CN109448600B - Special effect glass - Google Patents
Special effect glass Download PDFInfo
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- CN109448600B CN109448600B CN201811620794.6A CN201811620794A CN109448600B CN 109448600 B CN109448600 B CN 109448600B CN 201811620794 A CN201811620794 A CN 201811620794A CN 109448600 B CN109448600 B CN 109448600B
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- glass
- surrounding edge
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09F—DISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
- G09F19/00—Advertising or display means not otherwise provided for
- G09F19/12—Advertising or display means not otherwise provided for using special optical effects
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- Surface Treatment Of Glass (AREA)
Abstract
The invention relates to special-effect glass, which comprises bearing glass arranged in parallel, wherein a sealing surrounding edge is arranged between gaps of the adjacent bearing glass, discharge needles are arranged on the sealing surrounding edge at equal intervals, each discharge needle is communicated with the anode or the cathode of a discharger, and electrodes connected with the discharge needles on two edges opposite to the sealing surrounding edge are different; transparent regulating liquid is filled in a sealed space enclosed by the sealed surrounding edge and the bearing glass, and fluorescent powder is doped in the regulating liquid; a photosensitive film is laid on the surface of the bearing glass, and the photosensitive film is electrically connected with the processor and the controller; the special-effect glass can show a special effect of fragmentation when being trampled, and the psychological condition that tourists seek stimulation is met; meanwhile, the structure is more efficient and durable, has longer service life, effectively reduces maintenance frequency, lightens workload of maintenance personnel, and simultaneously ensures that the scenic spots can be efficiently and continuously opened.
Description
Technical Field
The invention relates to glass, in particular to special-effect glass.
Background
Glass is a common building material, the performance of the glass is greatly improved along with the improvement of scientific technology, and the glass is endowed with more and more functions; the glass is developed from traditional common glass to heat-insulating glass, peep-proof glass, bulletproof glass, photoelectric glass and the like; the glass greatly improves the life of people, and improves the safety and privacy of living and living on the basis of ensuring that people have clear vision; in addition, along with the increase of the structural strength of the glass, a lot of glass is applied to the projects of building bridges, laying floors and the like, for example, the recently hot and hot suspended bridge scenic spots, the bridge deck is made of transparent glass, so that firm support is provided, visitors can observe the view under the feet, better ornamental experience is provided for the visitors, and the psychological requirement that the visitors seek stimulation is greatly met; some scenic spots even make special effects on glass, when a tourist tramples on the glass, cracks appear in the glass, and greater psychological stimulation is provided for the tourist; however, the display screen is arranged in the special-effect glass for the glass bridge at present, the requirement of the display screen on the use environment is high, the service life of the special-effect glass at a high-altitude scene point with large day-night temperature difference can be obviously shortened, and the damage of the display screen can be accelerated due to the high-frequency display special effect every day; even if a part of the display screen is damaged, the display effect of the whole display screen is influenced; when the display screen is damaged, the maintenance difficulty of the suspension bridge is high, the normal operation of the scenic spot is seriously influenced, and a great work burden is also caused to maintenance personnel.
Disclosure of Invention
Aiming at the problems, the invention provides the special-effect glass which can show a special fragmentation effect when being trampled and meets the psychological requirement that tourists seek stimulation; meanwhile, the structure is more efficient and durable, has longer service life, effectively reduces maintenance frequency, lightens workload of maintenance personnel, and simultaneously ensures that the scenic spots can be efficiently and continuously opened.
