WO2006125377A1 - Verre refractant a ecartement pris en sandwich par un adhesif - Google Patents

Verre refractant a ecartement pris en sandwich par un adhesif Download PDF

Info

Publication number
WO2006125377A1
WO2006125377A1 PCT/CN2006/001026 CN2006001026W WO2006125377A1 WO 2006125377 A1 WO2006125377 A1 WO 2006125377A1 CN 2006001026 W CN2006001026 W CN 2006001026W WO 2006125377 A1 WO2006125377 A1 WO 2006125377A1
Authority
WO
WIPO (PCT)
Prior art keywords
glass
slit
strip
strips
glass plate
Prior art date
Application number
PCT/CN2006/001026
Other languages
English (en)
Chinese (zh)
Inventor
Jianwei Cui
Original Assignee
Jianwei Cui
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
Application filed by Jianwei Cui filed Critical Jianwei Cui
Publication of WO2006125377A1 publication Critical patent/WO2006125377A1/fr

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B17/00Layered products essentially comprising sheet glass, or glass, slag, or like fibres
    • B32B17/06Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B3/00Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar form; Layered products having particular features of form
    • B32B3/10Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar form; Layered products having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material
    • B32B3/18Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar form; Layered products having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material characterised by an internal layer formed of separate pieces of material which are juxtaposed side-by-side
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C27/00Joining pieces of glass to pieces of other inorganic material; Joining glass to glass other than by fusing
    • C03C27/06Joining glass to glass by processes other than fusing
    • C03C27/10Joining glass to glass by processes other than fusing with the aid of adhesive specially adapted for that purpose
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/54Slab-like translucent elements
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B2009/2417Light path control; means to control reflection

