of the design layer 51 may be 50% or less, or 40% or less.
[0065] The design displayed by the design layer 51 may include one or more of graphics, patterns, designs, colors, pictures, photographs, characters, marks, pictograms, letters, numbers, and other images. The design layer 51 may also display a background. For example, the design layer 51 may display a wood-grain or marble-like image or a geometric pattern as a design that can harmonize with the surrounding environment in which the display system 10 is installed. In the examples shown in FIGS. 2 and 3, the design layer 51 forms a wood-grain image.
[0066] The design layer 51 may include a binder resin portion and a colorant held by the binder resin portion. The binder resin portion may include a thermoplastic resin. The binder resin portion may include a cured product of a curable resin composition. The curable resin composition may include one or more of an ionizing radiation curable resin and a thermosetting resin. The ionizing radiation curable resin may include an ultraviolet curable resin and an electron beam radiation resin. The colorant may be a dye, a pigment, or a combination of a dye and a pigment.
[0067] The design layer 51 may be formed by printing. The design layer 51 may be formed by transfer. The thickness of the design layer 51 may be 1 μm or more and 30 μm or less.
[0068] In the example shown in FIG. 4 , the base layer 61 is located between the design layer 51 and the light-shielding layer 52 in the third direction D3. The base layer 61 is transmissive to light emitted from the light source 15. The base layer 61 may be visible light transmissive. The visible light transmittance of the base layer 61 may be 30% or more, or 40% or more. The base layer 61 may be transparent. The illustrated base layer 61 is in the form of a transparent film. A film may be used as the base layer 61. The base layer 61 may be formed by coating. The base layer 61 may be a coating layer. When the base layer 61 is a coating layer, a film may be used for the surface layer 62. The base layer 61 may support the design layer 51. The base layer 61 may support the light-shielding layer 52. The base layer 61 may support layers other than the base layer 61 of the decorative skin material 40.
[0069] The base layer 61 may contain a resin. The base layer 61 may contain a thermoplastic resin. The base layer 61 may be a film made of a thermoplastic resin. The thermoplastic resin may contain one or more of acrylic, PET (polyethylene terephthalate), polyolefin resin such as polypropylene or polyethylene, polycarbonate, and ABS (acrylonitrile-butadiene-styrene copolymer synthetic resin). The base layer 61 may be colored. The base layer 61 may form the design expressed by the decorative skin material 40.
[0070] The thickness of the base layer 61 may be 1 μm or more, or 5 μm or more. By setting a lower limit for the thickness of the base layer 61, it is possible to prevent the recesses 45 formed by laser etching from the second surface 40b side from penetrating through the design layer 51, as will be described in detail later. The thickness of the base layer 61 may be 500 μm or less, or 300 μm or less. By setting an upper limit for the thickness of the base layer 61, it is possible to improve the molding processability of the decorative skin material 40.
[0071] 4, the light-shielding layer 52 is located between the base layer 61 and the bonding layer 63 in the third direction D3. The light-shielding layer 52 has visible light-shielding properties. Because the light-shielding layer 52 has visible light-shielding properties, light from the light source 15 can be absorbed by the light-shielding layer 52. Therefore, the light from the light source 15 is prevented from entering the portion of the design layer 51 that overlaps with the light-shielding layer 52. That is, in the illustrated example, the light-shielding layer 52 forms the light-shielding portion 42 of the decorative skin material 40.
[0072] The light-shielding layer 52 may include a colorant and a base material that holds the colorant. The colorant may be a pigment such as carbon black or titanium black. The base material may include a thermoplastic resin. The base material may include a cured product of a curable resin composition.
[0073] The light-shielding layer 52 may be formed by printing. The light-shielding layer 52 may be formed by transfer. The thickness of the light-shielding layer 52 may be 1 μm or more, or 3 μm or more. By setting a lower limit for the thickness of the light-shielding layer 52, the light-shielding layer 52 can ensure sufficient visible light blocking properties. The thickness of the light-shielding layer 52 may be 100 μm or less, or 20 μm or less.
[0074] In the example shown in FIG. 4 , the bonding layer 63 constitutes the second surface 40b of the decorative skin material 40. The bonding layer 63 may be provided for the purpose of improving adhesion between the decorative skin material 40 and the thermoplastic resin portion 32. The bonding layer 63 may include an adhesive or a pressure-sensitive adhesive. The adhesive contained in the bonding layer 63 may include one or more of an acrylic adhesive, a rubber adhesive, a urethane adhesive, and a silicone adhesive. The pressure-sensitive adhesive contained in the bonding layer 63 may include one or more of an acrylic adhesive, a rubber adhesive, a urethane adhesive, and a silicone adhesive.
[0075] To ensure adhesion between the decorative skin material 40 and the thermoplastic resin portion 32, the thickness of the adhesive layer 63 may be 1 μm or more, or 3 μm or more. The thickness of the joining layer 63 may be 30 μm or less, or 20 μm or less. By setting an upper limit on the thickness of the adhesive layer 63, it is possible to easily remove a portion of the light-shielding layer 52 located closer to the first surface 40a than the adhesive layer 63, thereby forming the recess 45. The joining layer 63 may be omitted from the decorative skin material 40.
[0076] In the example shown in FIG. 4, the thermoplastic resin portion 32 is bonded to the decorative skin material 40. The thermoplastic resin portion 32 is bonded to the second surface 40b of the decorative skin material 40. The thermoplastic resin portion 32 is also filled in the recesses 45 of the decorative skin material 40. The thermoplastic resin portion 32 is located between the decorative skin material 40 and the light source 15 in the third direction D3. The thermoplastic resin portion 32 and the decorative skin material 40 are stacked on top of each other in the third direction D3. As shown in FIG. 4, a gap may be provided between the thermoplastic resin portion 32 and the light source 15.
