Display panel and indicator light device
By integrating a light-shielding layer in the cushioning material and a partition wall in the lighting unit, the issue of light leakage between adjacent translucent sections in vehicle interior components is resolved, ensuring effective light isolation and design flexibility.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-07-28
- Publication Date
- 2026-04-08
AI Technical Summary
In vehicle interior components with display functions, light leakage occurs between adjacent translucent sections due to the propagation of light through a translucent cushion layer, making it difficult to narrow the spacing between these sections for design reasons.
A light-shielding layer is incorporated into the cushioning material at a position that separates adjacent light-transmitting sections, and a partition wall is provided in the lighting unit to prevent light leakage between these sections.
The light-shielding layer effectively blocks light propagation between adjacent light-transmitting sections, preventing light leakage and maintaining design flexibility without a foreign body sensation, while the partition wall in the lighting unit further enhances light isolation.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a display panel and a display lamp device.
Background Art
[0002] Conventionally, it has been known to provide a display function to vehicle interior parts. As such vehicle interior parts, for example, Patent Document 1 discloses an input device. This input device receives a pushing operation on the surface of the skin portion from the user. The input device includes a skin portion and a frame portion.
[0003] The skin portion is configured to include a skin, a design sheet, and a cushion layer. The design sheet has a transmissive portion where a design is formed and a partial light-shielding portion where no design is formed, and is sandwiched between the skin and the cushion layer. The skin has translucency so that the design sheet can be visually recognized. The cushion layer has translucency and is thicker than the skin material. The frame portion is disposed on the back side of the skin portion.
[0004] The frame portion is configured to include a frame and a light source. The frame is formed with through holes for transmitting light from the light source. The light source is disposed on the back side of the frame and has a light-emitting element provided at a position corresponding to the through holes. The light emitted by the light-emitting element passes through the through holes and the skin portion, and allows the user to visually recognize a display according to the design formed on the design sheet.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0006] By the way, in vehicle interior components with display functions, there is a demand to narrow the spacing between adjacent translucent parts for design reasons.
[0007] However, in the input device described in Patent Document 1, because the cushion layer is translucent, if the spacing between adjacent translucent sections is narrowed, when one translucent section is lit and the other is turned off, the light emitted from the light-emitting element to the lit translucent section propagates along the cushion layer in the direction of the surface, leaking into the turned-off translucent section and causing it to glow faintly. Patent Document 1 states that a light guide may be provided in the through-hole to guide the light from the light-emitting element, but since the above-mentioned light leakage problem occurs through the cushion layer, it is difficult to completely solve it by providing a light guide in the through-hole.
[0008] The object of the present invention is to suppress light leakage through a cushioning material between adjacent first and second light-transmitting sections. [Means for solving the problem]
[0009] To achieve the above objective, the present invention provides a light-shielding layer at a predetermined position in the cushioning material.
[0010] Specifically, the first invention relates to a display panel. The display panel of the first invention comprises a base material, a cushioning material provided on the front side of the base material, and a surface material covering the front side of the cushioning material. The surface material has a display section in which a first light-transmitting section and a second light-transmitting section are provided adjacent to each other, each transmitting light. The cushioning material is light-transmitting in at least the portion corresponding to the display section. A light-transmitting window is provided in the portion of the base material corresponding to the display section. The display panel can selectively illuminate the first light-transmitting section and the second light-transmitting section by allowing light from a light source located on the back side of the base material to pass through the cushioning material via the window. The cushioning material includes a light-shielding layer that blocks the propagation of light in the direction along the surface material. The light-shielding layer is provided at a position that separates the first light-transmitting section and the second light-transmitting section in a plan view.
[0011] The second invention is a display panel of the first invention, wherein the distance between the first intersection point where the optical axis of light from the light source of the first light-transmitting portion intersects the surface material and the second intersection point where the optical axis of light from the light source of the second light-transmitting portion intersects the surface material is 20 mm or less.
[0012] The third invention is a display panel according to the first or second invention, wherein the light-shielding layer is made of a colored film. The hardness of the colored film is less than or equal to the hardness of the cushioning material.
[0013] The fourth invention is a display panel in which the colored film is attached to the cushioning material using an adhesive.
[0014] The fifth invention relates to an indicator light device. The indicator light device of the first invention comprises a display panel of the first or second invention and a lighting unit disposed on the back side of the display panel. The lighting unit comprises a first light source that emits light to the first light-transmitting portion and a second light source that emits light to the second light-transmitting portion, and a case that houses the first light source and the second light source. The case is provided with a partition wall that separates a first passage through which light from the first light source passes and a second passage through which light from the second light source passes. The partition wall is positioned to overlap with the light-shielding layer in a plan view. [Effects of the Invention]
[0015] According to the first invention, a light-shielding layer is provided in the cushioning material at a position that separates the first light-transmitting portion and the second light-transmitting portion in a plan view. Therefore, when at least one of the first and second light-transmitting portions is lit and the other light-transmitting portion is turned off, even if light emitted from the light source to the lit portion propagates through the inside of the cushioning material in a direction along the surface material towards the unlit portion, it is blocked by the light-shielding layer. This makes it possible to suppress light leakage through the cushioning material between the first and second light-transmitting portions.
[0016] According to the second invention, the distance between the first and second intersections, which are the points where the optical axis of light from the light source intersects with the surface material in the first and second light-transmitting sections, is relatively narrow (20 mm or less). Therefore, if a light-shielding layer is not provided in the cushioning material, light leakage is likely to occur between the first and second light-transmitting sections through the cushioning material. For this reason, the first invention is particularly effective.
[0017] According to the third invention, since the hardness of the colored film forming the light-shielding layer is less than or equal to the hardness of the cushioning material, the presence of the light-shielding layer does not give the user a foreign body sensation when they touch the surface (surface material) of the display panel.