Definitions

  • the present invention relates to a glazing glass on a building, more specifically to a cleavage slitting type glazing glass having a certain refractive function, and also relates to a slit-like refracting of a similar decorative ice-like flower (groove gap) glass. glass. Background technique
  • the product which is close to the laminated gap refractive glass of the present invention has a laminated glass (also known as ice glass), which can be found only in the Chinese Patent Office, such as June 2, 1995.
  • "Ice Flower Safety Glass” applied by Guangdong Lunjiao Automobile Glass Co., Ltd., patent number is 952146711.
  • the ice glass is a broken glass plate which is covered with a crack gap through a transparent film in a double-layer ordinary glass plate, and is formed by pieces naturally generated by the crushing of the semi-tempered glass. After entering the inside of the ice glass, the light from above enters the phenomenon of total internal reflection when the crack gap is encountered.
  • the light changes the original direction of propagation, and is "folded" to the upper side of the glass plate or the other side of the glass plate. Other directions. Therefore, the ice (fragmented crack) glass will be very dazzling under the downward light, and it is therefore popular.
  • the main object of the present invention is to provide a laminated gap refractive glass product, which is placed in the visual level of people in the building.
  • a laminated gap refractive glass product which is placed in the visual level of people in the building.
  • people stand on the indoor floor and look at the human vision without causing very serious glare.
  • some of the light that should be directed at the floor of the house is reflected on the ceiling of the house, and it can also become Another decorative glass that is different from "ice (flower) glass” is also more beautiful and practical;
  • Another object of the present invention is to provide a laminated gap refractive glass product which has the characteristics that the gap is small and easy to manufacture;
  • a third object of the present invention is to provide a laminated gap refractive glass product having a characteristic of "refractive" brightness
  • the fourth object of the present invention is to provide a laminated gap refraction glass product, the main feature of which is that when it is used on the sunny side of the building, such as the south side, most of the sunlight passing through the glass can be sprinkled on the floor inside the house during winter lighting. Reflecting a small portion of the sunlight on the ceiling of the house, more sunlight can be reflected through the glass to the ceiling of the house during the summer light, thus having a certain energy-saving function or improving the calendering effect;
  • a fifth object of the present invention is to provide a laminated gap refractive glass product which has better visual effects and decorative functions when used;
  • a sixth to a tenth object of the present invention is to provide a slit refractive glass product of five different colors, respectively.
  • the object of the present invention is to provide a slit refractive glass product which has a slit refractive function in addition to the slit refractive index function. Point refraction function;
  • a twelfth object of the present invention is to provide a slit-refractive glass product, the upper portion of which has a certain function of the slit-refractive glass, and the lower portion retains the advantage that the flat glass has a good effect;
  • the slit refractive glass works in the same way as this phenomenon. It is a laminated glass structure consisting of a combination of three transparent glass plates and two transparent plastic films. A layer of glass plate with a gap is sandwiched by a two-layer transparent film.
  • a laminated glass structure comprising a transparent plastic film sandwiched between two transparent glass plates, in which case one of the two glass plates is a glass plate with a gap.
  • one of the two glass plates is a glass plate with a gap.
  • On the glass plate surface of the above-mentioned laminated glass more than 20% of the inner surface of the transparent glass is pasted with a transparent adhesive film, and a layer of glass sheets with a special shape of glass strips of the same type is laminated, here ""glassstrip" refers to a glass sheet whose ratio of length to width exceeds at least 4.0.
  • each glass strip has a pair of upper and lower slit end faces (the uppermost or lowermost glass) Except for the strip), a pair of left and right end faces and a pair of front and rear glass strip planes, wherein at least one of the glass strip planes in the front and rear of the glass strip is pasted on the whole flat glass plate, and the glass strip is upper and lower Gap The orientation of the end faces is parallel.
  • the special shape glass strips are respectively the following three types, the first type is "rectangular" glass strips (that is, the upper and lower slit end faces of the glass strip are the same plane and the upper and lower slit end faces are parallel to each other), and the second type is "arc-shaped" glass.
  • the strips ie, the upper and lower end faces of the glass strip are curved curved curved surfaces and the upper and lower curved surfaces are parallel to each other
  • the third type is in the upper and lower slit end faces of the glass strip, at least one slit end face is adjacent to the adjacent glass
  • Each glass strip of the same type has the same thickness and the same length, and the shape of the gap between the upper and lower sides coincides with each other when splicing.
  • the glass strips are arranged horizontally from left to right, and are arranged one after another in the longitudinal direction.
  • the "shapes coincide with each other" means that when the two upper and lower adjacent glass strips are arranged in close together, the slit end faces are arranged together. There are no obvious gaps in the middle.
  • two glass strips are disposed in the splicing slit for each light glazing film, or two glass strips in the slit glass sheet are spliced.
  • the term "light-reflecting film” as used herein means that two glass strips adjacent to each other are provided with a film or sheet capable of reflecting light at the splicing slit, which may be at least in the upper and lower slit end faces of each of the glass strips.
  • the "thickness” of the glass strip referred to here is also the thickness of the slit glass sheet which is formed by the special shape glass strip; the "width” of the glass strip here refers to the glass strip as “rectangular glass strip” and “arc shape” The glass strip “or the shortest distance between the upper and lower slit ends of the glass strip”.
  • the "glued gap refractive glass” also has the same “refractive phenomenon” (when the reflective film structure is used between the upper and lower glass strips, the brightness of the "refractive” is greater than the “total internal reflection” type structure. The brightness is reduced.)
  • the solution (-) in the gap of the laminated glass can be another type.
  • Decorative glass can be made into the refractive glass without a vertical slit. When the glass is applied to a place above the visual line of the building, it is for indoor people.
  • the key role of the slit refractive glass is a strip of "slit".
  • the "glued gap refractive glass” can make people have larger according to the needs of the "gap” pattern and the "gap” spacing.
  • This scheme adopts a structure in which a reflective film is disposed between the upper and lower glass strips, and the production is easy, and the two long glass strips are put together when cut from the glass plate, no matter how close it is. There is a certain gap.
  • the reflection film used in this scheme between the glass strips can not directly eliminate the existing gaps, whether it is a film or a film, but the gap can be filled by pouring a transparent adhesive.