[0077] 4, the thermoplastic resin portion 32 includes a base portion 32a and a protruding portion 32b that protrudes from the base portion 32a toward the decorative skin material 40. The thermoplastic resin portion 32 is bonded to the bonding layer 63 at the base portion 32a. The thermoplastic resin portion 32 is bonded to the design layer 51, the base layer 61, and the light-shielding layer 52 at the protruding portion 32b. The thermoplastic resin portion 32 is located within the recess 45 of the decorative skin material 40 at the protruding portion 32b.
[0078] In the illustrated example, the thermoplastic resin portion 32 is transparent. Light emitted from the light source 15 can pass through the thermoplastic resin portion 32. The thermoplastic resin portion 32 may be colored. The thermoplastic resin portion 32 may form a design displayed by the decorative member 20.
[0079] The thermoplastic resin portion 32 may be produced by welding an injected resin 33 to the decorative skin material 40. The thermoplastic resin portion 32 may be formed by injecting the injected resin 33 into a cavity 130 formed in an injection molding device 90, as will be described in detail later.
[0080] The thickness of the thermoplastic resin portion 32 is not particularly limited. From the viewpoint of stably maintaining the shape of the decorative member 20, the thickness of the thermoplastic resin portion 32 (the length in the third direction D3 in FIG. 4) may be 0.5 mm or more, or may be 1 mm or more. From the viewpoint of imparting high visible light transmittance to the thermoplastic resin portion 32, the thickness of the thermoplastic resin portion 32 may be 10 mm or less, or may be 5 mm or less. The thickness of the thermoplastic resin portion 32 may be greater than the thickness of the decorative skin material 40.
[0081] An example of a manufacturing method for the decorative member 20 shown in Fig. 4 will be described. To manufacture the illustrated decorative member 20, first, a decorative sheet 35 is manufactured. The manufactured decorative sheet 35 is then subjected to molding and laser etching to manufacture a decorative skin material 40. The manufactured decorative skin material 40 is then bonded to a thermoplastic resin part 32 to manufacture the decorative member 20. The manufacturing method for the illustrated decorative member 20 will be described in detail below.
[0082] First, the fabrication of the decorative skin material 40 will be described. As described below, in fabricating the decorative skin material 40, a decorative sheet 35 is first fabricated. The decorative sheet 35 is a sheet-like member having a first surface 35a and a second surface 35b opposite the first surface 35a. The first surface 35a of the decorative sheet 35 constitutes the first surface 40a of the decorative skin material 40. The second surface 35b of the decorative sheet 35 constitutes the second surface 40b of the decorative skin material 40. Next, the decorative sheet 35 is laser etched from the second surface 35b side to fabricate the decorative skin material 40 including the recesses 45. In the present disclosure, a decorative sheet 35 in which the formation of the recesses 45 has been completed is referred to as a decorative skin material 40. In the present disclosure, a decorative sheet 35 in which the formation of the recesses 45 has not been completed is not referred to as a decorative skin material 40. When the decorative skin material 40 includes a plurality of recesses 45, the decorative sheet 35 on which all of the recesses 45 are formed is referred to as the decorative skin material 40. The decorative sheet 35 on which only some of the recesses 45 are formed is not referred to as the decorative skin material 40.
[0083] Next, the production of the decorative sheet 35 will be described. First, a sheet for forming the base layer 61 is prepared. The material and thickness of the base layer 61 are as described above. On one side of this base layer 61, the design layer 51 is formed as shown in FIG. 5. The method for forming the design layer 51, and the material and thickness of the design layer 51 are as described above.
[0084] Next, as shown in Fig. 5, a surface layer 62 is formed on the design layer 51. The surface layer 62 may be produced by supplying a resin composition onto the design layer 51, forming a coating film of the resin composition, and drying or curing the coating film. By forming the surface layer 62, the design layer 51 is positioned between the base layer 61 and the surface layer 62, as shown in Fig. 5.
[0085] Next, as shown in Fig. 6, a light-shielding layer 52 is formed on the surface of the base layer 61 opposite to the surface on which the design layer 51 and the surface layer 62 are formed. The method for forming the light-shielding layer 52, and the material and thickness of the light-shielding layer 52 are as described above. By forming the light-shielding layer 52, the base layer 61 is positioned between the design layer 51 and the light-shielding layer 52, as shown in Fig. 6.
[0086] 6, an adhesive layer 63 is formed on the light-shielding layer 52. The adhesive layer 63 may be produced by supplying a resin composition onto the light-shielding layer 52 to form a coating film of the resin composition, and then drying the coating film. The material and thickness of the adhesive layer 63 are as described above.
[0087] In this manner, a decorative sheet 35 is obtained, which includes, from the first surface 35a to the second surface 35b, the design layer 51 and the light-shielding layer 52, in this order. In the example shown in FIG. 6, the decorative sheet 35 includes, from the first surface 35a to the second surface 35b, the surface layer 62, the design layer 51, the base layer 61, the light-shielding layer 52, and the bonding layer 63, in this order. The first surface 35a of the decorative sheet 35 is formed by the surface layer 62. The second surface 35b of the decorative sheet 35 is formed by the bonding layer 63. The manufacturing method of the decorative sheet 35 is not limited to the example described above. For example, the order of manufacturing the surface layer 62, the design layer 51, the light-shielding layer 52, and the bonding layer 63 may be changed.
[0088] Next, as shown in Figs. 7 to 9, the decorative sheet 35 is molded. Molding refers to processing that gives the decorative sheet 35 a desired shape. The molding may be vacuum molding, pressure molding, bending molding, or the like. The molding may be preforming that is performed before injection molding. The decorative sheet 35 is plastically deformed by the molding.
[0089] In the illustrated example, the decorative sheet 35 is vacuum-formed using a vacuum forming device 85. The vacuum forming device 85 includes a heater 86 that heats the decorative sheet 35 and a vacuum forming mold 87 that vacuum-forms the decorative sheet 35. The decorative sheet 35 is not limited to the examples shown in Figs. 7 to 9, and may be plastically deformed by various forming methods such as pressure forming and bending forming.
