Outdoor Self-luminous Enamel Sign
Through modular self-luminous enamel signs, combined with backward oblique elliptical enamel tubes and oblique elliptical enamel tubes, the problem of separation between the sign and the metal plate is solved, and the organic combination of the sign and the metal plate is realized, reducing resource waste and engineering cost, improving construction efficiency and safety, and saving energy consumption.
Patent Information
- Application Number
- CN202310486958.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-04
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2043-05-04
AI Technical Summary
The existing outdoor signboards belong to different systems from metal plates and lighting fixtures, resulting in low construction efficiency, high engineering cost, and waste of resources and safety hazards, lack of integrated structure.
Modular self-luminescent enamel signs are adopted, and the combination of backward oblique elliptical enamel tube and oblique elliptical enamel tube is combined to achieve organic combination of the sign and metal plate. The light reflection and refractive power of the enamel plate is used to achieve self-luminescence on sunny days and reduce the energy consumption of lighting at night.
The organic combination of signboards and metal plates is realized, which reduces space and resource waste, reduces operating costs and engineering costs, improves construction efficiency and safety, and saves energy consumption.
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Figure CN116543661B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of outdoor sign manufacturing, and particularly to an outdoor self-luminous enamel sign. Background Art
[0002] Outdoor signs are a very widely used form of information display in municipal and civil buildings. They are applicable to the entrances and exits of various types, and undertake functions such as guiding passengers to diverge, indicating riding guidance information, nameplates, and local lighting. In the prior art, various metal plates are usually hung outside the structural wall, and signs and lighting fixtures are embedded on the metal plates, so as to provide sign and lighting services for passengers at the entrances and exits. Such a practice results in a too rigid and mechanical structure between the sign and the metal plate, lacking an internal connection, and the structural form is too simple, with certain safety hazards. The independently set signs are not eye-catching enough even during the day and need to provide local lighting, causing waste of electric power resources, and no consideration is given to the daily maintenance and repair measures of the externally hung metal plates and signs.
[0003] In addition, the guiding signs, metal plates, and lighting fixtures belong to different system constructions, adopting independent structural systems, and cross-operation during installation, reducing the construction efficiency, lacking an integrated structure, and further increasing the project cost.
[0004] Therefore, how to reasonably combine signs, metal plates, and lighting fixtures, and reduce resource waste and project cost has become a technical problem that needs to be urgently solved by those skilled in the art. Summary of the Invention
[0005] In view of the above-mentioned defects of the prior art, the present invention provides an outdoor self-luminous enamel sign, and the achieved purpose is to reduce the occupied space outside the entrance and exit, realize the self-luminescence of the entrance and exit information board on sunny days, reduce the night lighting energy consumption, lower the operation cost, realize modular production and assembly, optimize the spatial pattern, and improve the use quality, having excellent economic benefits.
[0006] To achieve the above purpose, the present invention discloses an outdoor self-luminous enamel sign, which is arranged outside the pedestrian entrance of a building or a structure, and includes a support structure arranged above the ground floor.
[0007] Wherein, at least two frame enamel plates are arranged on the outside of the support structure;
[0008] Each of the frame enamel plates is arranged horizontally;
[0009] A plurality of groups of vertically arranged strip-shaped components are arranged horizontally between every two adjacent frame enamel plates;
[0010] Each of the strip-shaped components includes obliquely elliptical enamel tubes near the upper and lower ends, and reverse obliquely elliptical enamel tubes located between two corresponding sections of the obliquely elliptical enamel tubes;
[0011] Between every two adjacent frame enamel plates, nested lighting lamps are provided on the upper surface of the corresponding lower frame enamel plate;
[0012] Each of the nested lighting lamps is nested in the corresponding frame enamel plate, and the irradiation directions all face the middle and upper parts between two corresponding reverse obliquely elliptical enamel tubes of the support structure;
[0013] The hollow areas between multiple reverse obliquely elliptical enamel tubes form the name characters or letters of the location of the corresponding support structure;
[0014] An inlaid LOGO plate is provided between the support structure and multiple reverse obliquely elliptical enamel tubes;
[0015] For the part of the support structure corresponding to the area between every two frame enamel plates, the surface facing the inlaid LOGO plate is coated with a reflective coating.