  • the refractive index of the transparent adhesive is similar to that of the glass, so it can be visually close to eliminate the stitching gap.
  • the horizontal visual effect of this glass is similar to that of ordinary flat glass.
  • the ratio of the light reflectance to the total internal reflection type structure in the slits in the refractive glass may be lowered, but the actual reflectance of the film is generally considered to be Be higher.
  • the space distance of the isolation is greater than the distance between the light in the slotted glass plate when the space area in the slot is to be spliced, so that the total internal reflection phenomenon disappears but not more than 3 mm, or two adjacent each other
  • a flat transparent film tube is provided between the glass strips for arranging the air isolation space at the splicing gap, and there is a space separated by air in the flat transparent film tube, and the space distance of the air isolation is greater than the light is located in the slat glass plate.
  • the solution used in this scheme is to provide a space separated by air between the upper and lower glass strips, and the "refraction phenomenon" is all inside. Due to reflection, the light reflectance of each slit in the laminated glass of the laminated glass can reach 100%, and the efficiency is relatively high.
  • the isolated space distance between the two glasses to cause the total internal reflection phenomenon to disappear is less than 0.5 ⁇ m, and the smaller the splicing gap is, the better the splicing gap is made with the PVB film, but when the glass is made of an acrylic adhesive, If some components in the glue are not fully cured, they will seep out from the small space gaps separated by air during use, and eventually fill the gaps to make the total internal reflection disappear, so the stitching gap is not The smaller the better, but it should not exceed 3 mm. The larger the gap, the worse the vision.
  • the method of pre-burying the "flat transparent film tube" at the splicing gap by the present scheme can better solve the above problems.
  • the product features of the solution are: a slit glass plate which is spliced by a special shape glass strip, which is pasted on the inner side of the whole flat transparent glass from above.
  • a slit glass plate which is spliced by a special shape glass strip, which is pasted on the inner side of the whole flat transparent glass from above.
  • the upper part or the whole part of the slit glass plate is composed of a plurality of glass strips having the same width and width, and the thickness of each glass strip is The ratio of widths is between 1 and 1 to 1 to 7.
  • the "glued gap refraction glass” has a regular geometric line gap pattern arrangement. Ordered, with the help of "refraction phenomenon” has a certain decorative effect. However, when the ratio of the thickness to the width ratio of the special shape glass strip constituting the slit glass plate is large, the decorative effect is also reduced. Because the inside of the slit-refractive glass is formed by the gap, the brighter "anti-light strip” will become closer and closer. In severe cases, the bright and dense "anti-light strip” will reach or exceed 50% of the total area. The brightness is very fast. Catch up with a mirror, this high brightness obviously has no decorative effect, but the energy saving effect is also revealed. Taking the geographical location of Shenyang, China at 41.
  • the “glued gap refractive glass” is applied to the window facing the south of the building, and the glass strip with the slit glass plate is formed.
  • the ratio of different thickness to width ratios is different for the ratio of sunlight to the floor and the total amount of ceiling.
  • Table 1 shows the use of "rectangular glass strips” in different cases. The detailed values obtained by calculating the total amount of sunlight and the ceiling in the house, wherein 90 days in summer refers to 45 days before and after the "Summer Solstice" day, and 90 days in winter refers to the "Winter Solstice” day as the center. 45 days before and after. The reflectance is calculated as 100%.
  • Glass refractive index 1. 51 The ratio of the thickness to the width of a rectangular glass strip on the horizontal slit refractive function
  • a slit glass plate which is spliced by a special shape glass strip, is pasted in the whole
  • the inner side of the transparent glass of the flat plate accounts for more than 20% of the total surface of the glass plate from the top, and at the same time, a part or the whole part of the slit glass plate is made up of a plurality of glass whose width dimension is increased or increased and decreased.
  • the strips are arranged in series, that is, in a part of the slotted glass plate or in the entire part of the slotted glass plate, the spacing between the stitching slits and the slits is increased or increased in order, and Alternate.
  • the gradation of the gap between the slit and the slit in the product of the technical solution can improve the visual effect of the slit refractive glass and enhance the decorative effect in some occasions.
  • this special shape glass strips into a slit glass plate It is composed of several rectangular glass strips. That is, the slit pattern formed by the splicing slits between the glass strips in the slit glass plate is a series of horizontal horizontal parallel linear slit arrangement patterns.
  • the product of the technical solution is slightly different from the product of the scheme.
  • the slit pattern formed by the splicing slit in the spliced slotted glass plate is arranged in a convex arc parallel curve slit pattern or a concave arc parallel curve slit arrangement pattern.
  • the decorative effect is better than the product in the scheme.
  • the upper convex arc parallel curve slit reflects a part of the light which should be directed to the inner floor of the house to the ceiling of the house, and has a slightly divergent function;
  • the concave arc parallel curve slit reflects a part of the light which should be directed to the interior of the house to the ceiling of the house, and has a slight convergence function.
  • the product feature of the present scheme is that the slit glass plate which is formed by the special shape glass strip is It consists of several sawtooth-shaped slit end face glass strips.
  • the product of the technical solution is also slightly different from the product in the scheme, and the slit pattern formed by the splicing slit in the spliced slit glass plate is arranged in a parallel curve slit pattern of sawtooth shape, and the decorative effect is better than the scheme in some occasions. ⁇ Medium product.
  • this special shape glass strips into a slit glass plate is It is composed of a plurality of trapezoidal stepped wave-shaped slit end face glass strips.
  • the product of this technical solution is a product which is slightly different from the product in the scheme ( ⁇ ).
  • the slit glass plate which is formed by the special shape glass strip is It consists of several water wave shape slit end face glass strips.
  • the product of the technical solution is slightly different from the product in the scheme ( ⁇ ), wherein the slit pattern formed by the splicing gap is arranged in a parallel pattern of water wave shapes, and the decorative effect in some occasions is better than that in the scheme (8). .
  • the lighting glass is used when the laminated glass is placed perpendicular to the ground. Shining will bring a very serious glare to people's vision, which can't be tolerated.
  • this single-sided slit-folding glass has a certain influence on the function that people need at any time. Therefore, there is a product in the present scheme, the upper part of the lighting glass has the energy-saving or decorative function of the slit-refractive glass, and the lower part retains the advantage that the flat glass has a good effect.