[0090] In the vacuum forming of the decorative sheet 35 shown in Figs. 7 to 9, first, the decorative sheet 35 is heated by a heater 86 of a vacuum forming device 85, as shown in Fig. 7. Heating the decorative sheet 35 softens the decorative sheet 35. When the decorative sheet 35 is heated, a vacuum forming mold 87 may be placed near the decorative sheet 35. In the example shown, the decorative sheet 35 is located between the heater 86 and the vacuum forming mold 87 in the third direction D33.
[0091] Next, as shown in FIG. 8, the decorative sheet 35 is sucked. The decorative sheet 35 is vacuum-sucked through tiny holes (not shown) provided in the vacuum forming mold 87. As a result, the decorative sheet 35 is adsorbed to the vacuum forming mold 87. As a result, the decorative sheet 35 is molded into a shape that matches the shape of the vacuum forming mold 87. The decorative sheet 35 comes to have a shape that follows the shape of the vacuum forming mold 87. In the example shown, the decorative sheet 35 has curved portions at both ends in the first direction D1.
[0092] Next, the temperature of the decorative sheet 35 is lowered in the state shown in Fig. 8. The decorative sheet 35 solidifies in the shape after molding.
[0093] 9, the decorative sheet 35 is removed from the vacuum forming mold 87. In the illustrated example, the decorative sheet 35 is separated from the vacuum forming mold 87 in the third direction D3.
[0094] 10, unnecessary portions are trimmed from the decorative sheet 35 removed from the vacuum forming mold 87. In the illustrated example, trimming the unnecessary portions results in a decorative sheet 35 having a curved shape at both ends in the first direction D1.
[0095] In this manner, the decorative sheet 35 is formed. Next, as shown in FIG. 11 , a portion of the light-shielding layer 52 is removed from the second surface 35b of the decorative sheet 35. By removing the portion of the light-shielding layer 52, a decorative skin material 40 including a recess 45 is produced. The removed portion of the light-shielding layer 52 is located at a predetermined position on the decorative sheet 35 that has been shaped by molding. In the example shown in FIG. 11 , the portion of the light-shielding layer 52 is removed by laser etching using a laser irradiation device 80. Note that the method for removing the portion of the light-shielding layer 52 is not limited to laser etching. For example, the portion of the light-shielding layer 52 may be removed by scribing the decorative sheet 35 from the second surface 35b.
[0096] 11, a laser beam emitted from a laser irradiation device 80 is irradiated onto the decorative sheet 35 from the second surface 35b side of the decorative sheet 35. The laser beam enters the decorative sheet 35 from the second surface 35b side. A portion of the bonding layer 63 and a portion of the light-shielding layer 52 are removed by the laser beam that has entered the decorative sheet 35 from the second surface 35b side.
[0097] The laser irradiation device 80 can remove a member located at the focal position of the laser light. The focal position of the laser light can be controlled by a control device (not shown) electrically connected to the laser irradiation device 80. In the example shown in Fig. 11, the control device can control the focal position of the laser light according to the distance from the laser irradiation device 80 to the bonding layer 63 and the light-shielding layer 52 so as to remove a part of the bonding layer 63 and a part of the light-shielding layer 52.
[0098] 11, by removing a portion of the bonding layer 63 and a portion of the light-shielding layer 52, an opening is provided on the second surface 35b of the decorative sheet 35. After laser etching, the decorative sheet 35 includes the design layer 51 in a portion that overlaps in the third direction D3 with the portion from which the light-shielding layer 52 has been removed. By irradiating the decorative sheet 35 with a laser from the second surface 35b side, it is possible to prevent the laser light from being irradiated onto the design layer 51. This makes it possible to prevent the design layer 51 from being unintentionally removed.
[0099] The laser light used for laser etching is not particularly limited. Laser light emitted from various types of laser light sources can be used. The wavelength of the laser light used for laser etching is also not particularly limited. The laser light may have a wavelength in the visible light range or in the infrared range. As the laser light, laser light having a high absorption rate in the light-shielding layer 52 may be used. The absorption rate of the laser light in the light-shielding layer 52 may be 5% or more, or may be 10% or more. There is no particular upper limit for the absorption rate of the laser light in the light-shielding layer 52. The absorption rate of the laser light in the light-shielding layer 52 may be 100% or less, or may be 95% or less. As the laser light, laser light having a low absorption rate in the base layer 61 may be used.
[0100] In this manner, the decorative skin material 40 is produced, which includes the recesses 45. The produced decorative skin material 40 includes the recesses 45 that open to the second surface 40b.
[0101] Unlike the illustrated example, the manufacturing method of the decorative skin material 40 does not have to include the above-described step of molding the decorative sheet 35. The decorative skin material 40 may also be produced by removing a portion of the light-shielding layer 52 from the second surface 35b of the decorative sheet 35 that has not been molded.
[0102] Next, the decorative member 20 is produced using the produced decorative skin material 40. First, as shown in FIG. 12, an injection molding apparatus 90 is prepared. The injection molding apparatus 90 includes a molding die 100. In the example shown in FIG. 12, the molding die 100 includes a first molding die 110 and a second molding die 120. In the illustrated example, the first molding die 110 and the second molding die 120 face each other in the third direction D3.
[0103] As shown in Figures 12 and 15, the molding die 100 can be in an open state in which the first molding die 110 and the second molding die 120 are separated from each other. As shown in Figures 13 and 14, the molding die 100 can be in a closed state in which the first molding die 110 and the second molding die 120 are in contact with each other. The first molding die 110 and the second molding die 120 are capable of moving relatively from the open state toward each other to the closed state. The first molding die 110 and the second molding die 120 are capable of moving relatively from the closed state to the open state away from each other.