[0016] Preferably, each of the inlaid LOGO plates is fixedly connected to the support structure through a supporting bracket on the surface facing the support structure.
[0017] Preferably, each of the reverse obliquely elliptical enamel tubes is a first type of reverse obliquely elliptical enamel tube;
[0018] Each of the first type of reverse obliquely elliptical enamel tubes includes a first type of twisted elliptical tube with hidden connecting plates at both ends;
[0019] Each of the hidden connecting plates is superposed with the corresponding obliquely elliptical enamel tube;
[0020] There is a twisting angle of 5 degrees to 25 degrees between each of the first type of twisted elliptical tubes and the corresponding hidden connecting plates at both ends, and they are all connected to the corresponding obliquely elliptical enamel tubes through the hidden connecting plates at both ends.
[0021] More preferably, for the two obliquely elliptical enamel tubes connected to each of the first type of reverse obliquely elliptical enamel tubes, the positions near the connection with the corresponding first type of reverse obliquely elliptical enamel tube are superposed with the corresponding first type of reverse obliquely elliptical enamel tube, and two fixing part holes are provided, and the corresponding first type of reverse obliquely elliptical enamel tube is fixed by setting corresponding fixing parts in the corresponding fixing part holes;
[0022] Each of the hidden connecting plates of each of the first-type reverse oblique elliptical enamel tubes is provided with two fixing hole grooves, and is fixed to the corresponding oblique elliptical enamel tube by arranging corresponding fixing members in the corresponding fixing hole grooves.
[0023] Preferably, each of the reverse oblique elliptical enamel tubes is a second type of reverse oblique elliptical enamel tube;
[0024] Each of the second type of reverse oblique elliptical enamel tubes comprises a second type of twisted elliptical tube with hidden connecting plates at both ends;
[0025] Each of the hidden connecting plates overlaps with the corresponding oblique elliptical enamel tube;
[0026] There is a torsion angle of 90 to 135 degrees between each of the second-type twisted elliptical tubes and the corresponding hidden connecting plates located at both ends, and each of the second-type twisted elliptical tubes is connected to the corresponding oblique elliptical enamel tubes through the hidden connecting plates located at both ends.
[0027] More preferably, the two oblique elliptical enamel tubes connected to each second type of reversely oblique elliptical enamel tube overlap with the corresponding second type of reversely oblique elliptical enamel tube near the connection position with the corresponding second type of reversely oblique elliptical enamel tube, and each has two fixing hole grooves, and is fixed to the corresponding second type of reversely oblique elliptical enamel tube by providing corresponding fixings in the corresponding fixing hole grooves;
[0028] Each of the hidden connecting plates of each of the second type of reverse oblique elliptical enamel tubes is provided with two fixing hole grooves, and is fixed to the corresponding oblique elliptical enamel tube by arranging corresponding fixing members in the corresponding fixing hole grooves.
[0029] Beneficial effects of the present invention:
[0030] The present invention achieves the orderly integration of entrance and exit doorway signs and enamel panels. Through the linear and nonlinear shaping of the reverse-oblique elliptical enamel tube after twisting, the signboard's text and prompt functions are displayed, reducing the placement and protrusion of the external signboard, and achieving an organic combination and internal unity between the signboard and the facade decorative panel. The present invention can reduce the space occupied by the signboard outside the entrance and exit, realize the station name information prompt function, optimize the entrance and exit space layout, and adopt an integrated structure, greatly reducing the inspection and maintenance frequency of conventional signboards, reducing operating and maintenance costs.
[0031] The enamel plate has good light reflection and refraction capabilities. Under sunny conditions, the self-luminous enamel sign of the present invention can achieve self-luminous illumination of station name information through the refracted light and reflected light formed by the twisting angle of the anti-oblique elliptical enamel tube. The refracted light and reflected light formed by the twisting angle of the anti-oblique elliptical enamel tube, as well as the reflected light of sunlight through the reflective coating, achieve daytime illumination of the entrance and exit LOGO. The self-luminous illumination of the station name information and the LOGO can reduce the all-day lighting cost by about 45%, reduce the operating cost, and save energy.
