WO2024046480A1 - Structure décorative transmettant la lumière - Google Patents

Structure décorative transmettant la lumière Download PDF

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Publication number
WO2024046480A1
WO2024046480A1 PCT/CN2023/116637 CN2023116637W WO2024046480A1 WO 2024046480 A1 WO2024046480 A1 WO 2024046480A1 CN 2023116637 W CN2023116637 W CN 2023116637W WO 2024046480 A1 WO2024046480 A1 WO 2024046480A1
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WO
WIPO (PCT)
Prior art keywords
light
layer
pattern
light guide
decorative
Prior art date
Application number
PCT/CN2023/116637
Other languages
English (en)
Chinese (zh)
Inventor
杨剑桥
杨楚龙
Original Assignee
杨剑桥
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202222349085.7U external-priority patent/CN217951998U/zh
Priority claimed from CN202320883583.1U external-priority patent/CN219634884U/zh
Application filed by 杨剑桥 filed Critical 杨剑桥
Publication of WO2024046480A1 publication Critical patent/WO2024046480A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44FSPECIAL DESIGNS OR PICTURES
    • B44F1/00Designs or pictures characterised by special or unusual light effects
    • B44F1/06Designs or pictures characterised by special or unusual light effects produced by transmitted light, e.g. transparencies, imitations of glass paintings
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings

Definitions

  • the invention belongs to the technical field of decorations, and particularly relates to a light-transmitting decorative structure.
  • LED light sources and light guide plates are used as backlights to illuminate decorative patterns, thereby showing a lighting decorative pattern effect on the surface of the product.
  • the above scheme is not only well applied in advertising and promotion, but also applied to decorations. and decoration fields, such as decorative paintings, background walls and decoration materials.
  • LED light sources and light guide plates are mainly used to directly illuminate the overall pattern, and the effect of dynamically lighting patterns in a single light guide plate cannot be achieved.
  • the main purpose of the present invention is to provide a light-transmitting decorative structure.
  • the light-transmitting decorative structure presents rich decorative aesthetics, improves the viewing quality of pattern content display and consumers' product experience.
  • the present invention provides the following technical solutions:
  • a light-transmitting decorative structure including: a light-emitting unit, a light guide plate and a pattern layer, the light-emitting unit is used to illuminate the light guide plate, the pattern layer is arranged on the light exit surface of the light guide plate; inside the light guide plate A plurality of relatively parallel light guide strips are formed. At least one end of the light guide strips in the length direction faces the light incident surface of the light guide plate.
  • the light-emitting unit includes a plurality of light-emitting monomers.
  • the light-emitting monomers Affixed to the light incident surface of the light guide plate it is used to light up the light guide strips of the light guide plate; when the light-emitting monomer lights up the corresponding light guide strips, the light guide strips illuminate the corresponding light guide strips.
  • the area corresponding to the position of the pattern layer is illuminated, so that the pattern of the illuminated area on the pattern layer is illuminated.
  • the light guide strip is formed in the light guide plate by cutting or integrally molding with a mold, and a gap is formed between two adjacent light guide strips.
  • the light-shielding material is filled in the spacing gap to form the light-shielding layer, or a light-shielding sheet is inserted into the spacing gap to form the light-shielding layer.
  • the light guide plate includes: a light guide area, and an edge area provided on one side or opposite sides of the light guide area, and a plurality of relatively parallel distribution lines are formed in the light guide plate by cutting or integral molding.
  • light guide strips, and one end of each light guide strip is connected to the edge area, or the opposite ends of each light guide strip are respectively connected to two edge areas; the light-emitting monomer is attached to The edge side of the edge area is used to form the light incident surface of the light guide plate.
  • the pattern layer includes: a light-transmitting plate, and a planar or three-dimensional pattern formed on the light-transmitting plate by inkjet printing, hand-painting, transfer printing or engraving, and the back of the light-transmitting plate is attached to the light guide plate.
  • the light-emitting surface of the light guide plate is illuminated by the light-emitting monomer, and the light of the light guide plate can illuminate the pattern.
  • a decorative layer is attached to the light-emitting side of the pattern layer, and the decorative layer is attached to the light-emitting side of the pattern layer and used to block the pattern layer; both the pattern layer and the decorative layer It has light transmittance; when the light-emitting unit emits light, the light guide plate is lit to illuminate the pattern layer, and the pattern of the pattern layer is visible through the decorative layer; when the light-emitting unit does not When emitting light, the decorative layer blocks the pattern layer so that the pattern is invisible.
  • the pattern formed by the pattern layer is a color pattern
  • the decorative layer is formed with a pattern that is the same as the color pattern pattern of the pattern layer and corresponding to the position; when the light-emitting unit emits light, the light guide plate is illuminated. Brightly illuminates the color pattern of the pattern layer, and causes the color of the color pattern to be mapped on the pattern of the decorative layer, so that the pattern presents a color effect; when the light-emitting unit does not emit light, the The decorative layer blocks the pattern layer so that the color pattern is not visible.
  • the light-emitting unit is an LED light source
  • the controller of the light-emitting unit is a single-chip microcomputer or an integrated circuit IC
  • the light-emitting unit is an LED running light strip
  • the LED running light strip is attached to the light guide plate.
  • the edge side is used to form the light incident surface of the light guide plate; when the LED running water lamp strip lights multiple light guide strips of the light guide plate in sequence, the multiple light guide strips form dynamic light and thus dynamically illuminate all the light guide strips.
  • the pattern layer is used to form the light incident surface of the light guide plate; when the LED running water lamp strip lights multiple light guide strips of the light guide plate in sequence, the multiple light guide strips form dynamic light and thus dynamically illuminate all the light guide strips.
  • the light guide plate is a plane or a curved surface.
  • the pattern layer is a decorative plate with a hollow shape
  • the decorative plate is attached to the light exit surface of the light guide layer, and the hollow part of the decorative plate is filled with light-transmitting material; the light-transmitting material
  • a color pattern is formed or a color pattern corresponding to the hollow shape is formed on the light-transmitting material; a decorative layer is formed on the color pattern of the light-transmitting material, and the decorative layer is formed with a color pattern corresponding to the color pattern.
  • the light-transmitting unit including: a pattern layer and a concealing layer arranged in sequence, the pattern layer is formed with a pattern, the concealing layer is used to block the pattern of the pattern layer, the concealing layer
  • the layer is formed with a hollow area, and the hollow area is used to display the pattern of the corresponding area of the pattern layer; when the light-emitting unit does not emit light, the hidden layer blocks the pattern layer so that the pattern in the blocked area is invisible.
  • the pattern of the pattern layer corresponding to the hollow area of the hidden layer is visible; when the light-emitting unit emits light, the light-emitting unit illuminates the pattern layer and makes the overall pattern of the pattern layer pass through the The hidden layer is revealed.
  • the method further includes: a transparent layer arranged outside the hidden layer, and the pattern layer, the hidden layer and the transparent layer are arranged in sequence along the direction of light irradiation.