[0018] According to the fourth invention, since an adhesive is used as the means for attaching the colored film to the cushioning material, it is possible to suppress the cushioning material from becoming partially hard around the colored film as compared with the case where an adhesive is used as the means. This is advantageous in that the presence of the light shielding layer does not give a foreign body feeling to the touch when the user touches the surface (skin material) of the display panel.
[0019] According to the fifth invention, since a partition wall is provided in the case of the lighting unit to partition the passage through which the light from the first light source and the second light source passes, it is possible to prevent the light from the first light source from leaking into the second passage and the light from the second light source from leaking into the first passage within the lighting unit. And since the light shielding layer of the cushioning material and the partition wall are in a positional relationship of overlapping in plan view, it is possible to suitably suppress the occurrence of light leakage between the first light transmitting portion and the second light transmitting portion from the light source to the skin material.
Brief Description of the Drawings
[0020] [Figure 1] FIG. 1 is a perspective view illustrating an instrument panel in which a display lamp device is incorporated. [Figure 2] FIG. 2 is a cross-sectional view of the display lamp device taken along line II-II of FIG. 1 and a schematic view showing the state of the display portion of the skin material viewed from the back side together with the light shielding layer of the second cushioning material. [Figure 3] FIG. 3 is an enlarged cross-sectional view showing the portion surrounded by III in FIG. 2. [Figure 4] FIG. 4 is a view showing a preparation step of a light shielding film in the manufacture of a display panel. [Figure 5] FIG. 5 is a view showing a manufacturing step of a cushioning block in the manufacture of a display panel. [Figure 6] FIG. 6 is a view showing a cut line for performing cutting in a cutting step of a cushioning block in the manufacture of a display panel. [Figure 7] FIG. 7 is a view showing a cushioning material separated into individual pieces in a cutting step of a cushioning block in the manufacture of a display panel. [Figure 8]FIG. 8 is a diagram showing a punching line for punching in the finishing step of the cushion block in the manufacture of the display panel (left figure) and a diagram showing the cushion material after punching (right figure). [Figure 9] FIG. 9 is a diagram showing the second lamination step in the manufacture of the display panel. [Figure 10] FIG. 10 is a diagram showing the assembly step in the manufacture of the indicating lamp device. [Figure 11] FIG. 11 is a cross-sectional view corresponding to FIG. 2 showing the indicating lamp device of the first modification.
Embodiments of the Invention
[0021] Hereinafter, embodiments of the present invention will be described based on the drawings.
[0022] 《Embodiment》 In this embodiment, the indicating lamp device 1 having a switch function will be described as an example. As shown in FIG. 1, the indicating lamp device 1 constitutes a cluster switch 7 directly below the air conditioner outlet 5 on the right side of the instrument panel 3 of the vehicle. In FIG. 1, for convenience, the edge of the operation portion 49 of the switch is shown, but actually, the edge of the operation portion 49 of the switch does not appear on the exterior.
[0023] -Configuration of the indicating lamp device- As shown in FIG. 2, the indicating lamp device 1 includes a display panel 10 and a switch lighting unit 50.
[0024] 〈Display panel〉 The display panel 10 is an interior material for displaying indicating lamps. A display portion 34 is provided on the display panel 10. The display panel 10 also serves as the operation portion 49 of the switch. The display panel 10 is a panel with a cushion and has a flexible touch surface at the operation portion 49 of the switch. The display panel 10 includes a base material 12, a cushion material 18, and a skin material 32.
[0025] 〈Base material〉 The base material 12 is a plate-like object that supports the cushioning material 18 and the surface material 32. An opening 14 is provided in the portion of the base material 12 corresponding to the display portion 34. This opening 14 penetrates the base material 12 in the thickness direction and allows light to pass through from the inside. The opening 14 is an example of a window. A recess 16 is formed on the surface side of the base material 12. The recess 16 is widely formed in the area excluding the outer periphery of the base material 12. The opening 14 is provided inside the recess 16.
[0026] The base material 12 is formed by injection molding or the like. The base material 12 is made of a light-shielding synthetic resin. Examples of materials for the base material 12 include polypropylene (PP), polyethylene terephthalate (PET), acrylic resin, polyester resin, polycarbonate (PC), and acrylonitrile butadiene styrene (ABS).
[0027] <Cushioning material> The cushioning material 18 is provided on the front side of the base material 12. The cushioning material 18 is formed in the shape of a plate or sheet. The cushioning material 18 has both flexibility and elasticity. The cushioning material 18 provides cushioning to the display panel 10. The cushioning material 18 is translucent in at least the portion corresponding to the display section 34.
[0028] In this example, the cushioning material 18 is made up of separate components for the part corresponding to the display section 34 and the part corresponding to the part other than the display section 34. Specifically, the display panel 10 in this example includes a first cushioning material 20 and a second cushioning material 24 as the cushioning material 18. Hereinafter, the first cushioning material 20 and the second cushioning material 24 will be collectively referred to as the cushioning material 18.
[0029] The first cushioning material 20 is provided in a part other than the display section 34. The first cushioning material 20 is housed in the recess 16 and fills the recess 16 almost completely without gaps. The first cushioning material 20 is provided with an opening 22. This opening 22 is formed to be the same shape and size as the opening 14 of the base material 12, corresponds to the display section 34, and communicates with the opening 14 of the base material 12.
[0030] The first cushioning material 20 is formed by cutting a block-shaped foam (cushion block). The first cushioning material 20 may also be foam-molded directly onto the surface of the base material 12. The first cushioning material 20 is made of foamed resin. The foamed resin making up the first cushioning material 20 does not need to be particularly light-transmitting. Examples of such foamed resin include foamed polyurethane (PU).