[0032] In addition, the oblique elliptical enamel tube and the anti-oblique elliptical enamel tube of the present invention are composed of modular components, which are suitable for factory prefabrication and direct on-site installation, shortening the construction period. The modular components are easy to replace on-site through hidden connecting plates, and have good economic benefits.
[0033] The concept, specific structure and technical effects of the present invention will be further described below in conjunction with the drawings to fully understand the purpose, features and effects of the present invention. Description of the Drawings
[0034] Figure 1 A cross-sectional structure schematic diagram showing an embodiment of the present invention.
[0035] Figure 2 A structure schematic diagram showing the connection between the frame enamel plate and the oblique elliptical enamel tube in an embodiment of the present invention.
[0036] Figure 3 A structure schematic diagram showing the first type of anti-oblique elliptical enamel tube in an embodiment of the present invention.
[0037] Figure 4 A structure schematic diagram showing the second type of anti-oblique elliptical enamel tube in an embodiment of the present invention. Detailed Description of the Invention
[0038] Embodiment
[0039] As Figure 1 and Figure 2 shown, the outdoor self-luminous enamel sign is set outside the pedestrian entrance of a building or structure, and includes a support structure 2 arranged above the ground floor 1.
[0040] Among them, at least two frame enamel plates 3 are arranged on the outer side of the support structure 2;
[0041] Each of the frame enamel plates 3 is horizontally arranged;
[0042] Between every two adjacent frame enamel plates 3, multiple groups of vertically arranged strip-shaped components are arranged in the horizontal direction;
[0043] Each of the strip-shaped components includes obliquely elliptical enamel tubes 4 near the upper and lower ends, and reverse obliquely elliptical enamel tubes 5 located between the two corresponding sections of the obliquely elliptical enamel tubes 4;
[0044] Between every two adjacent frame enamel plates 3, and on the upper surface of the corresponding lower frame enamel plate 3, nested lighting lamps 7 are provided;
[0045] Each of the nested lighting lamps 7 is nested in the corresponding frame enamel plate 3, and the irradiation direction is towards the middle and upper parts between the two corresponding reverse obliquely elliptical enamel tubes 5 of the support structure 2;
[0046] The hollow spaces between multiple reverse obliquely elliptical enamel tubes 5 form the name characters or letters of the location where the corresponding support structure 2 is located;
[0047] An inlaid LOGO plate 6 is provided between the support structure 2 and multiple reverse obliquely elliptical enamel tubes 5;
[0048] For the part of the support structure 2 corresponding to the space between every two frame enamel plates 3, the surface facing the inlaid LOGO plate 6 is coated with a reflective coating 9.
[0049] In practical applications, the reflective coating 9 covers the internal spaces of the obliquely elliptical enamel tubes 4 and the reverse obliquely elliptical enamel tubes 5. The reflective coating 9 can absorb light from various angles passing through the obliquely elliptical enamel tubes 4 and the reverse obliquely elliptical enamel tubes 5 and then achieve uniform reflection.
[0050] The refracted light and reflected light formed by the reverse obliquely elliptical enamel tube 5 twisting at an angle can realize the functions of reflected light and refracted light again on the surfaces of the reverse obliquely elliptical enamel tube 5 and the obliquely elliptical enamel tube 4.
[0051] The refracted light and reflected light formed by the reverse obliquely elliptical enamel tube 5 twisting at an angle, and the light reflected by the sunlight through the reflective coating act on the back of the inlaid LOGO plate 6 to realize the illumination of the inlaid LOGO plate 6 under sunny conditions.
[0052] The nested lighting lamps 7 realize the lighting function at night. The night lighting of the nested lighting lamps 7 is reflected by the reflective coating 9 and then forms characters or letters after being twisted by the reverse obliquely elliptical enamel tube 5 to realize the display and lighting of the location name information.
[0053] The above technical means simplify the structure of the present invention, reduce the width of the signboard, reduce the material waste of the conventional structure, and reduce the project cost.