  • it also includes: a transparent base layer for supporting the pattern layer and the concealment layer, the pattern layer and the concealment layer being sequentially arranged on the light-facing side or the backlight side of the transparent base layer along the light irradiation direction; If the pattern layer and the hidden layer are sequentially arranged on the light-facing side of the transparent base layer along the direction of light irradiation, then the hidden layer is attached to the light-facing side of the transparent base layer, and the pattern layer is attached to The concealment layer; if the pattern layer and the concealment layer are sequentially arranged on the backlight side of the transparent base layer along the direction of light irradiation, then the pattern layer is attached to the backlight side of the transparent base layer, and the concealment layer attached to the pattern layer.
  • the pattern layer is formed by spray-painting, hand-painting or transfer printing;
  • the concealment layer is spray-coated by transparent resin mixed with white color paste, or is chromium-colored or formed by vacuum coating or nano-spraying processing.
  • the silver coating, or the hidden layer is a light-transmitting and opaque sheet.
  • a decorative layer is attached to the light-emitting side of the pattern layer, and the decorative layer is attached to the light-emitting side of the pattern layer and used to block the pattern layer; both the pattern layer and the decorative layer It has light transmittance; when the light-emitting unit emits light, the light guide plate is lit to illuminate the pattern layer, and the pattern of the pattern layer is visible through the decorative layer; when the light-emitting unit does not When emitting light, the decorative layer blocks the pattern layer so that the pattern is invisible.
  • the pattern of the pattern layer is a color pattern; it further includes: a plain color pattern is also provided on the concealment layer, and the plain color pattern is the same as the pattern in the color pattern of the pattern layer and has a corresponding position.
  • the light-transmitting decorative structure may further include a light-guiding fiber disposed between the light-emitting unit and the light-guiding plate, and the light-input end of the light-guiding fiber is docked with the light-emitting monomer of the light-emitting unit.
  • the light exit end of the light guide fiber is connected to the light incident surface of the light guide plate.
  • a light-transmitting decorative structure capable of area lighting including: a light-emitting unit and a light guide layer, the light-emitting unit is used to illuminate the light guide layer; a plurality of light guide units are spliced to form the light guide layer, the The light-emitting unit is provided with a plurality of light-emitting monomers, the light-emitting monomers are used to light the corresponding light guide units, and each of the light guide units can be independently lit by the light-emitting monomers; the light guide units
  • a pattern layer is provided on the light-emitting surface side of the layer. When the light-emitting monomer lights up the corresponding light guide unit, each light guide unit illuminates the area corresponding to the position of the pattern layer, thereby making the pattern The pattern of illuminated areas on the layer is illuminated.
  • each of the light guide units is a strip-shaped light guide plate, and a plurality of the strip-shaped light guide plates are spliced relatively parallel to form the light guide layer, or a plurality of the strip-shaped light guide plates are spliced relatively parallel to form an independent A light guide area, a plurality of the light guide areas are spliced to form the light guide layer, and the arrangement directions of the strip-shaped light guide strips in two adjacent light guide areas intersect; one or more of the light-emitting monomers
  • the light-emitting point corresponds to the light incident surface of one of the strip-shaped light guide plates, thereby lighting up one of the strip-shaped light guide plates.
  • the controller of the light-emitting unit is a single chip microcomputer or an integrated circuit IC, and the LED light source is an LED running light strip.
  • the light guide unit is a light guide plate, and all two adjacent light guide plates are spliced through the splicing surface.
  • the outer edge surfaces of multiple light guide plates cooperate with each other to form the outer surface of the light guide layer.
  • Contour surface, and the LED light source is correspondingly installed on the outer edge surface of the light guide plate, so that the outer edge surface is used as the light incident surface to light up the light guide plate.
  • the controller of the light-emitting unit is a single-chip microcomputer or an integrated circuit.
  • the LED light source is an LED running water light strip.
  • the light guide unit and the adjacent light guide unit are adhered and spliced to form the light guide layer through bonding, buckling or clamping.
  • a light-isolating layer is formed between the splicing surfaces of two adjacent light guide units, and the splicing surfaces are coated with a light-insulating coating to cooperate to form the light-insulating layer, or the two splicing surfaces A light-shielding sheet is sandwiched between them to form the light-shielding layer.
  • a decorative layer is further provided on the outside of the pattern layer, and the decorative layer is attached to the outside of the pattern layer and used to block the pattern layer; both the pattern layer and the decorative layer have transparent Optical properties; when the light-emitting unit emits light, the light guide layer is lit to illuminate the pattern layer, and the pattern of the pattern layer is visible through the decorative layer; when the light-emitting unit does not emit light , the decorative layer blocks the pattern layer so that the pattern is invisible.
  • the pattern layer is a decorative plate with a hollow shape
  • the decorative plate is attached to the light exit surface of the light guide layer, and the hollow part of the decorative plate is filled with light-transmitting material; the light-transmitting material
  • a color pattern is formed or a color pattern corresponding to the hollow shape is formed on the light-transmitting material; a decorative layer is formed on the color pattern of the light-transmitting material, and the decorative layer is formed with a color pattern corresponding to the color pattern.
  • the pattern layer is a decorative plate with a colored pattern on the front, the back of the decorative plate is attached to the light exit surface of the light guide layer, and the back of the decorative plate corresponds to the light emitting surface of each of the light guide units.
  • Each area is formed with a concave area, and the thickness of the concave area is smaller than the thickness of the decorative plate, so that the color pattern corresponding to the concave area can transmit light;
  • a decorative layer is formed on the color pattern of the decorative plate, The decorative layer is formed with a pattern that is the same as the color pattern and has a corresponding position; when the light-emitting unit emits light, the light guide layer is lit to illuminate the pattern layer, and makes the color pattern Colors are mapped on the graphics of the decorative layer so that the graphics present a color effect; when the light-emitting unit does not emit light, the decorative layer blocks the pattern layer so that the color pattern is invisible.
  • the light guide plate is made of acrylic material.
  • the light-transmitting decorative structure adds a light-guiding layer. Since the light-guiding layer is spliced by multiple light-guiding units, the light-transmitting decorative structure can realize regional lighting, thereby achieving the effect of regional lighting, and can also be very effective. It conveniently uses the lighting sequence of the light source to form a dynamic luminous pattern, which has a very broad application prospect and application space; moreover, the large light guide plate is divided into multiple small light guide plates, so that each small light guide plate can be individually Emit light, so that the pattern layer can present various luminous patterns.
  • the light-transmitting decorative structure forms a light guide strip in the light guide plate, and a light-blocking layer is provided between two adjacent light guide strips, so that the light guide effect between the two adjacent light guide strips can be reduced or There will be no mutual interference, so that the light guide area in the light guide plate can guide light more evenly, thereby highlighting the uniform lighting decorative effect of the product, presenting a rich decorative aesthetic, improving the consumer's product experience, and has very broad application prospects and Application space; when there is no light isolation setting, the gap between the light guide strip and the adjacent light guide strip can also play an isolation role, so that the corresponding incident light can only be partially transmitted to the adjacent light guide strip to achieve The effect of area lighting can be achieved within a single light guide plate.