[0031] The second cushioning material 24 is provided in the area corresponding to the display section 34. The second cushioning material 24 is fitted into the opening 22 of the first cushioning material 20, filling the opening 22 almost completely without gaps. The second cushioning material 24 is formed by cutting a block-shaped foam (cushion block). The second cushioning material 24 (first cushion piece 24a and second cushion piece 24b) is made of a light-transmitting foamed resin.
[0032] Examples of materials for the second cushioning material 24 (first cushioning piece 24a and second cushioning piece 24b) include non-yellowing urethane. The second cushioning material 24 may also be composed of a three-dimensional structured mesh, a highly foamed polypropylene sheet, or other cushioning material. Non-yellowing urethane is preferred as a material for the second cushioning material 24 because it is advantageous in terms of processability and cost.
[0033] The thickness of the cushioning material 18 is preferably 2.5 mm or more and 8.0 mm or less, from the viewpoint of cushioning properties and shape stability. If the thickness of the cushioning material 18 is less than 2.5 mm, it is difficult to obtain suitable cushioning properties for use as an interior material. Also, if the thickness of the cushioning material 18 is greater than 8.0 mm, it is difficult to maintain a stable external shape due to the wrapping of the surface material 32. In addition to this, the light transmittance of the second cushioning material 24 decreases.
[0034] <Skin material> The outer covering material 32 covers the front side of the cushioning material 18. The peripheral portion of the outer covering material 32 is wrapped around the outer edge of the base material 12, from the front side of the cushioning material 18 to the back side of the base material 12, and is fixed to the base material 12. The outer covering material 32 sandwiches the first cushioning material 20 between itself and the base material 12. The back surface of the outer covering material 32 is in close contact with the surfaces of the first cushioning material 20 and the second cushioning material 18.
[0035] The surface material 32 has a display section 34. The display section 34 is provided with multiple first light-transmitting sections 36 and multiple second light-transmitting sections 38. The first light-transmitting sections 36 and the second light-transmitting sections 38 are parts that transmit light. The multiple first light-transmitting sections 36 are arranged at intervals from each other in the vehicle width direction. The multiple second light-transmitting sections 38 are also arranged at intervals from each other in the vehicle width direction.
[0036] The first translucent section 36 and the second translucent section 38 correspond to each other one-to-one, forming an indicator light as a set. The first translucent section 36 and the second translucent section 38 are positioned adjacent to each other. The distance between the corresponding first translucent section 36 and the second translucent section 38 is designed to be shorter than the distance between adjacent first translucent sections 36 and between adjacent second translucent sections 38.
[0037] Each first translucent portion 36 constitutes a portion of the surface material 32 that displays an icon 40. The icons 40 displayed by multiple first translucent portions 36 are different shapes and represent different in-vehicle systems. Each second translucent portion 38 constitutes a portion of the surface material 32 that displays a marker 42. The marker 42 represents the operating status (operating / stopped) of the in-vehicle system indicated by the icon 40 of the corresponding first translucent portion 36.
[0038] The surface material 32 comprises a light-transmitting layer 44 and a light-shielding layer 46. The light-shielding layer 46 is provided on the back surface of the light-transmitting layer 44. Both the light-transmitting layer 44 and the light-shielding layer 46 are made of synthetic resin and are elastic. Examples of materials for the light-transmitting layer 44 and the light-shielding layer 46 include polyvinyl chloride (PVC). The light-shielding layer 46 contains a black pigment and has light-shielding properties. The light-transmitting layer 44 contains a pigment, but the pigment content is relatively small and it has light-transmitting properties.
[0039] Each portion of the light-shielding layer 46 that constitutes a first light-transmitting section 36 has a first through-hole 47 that is the same shape as the icon 40. Each first light-transmitting section 36 transmits light L1 through the first through-hole 47. In addition, each portion of the light-shielding layer 46 that constitutes a second light-transmitting section 38 has a second through-hole 48 that is the same shape as the marker 42. Each second light-transmitting section 38 transmits light L2 through the second through-hole 48.
[0040] Thus, the display panel 10 is configured such that light L1 and L2 from the switch lighting unit 50 passes through the opening in the base material 12 and through the cushioning material 18 (more precisely, the second cushioning material 24), thereby selectively illuminating the first light-transmitting section 36 and the second light-transmitting section 38. In addition, each first light-transmitting section 36 in the display panel 10 constitutes an operation section 49 that receives a switch operation (a pressing operation in this example) by the user.
[0041] <Second cushioning material> As shown in Figure 3, the second cushioning material 24 includes a light-shielding layer 26. The light-shielding layer 26 is positioned vertically in the middle of the second cushioning material 24 and blocks the propagation of light L1 and L2 in the direction along the surface material 32. The light-shielding layer 26 is positioned to separate the first light-transmitting portion 36 and the second light-transmitting portion 38 in a plan view (see Figures 1 and 2). The light-shielding layer 26 extends throughout the thickness direction of the second cushioning material 24 and is exposed on both the front and back surfaces of the second cushioning material 24.
[0042] The light-shielding layer 26 is composed of a colored film 28. The colored film 28 is made of a light-shielding synthetic resin. Examples of materials for the colored film 28 include polyethylene terephthalate (PET). The colored film 28 contains a pigment and is colored, for example, black. The thickness of the colored film 28 is, for example, 20 μm or more and 30 μm or less.
[0043] The second cushioning material 24 is constructed by joining a first cushioning piece 24a, a second cushioning piece 24b, and a colored film 28. The first cushioning piece 24a constitutes a portion of the second cushioning material 24 that corresponds to a plurality of first light-transmitting sections 36. The second cushioning piece 24b constitutes a portion of the second cushioning material 24 that corresponds to a plurality of second light-transmitting sections 38.