In order to solve the problems, the technical scheme adopted by the invention is as follows: the special effect glass comprises bearing glass arranged in parallel, sealing surrounding edges are arranged between gaps of the adjacent bearing glass, discharge needles are arranged on the sealing surrounding edges at equal intervals, each discharge needle is communicated with the positive electrode or the negative electrode of a discharger, and electrodes connected with the discharge needles on two edges opposite to the sealing surrounding edges are different; transparent regulating liquid is filled in a sealed space enclosed by the sealed surrounding edge and the bearing glass, and fluorescent powder is doped in the regulating liquid;
a photosensitive film is laid on the surface of the bearing glass, the photosensitive film is electrically connected with the processor and the controller, and the controller is electrically connected between the discharger and the discharge needles; when the surface of the photosensitive film is shielded by the shadow and transmits signals to the processor, the processor reads the signals and calculates the direction of the line segment with the maximum length in the shadow area, and the controller conducts the circuit of the discharge needle corresponding to the extension lines at the two ends of the line segment according to the calculation result; a protective film is attached to the outer surface of the photosensitive film.
The invention has the beneficial effects that: when no passenger walks, the brightness received on the special glass is balanced, and the discharge needles keep an open circuit state; when a tourist steps on the bearing glass, the sole shields the light of the special glass, and the light received by the position corresponding to the photosensitive film is attenuated rapidly at the moment, namely a shadow area is formed on the photosensitive film; the photosensitive film transmits the signal of the shadow area to the processor, the processor reads the signal and calculates the direction of the line segment with the maximum length in the shadow area, and the controller conducts the circuit of the discharge needle corresponding to the extension lines at the two ends of the line segment according to the calculation result; at the moment, the conducted discharge needles release instant current and generate an excitation effect on the fluorescent powder on the current path, so that the fluorescent powder is promoted to emit light; therefore, when the tourist steps on the special glass, fluorescent lines extending along the tiptoe and heel directions of the tourist appear on the special glass, and the special glass is like the glass which is cracked from the lower part of the foot; because the crack is along the direction of footsteps, the direction is similar to the stress direction of special-effect glass, the glass fragmentation effect can be simulated more vividly, visual experience which is more visual and stimulating is given to a user, and the psychological condition that the user seeks stimulation is met.
Because the structure is filled with the regulating liquid, the regulating liquid can freely move in the sealed space, so that the problems such as 'dead spots' and the like which are easy to appear on the display screen can not occur, and the using effect is more vivid; meanwhile, even if a problem occurs in a single discharge needle, the adjacent discharge needles can replace the operation, and the defect that the special effect cannot be displayed is avoided; therefore, compared with the traditional display screen type glass, the special effect glass can display a special effect more permanently and stably, and the influence on visual experience caused by 'dead spots' is avoided; therefore, the structure can effectively prolong the service life of the special-effect glass, reduce the maintenance frequency and ensure the sustainable and stable operation of scenic spots.
Preferably, the sealing surrounding edge is provided with a liquid injection hole; so as to conveniently and quickly replace the internal regulating liquid and supplement the fluorescent powder; the maintenance and maintenance process is effectively simplified, the maintenance efficiency is improved, and therefore the scenic spot operation time is prolonged.
Preferably, when the discharge needles corresponding to the extension lines at the two ends of the line segment are damaged, the controller conducts the adjacent discharge needles; the structure can greatly prolong the service life of the special glass and prolong the maintenance period.
Preferably, microbeads made of ferromagnetic materials are arranged in the sealed space; when maintenance work such as supplement of fluorescent powder and adjustment liquid is carried out, maintenance personnel pull the micro-beads to do circular motion through the permanent magnet suction pieces, so that internal adjustment liquid can be stirred, rapid and uniform fusion of new and old adjustment liquid or fluorescent powder is promoted, and the visual effect of special-effect glass is improved.
Drawings
FIG. 1 is a schematic cross-sectional structure diagram of one embodiment of the special effect glass.
Fig. 2 is a schematic top view of the embodiment shown in fig. 1.
Fig. 3 is a signal processing flow diagram of the embodiment shown in fig. 1.