  • the large light guide plate is made into a light guide strip, which is not only easy to process, but also the light guide plate is a complete plate after cutting, which is convenient for product processing and assembly; in addition, by controlling the LED light source of the running water lamp to light up all the lights in sequence
  • the multiple light guide strips of the light guide plate can dynamically light up the entire light guide plate, so that the pattern on the pattern layer with the same size as the light guide plate presents a flowing light-emitting effect.
  • the light that shines into the light guide plate is lit in a sheet shape.
  • the present invention can divide the sheet-shaped lighting area into corresponding multiple strip-shaped lighting areas. Combined with the light-emitting unit
  • the sequential illumination of the body can achieve the effect of dynamically lighting up the corresponding pattern.
  • the light-transmitting decorative structure can also be designed through the structural design of the light-transmitting unit, so that the light-transmitting decorative structure can pass through the hollow design of the hidden layer, so that the light-transmitting decorative structure can display colors even when the lights are turned off.
  • the pattern content presents rich decorative beauty and improves the ornamental value of the pattern content display; further, the color pattern of the pattern layer of this case is a complete pattern in itself, and the partial appearance under normal conditions and the overall appearance after lighting up are not the same. There will be layering and incoordination that requires splicing, and there will be no problem with splicing seams.
  • Figure 1 is a schematic structural diagram of a light-emitting unit and a light guide layer in a light-transmitting decorative structure provided by Embodiment 1 of the present invention
  • Figure 2 is another structural schematic diagram of the light-emitting unit and the light guide layer in the light-transmitting decorative structure provided in Embodiment 1 of the present invention
  • Figure 3 is another structural schematic diagram of the light-emitting unit and the light guide layer in the light-transmitting decorative structure provided in Embodiment 1 of the present invention.
  • Figure 4 is a schematic structural diagram of the light-transmitting decorative structure shown in Figures 1, 2 and 3 of the present invention after adding light-guiding fibers between the light-emitting unit and the light-guiding layer;
  • Figure 5 is a schematic structural diagram of adding a light-blocking sheet to the light-transmitting decorative structure shown in Figure 1;
  • Figure 6 is a schematic structural diagram of the pattern layer and the decorative layer provided on the light guide layer in the light-transmitting decorative structure
  • Figure 7 is a schematic structural diagram of the pattern layer and the decorative layer provided on the light guide layer in the light-transmitting decorative structure provided in Embodiment 2 of the present invention.
  • Figure 8 is a schematic structural diagram of the pattern layer and the decorative layer provided on the light guide layer in the light-transmitting decorative structure provided in Embodiment 3 of the present invention.
  • Figure 9 is a schematic structural diagram of a pattern layer provided on the light guide layer in the light-transmitting decorative structure provided in Embodiment 4 of the present invention.
  • Figure 10 is a schematic structural diagram of the pattern layer in the light-transmitting decorative structure provided in Embodiment 4 of the present invention.
  • Figure 11 is a schematic structural diagram of an LED light source and a light guide plate in a light-transmitting decorative structure provided by an embodiment of the present invention
  • FIG. 12 is a schematic structural diagram of the pattern layer and the decorative layer provided on the light guide plate in the light-transmitting decorative structure provided by the embodiment of the present invention.
  • Figure 13a shows a plain orchid pattern on the outer surface of the light-transmitting plate when it is not emitting light
  • Figures 13b and 13c show the lamp beads on the running water lamp strip lighting up the corresponding light guide strips in sequence, and the plain color on the decorative layer The area corresponding to the orchid pattern is lit, so that the plain orchid is gradually colored, showing a colorful orchid pattern
  • Figure 13d shows that the light guide layer is all lit, and the plain orchid shows a complete colorful orchid pattern
  • Figure 14a shows that in the non-luminous state, the outer surface of the light-transmitting plate shows no pattern;
  • Figure 14b shows that the lamp beads on the running water lamp strip light up the corresponding light guide strips in sequence, and the rose color pattern gradually appears at the corresponding position of the decorative layer;
  • Figure 14c shows that the light guide layer is all lit up, and the decorative layer presents a complete colorful rose pattern.
  • Figure 15 is a schematic structural diagram of a light-transmitting decorative structure provided by Embodiment 1 of the present invention.
  • Figure 16 is a schematic diagram of the light-emitting state and the non-light-emitting state displayed when the hidden layer is white in the light-transmitting decorative structure provided in Embodiment 1 of the present invention
  • Figure 17 is a schematic diagram of the light-emitting state and the non-light-emitting state displayed when the hidden layer is a plain pattern in the light-transmitting decorative structure provided in Embodiment 1 of the present invention
  • Figure 18 is a schematic structural diagram of a light-transmitting decorative structure provided in Embodiment 2 of the present invention.
  • FIG. 19 is a schematic structural diagram of another alternative solution of the light-transmitting decorative structure provided in Embodiment 2 of the present invention.
  • the light-transmitting decorative structure includes: a light-emitting unit 10 and a light-guiding layer 20.
  • the light-emitting unit 10 is used to illuminate the light-guiding layer 20.
  • a plurality of light guide units 30 are spliced together to form the light guide layer 20.
  • the light emitting unit 10 is provided with a plurality of light emitting monomers.
  • the light emitting monomers are LED light sources, and the LED light sources are used for point When the light guide unit 30 is turned on, each light guide unit can be independently lit by the LED light source. It can be understood that the light-emitting monomer can also be other types of light sources, and the present invention is not limited thereto.
  • a light-blocking layer is formed between the splicing surfaces 301 of two adjacent light guide units 30 .
  • the light-emitting unit 10 includes a plurality of LED light sources, and each LED light source correspondingly lights at least one of the light guide units 30 .
  • the LED light source can be an LED running light strip, an aluminum substrate LED light source, etc., which can be selected according to actual conditions, and is not limited in this embodiment.
  • the light-transmitting decorative structure may also include: a light guide fiber 40 provided between the LED light source and the light guide unit 30.
  • the light guide fiber 40 The light input end of the light guide fiber 40 is connected to the LED light source, and the light output end of the light guide fiber 40 is connected to the light incident surface of the light guide unit 30 , thereby guiding the light from the LED light source to the light guide unit 30 .
  • the light guide fiber 40 is a light guide fiber 40 formed of an optical fiber bundle.
  • the advantage of the light guide fiber 40 is that the LED light source can be separated from the light guide layer 20, which facilitates the replacement and maintenance of the LED light source. In addition, due to the flexibility of the light guide fiber 40, the light transmission is more convenient.
  • the decorative structure is installed in scenes with limited space, improving the applicability of the product.
  • the light guide unit 30 is a light guide plate.
  • the shape of the light guide plate is not limited, as long as the shapes of two adjacent light guide plates are adapted to each other so that the two can be spliced.