[0044] The colored film 28 is sandwiched between the first cushion piece 24a and the second cushion piece 24b. The first cushion piece 24a and the second cushion piece 24b are separated by the colored film 28. Adhesive 30 is provided on both sides of the colored film 28. The colored film 28 is adhered to each of the opposing surfaces of the first cushion piece 24a and the second cushion piece 24b by the adhesive 30.
[0045] In this manner, a colored film 28 is attached to the second cushioning material 24 using an adhesive 30. The adhesive 30 maintains a semi-solid state, possessing properties of both liquid and solid, while remaining tacky. Even when the adhesive 30 is impregnated into the adhesive surfaces of the first cushion piece 24a and the second cushion piece 24b, it does not harden the adhesive surfaces, thus having little effect on the flexibility of the second cushioning material 24.
[0046] The hardness of the first cushion piece 24a and the hardness of the second cushion piece 24b are approximately the same, both being between 40N and 60N. The hardness of the colored film 28 is less than or equal to the hardness of the first cushion piece 24a and the hardness of the second cushion piece 24b. The "hardness" referred to here is the 25% hardness in accordance with JIS K 7222 and JIS K 6400, and is measured, for example, by an Asker rubber hardness tester type F (manufactured by ASKER) (the same applies hereinafter).
[0047] <Switch-on lighting unit> The switch illumination unit 50 is a combination unit that illuminates the display section 34 of the display panel 10 from the rear side and also functions as a switch. As shown in Figure 2, the switch illumination unit 50 is positioned on the rear side of the display panel 10. The switch illumination unit 50 comprises a case 52, a cover 62, a plurality of first lenses 76, a plurality of second lenses 84, a switch pressing member 86, and a function module 90.
[0048] The case 52 is the outer casing of the switch lighting unit 50. A bracket 54 is provided on the case 52. Although not shown, the bracket 54 is attached to the base material 12 of the display panel 10 using fasteners such as tapping screws. In this way, the switch lighting unit 50 is assembled to the display panel 10. The case 52 has an internal space 56, a light-transmitting opening 58, and a rear opening 60.
[0049] The internal space 56 of the case 52 houses the functional module 90. The light-transmitting opening 58 faces the display panel 10 and opens the internal space 56 to the outside of the case 52. The rear opening 60 is located on the opposite side of the internal space 56 from the light-transmitting opening 58 and opens the internal space 56 to the outside of the case 52. The cover 62 is fitted into the rear opening 60 and closes the rear opening 60.
[0050] The peripheral portion of the light-transmitting opening 58 in case 52 constitutes a protrusion 64 that projects outward to the front side. The light-transmitting opening 58 of case 52 is provided with a first peripheral wall 66 and a second peripheral wall 68. A first peripheral wall 66 is provided for each first light-transmitting section 36. Each first peripheral wall 66 is formed to surround the corresponding first light-transmitting section 36 in a plan view. A second peripheral wall 68 is provided for each second light-transmitting section 38. Each second peripheral wall 68 is formed to surround the corresponding second light-transmitting section 38 in a plan view.
[0051] The internal space 56 of case 52 is provided with a plurality of first passages 70 and a plurality of second passages 72. The first passages 70 are passages through which the light L1 of the first LED 94, which will be described later, passes. The first passages 70 are individually surrounded and partitioned by the first peripheral wall 66. The second passages 72 are passages through which the light L2 of the second LED 96, which will be described later, passes. The second passages 72 are individually surrounded and partitioned by the second peripheral wall 68.
[0052] The first peripheral wall 66 and the second peripheral wall 68, which correspond to the adjacent first translucent section 36 and second translucent section 38, respectively, share a portion of each other as a partition wall 74. The partition wall 74 separates the first passage 70 and the second passage 72. In a plan view, the partition wall 74 is positioned to overlap with the light-shielding layer 26 of the second cushioning material 24. That is, the light-shielding layer 26 is located on the extension of the partition wall 74.
[0053] The first lens 76 and the second lens 84 are transparent bodies that exhibit the bending effect of light. The first lens 76 is provided for each first light-transmitting section 36. Each first lens 76 has a plate-like portion 78 and a side wall portion 80. The side wall portion 80 extends from the peripheral edge of the plate-like portion 78 to the back side over its entire circumference. A locking hole 82 is formed in the front side portion of the side wall portion 80.
[0054] Each first lens 76 is housed in the first passage 70 so as to be able to move back and forth, and the front opening of the first peripheral wall 66 is closed by the plate-shaped portion 78. Each first lens 76 is prevented from coming out by the peripheral portion of the front opening of the first peripheral wall 66. The surface of the plate-shaped portion 78 of each first lens 76 and the peripheral portion of the front opening of the first peripheral wall 66 in which the first lens 76 is housed are continuous and generally flush. The outer peripheral surface of the side wall portion 80 of each first lens 76 slides against the inner peripheral surface of the first peripheral wall 66.
[0055] A second lens 84 is provided for each second light-transmitting section 38. Each second lens 84 is formed in a plate shape. Each second lens 84 is attached to the front opening of the second peripheral wall 68 and closes the opening. Each second lens 84 is fixed to the case 52. The surface of each second lens 84 and the peripheral edge of the front opening of the second peripheral wall 68 to which the second lens 84 is fixed are continuous and generally flush.
[0056] The switch pressing member 86 is formed in a cylindrical shape. A claw piece 88 is provided on the outer circumferential surface of the front end of the switch pressing member 86. The switch pressing member 86 is fitted inside the side wall portion 80 of the first lens 76 and attached to the first lens 76 by hooking the claw piece 88 into the locking hole 82. The switch pressing member 86 functions as an operating mechanism for the switch in cooperation with the first lens 76. A contact portion 89 is provided on the back end of the switch pressing member 86.