[0104] As shown in Figure 14, when molding die 100 is in a closed state, a cavity 130 is formed between first molding die 110 and second molding die 120. Molding die 100 has a gate 140 that leads to cavity 130. In the example shown, gate 140 is provided in second molding die 120. Gate 140 is connected to a supply device for injection resin 33 (not shown). Injection resin 33 is supplied to cavity 130 through gate 140.
[0105] 12, the decorative skin material 40 is transferred into the molding die 100. The decorative skin material 40 transferred into the molding die 100 is placed in the cavity 130 within the molding die 100. In the example shown, the decorative skin material 40 is held in the first molding die 110 with the first surface 40a in contact with the first molding die 110. With the decorative skin material 40 held in the first molding die 110, the second surface 40b faces the second molding die 120.
[0106] Next, as shown in Fig. 13, the molding die 100 is closed. With the molding die 100 in the closed state, a cavity 130 is formed between the first molding die 110 and the second molding die 120. The decorative skin material 40 is housed in the cavity 130. With the decorative skin material 40 held in the molding die 100, the second surface 40b faces the cavity 130.
[0107] 14, molten injection resin 33 is injected into cavity 130 through gate 140. The injected resin 33 is cooled in cavity 130 and solidifies by welding to decorative skin material 40. The solidified injected resin 33 forms thermoplastic resin portion 32 bonded to decorative skin material 40.
[0108] Next, as shown in FIG. 15, the molding die 100 is opened. In the molding die 100 in the open state, the first molding die 110 and the second molding die 120 are separated from each other. The decorative member 20, which includes the decorative skin material 40 and the thermoplastic resin portion 32 bonded to the decorative skin material 40, is removed from the cavity 130. In this manner, the decorative member 20, which includes the decorative skin material 40 and the thermoplastic resin portion 32, is obtained. Furthermore, by overlaying the light source 15 on the decorative member 20, the display system 10 shown in FIGS. 1 to 4 is obtained. At this time, the thermoplastic resin portion 32 is located between the light source 15 and the decorative skin material 40.
[0109] In conventional manufacturing methods for decorative members, a decorative skin material with a transmissive portion formed therein is subjected to molding. With this manufacturing method, the position and shape of the transmissive portion can change significantly due to deformation of the decorative skin material during molding. However, it is difficult to determine the position and shape of the transmissive portion before molding, taking into account the positional shift and shape change of the transmissive portion that occurs during molding. Therefore, it has been difficult to provide a transmissive portion with a desired shape at a desired position in conventional decorative skin materials and decorative members. As a result, conventional decorative skin materials and conventional decorative members sometimes fail to display a desired pattern using light transmitted through the transmissive portion.
[0110] The manufacturing method for the decorative member 20 according to this embodiment includes the steps of: molding a decorative sheet 35 including a light-shielding layer 52; fabricating a decorative skin material 40 including recesses 45 from the decorative sheet 35 by removing a portion of the light-shielding layer 52 from the decorative sheet 35; and forming a thermoplastic resin portion 32 bonded to the decorative skin material 40. According to this manufacturing method, the recesses 45 that form the transmissive portions 41 of the decorative skin material 40 are formed after molding the decorative sheet 35. This prevents the transmissive portions 41 from shifting in position or deforming in shape due to molding the decorative sheet 35. Furthermore, because the shape is imparted to the decorative sheet 35 by molding, the processing positions of the recesses 45 can be easily and accurately positioned relative to the decorative sheet 35. Therefore, the decorative member 20 manufactured by this method can display a desired pattern using light that passes through the transmissive portions.
[0111] The operation of the illustrated display system 10 will now be described.
[0112] When the light source 15 is turned off, the decorative member 20 covering the light source 15 can be observed, as shown in FIG. 2 . The decorative member 20 displays the design of the decorative skin material 40. The design of the decorative skin material 40 is formed by a design layer 51. The design layer 51 is located across the transmissive portion 41 and the light-shielding portion 42 of the decorative skin material 40. This allows the decorative skin material 40 to display the design formed on the design layer 51 in both the transmissive portion 41 and the light-shielding portion 42. That is, the decorative member 20 can also display the design in the transmissive portion 21 that overlaps the light source 15. Furthermore, the design layer 51, which covers both the transmissive portion 41 and the light-shielding portion 42, effectively conceals the light source 15 that overlaps the transmissive portion 21 of the decorative member 20.
[0113] When the light source 15 is turned on, light is emitted from the light source 15 toward the decorative member 20. Light incident on the decorative member 20 travels through the thermoplastic resin portion 32 toward the decorative skin material 40. Light traveling toward the decorative skin material 40 enters the transmissive portion 41 or the light-shielding portion 42. Light incident on the light-shielding portion 42 passes through the bonding layer 63 and is absorbed by the light-shielding layer 52. Light incident on the transmissive portion 41 passes through the thermoplastic resin portion 32 located in the recess 45 and reaches the base layer 61. Light reaching the base layer 61 passes through the base layer 61, the design layer 51, and the surface layer 62 and is emitted from the display surface 11 formed by the first surface 40a of the decorative skin material 40. In this way, light incident on the decorative member 20 is emitted from the transmissive portion 21 formed by the transmissive portion 41 of the decorative skin material 40. Therefore, when the light source 15 is turned on, a pattern of the transmissive portions 21 is displayed, as shown in Figure 3. In the illustrated example, a cross, a triangle, and a square are displayed.
[0114] The conventional decorative skin material disclosed in JP2017-65168A includes a decorative portion including a design layer and a non-decorative portion not including a design layer. In the conventional decorative skin material, the decorative portion displays a design. The non-decorative portion can transmit light from a light source disposed behind the decorative skin material. The design layer is removed from the non-decorative portion. The design layer is provided only in the decorative portion. When observing the conventional decorative skin material, even when the light source is turned off, the non-decorative portion can be observed from the outside as a portion where the design layer is discontinued. The external observation of the non-decorative portion can degrade the design of the decorative skin material. Furthermore, the conventional decorative skin material does not sufficiently ensure harmony and uniformity with the surrounding environment when the decorative skin material is used.