  • the light guide unit 30 and the adjacent light guide unit 30 can be bonded, buckled, or clamped to form the light guide layer 20 .
  • the light guide plate may be formed in a regular geometric shape or an irregular geometric shape, which is not limited in the present invention.
  • the light guide plate is an acrylic light guide plate.
  • the light guide plate can also be made of other materials, which is not limited in the present invention.
  • the outer contour surface of each light guide plate is divided into: a splicing surface 301 and an outer edge surface 302. Two adjacent light guide plates are spliced through the splicing surface 301, and the outer edge surface 302 of the light guide plate is Exposed.
  • the outer edge surfaces 302 of multiple light guide plates cooperate with each other to form the outer contour surface of the light guide layer 20 .
  • the outer edge surface 302 of each light guide plate is a light incident surface, and the light from each LED light source enters the light guide plate through the light incident surface, thereby achieving the effect of lighting the light guide plate.
  • the light guide unit is a light guide plate, and each light guide plate forms an independent light guide area.
  • the LED light source is an LED running light strip or light bar.
  • One light guide plate is provided with one of the LED light sources.
  • the LED light source independently illuminates a light guide plate.
  • Each of the LED light sources lights up a light guide area, thereby achieving an area lighting effect.
  • the light guide unit is a strip-shaped light guide plate.
  • Each strip-shaped light guide strip is an independent light guide area.
  • Multiple strip-shaped light guide plates are spliced relatively parallel to form the light guide layer. .
  • One end or both opposite ends of each strip light guide plate are light incident surfaces.
  • the LED light source can be an LED running water lamp strip.
  • Each LED lamp bead of the LED running water lamp strip is a luminous point, and each luminous point corresponds to a strip.
  • the light incident surface of the strip-shaped light guide plate is arranged to independently light up one of the strip-shaped light guide plates.
  • the LED lamp beads light up the corresponding strip-shaped light guide plates in sequence, forming the effect of the light guide layers being lit up in sequence.
  • two or more luminous points of the LED running light strip can also be used to light up the corresponding strip light guide plate.
  • the present invention is not limited to this. .
  • the light guide unit is a strip-shaped light guide plate.
  • a plurality of the strip-shaped light guide plates are relatively parallel and spliced to form an independent light guide area.
  • the multiple light guide areas are spliced to form the light guide area. layer, the arrangement directions of the strip-shaped light guide strips in two adjacent light guide areas intersect.
  • Each light guide area is provided with one LED light source, and one end of each strip-shaped light guide plate is a light incident surface.
  • the LED light source may be an LED running water lamp strip.
  • Each LED lamp bead of the LED running water lamp strip is a luminous point.
  • Each luminous point corresponds to the light incident surface of a strip light guide plate, so that it can independently light up a The strip light guide plate.
  • the LED lamp beads light up the corresponding strip-shaped light guide plates in sequence, forming a sequential lighting effect in the light guide area.
  • two or more luminous points of the LED running light strip can also be used to light up the corresponding strip light guide plate.
  • the present invention is not limited to this. .
  • a light barrier layer may also be formed between the splicing surfaces 301 of two adjacent light guide units 30 .
  • the light-blocking layer may be formed by coating the splicing surface 301 with a light-blocking coating (not shown), and forming the light-blocking layer after the two splicing surfaces 301 are butted together; or As shown in FIG. 5 , a light-blocking sheet 304 is sandwiched between the two splicing surfaces 301 , thereby forming the light-blocking layer between the two splicing surfaces 301 .
  • the light-blocking coating can be formed by coating or spraying opaque paint, opaque pigments, etc. on the splicing surface 301.
  • the light-blocking sheet 304 can be made of a metal sheet, a plastic sheet, or an inorganic material. into thin slices.
  • the light guide plate is an optical grade acrylic plate.
  • the light guide plate can also be a PC plate.
  • light guide plates are usually made of high-tech materials with extremely high refractive index and no light absorption.
  • Light guide points are printed on the bottom of optical-grade acrylic sheets using laser engraving, V-shaped cross grid engraving, and UV screen printing technology.
  • the optical grade acrylic sheet is used to absorb the light emitted from the lamp and stay on the surface of the optical grade acrylic sheet. When the light hits each light guide point, the reflected light will spread to various angles, and then the reflection conditions will be destroyed and emitted from the front of the light guide plate.
  • the light guide plate can be made to emit light uniformly through various light guide points of different density and size.
  • the purpose of the reflective sheet is to reflect the light exposed on the bottom surface back into the light guide plate to improve the efficiency of light use; under the condition of the same area of luminous brightness, the luminous efficiency is high and the power consumption is low.
  • Single-sided microstructure array light guide plates generally adopt the extrusion molding manufacturing process.
  • a pattern layer 21 is provided on the light exit surface side of the light guide layer 20 .
  • each light guide unit 30 illuminates the area corresponding to the position of the pattern layer 21, so that the pattern layer 21 is The pattern of the illuminated area is illuminated.
  • color patterns are formed on the pattern layer 21 .
  • the front and rear light-emitting surfaces of the light guide layer 20 are both recognized as light-emitting surfaces, so that the pattern layer 21 can be provided on both sides. , forming a pattern structure with front and rear light emitting, suitable for products such as screens, entrance halls, and ornaments. If the light guide layer 20 emits light from one side, a reflective layer can also be provided on the backlight surface of the light guide layer to improve light usage efficiency and is suitable for background paintings, decorative paintings and other products.
  • the pattern layer 21 is directly formed on the light exit surface of the light guide layer 20 by inkjet printing, hand painting or transfer printing. As shown in FIG. 6 , a decorative layer 23 is also provided on the pattern layer 21 , and the decorative layer 23 is attached to the outside of the pattern layer 21 .
  • the decorative layer 23 is attached to the outside of the pattern layer 21 and used to block the pattern layer 21 . Both the pattern layer 21 and the decorative layer 23 are light-transmissive.
  • the decorative layer 23 can be formed by spraying paint or paint, or it can be a wood grain layer or a marble grain layer through a transfer process, or an electroplating layer through an electroplating process, or it can also be a glaze layer through a firing process. The invention does not limit this. It should be understood that the thickness of the pattern layer 21 is generally less than 200 microns, which is conducive to ensuring the light transmittance of the pattern when the built-in light source emits light.
  • the decorative layer 23 is an electroplating layer, a layer of PU varnish or UV varnish can be sprayed on the color pattern of the pattern layer 21, and after the varnish is solidified, vacuum coating processing can be performed.
  • the electroplating layer is uniform and the processing technology is mature; because the electroplated decorative layer 23 has a mirror effect, it can also function as a decorative mirror when there is no built-in light source.
  • the light-emitting unit 10 emits light, light illuminates the light guide layer 20 and makes the color pattern of the pattern layer 21 visible through the decorative layer 23; when the light-emitting unit 10 does not emit light, the light guide layer 20 is illuminated by light.