  • the products in this scheme have at least the following two forms of expression: one is that no other glass plate is pasted on the inward side of the whole flat transparent glass; the other is on the inner side of the whole flat transparent glass. There is no corresponding paste on the spliced slotted glass plate, and the remaining plate surface has another flat transparent glass plate that is pasted through the transparent film.
  • This product has higher strength in the lower part, and its overall More beautiful.
  • the laminated gap refractive glass of the present invention is a function of "refractive phenomenon" in a glass plate by a series of horizontally parallel parallel straight slits or parallel curved slits.
  • this product is also useful for improving the lighting effect in the house when it is used as a lighting glass. It can transmit the outdoor light into the house like a transparent flat glass, but it is newly distributed. Part of the "gap" density of the product also has some energy-saving effects.
  • FIG. 1 is a schematic perspective view showing an embodiment of a two-layer glass structure laminated slit refractive glass according to the present invention, wherein a single flat transparent glass plate in a laminated slit refractive glass and a transparent adhesive film for pasting, Only a small portion is exposed because it is pressed underneath, and the spliced slit glass plate faces substantially toward the viewer. The upper right corner of the figure removes the upper part to expose the structure below this part.
  • Figure 2 is a schematic view of a rectangular glass strip constituting the spliced glass sheet of Figure 1.
  • Fig. 3 is a plan view showing an embodiment of a "rectangular glass strip" for use in a two-layer glass structure laminated slit-refractive glass according to the present invention, wherein the spliced slit glass sheet faces one side of the viewer.
  • Fig. 4 is a plan view showing an embodiment in which a "circular glass strip" is used in a two-layer glass structure laminated slit refractive glass according to the present invention, wherein the spliced slit glass sheet faces one side of the viewer.
  • Fig. 5 is a plan view showing still another embodiment of the "circular arc-shaped glass strip" used in the two-layer glass structure laminated slit-refractive glass according to the present invention, wherein the spliced slit glass sheet faces one side of the viewer.
  • Figure 6 is a top longitudinal cross-sectional view showing an embodiment in which a "rectangular glass strip" is used in a two-layer glass structure laminated slit refractive glass according to the present invention.
  • Figure 7 is a plan view showing an embodiment of a glass strip having a two-layer glass structure with a gap of only one waveform period and having both upper and lower sides of the "water wave shape slit end face" as described in the present invention.
  • the slit glass plate faces one side of the viewer.
  • Fig. 8 is a schematic diagram of four waveform slit patterns, wherein: a sawtooth wave shape slit pattern, a 30. trapezoidal step wave pattern slit pattern, 31. a water wave shape slit pattern 32. a single side tooth wave shape slit pattern.
  • Figure 9 is a plan view of three different shapes of glass strips of the same type - "sawtooth-shaped slit end face", wherein 35. the upper and lower sides are the same as the “sawtooth-shaped slit end face” and the bilaterally symmetrical glass strips, 36. Bilateral glass strips with “sawtooth-shaped slit end faces” and bilaterally synchronized, 37.
  • the upper side is a "sawtooth-shaped slit end face” with a flat glass strip underneath, and three glass strips are bonded to the entire flat transparent glass plate. One side faces the viewer.
  • Figure 10 is a plan view of three different shapes of glass strips of the same type - ", trapezoidal step wave-shaped slit end face", wherein 38.
  • the upper and lower sides are the same as the "trapezoidal step wave-shaped slit end face” and the bilaterally symmetrical glass strips, 39.
  • the upper and lower sides are the same as the "trapezoidal step wave-shaped slit end face” and the bilaterally synchronized glass strips, 40.
  • the upper side is the "trapezoidal stepped wave-shaped slit end face”
  • the lower side is a flat glass strip, and the three glass strips are bonded to the whole flat transparent glass plate. The side faces the viewer.
  • Figure 11 is a plan view of three different shapes of glass strips having the same type of one-to-one "water wave shape slit end face", wherein 41. the upper and lower sides are the same as the “water wave shape slit end face” and the bilaterally symmetric glass strips, 42. The same as the “water wave shape slit end face” and the bilateral direction of the synchronization of the glass strip, 43. The upper side is the “water wave shape slit end face" under the flat glass strip, the three glass strips and the whole flat transparent glass plate side of the side of the observation By.
  • Figure 12 is a longitudinal cross-sectional view showing a partial structure of a two-layer glass structure laminated slit refractive glass composed of a rectangular glass strip.
  • the following four reference numerals indicate common technical features that are common to three types of glass strips (ie, "rectangular glass strips”, “arc-shaped glass strips”, and “wave-shaped slit end glass strips”).
  • Other reference numerals indicate a single feature.
  • “Slab transparent glass” as used in this specification refers to a soda lime silicate plate glass including float production;
  • transparent film means a transparent adhesive solution or a PVB film (with polyvinyl butyral)
  • the adhesive layer formed by the transparent film made of the main component, the transparent adhesive liquid includes a shadowless adhesive, a photosensitive acrylic resin adhesive, and some light-resistant adhesives known in the art for bonding large-area glass plates, for the splicing gap.
  • the "transparent film” may even be a transparent liquid that is never dry, and the gap of the three-layer glass structure is at this time.
  • the edge of the refractive glass must be elastically sealed;
  • flat transparent film tube refers to a transparent tube-shaped transparent plastic film tube in the form of a flat tube made of transparent material for separating the glue from the air. Close the diaphragm.
  • FIG. 1 is a perspective view for explaining an embodiment of a laminated glass fringe according to the present invention, which is formed by splicing a rectangular glass strip into a "slit glass sheet", and is a transparent plastic layer sandwiched between two transparent glass sheets.
  • the laminated glass structure of the film, the upper part of the upper layer of the two-layer glass plate is a glass plate with slits, the whole piece of flat transparent glass plate 1 in the laminated glass of the laminated glass, and the transparent adhesive film 2 for sticking glass It is pressed underneath and only a small part is exposed.
  • the side of the "spliced glass plate” is generally facing the viewer.
  • the whole flat transparent glass 1 is a soda lime silicate flat transparent glass (preferably produced by avoltaic process), and the thickness of the flat glass 1 is four millimeters in a two-layer glass structure (for example, when a three-layer glass structure is used) For other dimensions, it is also possible to use other thickness specifications.
  • the transparent film 2 is a photosensitive acrylic resin adhesive, such as WSJ-655-1 type glass adhesive, the thickness of the adhesive layer is 1/10 mm (or other thickness), and it can also use shadowless glue, PVB film or the technical field. Some light-resistant adhesives are known for bonding large-area glass sheets.
  • a slit glass plate (not only referred to as a rectangular glass strip 3 but also composed of a circular-shaped glass strip 18 or a glass strip of a wave-shaped slit end face), which is generally adhered to a flat transparent glass during production. 1