[0115] The decorative skin material 40 according to this embodiment includes, in this order from the first surface 40a to the second surface 40b, a design layer 51 and a light-shielding layer 52. The decorative skin material 40 includes a recess 45 that opens to the second surface 40b. The recess 45 penetrates the light-shielding layer 52 but not the design layer 51. When a light source 15 is disposed on the second surface 40b of the decorative skin material 40, the light from the light source 15 can be transmitted through the transparent portion 41 formed by the recess 45. The design layer 51 is formed so as to cover the transparent portion 41 without being interrupted by the transparent portion 41 formed by the recess 45. This makes the presence of the transparent portion 41 difficult to perceive when the light source is turned off. Furthermore, the design of the design layer 51 can be displayed in the portion above the transparent portion 41, just like in the other portions. This improves the design of the decorative skin material 40. As a result, the decorative member 20 including this decorative skin material 40 can ensure harmony and uniformity with the surrounding environment due to the improved design expression of the decorative skin material 40.
[0116] In the example shown in FIGS. 1 to 4 , the decorative skin material 40 includes a base layer 61 between the design layer 51 and the light-shielding layer 52. The bottom 46 of the recess 45 is formed by the base layer 61. According to this specific example, the base layer 61 separates the design layer 51 and the light-shielding layer 52 from each other in the stacking direction (the third direction D3 in FIG. 4 ). This prevents the design layer 51 from being unintentionally removed when the light-shielding layer 52 is removed by laser etching, scribing, or the like. For example, consider a case in which laser light is focused on the light-shielding layer 52 to remove it. In this case, the design layer 51 is spaced apart from the focus of the laser light, thereby preventing a temperature rise in the design layer 51 due to the laser light. The reduced temperature rise in the design layer 51 prevents the design layer 51 from being removed. Therefore, according to this specific example, the design of the decorative skin material 40 can be consistently improved.
[0117] In the example shown in FIG. 4 , the display system 10 includes a decorative member 20 and a light source 15 facing the decorative member 20. The decorative member 20 includes a decorative skin 40 having a first surface 40a and a second surface 40b, and a thermoplastic resin portion 32 bonded to the second surface 40b of the decorative skin 40. The thermoplastic resin portion 32 is positioned between the decorative skin 40 and the light source 15 in the third direction. The first surface 40a of the decorative skin 40 forms a display surface 11. The decorative skin 40 includes a light-shielding layer 52. The decorative skin 40 includes a recess 45 that opens to the second surface 40b and penetrates the light-shielding layer 52. In this display system 10, the pattern of the light-transmitting portion 41 can be observed on the display surface 10a by light that reaches the decorative skin 40 and is transmitted through the light-transmitting portion 41. Light emitted from the light source 15 then passes through the thermoplastic resin portion 32 and reaches the decorative skin material 40. That is, light that passes through the transmissive portion 41 to display a display pattern reaches the display surface 10a without passing through the thermoplastic resin portion 32. The thermoplastic resin portion 32 is a relatively thick layer, and light can be diffused as it travels through this thermoplastic resin portion 32. Therefore, the light that forms the display pattern that passes through the transmissive portion 41 can reach the display surface 10 without being significantly diffused. This allows the display system 10 to display a desired display pattern with its outline clearly defined.
[0118] In the embodiment described above, the decorative skin material 40 has a first surface 40a and a second surface 40b opposite the first surface 40a. The decorative skin material 40 includes a design layer 51 and a light-shielding layer 52, in this order, from the first surface 40a to the second surface 40b. The decorative skin material 40 includes a recess 45 that opens to the second surface 40b. The recess 45 penetrates the light-shielding layer 52 but does not penetrate the design layer 51. According to this decorative skin material 40, the design layer 51 is not interrupted by the transmissive portion 41 defined by the recess 45 and is provided to cover the transmissive portion 41 as well. Therefore, when the light source is turned off, the presence of the transmissive portion 41 is difficult to perceive. Furthermore, the design of the design layer 51 can be displayed in the portion above the transmissive portion 41, just like in other portions. This improves the design of the decorative skin material 40 when observed from the first surface 40a side.
[0119] Although one embodiment has been described with reference to specific examples, the above-described specific examples do not limit the present invention. The above-described embodiment can be implemented with various other specific examples, and various omissions, substitutions, changes, additions, etc. can be made without departing from the spirit of the present invention.
[0120] An example of the modification will be described below, mainly with reference to Figs. 16 to 23. Fig. 16 is a cross-sectional view showing a modification of the decorative member 20. Figs. 17 to 23 are diagrams for explaining an example of a method for manufacturing the decorative member 20 shown in Fig. 16. In the following description and the drawings used in the following description, parts that can be configured in the same way as the above-mentioned specific example will be designated by the same reference numerals as those used for the corresponding parts in the above-mentioned specific example, and duplicated description will be omitted.
[0121] In the specific example of the decorative skin material 40 described above, the base layer 61 was located between the design layer 51 and the light-shielding layer 52. However, this is not limiting, and as shown in Fig. 16, the base layer 61 may be located closer to the first surface 40a than the design layer 51. In other words, the design layer 51 may be located between the base layer 61 and the light-shielding layer 52. The decorative skin material 40 may include the base layer 61, the design layer 51, and the light-shielding layer 52, in this order from the first surface 40a to the second surface 40b.
[0122] In the specific example of the decorative skin material 40 described above, the design layer 51 and the light-shielding layer 52 are separated from each other in the stacking direction via the base layer 61. However, this is not limiting, and the design layer 51 and the light-shielding layer 52 may be adjacent to each other in the stacking direction, as shown in FIG.