[0057] The switch pressing member 86 is biased toward the front opening of the first peripheral wall 66 by a biasing member (not shown). The biasing member is attached to the back end of the side wall portion 80 of the switch pressing member 86. An example of the biasing member is a compression coil spring. The biasing member may be provided to bias the first lens 76 instead of biasing the switch pressing member.
[0058] The case 52, cover 62, and switch pressing member 86 are all made of a light-shielding synthetic resin such as polypropylene (PP) or acrylonitrile butadiene styrene (ABS). The first lens 76 and the second lens 84 are both made of a light-transmitting synthetic resin such as polycarbonate (PC) or acrylic resin.
[0059] The functional module 90 is housed in the case 52 through a rear opening 60. The functional module 90 consists of a circuit board 92, a plurality of first LEDs (Light Emitting Diodes) 94, a plurality of second LEDs 96, and a plurality of tact switches 98. Each first LED 94, each second LED 96, and each tact switch 98 are mounted on the same side of the circuit board 92.
[0060] Each of the multiple first LEDs 94 is a light source that emits light L1 to the first light-transmitting section 36. The first LED 94 is an example of a first light source. A first LED 94 is provided for each first light-transmitting section 36. The multiple first LEDs 94 are arranged at intervals from each other in the vehicle width direction. Each first LED 94 is located at a position facing the first light-transmitting section 36 via the first passage 70.
[0061] Each of the multiple second LEDs 96 is a light source that emits light L2 to the second light-transmitting section 38. The second LED 96 is an example of a second light source. A second LED 96 is provided for each second light-transmitting section 38. The multiple second LEDs 96 are arranged at intervals from each other in the vehicle width direction. Each second LED 96 is located at a position facing the second light-transmitting section 38 via the second passage 72.
[0062] The tact switch 98 is a push-button type switch for switching a predetermined in-vehicle system on and off. A tact switch 98 is provided for each first light-transmitting section 36. Multiple tact switches 98 are arranged spaced apart from each other in the vehicle width direction. Each tact switch 98 is located opposite the contact portion 89 of the switch pressing member 86, and either contacts the contact portion 89 or faces it with a small gap between them. The switch lighting unit 50 is fixed to the display panel 10 by fitting the protrusion 64 of the case 52 into the opening 14 of the base material 12, and with the surface of the plate-shaped portion 78 of each first lens 76 and the surface of each second lens 84 in contact with the back surface of the second cushioning material 24. The switch lighting unit 50 supports the second cushioning material 24 with the case 52, each first lens 76 and each second lens 84.
[0063] The first intersection P1, where the optical axis A1 of the light L1 from the first LED 94 intersects the surface material 32, is set in the center of the first light-transmitting section 36. The second intersection P2, where the optical axis A2 of the light L2 from the second LED 96 intersects the surface material 32, is set in the center of the second light-transmitting section 38. The distance D between the first intersection P1 and the second intersection P2 is 20 mm or less. If the distance D between the first intersection P1 and the second intersection P2 is 20 mm or less, light leakage is likely to occur between the first light-transmitting section 36 and the second light-transmitting section 38 through the second cushioning material 24 if there is no light-shielding layer 26.
[0064] -Indicator light device operation- In the indicator light device 1, when the power is turned on, all first LEDs 94 light up. The light L1 emitted by each first LED 94 passes through the inside of the switch pressing member 86 in the first passage 70 and passes through the first lens 76 and the second cushioning material 24. The light L1 that has passed through the second cushioning material 24 is partially blocked by the light-shielding layer 46 of the surface material 32. Then, only a portion of the light L1 emitted by each first LED 94 passes through the first through-hole 47 to the outside of the display panel 10. As a result, each first light-transmitting part 36 of the surface material 32 lights up, and the icon 40 is projected by the light L1.
[0065] When the operating part 49 of the switch is pressed by the user, and the surface material 32 and the second cushioning material 24 are pressed in, the first lens 76 and the switch pressing member 86 retract to the back of the first passage 70 against the biasing force of the biasing member, and the contact part 89 presses the tact switch 98. When pressed, the tact switch 98 outputs a detection signal to the control unit (not shown). When the control unit receives the detection signal from the tact switch 98, it activates a predetermined in-vehicle system if it is stopped, and stops it if it is operating.
[0066] When the in-vehicle system, which is currently stopped, is activated by operating a switch, the second LED 96, which emits light L to the corresponding second light-transmitting section 38, is illuminated. The light L2 emitted by the second LED 96 passes through the second passage 72 and through the second lens 84 and the second cushioning material 24. The light L2 that has passed through the second cushioning material 24 is partially blocked by the light-shielding layer 46 of the surface material 32. Then, only a portion of the light L2 emitted by the second LED 96 is transmitted to the outside of the display panel 10 through the second through-hole 48. As a result, the second light-transmitting section 38 of the surface material 32 is illuminated, and the marker 42 is projected by the light L2.
[0067] Furthermore, when the operating in-vehicle system is stopped by the operation of the switch, the second LED 96 that emits light L2 to the corresponding second translucent section 38 turns off. When the second LED 96 is not lit, only the pattern and color applied to the surface of the surface material 32 are visible. In other words, when the second LED 96 is off, the marker 42 of the second translucent section 38 is not displayed.
[0068] Thus, in the indicator light device 1 of this example, each first light-transmitting section 36 is kept lit at all times by the operation of the switch lighting unit 50. On the other hand, each second light-transmitting section 38 is switched between an lit state and an off state according to the operation of the in-vehicle system indicated by the icon 40 of the corresponding first light-transmitting section 36.
[0069] -Manufacturing method for indicator light devices- The manufacturing method for the indicator light device 1 includes a display panel manufacturing process and an assembly process. The display panel manufacturing process is the process of manufacturing the display panel 10. The assembly process is the process of assembling the indicator light device 1 by attaching the switch lighting unit 50 to the display panel 10.