[0054] The nested lighting lamp 7 realizes the lighting function at night. The lighting acts on the obliquely backward elliptical enamel tube 5 through the reflective coating 9. The display of the location name information and the lighting can reduce the need for conventional signs and the occupied space.
[0055] In some embodiments, each of the embedded LOGO plates 6 is fixedly connected to the support structure 2 through a supporting bracket 8 facing one side of the support structure 2.
[0056] As Figure 3 shown, in some embodiments, each of the obliquely backward elliptical enamel tubes 5 is a first obliquely backward elliptical enamel tube 10;
[0057] Each of the first obliquely backward elliptical enamel tubes 10 includes a first twisted elliptical tube 14 with hidden connecting plates 13 at both ends;
[0058] Each of the hidden connecting plates 13 is superposed with the corresponding obliquely elliptical enamel tube 4;
[0059] There is a twisting angle of 5 degrees to 25 degrees between each of the first twisted elliptical tubes 14 and the corresponding hidden connecting plates 13 at both ends, and they are all connected to the corresponding obliquely elliptical enamel tubes 4 through the hidden connecting plates 13 at both ends.
[0060] The obliquely backward elliptical enamel tubes 5 are of two types, namely the first obliquely backward elliptical enamel tubes 10 and the second obliquely backward elliptical enamel tubes 11. They can reflect and refract sunlight through the solar azimuth angle to realize a self-luminous auxiliary light source during the day, reducing the energy consumption of conventional lighting.
[0061] The twisting angle range of the first twisted elliptical tube 14 of the first obliquely backward elliptical enamel tube 10 is from 5 degrees to 25 degrees. Through the low-angle twisting, under sunny conditions, the reflected light at the upper and lower ends is the main, and the refracted light in the middle is the auxiliary, realizing the recycling of the light source and reducing the energy consumption.
[0062] In some embodiments, for the two obliquely elliptical enamel tubes 4 connected to each of the first obliquely backward elliptical enamel tubes 10, the positions close to the connection with the corresponding first obliquely backward elliptical enamel tube 10 are superposed with the corresponding first obliquely backward elliptical enamel tube 10, and both are provided with two fixing part holes 12. The corresponding fixing parts are set in the corresponding fixing part holes 12 to fix with the corresponding first obliquely backward elliptical enamel tube 10;
[0063] Each of the hidden connecting plates 13 of each of the first obliquely backward elliptical enamel tubes 10 is provided with two fixing part holes 12. The corresponding fixing parts are set in the corresponding fixing part holes 12 to fix with the corresponding obliquely elliptical enamel tube 4.
[0064] As Figure 4 shown, in some embodiments, each of the reverse obliquely elliptical enamel tubes 5 is a second type of reverse obliquely elliptical enamel tube 11;
[0065] Each of the second type of reverse obliquely elliptical enamel tubes 11 includes a second torsion elliptical tube 15 with hidden connecting plates 13 at both ends;
[0066] Each of the hidden connecting plates 13 is superposed with the corresponding obliquely elliptical enamel tube 4;
[0067] There is a torsion angle of 90 degrees to 135 degrees between each of the second torsion elliptical tubes 15 and the corresponding hidden connecting plates 13 at both ends, and each is connected to the corresponding obliquely elliptical enamel tube 4 through the hidden connecting plates 13 at both ends.
[0068] The torsion angle range of the second torsion elliptical tube 15 of the second type of reverse obliquely elliptical enamel tube 11 is from 90 degrees to 135 degrees. Through the large-angle torsion, under sunny conditions, the refracted light at the upper end is the main, the refracted light and reflected light alternate in the middle section, and the refracted light at the lower end is the main, realizing the recycling of light sources and reducing energy consumption.
[0069] In some embodiments, for the two obliquely elliptical enamel tubes 4 connected to each of the second type of reverse obliquely elliptical enamel tubes 11, the positions close to the connection with the corresponding second type of reverse obliquely elliptical enamel tube 11 are superposed with the corresponding second type of reverse obliquely elliptical enamel tube 11, and two fixing part hole slots 12 are provided. The corresponding second type of reverse obliquely elliptical enamel tube 11 is fixed by arranging corresponding fixing parts in the corresponding fixing part hole slots 12;
[0070] Two fixing part hole slots 12 are provided on each of the hidden connecting plates 13 of each of the second type of reverse obliquely elliptical enamel tubes 11, and the corresponding obliquely elliptical enamel tube 4 is fixed by arranging corresponding fixing parts in the corresponding fixing part hole slots 12.