  • On the inner surface of any part of the inside for example, it is stuck on the left and right sides of the glass, or on the upper and lower sides, etc., 20% or more of the glass surface, but for products applied in most places, it is preferable to stick it on the whole flat transparent glass.
  • the glass plate with slits in Fig. 1 is formed by eleven rectangular glass strips 3 of the same type and the same width.
  • the number of rectangular glass strips 3 in the slit glass plate in Fig. 1 is only Actual glass size moment 1°
  • the number of slits of the rectangular glass strips 3 and the intersection of the glass strips on the side of the whole glass sheet 1 is 90° ⁇ 8. 5°
  • the thickness of each rectangular glass strip is uniform.
  • the lengths are equal and the shapes between the upper and lower sides coincide with each other.
  • the ratio of the thickness 7 of the rectangular glass strip 3 to the width 8 thereof is 1 to 1.1.
  • the ratio of the thickness 7 of each rectangular glass strip to its width 8 can be selected between 1 and 0.8 to 1 to 25 according to the user's needs, and the rectangular strips of the same thickness for the arrangement can have a width of 8 Consistently, it can also be varied.
  • a rectangular glass strip having a width of 8 or a rectangular glass strip having a width of 8 is used to splicing the slit glass sheet.
  • the ratio of the thickness 7 of each rectangular glass strip to the width 8 When the ratio of the thickness 7 of each rectangular glass strip to the width 8 is large, it is more suitable for lighting glass, and the energy saving function and the improvement of the lighting effect are stronger; when the ratio of the thickness 7 of each rectangular glass strip to its width 8 is When they are small, it is suitable for lighting glass and also suitable for decorative glass, but its energy-saving function and the effect of improving the dawn are weak.
  • the slit glass plate which is spliced by the rectangular glass strip 3 in Fig. 1 can also be replaced by a slit glass plate which is formed by arranging the circular glass strips 18, and the slit end faces of the circular arc-shaped glass strips 18
  • the angle of intersection of the glass strips adhered to the one side of the whole glass sheet 1 is 90° ⁇ 8. 5°, the thickness of the glass strips is uniform, the lengths are equal, and the shapes between the upper and lower sides coincide with each other.
  • each of the arc-shaped glass strips 18 is arranged horizontally from top to bottom in a horizontal direction, and the arc tops of the glass strips are uniformly arranged upward or uniformly downward and vertically arranged in a row, and the topmost glass strip and The bottom glass strips are made separately.
  • the ratio of the thickness 7 of each of the circular glass strips to its width 8 can be selected between 1 and 0.8 to 1 to 25 according to the user's needs, and the circular strips of the same thickness for the arrangement are arranged. They may be uniform in width or may be varied, preferably by using a circular-shaped glass strip of uniform width or a circular-shaped glass strip of a gradual gradient to splicing the slit glass sheet. Other results are almost the same as when the rectangular glass strip 3 is spliced with a slit glass plate.
  • the slit glass plate spliced by the rectangular glass strip 3 in Fig. 1 can also be replaced by a slit glass plate which is formed by splicing the end face glass strip with a corrugated slit, which are respectively shown in Fig. 8.
  • waveform slit patterns which are: a sawtooth wave shape 29 slit pattern, a trapezoidal step wave wave 30 slit pattern, a water wave shape 31 slit pattern, and a unilateral tooth wave shape 32 slit pattern, and the "waveform slit pattern" is not limited to FIG.
  • the four types can also have other waveform slits, such as rectangular stepped wave slits, and even inverted trapezoidal stepped wave slits can be made, but the four waveform slit patterns given in Fig. 8 are recommended.
  • FIG. 9, FIG. 10, and FIG. 11 respectively show three different shape glass strips having the waveforms of the first three waveform slit patterns in FIG. 8, and one of the same type of waveforms can be used when stitching the slit glass sheets.
  • the shape of the glass strip constitutes a single-structured slit glass plate, and a slit glass plate of a combined structure may be formed by using one or more kinds of glass strips of the same type of waveform.
  • the slotted glass plate is spliced with a slotted glass plate and used as a decorative glass, it is recommended to use the falling wavefront 33 and the rising wavefront in each complete sawtooth wave on the slot end face of the sawtooth wave shape 29. 34, the angle of intersection is 90 ° ⁇ 8. 5 °, the product is special in its Only the slit refraction function also has the effect of refraction at the "intersection point".
  • the gap between the slit end face of the glass strip end of each wave slit and the side of the glass strip adhered to the whole glass plate 1 is 90° ⁇ 8. 5°, the thickness of the glass strip is uniform, the length is equal, and the shapes of the upper and lower sides are consistent with each other. .
  • the glass strips of the end faces of the corrugated slits are arranged horizontally from left to right, and are arranged in a row in the longitudinal direction.
  • the top glass strip and the bottom glass strip of the slit glass plate can be separately produced.
  • the ratio of the thickness 7 of the strip end face glass strip to its width 8 can be selected according to the user's needs between 1 and 0.8 to 1 to 25, and the strips of the same thickness are used for the strips. They may be uniform in width or may be varied, preferably by using a width-induced wave-stacked end glass strip or a gradually-graded corrugated slit end glass strip to splicing the slitted glass sheet. Other results are substantially the same as those in the case of splicing a slit glass plate with a rectangular glass strip 3, and are not repeated.
  • the above three types of special shaped glass strips are generally cut from transparent flat glass, wherein the rectangular glass strips 3, the arc-shaped glass strips 18 and the wave-shaped end face glass strips in the water wave shape 31 are part of the slit end glass strips.
  • their ratio of thickness 7 to width 8 is less than 1 to 5, they can be cut directly from the flat glass by hand cutting tools.
  • Other types or other ratios of glass strips are applied by carbon dioxide laser, Nd: YAG laser from ordinary It can be cut on the flat transparent glass.
  • various shaped glass strips can be cut by high-pressure water jet technology.
  • the glass strip is generally cut from a flat transparent glass plate having a thickness of one millimeter to ten millimeters.
  • Fig. 1 there are eleven rectangular glass strips 3 in the slit glass plate, which are cut from a five-thick transparent glass plate by a laser cutter, and the width 8 is five and a half.
  • the structure having the light reflecting film may be coated or plated or attached with a light reflecting film on at least one of the upper and lower slit end faces of each of the glass strips, or coated on the upper and lower end faces of each of the glass strips or Plating or affixing the light reflecting film may also be such that the adjacent two glass strips have a metal substrate reflective film or a plastic substrate reflective film sandwiched at the splicing gap, and the reflective film can be directly purchased on the market, after being cut.
  • the shape area is consistent with the end face of the glass strip, and is sandwiched between the upper and lower glass strip splicing slits 4.
  • a transparent adhesive is poured between each glass strip and the glass sheet 1 and between the glass strips and the glass strip splicing gap 4 to be cured, and the excess glue is removed after the curing, thereby forming a double-layer glass structure clip.