[0123] In one specific example of the decorative skin material 40 described above, the bottom 46 of the recess 45 was formed by the base layer 61. In the decorative skin material 40 described above, the recess 45 was not formed in the design layer 51. In the recess 45 described above, neither the bottom 46 nor the wall 48 was formed by the design layer 51. Without being limited to the above example, the bottom 46 of the recess 45 may be formed by the design layer 51, as shown in FIG. 16 . In the recess 45 shown in FIG. 16 , the wall 48 is not formed by the design layer 51.
[0124] In the specific example of the decorative skin material 40 described above, the first surface 40a of the decorative skin material 40 was flat. However, this is not limiting, and the decorative skin material 40 may have an uneven shape 47 on the first surface 40a. The uneven shape 47 may form an uneven surface on the first surface 40a, as shown in FIG. 16 . In the illustrated example, the uneven shape 47 is formed on the base layer 61. By having the uneven shape 47 on the decorative skin material 40, the decorative member 20 has an uneven shape 27 on the first surface 20a.
[0125] 16, the concave-convex shape 47 is composed of convex portions 47a and concave portions 47b. The convex portions 47a and the concave portions 47b may be arranged alternately in one direction. In the illustrated example, the convex portions 47a and the concave portions 47b are arranged alternately in the first direction D1.
[0126] In the example shown in FIG. 16, the height difference between the convex portions 47a and the concave portions 47b may be smaller than the average thickness of the base layer 61 on which the uneven shape 47 is formed. The "average thickness of the base layer" is determined using a decorative skin material 40 having a length of 50 μm in a direction (e.g., the first direction D1 in FIG. 16) perpendicular to the stacking direction (the third direction D3 in FIG. 16). The "average thickness of the base layer" is calculated as the average value when the length of the base layer 61 in the stacking direction of the decorative skin material 40 is measured at 20 arbitrary locations on the cross section of the decorative skin material 40. The "height difference between the convex portions and the concave portions" is calculated as the difference between the fifth largest thickness and the fifth smallest thickness among the thicknesses of the base layer 61 measured at the above-mentioned 20 arbitrary locations. The height difference between the convex portions 47a and the concave portions 47b may be 5 μm or more and 30 μm or less.
[0127] The uneven shape 47 may express a pattern on the first surface 40a of the decorative skin material 40. The uneven shape 47 may express a linear pattern such as a hairline pattern or a spin pattern. This specific example makes it possible to change the texture of the decorative skin material 40 observed from the first surface 40a. This improves the design of the decorative skin material 40.
[0128] The decorative skin material 40 shown in FIG. 16 may be produced from a decorative sheet 35 having a first surface 35a with an indentation that will form the indentation 47 of the decorative skin material 40. The decorative sheet 35 may be irradiated with a laser from the second surface 35b, which is opposite the indentation-shaped first surface 35a. Irradiating the laser from the second surface 35b reduces scattering of the laser light on the surface of the decorative sheet 35 compared to irradiating the laser from the first surface 35a. This allows for easy adjustment of the focal position of the laser light irradiated onto the decorative sheet 35, thereby enabling removal of the light-shielding layer 52 at the desired location. Therefore, by producing the decorative skin material 40 in this manner, recesses 45 can be reliably formed in the decorative skin material 40, regardless of the indentation 47 on the first surface 40a.
[0129] The above-described method for manufacturing a decorative member is merely one example. The decorative member may be manufactured by other manufacturing methods. Other examples of manufacturing methods will be described below. In the manufacturing method described below, the decorative member 20 shown in FIG. 16 is manufactured as an example. In this manufacturing method, a decorative sheet 35 is molded using a first molding die 110. A decorative skin material 40 is manufactured by forming recesses 45 in the decorative sheet 35 placed on the first molding die 110. Furthermore, with the decorative skin material 40 placed on the first molding die 110, a second molding die is placed on the first molding die 110. A thermoplastic resin is injected into a cavity 130 formed between the first molding die 110 and the second molding die, thereby forming a thermoplastic resin portion 32 bonded to the decorative skin material 40. This will be described in detail below.
[0130] The decorative sheet 35 is produced. The design layer 51 and the light-shielding layer 52 are overlaid on one surface of the base layer 61. The decorative sheet 35 is produced so that the design layer 51 is positioned between the light-shielding layer 52 and the base layer 61. The produced decorative sheet 35 includes, in this order from the first surface 35a to the second surface 35b, the base layer 61, the design layer 51, and the light-shielding layer 52. The first surface 35a of the decorative sheet 35 is formed by the base layer 61. The second surface 35b of the decorative sheet 35 is formed by the light-shielding layer 52.
[0131] Next, the decorative sheet 35 is molded. An injection molding device 90 is used to mold the decorative sheet 35. In the example shown in FIGS. 17 and 18, the decorative sheet 35 is molded using a first molding die 110 of a molding die 100 in an open state. The first molding die 110 has a contact surface 110a that faces the decorative sheet 35. The decorative sheet 35 may be molded by vacuum forming, as will be described below with reference to FIGS. 17 and 18.
[0132] In the example shown in FIGS. 17 and 18, a first molding die 110 has a molding recess 111 in the center in the first direction D1.
[0133] 17 and 18, a plurality of first suction holes 112 are provided in the molding recess 111. The plurality of first suction holes 112 open to the contact surface 110a of the first molding die 110. The first suction holes 112 are connected to a suction pump (not shown). The suction pump sucks air out of the first suction holes 112.
[0134] 17 and 18, the first molding die 110 has a groove 113 located outward from the molding recess 111. In other words, the groove 113 is located at a position farther away from the center of gravity of the first molding die 110 than the molding recess 111.
[0135] 17 and 18, groove 113 is provided with a plurality of second suction holes 114. The plurality of second suction holes 114 are connected to a suction pump (not shown). The suction pump sucks air from inside second suction holes 114. Note that a pump that sucks air from inside second suction holes 114 may be different from the pump that sucks air from inside first suction holes 112.