  • the decorative layer 23 blocks the pattern layer 21 so that the color pattern is invisible.
  • the light-transmitting decorative structure also includes a controller (not shown), and the controller of the light-emitting unit 10 is a single-chip microcomputer or an integrated circuit IC.
  • the light-emitting monomer is an LED light source, and further, the LED light source is an LED running water light strip.
  • the decorative effect can also be enriched by changing the color or pattern of the decorative layer 23.
  • the decorative layer 23 can also be formed with graphics corresponding to the same position as the color pattern but with different colors. pattern; when the light-emitting unit 10 emits light, the light illuminates the color pattern of the pattern layer 21 , and causes the color of the color pattern to appear on the pattern of the decorative layer 23 . Therefore, through the arrangement of the decorative layer 23, the light-transmitting decorative structure can provide a richer decorative effect.
  • the decorative layer 23 may be formed with a solid color pattern or a color pattern, and the solid color pattern or the color pattern may be the same as the color pattern of the pattern layer 21 and at the same position.
  • the pattern color of the decorative layer 23 can be selected to be the same as or different from the color pattern of the pattern layer 21 according to actual needs, and the present invention does not limit this.
  • the decorative layer 23 can be mixed with mixed color pigments or decorative particles to form a colored pattern or a plain pattern.
  • the decorative particles include: colored particles, aluminum foil or reflective particles, etc.
  • the decorative layer 23 is provided with a plain color pattern.
  • the plain pattern of the decorative layer 23 appears on the outermost side; when the LED light source is lit, the plain pattern of the decorative layer 23 is replaced by the colored pattern of the pattern layer 21 Color it to create a colorful pattern effect.
  • the decorative layer 23 is provided with a color pattern
  • the color pattern of the decorative layer 23 appears on the outermost side
  • the color pattern appears on the outermost side. It is colored by the decorative pattern of the pattern layer 2110 to present a color superimposed pattern.
  • the structure of the second embodiment is basically the same as that of the first embodiment.
  • the main difference is that the pattern layer provided on the light exit surface of the light guide layer 20 is a patterned light-transmitting plate 211.
  • the light-transmitting plate 211 is attached to the light exit surface of the light guide layer 20 .
  • the light-transmitting plate 211 may be a light-transmitting plastic plate, a glass plate or other suitable light-transmitting plate, which is not limited in the present invention.
  • a flat color pattern is directly formed on the light-transmitting plate 211 by inkjet printing, hand-painting or transfer printing, or a color three-dimensional pattern based on an intaglio or relief shape is formed on the outside of the light-transmitting plate 211 .
  • a color pattern can be directly formed on the inside or outside of the light-transmitting plate 211 by inkjet printing, hand-painting or transfer printing, and a color pattern can be formed on the outside of the light-transmitting plate 211 by inkjet printing, hand-painting, transfer printing, electroplating or firing.
  • the decorative layer 23 can further be formed with graphics that are only different in color corresponding to the position of the color pattern; the light-transmitting plate can be a plane or a curved surface;
  • a three-dimensional pattern based on an intaglio or relief shape can be formed on the inside or outside of the light-transmitting plate 211 , and a color pattern is formed on the outside of the intaglio or relief shape by inkjet printing, transfer printing, electroplating or firing.
  • the pattern corresponding to the position of the intaglio or relief effect can also be decorated with a decorative layer 23 on the outside of the light-transmitting plate 211 by spray printing, hand painting, transfer printing, electroplating or firing.
  • the structure of the decorative layer 23 is the same as that in Embodiment 1, and will not be described again here.
  • the structure of the third embodiment is basically the same as that of the first embodiment.
  • the main difference is that the pattern layer 21 provided on the light exit surface of the light guide layer 20 is a decorative plate 212 with a hollow shape.
  • the decorative plate 212 is attached to the light exit surface of the light guide layer 20 , and the hollow portion of the decorative plate 212 is filled with light-transmitting material.
  • the decorative board 212 may be a ceramic tile, a rock board, a floor tile and other light-transparent boards, stone or wood, which is not limited in this embodiment.
  • the light-transmitting material may form a color pattern or a color pattern corresponding to the hollow shape may be formed on the light-transmitting material, which needs to be selected according to the actual situation.
  • a decorative layer is also formed on the color pattern of the decorative plate 212, and the decorative layer is formed with a pattern corresponding to the position of the color pattern. Moreover, the structure of the decorative layer is the same as that in Embodiment 1, and will not be described again here.
  • the light guide layer is lit to illuminate the pattern layer, and the color of the color pattern is mapped on the graphics of the decorative layer, so that the graphics appear To produce a color effect; when the light-emitting unit does not emit light, the decorative layer blocks the pattern layer so that the color pattern is invisible.
  • the structure of the fourth embodiment is basically the same as that of the first embodiment.
  • the main difference is that: the pattern layer provided on the light exit surface of the light guide layer 20 is a decorative plate 213 with a colored pattern on the front.
  • the back side of the decorative plate 213 is attached to the light exit surface of the light guide layer 20 , and a concave area 2102 is formed on the back side of the decorative plate 213 corresponding to the area of each light guide unit 30 .
  • the thickness of the area 2102 is smaller than the thickness of the decorative plate, so that the color pattern corresponding to the recessed area 2102 can transmit light.
  • the decorative board 213 may be a ceramic tile, rock board, floor tile or other light-transparent board, stone or wood, etc., which is not limited in this embodiment. It should be understood that the color patterns of the decorative plate 213 are made of high-temperature-resistant color pigments, and the color pattern layer formed thereby is light-transmissive.
  • the back side of the decorative plate 213 is partitioned according to the shape of the light guide plate, and a concave area 2102 is formed in each partition by prefabrication or polishing, so The thickness of the recessed area 2102 is smaller than the thickness of the decorative plate 213, and allows light to pass through the color pattern in the corresponding area, forming the effect of light transmission of the color pattern.
  • a light-transmitting decorative layer 2101 may be formed on the color pattern of the decorative plate 213, and the decorative layer 2101 may be formed with a pattern corresponding to the position of the color pattern.
  • the decorative layer 2101 may be a light-transmitting glaze layer.
  • the light guide layer 20 is lit to illuminate the color pattern of the decorative plate 213, and the color of the color pattern is mapped on the pattern of the decorative layer 2101. , so that the graphics exhibit a color effect; when the light-emitting unit does not emit light, the decorative layer 2101 blocks the pattern layer so that the color pattern is invisible.
  • the light-transmitting decorative structure includes: a light-emitting unit 10, a light guide layer 20 and a pattern layer 30.
  • the light-emitting unit 10 is used to illuminate the light guide layer 20.
  • the pattern layer 30 is provided on the light exit surface of the light guide layer 20 .
  • the light-emitting unit 10 includes a plurality of independent light-emitting monomers 101.
  • the light-emitting monomers 101 are LED light sources 101.