  • Glue slit refractive glass this configuration is preferred in the embodiment of Figure 1). If a single piece of flat transparent glass is attached to the surface of the laminated glass plate with the slit glass plate exposed to the laminated glass, the laminated glass of the laminated glass can be made into a three-layer glass structure.
  • the transparent adhesive forming the film 2 is conveniently made by using a photosensitive resin type.
  • each of the two adjacent glass strips has a space separated by air at the splicing gap 4, and the air is isolated.
  • the spatial distance 9 is larger than the distance between the light in the slotted glass plate when the space in the slot 4 is to be spliced, so that the total internal reflection phenomenon disappears, but the distance is not more than 3 mm.
  • This method is more suitable for the gap made of PVB film. Refractive glass. It is generally considered that the distance between the two glasses that causes the total internal reflection phenomenon to disappear is less than 0.5 ⁇ m, and the two longer glass strips are placed together after being cut from the glass plate and are generally larger than the distance.
  • the glass strips should be as close as possible, and the smaller the gap, the better, but if the glass is made with an acrylic adhesive, if the glue is not sufficient During the process of curing, it will ooze out from the narrow space gap separated by air, and finally fill the gap between the glass strips to make the total internal reflection disappear, so the stitching gap is not as small as possible, but not Should be more than 3 mm, the larger the stitching gap, the worse the vision.
  • the transparent adhesive forming the film 2 can only be selected from the photosensitive resin type. If the laminated glass of the laminated glass of Fig.
  • the spatial distance 9 of the rectangular glass strip 3 separated by air at the splicing slit 4 is one and a half millimeters.
  • a photosensitive transparent adhesive such as WSJ-655-1 type glue station agent is dropped between each rectangular glass strip 3 and the flat glass 1, so that the thickness of the adhesive layer is about 1/10 mm, at this time in the splicing gap 4.
  • a part of the adhesive is also collected, and a certain dose of ultraviolet rays is irradiated first, and when the thickness between the rectangular glass strips 3 and the flat glass 1 is about 1/10 mm, the adhesive layer is gathered in the splicing gap 4 at the same time.
  • the double-layer glass (or triple-layer glass) is sent to a self-made open centrifuge for centrifugal rotation, and the adhesive accumulated in the splicing slit 4 is removed, and the ultraviolet rays are irradiated while rotating, and the rotation speed is slow and fast. Until it is fully cured.
  • the laminating slit refractive glass of Fig. 1 can also be produced by this method, but after the product having the double-layer structure is formed, a transparent plastic film is preferably applied on the plate with the slit glass plate, preferably made of A three-layer glass structure with a transparent glass plate is attached.
  • the left and right ends of the laminated glass of the refractive glass should be sealed with a sealant at the same time, so that the sealed glass space is left between the glass strips at the splicing gap 4.
  • a sealant for the production of PVB film is relatively simple, it should also use a three-layer glass structure and is sealed around. If it is a two-layer glass structure, it must be used together with another piece of flat glass composed of insulating glass, and the cavity of the insulating glass should be absolutely dry.
  • the flat transparent film tube 44 refers to a transparent closed diaphragm (shown in Fig.
  • a flat tube made of a transparent material including a flattened transparent plastic film tube for separating the glue from the air.
  • the transparent plastic film tube can be customized. Before the laminated glass is folded, the transparent plastic film tube is flattened and closed at one end. From the end to the other end, the transparent plastic film tube is flattened by the "counter roll” and extruded into the tube. The air is closed at the other end.
  • Flat transparent plastic film tubes can also be made from transparent plastic film on larger size plastic cutting and edge banding machines, but the quality is difficult to control.
  • the flat transparent plastic film tube 44 When the glue is adhered, the flat transparent plastic film tube 44 is sandwiched between the upper and lower glass strip slits 4, and the two ends of the flat transparent plastic film tube 44 are exposed to the outside of the left and right ends of the glass sheet, respectively, at the respective glass strips and glass plates. 1 between the glass strips and the flat transparent plastic film tube 44 is filled with a transparent adhesive, and when it is initially cured, the flat transparent plastic film tube 44 is cut off and the two ends are closed, and are completely cured.
  • the excess glue that overflows that is, the laminated glass of the double-glazed structure, can be selected for the laminated glass (this structure can also be selected in the embodiment of Fig. 1). Also, according to this method, a three-layer glass structure laminated gap refractive glass can be produced, and the description will not be repeated here.
  • the inner side of the entire flat transparent glass 1 is not corresponding to the remaining glass plate surface 5 to which the linear slit glass plate is pasted, and the other flat transparent glass plate 6 which is adhered through the transparent adhesive film 2
  • the purpose is to make the lower part of the product stronger and the overall appearance more beautiful.
  • the thickness of the other flat transparent glass plate 6 is the same as the thickness of the linear slit glass plate which is spliced by the rectangular glass strip 3 above.
  • the production of a laminated glass plate on the laminated glass of the laminated glass is not limited to the above several methods.
  • the first bonding method is the first one, that is, one is made first.
  • the special tool for glass cutting is used on the surface of one of the two glass plates of the laminated glass, and a strip is inserted at a certain distance to the left and right ends of the glass plate.
  • the thickness of the glass plate thirdly, when the slit glass plate is formed by the glass strip with the ratio of the thickness 7 to the width 8 being larger than the ratio of 1 to 3 ratio, the success rate of the cutting disconnection is not high, and the glass plate is cut after being cut along the cutting portion. Rough section; Fourth, if some components of the film are not fully cured, for example, some plasticizers filled with plasticizers such as dimethyl phthalate will diffuse and gradually fill up. To splicing the gap, PVB type film should be selected for this purpose.
  • FIG. 3 is a plan view showing an embodiment of a two-layer glass structure laminated slit refractive glass according to the present invention, in which a slit glass plate 25 which is spliced by a rectangular glass strip 3 faces the viewer.
  • a slit glass plate 25 which is spliced by a rectangular glass strip 3 faces the viewer.
  • This is a glazing glass used in the gloomy surface of a building.
  • 25 is covered with a transparent plastic film and used with another piece of flat glass transparent glass of the same size.
  • the insulating glass is separately embedded in a glass frame of the window, and in combination with the ordinary insulating glass in the other glass frame of the window.
  • Figure 3 11. eight hundred seven millimeters, 12. seven hundred millimeters, 13. seven hundred millimeters.
  • the whole piece of flat transparent glass 1 is made of four millimeters of glass pressed by the slit glass plate 25 at the bottom in the figure.
  • the transparent film 2 is a photosensitive WSJ-655-1 acrylic transparent adhesive having a thickness of 1/10 mm and sandwiched between the entire flat transparent glass 1 and the slit glass plate 25. Twenty-one rectangular glass strips of the same width are pasted through the transparent adhesive film 2 on the surface of the glass plate which is 50% of the entire surface of the flat transparent glass 1 facing the viewer from the top, and each glass strip has a length of eight hundred Seven millimeters, width thirty-three millimeters, thickness five meters, the ratio of the thickness of each glass strip to its width is 1 to 6. 6.