Detailed Description
Example (b):
in the embodiment shown in fig. 1, 2 and 3, the special effect glass comprises bearing glass 1 arranged in parallel, sealing surrounding edges 2 are arranged between gaps of the adjacent bearing glass 1, discharge needles 3 are equidistantly arranged on the sealing surrounding edges 2, each discharge needle 3 is communicated with a positive electrode or a negative electrode of a discharger, and electrodes connected with the discharge needles 3 on two opposite edges of the sealing surrounding edges 2 are different; transparent regulating liquid is filled in a sealed space 4 enclosed by the sealing surrounding edge 2 and the bearing glass 1, and fluorescent powder is doped in the regulating liquid; the sealing surrounding edge 2 is provided with a liquid injection hole 21; a micro bead 41 made of a ferromagnetic material is arranged in the sealed space 4;
a photosensitive film 5 is laid on the surface of the bearing glass 1, the photosensitive film 5 is electrically connected with a processor 6 and a controller 7, and the controller 7 is electrically connected between a discharger and the discharge needles 3; when the surface of the photosensitive film 5 is shaded by the shadow and transmits signals to the processor 6, the processor 6 reads the signals and calculates the direction of the line segment with the maximum length in the shadow area, and the controller 7 conducts the circuit of the discharge needle 3 corresponding to the extension lines at the two ends of the line segment according to the calculation result; as shown in fig. 2; when the discharge needles 3 corresponding to the extension lines at the two ends of the line segment are damaged, the controller 7 conducts the adjacent discharge needles 3; a protective film 51 is attached to the outer surface of the photosensitive film 5.
When no passenger walks, the brightness received by the special glass is balanced, and the discharge needles 3 keep an open circuit state; when a tourist steps on the bearing glass 1, the sole shields the light of the special glass, at the moment, the light received by the position corresponding to the photosensitive film 5 is attenuated rapidly, and a shadow area is formed on the photosensitive film 5; the photosensitive film 5 transmits the signal of the shadow area to the processor 6, the processor 6 reads the signal and calculates the direction of the line segment with the maximum length in the shadow area, and the controller 7 conducts the circuit of the discharge needle 3 corresponding to the extension lines at the two ends of the line segment according to the calculation result; at this time, the conducted discharge needles 3 release instant current and generate excitation action on the fluorescent powder on the current path, so as to promote the fluorescent powder to emit light; therefore, when the tourist steps on the special glass, fluorescent lines extending along the tiptoe and heel directions of the tourist appear on the special glass, and the special glass is like the glass which is cracked from the lower part of the foot; because the crack is along the direction of footsteps, the direction is similar to the stress direction of special-effect glass, the glass fragmentation effect can be simulated more vividly, visual experience which is more visual and stimulating is given to a user, and the psychological condition that the user seeks stimulation is met.
Because the structure is filled with the regulating liquid, the regulating liquid can freely move in the sealed space 4, so that the problems such as 'dead spots' and the like which are easy to appear on a display screen can not occur, and the using effect is more vivid; meanwhile, even if a problem occurs in a single discharge needle 3, the adjacent discharge needles 3 can replace the operation, the normal operation of the whole project cannot be influenced, and the defect that the special effect cannot be displayed cannot occur; therefore, compared with the traditional display screen type glass, the special effect glass can display a special effect more permanently and stably, and the influence on visual experience caused by 'dead spots' is avoided; therefore, the structure can effectively prolong the service life of the special-effect glass, reduce the maintenance frequency and ensure the sustainable and stable operation of scenic spots.
In addition, in the aspect of maintenance, a maintenance worker can quickly replace internal regulating liquid and supplement fluorescent powder through the liquid injection hole 21 so as to refresh the cleanliness and the display effect of the special glass, and therefore the service life of the special glass is prolonged; in addition, when maintenance work such as fluorescent powder supplement and adjustment liquid is carried out, maintenance personnel can pull the micro-beads 41 from the outside to do circular motion through the permanent magnet suction pieces, so that the internal adjustment liquid can be stirred, the rapid and uniform fusion of new and old adjustment liquid or fluorescent powder is promoted, and the visual effect of the special-effect glass is improved; in addition, the protective layer provided on the outer surface of the photosensitive film 5 may be replaced periodically; in conclusion, various maintenance works can be carried out on the premise of no disassembly, the working strength is effectively reduced, the maintenance efficiency is improved, the special-effect glass can be continuously used for a long time, and the normal stable opening of scenic spots is ensured.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.