  • the edge of the light guide plate is formed with an edge side (not shown), and the side of the light guide layer 20 is formed with a light exit surface (not shown). Light is incident from the edge side of the light guide layer 20 and passes through the edge. The light emerges from the surface to form a light guiding effect.
  • the LED light source is attached to the edge side of the light guide layer 20 to form a light incident surface of the light guide layer 20 .
  • the LED light source is an LED running water light strip.
  • the light guide layer 20 is a light guide plate.
  • the light guide layer 20 is a whole light guide plate.
  • the light guide plate is an acrylic light guide plate.
  • the light guide plate includes: a light guide area 201 and edge areas 202 located on opposite sides of the light guide area.
  • a plurality of relatively parallel light guide units 21 are formed in the light guide area 201, and each light guide unit 21 is formed in the light guide area 201. Opposite ends of a light guide unit 21 are connected to two edge areas 202 respectively.
  • a plurality of relatively parallel light guide strips are formed in the light guide plate by cutting or integral molding.
  • the light guide unit 21 is a light guide strip.
  • the edge region 202 can be provided on only one side of the light guide area 201 of the light guide layer 20 , then each area in the light guide area 201 One end of the light guide unit 21 is connected to the edge area 202 .
  • an interval gap 203 is formed between two adjacent light guide units 21.
  • a light-isolating layer (not shown) is provided in the gap 203 to form a light-isolating effect between two adjacent light guide units 21 .
  • the light-isolating layer may be formed by filling light-insulating material into the spacing gap 203 to form the light-insulating layer, or inserting a light-insulating sheet into the spacing gap 203 to form the light-insulating layer. layer, the present invention does not limit this.
  • the light-blocking material may be opaque paint or opaque pigment
  • the light-blocking sheet may be a metal sheet, a plastic sheet, or a sheet processed from inorganic materials.
  • the LED light source is attached to the edge side of the edge area 202 to form the light incident surface of the light guide layer 20 . It can be understood that at least one end of the length direction of the light guide strip faces the light incident surface of the light guide layer 20 . In other words, at least one end of the length direction of the light guide strip faces the light incident surface of the light guide plate.
  • the light from the LED light source enters the light guide layer 20 through the light incident surface, thereby achieving the effect of lighting the light guide layer 20 .
  • the minimum distance between one end of the spacing gap 203 and the edge side of the light guide plate is defined as the width of the edge area 202.
  • the width of the edge region 202 should be as small as possible, and the width of the edge region should be as small as possible while ensuring that the light guide layer 20 is still a complete plate.
  • the width of the edge area is 1mm-5mm.
  • Each light-emitting point of the LED light source is used to light the corresponding light guide unit 21 .
  • the running water lamp strips of the LED light sources light up the corresponding plurality of light guide units 21 in sequence
  • the plurality of light guide units 21 sequentially illuminate areas corresponding to the positions of the pattern layer 30, so that the pattern
  • the patterns of the illuminated areas on the layer 30 are illuminated sequentially, forming dynamic luminescence to dynamically illuminate the pattern layer 30 .
  • the light-transmitting decorative structure also includes a controller (not shown), and the controller of the light-emitting unit 10 is a single-chip microcomputer or an integrated circuit IC.
  • the light-emitting monomer is an LED light source, and further, the LED light source is an LED running water light strip.
  • the processing process of the light guide layer 20 is as follows: an acrylic light guide plate with a length of 1000 mm, a width of 400 mm, and a thickness of 4 mm is divided into: two edge areas 202 arranged oppositely, and a guide area between the two edge areas 202.
  • Light area 201 Each edge area 202 extends along the length direction, and the width is set to 3mm.
  • the width of the light guide area 201 is 394mm, and the length is 1000mm.
  • laser is used every 5.95mm.
  • the cutting machine cuts an interval gap 203 about 1 mm wide and 394 mm long; after the cutting is completed, 144 parallel-arranged light guide units 21 are formed.
  • each light guide unit 21 is 5.95 mm.
  • the length of unit 21 is 394mm.
  • the cutting of each light guide unit 21 stops when it reaches the edge area 202, so that the opposite ends of each light guide unit 21 are respectively connected to the two edge areas 202. Therefore, the light guide unit 21 stops cutting.
  • Layer 20 is also a whole light guide plate to facilitate product assembly. It can be understood that we can also use mold integrated molding and other methods to produce products with desired specifications, and the present invention is not limited to this.
  • the light guide layer 20 can be a flat plate or a curved plate.
  • the present invention is not limited to this. These are routine changes made by those skilled in the art to adapt to different application scenarios and do not exceed protection scope of the present invention.
  • the pattern layer 30 is disposed on the light exit surface side of the light guide layer 20 .
  • each of the light guide layers 20 illuminates the area corresponding to the position of the pattern layer, so that the pattern layer 30 is The pattern of the illuminated area is illuminated.
  • the pattern layer 30 includes: a light-transmitting plate 31 and a pattern 32 formed on the light-transmitting plate 31 by inkjet printing, hand-painting, transfer printing or engraving.
  • the light-transmitting plate 31 is disposed on the light guide layer 20 On the light-emitting surface side, after the light guide layer 20 is lit by the LED light source, the light from the light guide layer 20 can pass through the light-transmitting plate 31 to illuminate the pattern 32 .
  • the light-transmitting plate may be a transparent material or a plate or film made of a light-transmitting material, and the present invention is not limited to this.
  • the engraving technique for forming the pattern includes physical engraving technique or laser engraving technique, which is not limited in the present invention.
  • the pattern formed on the pattern layer 30 is a color pattern.
  • the pattern 32 of the pattern layer 30 can be disposed toward the light guide layer 20 or away from the light guide layer 20 , which is not limited in the present invention.
  • the light-transmitting plate 31 is a light-transmitting stone plate, and a relief or intaglio pattern is provided on the outer surface of the light-transmitting stone plate; or the light-transmitting plate 31 is an opaque stone plate provided with a hollow pattern. , the hollow part is filled with light-transmitting material to form a light-transmitting plate;
  • the light-transmitting plate 31 is a light-transmitting plastic plate, and the pattern 32 is formed on the surface of the plastic plate by inkjet printing, hand-painting, or transfer; or the light-transmitting plate 31 is a glass plate, and the pattern 32 is formed by inkjet printing, hand-painting, or transfer printing. The transfer is formed on the surface of the glass plate.
  • the light-transmitting decorative structure may further include a light guide fiber (not shown) disposed between the light-emitting unit 10 and the light guide layer 20 .
  • the light emitting end of the light guide fiber is connected to the light incident surface of the light guide layer 20 .
  • the light emitting unit 101 is an LED light source 101
  • the light exit end of the light guide fiber is connected to the light incident surface of the light guide unit 20, thereby guiding the light of the LED light source 101 to the Light guide layer 30.
  • the light guide fiber 40 is a light guide fiber 40 formed of an optical fiber bundle.
  • the advantage of the light guide fiber 40 is that it can separate the LED light source 101 from the light guide layer 20 to facilitate the replacement and maintenance of the LED light source 101.