  • the transparent glass film 2 is also pasted with eleven rectangular glass strips 3 of increasing width, each of which has a length of 870 mm and a thickness of 5 mm, except for the width of each of the lowermost strips. Both are increased by five millimeters than the width of the previous one, and eleven rectangular glass strips of increasing width are arranged in order from top to bottom and pasted in the interval of the mark 13 in Fig.
  • the spacing 10 between the respective parallel straight stitching slits 4 and the slits 4 is sequentially increased in order.
  • a total of thirty-two rectangular glass strips on the upper and lower sides of the slit are attached to the side of the glass sheet 1 at an angle of 90°, wherein each of the two adjacent glass strips is sandwiched at the splice slit 4 Plastic substrate light reflecting film.
  • FIG. 4 is a plan view showing an embodiment of a two-layer glass structure laminated slit-refractive glass according to the present invention, wherein the upper portion spliced with the circular-shaped glass strip 18 has a slit glass plate 26 facing the viewer.
  • a transparent plastic film is attached to the surface 26, and is used as an insulating glass with another piece of flat glass of the same size.
  • the whole flat transparent glass 1 still uses four millimeters of glass.
  • the upper part has a slit glass plate 26 pressed at the bottom, and the transparent adhesive film 2 is a photosensitive transparent adhesive.
  • the thickness of the adhesive layer is 1/10 mm, and is clamped.
  • the arc-shaped glass strip has a length of 870 mm, a width of 47 mm, and a thickness of 5 mm.
  • the ratio of the thickness of each glass strip to its width is 1 to 9. 4
  • seven arc-shaped glass strips Uniform upwards are arranged in order from top to bottom, and are pasted in the interval of the mark 15 in the whole flat transparent glass 1 in FIG.
  • the spacing between the strips 4 and the slits 4 in the interval of the marks 16 is sequentially increased in order.
  • the intersecting angles of the slit faces of the upper and lower eleven arc-shaped glass strips and the side of the glass strip adhered to the whole glass sheet 1 are 90°, wherein each of the two adjacent glass strips is sandwiched at the splice slit 4 Plastic Material substrate light reflecting film.
  • the transparent glass plate 6, the upper end of the other integral flat transparent glass plate 6, is cut into a circular arc-shaped end face which conforms to the shape of the upper surface.
  • Fig. 5 is a plan view showing an embodiment of a two-layer glass structure laminated slit-refractive glass according to the present invention, in which a slit glass plate 27 which is spliced by a circular-shaped glass strip 18 faces the viewer.
  • 27 is covered with a transparent plastic film and used with another piece of flat glass transparent glass of the same size.
  • the whole flat transparent glass 1 is still made of four millimeters of glass, which is pressed by the slit glass plate 27 at the bottom.
  • the transparent adhesive film 2 is a photosensitive transparent adhesive, and the thickness of the adhesive layer is 1/10 mm, and is sandwiched between
  • the flat plate transparent glass 1 is in the middle of the slit glass plate 27.
  • 13 transparent glass strips (except the first row) are attached to the same width circular glass strip.
  • Each of the circular glass strips has a length of eight hundred and seventy millimeters, a width of forty-seven millimeters, and a thickness of five millimeters.
  • the ratio of the thickness of each of the glass strips to the width thereof is 1 to 9.4.
  • the tops of the arc are uniformly arranged in order from top to bottom, and are pasted in the interval of the mark 20 in the whole flat transparent glass 1 in Fig. 5, and the parallel arc curves in the interval of the mark 20 are spliced into the slit 4 and the slit 4 The spacing between them is equal.
  • 56% of the glass plate surface is further adhered through the transparent film 2, and 10 circular glass strips of increasing width are successively attached, and the length of each glass strip is eight.
  • the thickness is five millimeters
  • the width of each one is increased by five millimeters than the width of the previous one (except the last one)
  • the same ten arc-shaped curved glass tops of increasing width are uniformly downward from the top to the bottom.
  • the interval between the stitches 4 and the slit 4 of each parallel arc curve in the interval of the mark 21 is sequentially increased .
  • the intersecting angles of the slits of the upper and lower twenty-three round-shaped glass strips and the side of the glass strip adhered to the whole glass sheet 1 are 90°, wherein each of the two adjacent glass strips is sandwiched at the splicing slit 4 There is a plastic substrate light reflecting film.
  • Figure 7 is a plan view showing an embodiment of a two-layer glass structure laminated slit-refractive glass according to the present invention, wherein a slit glass plate 28 is formed by a wave-shaped period and upper and lower sides of the water-wave-shaped slit end face glass strip 22 Face facing the viewer.
  • 28 is covered with a transparent plastic film and used with another piece of flat glass of the same size to form an insulating glass.
  • 23.80 mm, 24. - 1400 mm The whole flat transparent glass 1 still uses four millimeters of glass in the figure and is pressed by the slit glass plate 28 at the bottom.
  • the transparent adhesive film 2 is a photosensitive transparent adhesive, and the thickness of the adhesive layer is 1/10 mm, and is sandwiched between The flat plate transparent glass 1 is in the middle of the slit glass plate 28. Eighteen (except the first row and the last row) are adhered to the entire glass plate surface of the entire flat transparent glass 1 toward the viewer side through the transparent adhesive film 2 (the first row and the last row are excluded), and the same width and the upper and lower sides are the water wave-shaped slit end face glass strips, respectively. Water wave shape
  • the slit end glass strip has a length of 870 mm, a width of 70 mm, and a thickness of 5 mm. The ratio of the thickness of each glass strip to the width thereof is 1 to 14.
  • the eighteen water wave-shaped slit end glass strips are from top to bottom. Arranged neatly in order and pasted on the entire flat transparent glass 1, the spacing between the splicing slits 4 and the slits 4 in the parallel splicing glass sheets having the parallel water wave curves is equal.
  • the intersecting angles of the slit end faces of the eighteen water wave-shaped slit end face glass strips and the side of the glass strip adhered to the whole glass sheet 1 are 90°, wherein each of the two adjacent glass strips is sandwiched at the splice slit 4 Plastic substrate light reflecting film.
  • the rectangular glass strip should be selected to make the laminated gap refractive glass, or try to
  • the laminated glass is made of a glass strip with a slit end surface close to a planar shape, because the closer the stitching gap is to the straight slit, the more accurately a part of the light is reflected to the ceiling of the house; second, the thickness and width of various types of glass strips
  • the ratio can be selected between 1 and 0.8 to 1 to 25, the larger the ratio is, the stronger the "refractive phenomenon" of the slit-refractive glass is.
  • the ratio of the laminated glass frit glass produced by the laminated glass frit in the case where the ratio of the thickness to the width ratio is large is given. It is recommended to select the glass strip in the ratio range given in Table 1 to make the laminated glass for the lighting.