[0071] In practical applications, words or letters are formed by multiple first type of reverse obliquely elliptical enamel tubes 10 and multiple second type of reverse obliquely elliptical enamel tubes 11 at different angles to display the location name information.
[0072] Among them, the reverse obliquely elliptical enamel tubes 5 have two types, namely the first type of reverse obliquely elliptical enamel tube 10 and the second type of reverse obliquely elliptical enamel tube 11, and different torsion angles, realizing the functions of station names and signs. It reduces the hanging and mechanical structure of conventional signs, realizes the unity of function and structure, and improves the overall safety.
[0073] The refracted light and reflected light formed by the 5-twist angle of the anti-diagonal elliptical enamel tube 5 can realize the functions of reflected light and refracted light again on the surfaces of the anti-diagonal elliptical enamel tube 5 and the diagonal elliptical enamel tube 4. The refracted light and reflected light formed by the 5-twist angle of the anti-diagonal elliptical enamel tube 5, as well as the light reflected by the sunlight through the reflective coating, act on the back of the inlaid LOGO plate 6, realizing the illumination of the inlaid LOGO plate 6 under sunny conditions, achieving the self-luminous function, reducing the number of lighting sources and the illuminance requirements, and saving electric energy.
[0074] The preferred specific embodiments of the present invention have been described in detail above. It should be understood that those of ordinary skill in the art can make many modifications and variations based on the concept of the present invention without creative labor. Therefore, all technical solutions that can be obtained by those skilled in the art in this technical field based on the concept of the present invention through logical analysis, reasoning, or limited experiments on the basis of the prior art should fall within the protection scope determined by the claims.
Claims
1. An outdoor self-luminous enamel signboard is installed outside the pedestrian entrance of a building or structure, including a support structure (2) installed above the ground floor (1); it is characterized in that: At least two frame enamel plates (3) are provided on the outer side of the support structure (2); Each of the frame enamel plates (3) is horizontally arranged; A plurality of vertically arranged strip components are arranged horizontally between every two adjacent frame enamel plates (3); Each of the strip components includes inclined elliptical enamel tubes (4) near the upper and lower ends, and reverse-inclined elliptical enamel tubes (5) located between the corresponding two sections of the inclined elliptical enamel tubes (4); Between every two adjacent frame enamel plates (3), on the upper surface of the corresponding lower frame enamel plate (3), nested lighting lamps (7) are provided; Each of the nested lighting lamps (7) is nested in the corresponding frame enamel plate (3), and the irradiation direction is towards the middle and upper parts between the corresponding two reverse-inclined elliptical enamel tubes (5) of the support structure (2); The hollow between a plurality of the reverse-inclined elliptical enamel tubes (5) forms the name characters or letters of the location where the corresponding support structure (2) is located; An inlaid LOGO plate (6) is provided between the support structure (2) and a plurality of the reverse-inclined elliptical enamel tubes (5); For the part of the support structure (2) corresponding to between every two frame enamel plates (3), the surface facing the inlaid LOGO plate (6) is coated with a reflective coating (9); Each of the reverse-inclined elliptical enamel tubes (5) is a first type of reverse-inclined elliptical enamel tube (10); Each of the first type of reverse-inclined elliptical enamel tubes (10) includes a first type of twisted elliptical tube (14) with hidden connecting plates (13) at both ends; Each of the hidden connecting plates (13) is superposed with the corresponding inclined elliptical enamel tube (4); There is a twisting angle of 5 degrees to 25 degrees between each of the first type of twisted elliptical tubes (14) and the corresponding hidden connecting plates (13) at both ends, and they are all connected to the corresponding inclined elliptical enamel tubes (4) through the hidden connecting plates (13) at both ends.