  • Due to the flexibility of the light guide fiber 40 it is more convenient for the light-transmitting decorative structure to be installed in scenes with limited space, which improves the applicability of the product.
  • a decorative layer 40 is also provided on the pattern layer 30 , and the decorative layer 40 is attached to the light-emitting side of the pattern layer 30 .
  • the decorative layer 40 is attached to the light-emitting side of the pattern layer 30 and used to block the pattern layer 30 .
  • Both the pattern layer 30 and the decorative layer 40 are light-transmissive.
  • the decorative layer 40 may be formed by spraying paint or paint, or may be a wood grain layer or marble grain layer through a transfer process, or an electroplating layer through an electroplating process, or may be a glaze layer through a firing process. The invention does not limit this. It should be understood that the thickness of the pattern layer 30 is generally less than 200 microns, which is beneficial to ensuring the light transmittance of the pattern when the built-in light source emits light.
  • the light from the LED light source illuminates the light guide layer 20 and makes the color pattern of the pattern layer 30 visible through the decorative layer 40; when the LED light source does not emit light, At this time, the decorative layer 40 blocks the pattern layer 30 so that the color pattern is invisible.
  • the decorative effect can also be enriched by changing the color or pattern of the decorative layer 40.
  • the decorative layer 40 can also be formed with graphics corresponding to the same position as the color pattern but with different colors. pattern; when the LED light source emits light, the light illuminates the color pattern of the pattern layer 30 , and causes the color of the color pattern to appear on the pattern of the decorative layer 40 . Therefore, through the arrangement of the decorative layer 40, the light-transmitting decorative painting can provide a richer decorative effect.
  • the pattern layer 30 is formed with a colorful orchid pattern
  • the decorative layer 40 is formed with a plain pattern that is the same as the orchid pattern and has a corresponding position. If the LED light source is not lit, a plain orchid pattern will appear on the outside of the light-transmitting plate 31. If the lamp beads of the LED running water lamp strip light the corresponding light guide strips in sequence, the plain orchid pattern will appear.
  • the pattern is gradually colored to present a colorful orchid pattern, and the pigment pattern on the decorative layer 40 can present a dynamically colored color effect. When all the light guide strips are lit, a complete colorful orchid pattern appears on the outside of the light-transmitting plate 31 .
  • the pattern layer 30 forms a colored rose pattern and there is no pattern on the decorative layer 40, and if the LED light source is not lit, the light-transmitting plate 31 is blank with no pattern. If the lamp beads of the LED running light strip light up the corresponding light guide strips in sequence, the decorative layer 40 can be gradually colored to present a colorful rose pattern, and the decorative layer 40 can Presents dynamically colored color effects. When all the light guide strips are lit, a complete colored rose pattern appears on the outside of the light-transmitting plate 31 .
  • the decorative layer 40 may also be formed with a black and white pattern or a color pattern, and the black and white pattern or color pattern has the same shape and the same position as the color pattern of the pattern layer 30 .
  • the pattern color of the decorative layer 40 can be selected to be the same as or different from the color pattern of the pattern layer 30 according to actual needs, and the present invention does not limit this.
  • the decorative layer 40 may be mixed with mixed color pigments or decorative particles to form a color pattern or a black and white pattern.
  • the decorative particles include: colored particles, aluminum foil or reflective particles, etc.
  • the decorative layer 40 is provided with a black and white pattern.
  • the black and white pattern of the decorative layer 40 appears on the outermost side; when the LED running water lamp with light source 10 is lit, multiple parts of the light guide layer 20 are sequentially lit.
  • the black and white patterns of the decorative layer 40 are sequentially colored by the color patterns of the pattern layer 30, forming a dynamic color pattern effect.
  • the decorative layer 40 is provided with a color pattern
  • the color pattern of the decorative layer 40 appears on the outermost side
  • the LED running water lamp strip light source 10 is lit
  • the color pattern of the decorative layer 40 appears on the outermost side.
  • the color patterns appearing on the outside are sequentially colored by the decorative patterns of the pattern layer 30 to form a dynamically displayed color superimposed pattern.
  • the light-transmitting decorative structure includes: a light-emitting unit 10 and a light-transmitting unit 20.
  • the light-emitting unit 10 is an LED light source for illuminating the light-transmitting unit 20.
  • the light-transmitting unit 20 includes: a pattern layer 21, a hidden layer 22, and a transparent layer 23.
  • the pattern layer 21, the hidden layer 22, and the transparent layer 23 are sequentially arranged along the direction of light irradiation.
  • a light guide unit (not shown) may also be included.
  • the light transmitting unit 20 is disposed on the light exit surface of the light guide unit.
  • the light guide unit may be the same as the light guide unit in the fifth embodiment; of course, the light guide unit may also be the same as the light guide unit in other embodiments, but not in this embodiment. Make limitations.
  • the pattern layer 21 is a color picture or color plate with a color pattern formed by inkjet printing, hand-painting or transfer printing;
  • the concealment layer 22 is made of transparent resin mixed with white color paste and sprayed, or The chrome or silver coating is formed by vacuum coating or nano-spraying processing, or the hidden layer 22 is a light-transmitting and opaque sheet.
  • the pattern layer 21 is formed with a color pattern, and the concealment layer 22 is used to block the color pattern of the pattern layer.
  • the concealment layer 22 is formed with a hollow area (not shown), The hollow area is used to display the color pattern of the corresponding area of the pattern layer 21;
  • the hidden layer 22 blocks the pattern layer 21 so that the blocked area of the pattern is invisible, and the pattern of the pattern layer 21 corresponding to the hollow area of the hidden layer 22 is visible. ;
  • the light-emitting unit 10 emits light, the light-emitting unit 10 illuminates the pattern layer 21 and makes the overall pattern of the pattern layer 21 appear through the hidden layer 22 .
  • the hollow area of the hidden layer 22 displays the character image of the pattern layer 21, and other images of the pattern layer 21 are blocked and cannot be seen;
  • the pattern layer 21 is illuminated as a whole and displayed, and all the patterns of the pattern layer 21 are presented as a whole on the hidden layer 22 .
  • a plain color pattern may also be provided on the concealment layer 22 , the plain color pattern being the same as the color pattern of the pattern layer 21 and corresponding in position; when the pattern layer 21 is illuminated , the plain pattern of the hidden layer 22 can be colored.
  • a plain color pattern may also be provided on the transparent layer 23 .
  • the plain color pattern is the same as the color pattern of the pattern layer 21 and has a corresponding position. When the pattern layer 21 is illuminated, the plain pattern of the transparent layer 23 can be colored.
  • the transparent layer 23 can also be a transparent color layer. Its function is to make the picture with only partial color patterns more visually beautiful when the light source is not turned on.
  • the entire picture can be covered with one layer, or only the hollows can be covered.
  • the area outside the color pattern, that is, the transparent color layer on the outer surface, can be the same as the hidden layer, forming a hollow with the same graphic outline as the exposed color pattern.