[0070] In the display panel manufacturing process, a second cushioning material 24 is either manufactured or a pre-manufactured second cushioning material 24 is prepared.
[0071] To produce the second cushion material 24, first, a colored film base material 101, a first cushion base material 103, and a second cushion base material 105 are prepared. The colored film base material 101 is a large sheet material from which multiple colored film pieces can be cut. The first cushion base material 103 is a large sheet material from which multiple first cushion pieces 24a can be cut. The second cushion base material 105 is a large sheet material from which multiple second cushion pieces 24b can be cut.
[0072] Next, as shown in Figure 4, adhesive 30 is applied to both sides of the colored film base material 101. Subsequently, as shown in Figure 5, the first cushion base material 103, the colored film base material 101, and the second cushion base material 105 are laminated so that the colored film base material 101 is sandwiched between the first cushion base material 103 and the second cushion base material 105. This forms a cushion block 107 in which the colored film base material 101 is bonded to the first cushion base material 103 and the second cushion base material 105 via adhesive 30.
[0073] Next, the cushion block 107 is cut into multiple pieces of a predetermined thickness along the cutting line CL shown by the dashed line in Figure 6. In this way, multiple second cushion materials 24, as shown in Figure 7, are obtained from one cushion block 107. Then, the second cushion material 24 is punched out into a predetermined shape along the punching line PL shown by the dashed line in the left diagram of Figure 8. As a result, the excess portion of the second cushion material 24 is cut off to finish the shape, as shown in the right diagram of Figure 8. In this way, the second cushion material 24 can be manufactured.
[0074] The display panel manufacturing process includes a first lamination step, a perforation step, and a second lamination step. The base material 12, surface material 32, and first cushion material 20, in addition to the second cushion material 24, are prepared in advance. At this stage, the surface material 32 does not yet have the first perforations 47 and second perforations 48 formed on it.
[0075] First, the first lamination step is performed. In the first lamination step, the first cushioning material 20 is fitted into the recess 16 of the base material 12 and laminated. Next, the surface material 32 is laminated onto the first cushioning material 20 so as to cover the opening 22 of the first cushioning material 20. Then, the peripheral portion of the surface material 32 is wrapped around the back side of the base material 12 so as to enclose the outer circumference of the base material 12 and fixed to the base material 12.
[0076] Next, a perforation forming step is performed. In the perforation forming step, first perforations 47 corresponding to the shape of the icon 40 are formed in the light-shielding layer 46 of each first light-transmitting portion 36 of the surface material 32. Specifically, the light-shielding layer 46 is removed in the shape of the icon 40 by irradiating each first light-transmitting portion 36 of the surface material 32 with laser light from the back side of the base material 12 through the openings 14 and 22 of the base material 12 and the first cushion material 20.
[0077] Furthermore, in the perforation formation step, a second perforation 48 corresponding to the shape of the marker 42 is formed in the light-shielding layer 46 of each second light-transmitting portion 38. Specifically, the light-shielding layer 46 is removed in the shape of the marker 42 by irradiating each second light-transmitting portion 38 of the surface material 32 with laser light from the back side of the base material 12 through the openings 14 and 22 of the base material 12 and the first cushion material 20.
[0078] Next, the second lamination step is performed. As shown in Figure 9, in the second lamination step, the second cushioning material 24 is fitted into the opening 22 of the first cushioning material 20 through the opening 14 from the back side of the base material 12. Then, the first cushioning material 20 is placed against the back side of the display portion 34 on the surface material 32 and laminated with the surface material 32. The second cushioning material 24 is only in close contact with the back side of the surface material 32 and is not bonded using adhesive or the like.
[0079] In this way, the display panel 10 can be manufactured.
[0080] The assembly process is carried out after the display panel manufacturing process. In addition to the display panel 10 manufactured in the display panel manufacturing process, the switch illumination unit 50 is prepared in advance. In the assembly process, as shown in Figure 10, the switch illumination unit 50 is brought close to the display panel 10 from its rear side, and the protrusion 64 of the case 52 is fitted into the opening 14 of the base material 12.
[0081] Then, the surface of the plate-shaped portion 78 of each first lens 76 and the surface of each second lens 84 are placed against the back surface of the second cushioning material 24, so that the case 52, each first lens 76, and each second lens 84 support the second cushioning material 24. In this state, the bracket 54 of the case 52 is fixed to the base material 12 with fasteners.
[0082] When the switch lighting unit 50 is assembled to the display panel 10, each first LED 94 is positioned to face the first light-transmitting section 36 together with the first lens 76, and each second LED 96 is positioned to face the second light-transmitting section 38 together with the second lens 84. The partition wall 74 of the switch lighting unit 50 and the light-shielding layer 26 of the second cushioning material 24 are positioned to overlap in a plan view.
[0083] In this manner, the indicator light device 1 can be manufactured.
[0084] -Features of the Embodiment- In this embodiment of the display panel 10, light L1 and L2 from a switch lighting unit 50 located on the back side of the base material 12 passes through the opening 14 of the base material 12 and through the second cushioning material 24, thereby selectively lighting the first light-transmitting section 36 and the second light-transmitting section 38 provided on the display section 34 of the surface material 32. In this example, when the first light-transmitting section 36 is lit, the second light-transmitting section 38 is turned off. In this display panel 10, a light-shielding layer 26 is provided in the second cushioning material 24 at a position that separates the first light-transmitting section 36 and the second light-transmitting section 38 in a plan view. As a result, when the first light-transmitting section 36 is lit and the second light-transmitting section 38 is turned off, even if the light L1 emitted from the first LED 94 to the first light-transmitting section 36 propagates through the inside of the second cushioning material 24 in a direction along the surface material 32 towards the second light-transmitting section 38, it is blocked by the light-shielding layer 26. This suppresses light leakage between the first light-transmitting section 36 and the second light-transmitting section 38 through the second cushioning material 24.