[0136] 19, the contact surface 110a is formed with an uneven shape 110s corresponding to the uneven shape 47 of the decorative skin material 40. The uneven shape 110s may be formed by various methods such as sandblasting.
[0137] 17, a decorative sheet 35 is supplied to the first molding die 110 having the above configuration. In the example shown, the decorative sheet 35 is in contact with the first molding die 110 in areas other than the molding recesses 111. The first surface 35a of the decorative sheet 35 is in contact with the contact surface 110a of the first molding die 110. The opening of the groove 113 is closed by the decorative sheet 35.
[0138] Next, the air in the second suction holes 114 is sucked by a suction pump (not shown). The second suction holes 114 communicate with the grooves 113. The openings of the grooves 113 are closed by the decorative sheet 35. This causes the decorative sheet 35 to be sucked into the grooves 113. As a result, in the state shown in FIG. 17 , the decorative sheet 35 is held on the contact surface 110a of the first molding die 110. In this state, the space between the decorative sheet 35 and the first molding die 110 is sealed. In this state, the decorative sheet 35 may be recessed toward the grooves 113.
[0139] Thereafter, the decorative sheet 35 that has been sucked by the second suction holes 114 is further sucked by the first suction holes 112. A suction pump connected to the first suction holes 112 sucks the air inside the first suction holes 112 and the air between the molding recess 111 and the decorative sheet 35. As a result, the portion of the decorative sheet 35 that faces the molding recess 111 is sucked toward the contact surface 110a that forms the molding recess 111, as shown in Fig. 18. The first surface 35a of the decorative sheet 35 can come into contact with the contact surface 110a that forms the molding recess 111.
[0140] In this manner, the decorative sheet 35 is molded using the first molding die 110. In the state shown in Fig. 18, the uneven shape 110s formed on the contact surface 110a may be transferred to the first surface 35a of the decorative sheet 35. Alternatively, as shown in Fig. 19, the uneven shape 110s formed on the contact surface 110a may not be transferred to the first surface 35a of the decorative sheet 35.
[0141] Next, the decorative skin material 40 is produced from the decorative sheet 35 placed in the first molding die 110. Specifically, as shown in Fig. 19, a portion of the light-shielding layer 52 is removed from the second surface 35b side of the decorative sheet 35 held in the first molding die 110. As shown in Fig. 19, the light-shielding layer 52 may be removed by laser etching.
[0142] In the example shown in FIG. 19, laser light emitted from a laser irradiation device 80 is irradiated onto the decorative sheet 35. The laser light is incident on the decorative sheet 35 from the second surface 35b side. A portion of the light-shielding layer 52 is removed by the laser light that has entered the decorative sheet 35 from the second surface 35b side. The design layer 51 is exposed from the portion where the light-shielding layer 52 has been removed. The focusing position of the laser light may be adjusted depending on the distance from the laser irradiation device 80 to the light-shielding layer 52 so as to remove a portion of the light-shielding layer 52. By removing the portion of the light-shielding layer 52, an opening is formed on the second surface 35b of the decorative sheet 35, as shown in FIG. 19.
[0143] During processing to form the recesses 45, the decorative sheet 35 is held by the first molding die 110. Therefore, the processing machine that forms the recesses 45, in the illustrated example, the laser irradiation device 80, operates using the first molding die 110 as a reference, and can be positioned with high precision relative to the decorative sheet 35. Therefore, recesses 45 having a desired shape can be formed with high precision at desired positions in the decorative sheet 35 that has been given a shape by molding processing.
[0144] In this manner, the decorative skin material 40 including the recesses 45 is produced from the decorative sheet 35 placed in the first molding die 110. The produced decorative skin material 40 includes the recesses 45 that open to the second surface 40b.
[0145] Next, the thermoplastic resin portion 32 bonded to the decorative skin material 40 is formed. First, from the state shown in FIG. 20 , the second molding die 120 is placed on the first molding die 110. By bringing the second molding die 120 closer to the first molding die 110 from the state shown in FIG. 20 , the second molding die 120 and the first molding die 110 overlap, as shown in FIG. 21 . That is, the molding die 100 is in a closed state. In the closed state, a cavity 130 is formed between the first molding die 110 and the second molding die 120. In the closed state, the decorative skin material 40 is accommodated in the cavity 130. In the state shown in FIG. 21 , the first surface 40 a of the decorative skin material 40 faces the first molding die 110. The second surface 40 b of the decorative skin material 40 faces the second molding die 120.
[0146] 21, the injection resin 33 is injected into the cavity 130 through the gate 140. The injection resin 33 is then cooled in the cavity 130 and solidifies by welding to the decorative skin material 40. The solidified injection resin 33 forms the thermoplastic resin portion 32 bonded to the decorative skin material 40.
[0147] In the illustrated example, the decorative skin material 40 is pressed toward the first molding die 110 by the injection resin 33 injected into the cavity 130. The first surface 40a formed by the base layer 61 of the decorative skin material 40 pressed toward the first molding die 110 is pressed firmly against the contact surface 110a of the first molding die 110. As a result, the uneven shape 110s formed on the contact surface 110a is transferred to the first surface 40a of the decorative skin material 40. According to this specific example, a decorative skin material 40 having an uneven shape 47 on the first surface 40a can be efficiently produced.
[0148] After the decorative sheet thermoplastic resin portion 32 is formed, the first molding die 110 stops suctioning the decorative skin material 40 through the first suction holes 112 and the second suction holes 114. As a result, the restriction on the movement of the decorative skin material 40 relative to the first molding die 110 is released.
[0149] 23, the first molding die 110 and the second molding die 120 are separated from each other. That is, the molding die 100 is in an open state. The decorative member 20 is separated from the second molding die 120 while being held by the second molding die 120.
[0150] In this manner, the decorative member 20 is produced, which includes the decorative skin material 40 and the thermoplastic resin portion 32 bonded to the decorative skin material 40. Unnecessary portions of the produced decorative member 20 may be trimmed, as described above with reference to FIG.