Claims (4)
1. The utility model provides a special effect glass, this special effect glass is provided with sealed surrounding edge (2) between the space of adjacent bearing glass (1) including parallel arrangement's bearing glass (1), its characterized in that: the discharge needles (3) are arranged on the sealing surrounding edge (2) at equal intervals, each discharge needle (3) is communicated with the positive electrode or the negative electrode of the discharger, and the electrodes connected with the discharge needles (3) on the two sides opposite to the sealing surrounding edge (2) are different; transparent regulating liquid is filled in a sealed space (4) enclosed by the sealed surrounding edge (2) and the bearing glass (1), and fluorescent powder is doped in the regulating liquid;
a photosensitive film (5) is laid on the surface of the bearing glass (1), the photosensitive film (5) is electrically connected with a processor (6) and a controller (7), and the controller (7) is electrically connected between a discharger and a discharge needle (3); transmitting a signal to a processor (6) when the surface of the photosensitive film (5) is shielded by a shadow, reading the signal by the processor (6) and calculating the direction of a line segment with the maximum length in a shadow area, and conducting a circuit of the discharge needle (3) corresponding to extension lines at two ends of the line segment by a controller (7) according to a calculation result; a protective film (51) is attached to the outer surface of the photosensitive film (5).
2. The special effect glass according to claim 1, characterized in that: when the discharge needles (3) corresponding to the extension lines at the two ends of the line segment are damaged, the controller (7) conducts the adjacent discharge needles (3).
3. The special effect glass according to claim 1 or 2, characterized in that: the sealing surrounding edge (2) is provided with a liquid injection hole (21).
4. The special effect glass of claim 3, wherein: and micro beads (41) made of ferromagnetic materials are arranged in the sealed space (4).
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CN201811620794.6A CN109448600B (en) | 2018-12-28 | 2018-12-28 | Special effect glass |
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CN201811620794.6A CN109448600B (en) | 2018-12-28 | 2018-12-28 | Special effect glass |
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CN109448600B true CN109448600B (en) | 2020-12-18 |
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JP4567041B2 (en) * | 2007-09-28 | 2010-10-20 | 双葉電子工業株式会社 | In-vehicle fluorescent display tube and manufacturing method thereof |
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CN104746796B (en) * | 2015-03-27 | 2017-08-29 | 南通久立安全玻璃有限公司 | Special efficacy glass wall |
CN105575530B (en) * | 2015-08-27 | 2017-12-12 | 浙江亘古电缆股份有限公司 | Glisten cable |
CN107819047B (en) * | 2016-05-13 | 2019-06-21 | 广东大粤新能源科技股份有限公司 | A kind of solar energy photovoltaic component |
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CN201341269Y (en) * | 2009-01-09 | 2009-11-04 | 黄于展 | Oscillating high-energy accelerator of electric static particles |
JP2016113325A (en) * | 2014-12-16 | 2016-06-23 | 日本電気硝子株式会社 | Production method of glass |
CN208014700U (en) * | 2018-04-13 | 2018-10-26 | 深圳市阿赛姆科技有限公司 | A kind of ESD device structure |
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Effective date of registration: 20201130 Address after: No.6 Gangxing street, Haigang village, Shenwan Town, Zhongshan City, Guangdong Province Applicant after: Guangdong Hengbo engineering glass Co., Ltd Address before: Wujiang Pingwang Town District of Suzhou City, Jiangsu province 215000 Yang village committee Applicant before: Zhu Xiaoju |
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