[0085] In the display panel 10 of this embodiment, the distance D between the first intersection P1 and the second intersection P2 is 20 mm or less. The first intersection P1 is the point where the optical axis A1 of the light L1 from the first LED 94 of the first light-transmitting section 36 intersects with the surface material 32. The second intersection P2 is the point where the optical axis A2 of the light L2 from the second LED 96 of the second light-transmitting section 38 intersects with the surface material 32. When the distance D between the first intersection P1 and the second intersection P2 is relatively narrow, if the second cushioning material 24 is not provided with a light-shielding layer 26, light leakage is likely to occur between the first light-transmitting section 36 and the second light-transmitting section 38 through the second cushioning material 24. Therefore, the present invention is particularly effective.
[0086] In this embodiment of the display panel 10, the hardness of the colored film 28 forming the light-shielding layer 26 is less than or equal to the hardness of the second cushioning material 24. If the hardness of the light-shielding layer 26 is higher than the hardness of the second cushioning material 24, the user will feel a foreign object sensation when touching the surface (surface material 32) of the display panel 10. In contrast, if the hardness of the light-shielding layer 26 is less than or equal to the hardness of the second cushioning material 24, the user will not feel a foreign object sensation when touching the surface (surface material 32) of the display panel 10.
[0087] In this embodiment of the display panel 10, an adhesive 30 is used to attach the colored film 28 to the second cushioning material 24. In addition to the adhesive, a bonding agent can also be used to attach the colored film 28 to the second cushioning material 24. However, if a bonding agent is used, the bonding agent hardens while impregnating the second cushioning material 24 (each bonding surface of the first cushion piece 24a and the second cushion piece 24b), causing the second cushioning material 24 to partially harden around the colored film 28. In contrast, using an adhesive to attach the colored film 28 to the second cushioning material 24 avoids the second cushioning material 24 becoming partially hardened around the colored film 28. This is advantageous in that it does not give the user a foreign body sensation when they touch the surface (surface material 32) of the display panel 10.
[0088] In this embodiment of the display panel 10, a partition wall 74 is provided in the case 52 of the switch lighting unit 50, separating a first passage 70 through which light L1 from the first LED 94 passes and a second passage 72 through which light L2 from the second LED 96 passes. The partition wall 74 blocks the light L1 from the first LED 94 and the light L2 from the second LED 96, respectively. Therefore, it is possible to prevent light L1 from the first LED 94 from leaking into the second passage 72 and light L2 from the second LED 96 from leaking into the first passage 70 within the switch lighting unit 50. Furthermore, the light-shielding layer 26 of the second cushioning material 24 and the partition wall 74 are in an overlapping positional relationship in a plan view. As a result, light leakage between the first light-transmitting section 36 and the second light-transmitting section 38 can be suitably suppressed from the first LED 94 and the second LED 96 to the surface material 32.
[0089] -First variation- As shown in Figure 11, in this first modified indicator light device 1, the switch lighting unit 50 is equipped with a light guide 85 in place of each second lens 84. In this example, the marker 42 in each second light-transmitting section 38 is positioned closer to the corresponding first light-transmitting section 36. A light guide hole 73 is formed in the front portion of the second passage 72 in the case 52. The light guide hole 73 is located at the location corresponding to the marker 42.
[0090] The light guide 85 is a plate-shaped member and has a bent shape that eccentrically shifts the optical axis A2 of the light L2 emitted by the second LED 96. One end of the light guide 85 faces the light emission surface of the second LED 96. The other end of the light guide 85 is inserted into the light guide hole 73 of the case 52 and is in contact with the back surface of the second cushioning material 24. The light L2 emitted by the second LED 96 is guided by the light guide 85 to the location corresponding to the marker 42 of the second light-transmitting section 38.
[0091] In this first modified example of the indicator light device 1, the light L2 of the second LED 96 is guided to the location of the marker 42 in the second light-transmitting section 38 using the light guide 85. This increases the degree of freedom in the formation position of the marker 42 in the second light-transmitting section 38, and allows the distance between the icon 40 of the set constituting the indicator light and the marker 42 in the display section 34 to be reduced.
[0092] -Second variation- In this second modified example of the indicator light device 1, the light-shielding layer 26 included in the second cushioning material 24 of the display panel 10 is made of a colored film 28 having a hardness higher than that of the second cushioning material 24 (first cushioning piece 24a and second cushioning piece 24b). The hardness (25% hardness) of the colored film 28 is, for example, 48N or more and 70N or less.
[0093] In this second modified display panel 10, the hardness of the colored film 28 forming the light-shielding layer 26 of the second cushioning material 24 is higher than the hardness of the second cushioning material 24. This allows the user to feel a foreign object when they touch the surface (surface material 32) of the display panel 10. As a result, even without looking at the display panel 10, the user can recognize the position of the switch operation part 49 by touching the display panel 10 and relying on the foreign object sensation provided by the light-shielding layer 26.
[0094] Other embodiments In the above embodiment, the indicator light device 1 is assumed to have a switch function, but it is not limited to this. The indicator light device 1 may be a device that only provides the display function of the indicator light. In this case, the switch function related to the indicator light may be incorporated into the instrument panel 3 as a separate switch device from the indicator light device 1.
[0095] In the above embodiment, an opening 14 is formed in the base material 12 as a window portion that allows light to pass through, but this is not limited to this. For example, the base material 12 may be provided with a transparent portion as a window portion. This transparent portion may be formed integrally with other parts of the base material 12, or a light-transmitting member separate from the base material 12 may be fitted into the opening 14 of the base material 12. Alternatively, the entire base material 12 may be formed of a light-transmitting synthetic resin, and the portion of the base material 12 corresponding to the display portion 34 may constitute the window portion.