[0151] In the manufacturing method of the decorative member described above with reference to FIGS. 17 to 21 , the decorative sheet 35 is molded using a first molding die 110. The decorative skin material 40 is made from the decorative sheet 35 placed in the first molding die 110. With the decorative skin material 40 placed in the first molding die 110, a second molding die 120 is placed on the first molding die 110. A thermoplastic resin is injected into a cavity 130 located between the first molding die 110 and the second molding die 120, thereby forming a thermoplastic resin portion 32 bonded to the decorative skin material 40. According to this specific example, the decorative sheet 35 or the decorative skin material 40 molded using the first molding die 110 undergoes the formation of recesses 45 and injection molding while remaining placed on the first molding die 110. Therefore, the formation of the recesses 45 and the injection molding can be performed with high precision while greatly simplifying the positioning of the processing position for the shaped decorative sheet 35 or decorative skin material 40. Therefore, according to this example, the decorative member 20 can be produced stably with high precision.
[0152] In the specific example of the decorative skin material 40 described above, the base layer 61 is a single layer. However, the present invention is not limited to this. As shown in Fig. 24, the base layer 61 may include a first base layer 611 and a second base layer 612. In the illustrated example, the first base layer 611 is bonded to the second base layer 612 on a surface opposite to the surface supporting the surface layer 62 and the design layer 51. The second base layer 612 is bonded to the first base layer 611 on a surface opposite to the surface supporting the light-blocking layer 52.
[0153] The first base layer 611 and the second base layer 612 may be bonded to each other by thermal lamination, as described below with reference to FIG. 25 . In the illustrated example, the first decorative sheet 351 and the second decorative sheet 352 are transported between the first roll 201 and the second roll 202. The first decorative sheet 351 includes, from the first surface 351a to the second surface 351b, a surface layer 62, a design layer 51, and a first base layer 611, in this order. The second decorative sheet 352 includes, from the first surface 352a to the second surface 352b, a second base layer 612, a light-shielding layer 52, and a bonding layer 63, in this order. Either one of the first roll 201 or the second roll 202 is heated, for example, by a built-in heating device (not shown). Both the first roll 201 and the second roll 202 may be heated by a heating device (not shown).
[0154] 25, the first decorative sheet 351 and the second decorative sheet 352 are pressed toward each other by the first roll 201 and the second roll 202. The second surface 351b of the first decorative sheet 351 is welded to the first surface 352b of the second decorative sheet 352. The first surface 352a of the second decorative sheet 352 is welded to the second surface 351b of the first decorative sheet 351. In this manner, the decorative sheet 35 including the first base layer 611 and the second base layer 612 is produced. Note that the first base layer 611 and the second base layer 612 may be joined to each other by other means than the thermal lamination described above, for example, dry lamination.
[0155] The decorative skin material 40 in which the base layer 61 is located closer to the first surface 40a than the design layer 51 is not limited to the example shown in Fig. 16. As shown in Fig. 26, the decorative skin material 40 may include the base layer 61, the design layer 51, the intermediate layer 53, and the light-shielding layer 52, in this order from the first surface 40a to the second surface 40b. The decorative skin material 40 may also include the intermediate layer 53 located between the design layer 51 and the light-shielding layer 52. In the illustrated decorative skin material 40, the laser light absorptance of the intermediate layer 53 may be lower than that of the light-shielding layer 52. The laser light absorptance of the intermediate layer 53 may be 3% or less, or 1% or less.
[0156] The decorative skin material 40 shown in FIG. 26 is made from a decorative sheet 35. In the decorative sheet 35, the design layer 51 is located between the base layer 61 and the light-shielding layer 52. In the decorative sheet 35, the intermediate layer 53 is located between the design layer 51 and the light-shielding layer 52. The illustrated recess 45 is formed by removing the light-shielding layer 52. The illustrated recess 45 does not penetrate the intermediate layer 53. The illustrated recess 45 does not penetrate the design layer 51. A portion of the light-shielding layer 52 is removed using a laser irradiated from the second surface 35b side of the decorative sheet 35. Unlike the illustrated decorative skin material 40, the laser may also remove a portion of the intermediate layer 53. The recess 45 may also be formed by removing the light-shielding layer 52 and the intermediate layer 53.
[0157] By positioning the intermediate layer 53 between the design layer 51 and the light-shielding layer 52, the design layer 51 and the light-shielding layer 52 can be separated in the first direction D1. This prevents the design layer 51 from being unintentionally removed by laser light irradiated from the second surface 35b of the decorative sheet 35. Therefore, the decorative skin material 40 including the intermediate layer 53 can stably display the design formed by the design layer 51.
[0158] The intermediate layer 53 may be formed by printing. The thickness of the intermediate layer 53 may be 1 μm or more, or 3 μm or more. The thickness of the intermediate layer 53 may be 30 μm or less, or 20 μm or less.
[0159] The intermediate layer 53 may include a resin. The intermediate layer 53 may include a thermoplastic resin. The thermoplastic resin may include one or more of an acrylic resin, a polyester resin, and a vinyl chloride-vinyl acetate copolymer resin. [Explanation of symbols]
[0160] 10: display system, 15: light source, 20: decorative member, 32: thermoplastic resin portion, 33: injection resin, 35: decorative sheet, 35a: first surface, 35b: second surface, 40: decorative skin material, 40a: first surface, 40b: second surface, 45: recess, 46: bottom, 47: uneven shape, 51: design layer, 52: light-shielding layer, 61: base layer, 100: molding die, 110: first molding die, 110s: uneven shape, 120: second molding die, 130: cavity, 140: gate
Claims
[Claim 1] A decorative skin material having a first surface and a second surface opposite to the first surface, A design layer and a light-shielding layer are provided in this order from the first surface to the second surface, a recessed portion that is open to the second surface; The recessed portion penetrates the light-shielding layer but does not penetrate the design layer.