2. The outdoor self-luminous enamel sign according to claim 1, wherein, For the two inclined elliptical enamel tubes (4) connected to each of the first type of reverse-inclined elliptical enamel tubes (10), the positions near the connection with the corresponding first type of reverse-inclined elliptical enamel tube (10) are superposed with the corresponding first type of reverse-inclined elliptical enamel tube (10), and two fixing part holes (12) are provided, and the corresponding first type of reverse-inclined elliptical enamel tube (10) is fixed by arranging corresponding fixing parts in the corresponding fixing part holes (12); Two fixing part holes (12) are provided on each of the hidden connecting plates (13) of each of the first type of reverse-inclined elliptical enamel tubes (10), and the corresponding inclined elliptical enamel tube (4) is fixed by arranging corresponding fixing parts in the corresponding fixing part holes (12).
3. Outdoor self-luminous enamel signs, which are set outside the pedestrian entrances of buildings or structures, including a support structure (2) set above the ground floor (1); characterized in that: At least two frame enamel plates (3) are provided on the outer side of the support structure (2); Each of the frame enamel plates (3) is horizontally arranged; A plurality of vertically arranged strip components are arranged horizontally between every two adjacent frame enamel plates (3); Each of the strip-shaped components includes obliquely elliptical enamel tubes (4) near the upper and lower ends, and reverse obliquely elliptical enamel tubes (5) located between the corresponding two sections of the obliquely elliptical enamel tubes (4); Between each two adjacent frame enamel plates (3), nested lighting lamps (7) are provided on the upper surface of the corresponding lower frame enamel plate (3); Each of the nested lighting lamps (7) is nested in the corresponding frame enamel plate (3), and the irradiation directions are all towards the middle and upper parts between the corresponding two reverse obliquely elliptical enamel tubes (5) of the support structure (2); The hollow spaces between multiple reverse obliquely elliptical enamel tubes (5) form the name characters or letters of the location of the corresponding support structure (2); An inlaid LOGO plate (6) is provided between the support structure (2) and multiple reverse obliquely elliptical enamel tubes (5); For the part of the support structure (2) corresponding to between each two frame enamel plates (3), a reflective coating (9) is applied to the surface facing the inlaid LOGO plate (6); Each of the reverse obliquely elliptical enamel tubes (5) is a second type of reverse obliquely elliptical enamel tube (11); Each of the second type of reverse obliquely elliptical enamel tubes (11) includes a second type of twisted elliptical tube (15) with hidden connecting plates (13) at both ends; Each of the hidden connecting plates (13) overlaps with the corresponding obliquely elliptical enamel tube (4); There is a twisting angle of 90 degrees to 135 degrees between each of the second type of twisted elliptical tubes (15) and the corresponding hidden connecting plates (13) at both ends, and they are all connected to the corresponding obliquely elliptical enamel tubes (4) through the hidden connecting plates (13) at both ends; 4. The outdoor self-luminous enamel sign according to claim 3, characterized in that, For the two obliquely elliptical enamel tubes (4) connected to each of the second type of reverse obliquely elliptical enamel tubes (11), the positions near the connection with the corresponding second type of reverse obliquely elliptical enamel tube (11) overlap with the corresponding second type of reverse obliquely elliptical enamel tube (11), and two fixing part holes (12) are provided. The corresponding second type of reverse obliquely elliptical enamel tube (11) is fixed by arranging corresponding fixing parts in the corresponding fixing part holes (12); Two fixing part holes (12) are provided on each of the hidden connecting plates (13) of each of the second type of reverse obliquely elliptical enamel tubes (11), and the corresponding obliquely elliptical enamel tube (4) is fixed by arranging corresponding fixing parts in the corresponding fixing part holes (12); 5. The outdoor self-luminous enamel sign according to any one of claims 1 or 3, characterized in that Each of the inlaid LOGO plates (6) is fixedly connected to the support structure (2) through a support bracket (8) on the surface facing the support structure (2).
Citation Information
Patent Citations
In all weather from luminous logo tablet
CN206441490U
Ecofriendly energy-saving light-convergence photoluminescent billboards with photoluminescent enamel signs
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