[0096] In the above embodiment, the cushioning material 18 is said to be composed of a first cushioning material 20 that has light-shielding properties and a second cushioning material 24 that has light-transmitting properties, but it is not limited to this. The cushioning material 18 may be a single cushioning material that is light-transmitting throughout. In short, it is sufficient that the cushioning material 18 is light-transmitting in at least the portion corresponding to the display portion 34.
[0097] In the above embodiment, the light-shielding layer 26 contained in the second cushioning material 24 is assumed to be composed of a colored film 28, but it is not limited to this. The colored film 28 is merely one example of a component that constitutes the light-shielding layer 26, and any light-shielding component that blocks the propagation of light in the direction along the surface material 32 inside the second cushioning material 24, such as a colored (for example, black) foam formed in the shape of a small plate, can be used as the light-shielding layer 26.
[0098] In the above embodiment, the second cushioning material 24 may be attached to the back surface of the display portion 34 on the surface material 32 using an adhesive or tack. The switch lighting unit 50 may also include a capacitive switch in addition to or instead of the tact switch 98. The indicator light device 1 may be configured so that the first light-transmitting portion 36 and the second light-transmitting portion 38 are selectively lit by the operation of the switch lighting unit 50.
[0099] In the above embodiment, the case in which the indicator light device 1 is incorporated into the instrument panel 3 was described as an example, but the invention is not limited to this. The indicator panel 10 and the indicator light device 1 equipped therewith according to the present invention can also be incorporated into other vehicle interior parts such as console box lids, door trims, pillar trims, and sun visors. Furthermore, the indicator light device 1 according to the present invention can be widely applied to various products other than vehicle applications, such as home appliances and game consoles.
[0100] As described above, preferred embodiments have been explained as examples of the present invention. However, the present invention is not limited thereto and can be applied to embodiments that are modified, replaced, added, or omitted as appropriate. It will be understood by those skilled in the art that various further modifications are possible to the above embodiments without departing from the spirit of the present invention, and that such modifications also fall within the scope of the present invention. [Industrial applicability]
[0101] As described above, the present invention is useful for display panels and indicator light devices. [Explanation of Symbols]
[0102] D: Distance between the first and second intersections L1: Light from the first LED (light from the first light source) L2: Light from the second LED (light from the second light source) P1 1st intersection P2 2nd intersection 1 Indicator light device 10 Display Panel 12 Base material 14. Opening (window section) 18 Cushioning material 20. First cushioning material 24. Second cushioning material 26 Light blocking layer 28 Colored film 30 Adhesive 32 Skin material 36 1st transparent part 38 2nd transparent part 50 Switch-operated lighting unit (lighting unit) 70 1st aisle 72 2nd aisle 74 Bulkhead 94 1st LED (1st light source, light source) 96 2nd LED (2nd light source, light source)
Claims
1. Base material (12) and A cushioning material (18) provided on the front side of the base material (12), The cushioning material (18) is covered by a surface material (32), The surface material (32) has a display section (34) in which a first light-transmitting section (36) and a second light-transmitting section (38) are provided at adjacent positions to each other, respectively. The cushioning material (18) is translucent in at least the portion corresponding to the display portion (34), A light-transmitting window (14) is provided in the portion of the substrate (12) corresponding to the display portion (34). A display panel in which light from light sources (94, 96) positioned on the back side of the substrate (12) passes through the window portion (14) and the cushioning material (18), thereby selectively illuminating the first light-transmitting portion (36) and the second light-transmitting portion (38), The cushioning material (18) includes a first cushioning piece (24a), a second cushioning piece (24b), and a light-shielding layer (26) sandwiched between the first cushioning piece (24a) and the second cushioning piece (24b) that blocks the propagation of light in the direction along the surface material (32). The light-shielding layer (26) is provided in a position that separates the first light-transmitting portion (36) and the second light-transmitting portion (38) in a plan view, and is attached to the opposing surfaces of the first cushion piece (24a) and the second cushion piece (24b). A display panel in which one end face of the light-shielding layer (26) in the thickness direction of the cushioning material (18) is aligned with the surfaces of the first cushion piece (24a) and the second cushion piece (24b), and the other end face of the light-shielding layer (26) in the thickness direction of the cushioning material (18) is aligned with the back surfaces of the first cushion piece (24a) and the second cushion piece (24b).
2. In the display panel according to claim 1, A display panel in which the distance (D) between the first intersection (P1) where the optical axis (A1) of the light from the light source (94) of the first light-transmitting portion (36) intersects with the surface material (32) and the second intersection (P2) where the optical axis (A2) of the light from the light source (96) of the second light-transmitting portion (38) intersects with the surface material (32) is 20 mm or less.
3. In the display panel according to claim 1 or 2, The light-shielding layer (26) is made of a colored film (28), A display panel in which the hardness of the colored film (28) is less than or equal to the hardness of the first cushion piece (24a) and the second cushion piece (24b).
4. In the display panel according to claim 3, The entire surface of one side of the colored film (28) is attached to the first cushion piece (24a) using an adhesive (30). The entire other side of the colored film (28) is attached to the second cushion piece (24b) using an adhesive (30) to form a display panel.
5. A display panel (10) according to claim 1 or 2, The display panel (10) is equipped with a lighting unit (50) located on the rear side, The lighting unit (50) comprises a first light source (94) that emits light (L1) to the first light-transmitting section (36), and a second light source (96) that emits light (L2) to the second light-transmitting section (38), as the light sources (94, 96), and a case (52) that houses the first light source (94) and the second light source (96). The case (52) is provided with a partition wall (74) that separates a first passage (70) through which light (L1) from the first light source (94) passes and a second passage (72) through which light (L2) from the second light source (96) passes. The partition wall (74) is positioned to overlap with the light-shielding layer (26) in a plan view, and is an indicator light device.
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