  • the transparent color pattern layer on the outer surface can be a transparent resin mixed with pigments by spraying, or it can be a colored transparent film (such as film). If it is a transparent film (film), you can also first print the same graphic (plain color) as the color pattern layer, and then attach it to the outside of the hidden layer in a manner that overlaps with the pattern position of the color pattern layer. You can also apply the transparent film first. After the combination is completed or the transparent resin is sprayed and solidified, the corresponding graphics corresponding to the pattern of the color pattern layer are then spray-painted, hand-painted or transferred.
  • a transparent film film
  • the transparent color film (film) and the outer surface of the hidden layer (mirror film) can be bonded together first (preferably the transparent color film comes with its own adhesive), and then engraving (preferably laser engraving) to expose the color pattern layer Hollows with the same pattern outline;
  • the back side of the hidden layer after compounding with the transparent color film
  • adheres to the outer surface of the color pattern layer preferably the mirror film has a back glue
  • the hollows on the hidden layer correspond to the exposed pattern positions of the color pattern layer.
  • the pattern layer 21 is a colored landscape background and a color pattern of human figures
  • the concealment layer 22 is a white concealment layer
  • the hollow area of the concealment layer 22 is consistent with the center of the pattern layer 21 .
  • the characters in the pattern layer 21 match each other, so that the characters in the pattern layer 21 are not blocked by the concealment layer 22 .
  • the colored characters are displayed; in the light-emitting state, the complete pattern of the pattern layer 21 is displayed.
  • the pattern layer 21 is a color pattern of a colored landscape background and human figures, and a plain color pattern is provided on the hidden layer 22.
  • the plain color pattern is consistent with the color of the pattern layer 21.
  • the figures in the pattern are the same and have corresponding positions, and the hollow areas of the concealment layer 22 match the characters in the pattern layer 21 , so that the characters in the pattern layer 21 are not blocked by the concealment layer 22 .
  • the non-light-emitting state the superposition of colored characters and plain-color patterns is displayed; in the light-emitting state, the plain-color pattern of the hidden layer 22 is colored by the color pattern of the pattern layer 21, and the displayed pattern Complete pattern of layer 21.
  • the light-transmitting decorative structure provided in Embodiment 7 is basically the same as the light-transmitting decorative structure in Embodiment 6.
  • the main difference is that the light-transmitting unit 220 includes: a pattern layer 221, a hidden layer 222, and a On the transparent base layer 223 that supports the pattern layer 221 and the concealment layer 222, the pattern layer 221 and the concealment layer 222 are sequentially disposed on the light-facing side or the backlight side of the transparent base layer 223 along the light irradiation direction.
  • the concealment layer 222 is attached to the transparent base layer 223 Facing the light side, the pattern layer 221 is attached to the hidden layer 222 .
  • the pattern layer 221 and the hidden layer 222 are sequentially disposed on the backlight side of the transparent base layer 223 along the light irradiation direction, then the pattern layer 221 is attached to the backlight side of the transparent base layer 223 On the other side, the hidden layer 222 is attached to the pattern layer 221 .
  • the pattern layer 221 and the hidden layer 222 are both attached to the transparent base layer 223 .
  • the transparent base layer 223 may be made of glass or acrylic material.
  • the pattern layer 221 is formed by spray painting, hand painting or transfer printing.
  • the hidden layer 222 is spray-coated by a transparent resin mixed with white color paste, or is a chrome or silver coating formed by vacuum coating or nano-spraying processing.

Abstract

L'invention concerne une structure décorative transmettant la lumière, comprenant des unités électroluminescentes (10), une plaque de guidage de lumière (20) et une couche de motif (30). Les unités électroluminescentes (10) sont configurées pour éclairer la plaque de guidage de lumière (20), et la couche de motif (30) est disposée sur la surface électroluminescente de la plaque de guidage de lumière (20) ; une pluralité de bandes de guidage de lumière (21) réparties en parallèle sont formées dans la plaque de guidage de lumière (20), et au moins une extrémité de chaque bande de guidage de lumière (21) dans la direction de la longueur fait face à la surface d'incidence de lumière de la plaque de guidage de lumière (20) ; chaque unité électroluminescente (10) comprend une pluralité de cellules électroluminescentes (101), et les cellules électroluminescentes (101) sont fixées à la surface d'incidence de lumière de la plaque de guidage de lumière (20) et sont configurées pour éclairer les bandes de guidage de lumière (21) de la plaque de guidage de lumière (20) ; et lorsque les cellules électroluminescentes (101) éclairent les bandes de guidage de lumière correspondantes (21), les bandes de guidage de lumière (21) éclairent des régions correspondantes de la couche de motif (30), de telle sorte que des motifs des régions éclairées sur la couche de motif (30) sont éclairés. La structure décorative transmettant la lumière à éclairage uniforme est découpée dans une plaque de guidage de lumière (20) pour former des bandes de guidage de lumière (21), et une couche barrière à la lumière est disposée entre deux bandes de guidage de lumière adjacentes (21), de telle sorte que les effets de guidage de lumière de deux bandes de guidage de lumière adjacentes (21) n'interfèrent pas l'un avec l'autre, et les bandes de guidage de lumière (21) d'une région de guidage de lumière (201) dans la plaque de guidage de lumière (20) peuvent être allumées séquentiellement pour émettre de la lumière de manière dynamique et uniforme.
PCT/CN2023/116637 2022-09-02 2023-09-02 Structure décorative transmettant la lumière WO2024046480A1 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
CN202222349085.7 2022-09-02
CN202222349085.7U CN217951998U (zh) 2022-09-02 2022-09-02 能够区域点亮的透光装饰结构
CN202320883583.1 2023-04-18
CN202320883583.1U CN219634884U (zh) 2023-04-18 2023-04-18 能够均匀点亮的透光装饰画
CN202322318561.3 2023-08-28
CN202322318561 2023-08-28

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Publication Number Publication Date
WO2024046480A1 true WO2024046480A1 (fr) 2024-03-07

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN206906627U (zh) * 2017-05-17 2018-01-19 郑映鸿 导光装饰灯
JP2020090052A (ja) * 2018-12-06 2020-06-11 凸版印刷株式会社 加飾フィルム
CN114851763A (zh) * 2022-05-27 2022-08-05 杨剑桥 多图案融合的透光装饰结构
CN217951998U (zh) * 2022-09-02 2022-12-02 好石光(武汉)科技有限公司 能够区域点亮的透光装饰结构

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN206906627U (zh) * 2017-05-17 2018-01-19 郑映鸿 导光装饰灯
JP2020090052A (ja) * 2018-12-06 2020-06-11 凸版印刷株式会社 加飾フィルム
CN114851763A (zh) * 2022-05-27 2022-08-05 杨剑桥 多图案融合的透光装饰结构
CN217951998U (zh) * 2022-09-02 2022-12-02 好石光(武汉)科技有限公司 能够区域点亮的透光装饰结构

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