Abstract

La présente invention concerne un verre réfractant à écartement pris en sandwich par un adhésif pour l'éclairage par lumière naturelle de bâtiments. Ledit verre réfractant consiste en une structure de verre multicouche constituée de trois couches d'une plaque de verre transparente et de deux couches de film adhésif transparent ou constituée de deux couches de plaque de verre transparente et d'une couche de film adhésif transparent entre elles. Les deux structures de verre en sandwich mentionnées ci-dessus ont une couche de plaque de verre réfractant avec des espaces, qui est obtenue en collant quelques bandes de verre ayant une forme particulière telle qu'une forme rectangulaire, une forme en arc circulaire ou une forme de vague sur la surface interne d'une plaque entière de verre transparent 1 avec un film adhésif transparent 2, où un film réfléchissant la lumière ou un espace isolé avec de l'air est ménagé au niveau de l'espace de liaison 4 localisé entre les bandes de verre supérieure et inférieure, et le rapport de l'épaisseur 7 sur la largeur 8 de la bande de verre est de 1/0,8 à 1/25. Une partie de la lumière sera réfléchie au plafond lorsque ledit verre réfractant est utilisé pour réfracter la lumière naturelle. Ledit verre réfractant est également utilisé en tant que verre décoratif.
PCT/CN2006/001026 2005-05-23 2006-05-18 Verre refractant a ecartement pris en sandwich par un adhesif WO2006125377A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN 200510074417 CN1686893A (zh) 2005-05-23 2005-05-23 一种夹胶缝隙折光玻璃
CN200510074417.3 2005-05-23

Publications (1)

Publication Number Publication Date
WO2006125377A1 true WO2006125377A1 (fr) 2006-11-30

Family

ID=35304935

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2006/001026 WO2006125377A1 (fr) 2005-05-23 2006-05-18 Verre refractant a ecartement pris en sandwich par un adhesif

Country Status (2)

Country Link
CN (1) CN1686893A (fr)
WO (1) WO2006125377A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115724600A (zh) * 2023-01-09 2023-03-03 像航(如东)科技有限公司 无介质空中成像光学材料制作方法

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104746797A (zh) * 2015-03-27 2015-07-01 王富强 万花筒玻璃墙
CN104863306B (zh) * 2015-06-10 2023-05-09 廖仲明 玻璃方条拼接式玻璃板及其制造方法
US20200256532A1 (en) * 2015-11-17 2020-08-13 Sharp Kabushiki Kaisha Daylighting device, daylighting system, and method of manufacturing daylighting device
CN105445886A (zh) * 2015-12-21 2016-03-30 杨慧波 一种光波吸收型全透玻璃面板

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07315893A (ja) * 1994-05-26 1995-12-05 Dainippon Printing Co Ltd ホログラフィック積層ガラス及びその製造方法
CN2227653Y (zh) * 1995-06-20 1996-05-22 广东伦教汽车玻璃有限公司 冰花安全玻璃
CN2332965Y (zh) * 1998-03-06 1999-08-11 杨福嘉 冷冻式压缩空气干燥机的冷媒预冷改良构造
CN2368845Y (zh) * 1999-04-15 2000-03-15 宫哲 整体浮雕冰花玻璃
CN1438397A (zh) * 2003-02-11 2003-08-27 崔建伟 一种采光用表面有结构的透光介质
CN1529019A (zh) * 2003-10-12 2004-09-15 崔建伟 按阳光入射角进行选择性分光的玻璃及应用

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07315893A (ja) * 1994-05-26 1995-12-05 Dainippon Printing Co Ltd ホログラフィック積層ガラス及びその製造方法
CN2227653Y (zh) * 1995-06-20 1996-05-22 广东伦教汽车玻璃有限公司 冰花安全玻璃
CN2332965Y (zh) * 1998-03-06 1999-08-11 杨福嘉 冷冻式压缩空气干燥机的冷媒预冷改良构造
CN2368845Y (zh) * 1999-04-15 2000-03-15 宫哲 整体浮雕冰花玻璃
CN1438397A (zh) * 2003-02-11 2003-08-27 崔建伟 一种采光用表面有结构的透光介质
CN1529019A (zh) * 2003-10-12 2004-09-15 崔建伟 按阳光入射角进行选择性分光的玻璃及应用

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115724600A (zh) * 2023-01-09 2023-03-03 像航(如东)科技有限公司 无介质空中成像光学材料制作方法

Also Published As

Publication number Publication date
CN1686893A (zh) 2005-10-26

Similar Documents

Publication Publication Date Title
US9051776B2 (en) Apparatus and method for solar heat gain reduction in a window assembly
WO2006125377A1 (fr) Verre refractant a ecartement pris en sandwich par un adhesif
US20090199888A1 (en) Sun protection device with angle-selective transmission properties
CN2828036Y (zh) 具有立体动感图案的彩釉玻璃
US20050048231A1 (en) Glazing panels
CN112412275A (zh) 一种点粘封接的中空玻璃及其制作方法
CN202596474U (zh) 一种中空玻璃
CN204311679U (zh) 发光装饰板
ES2441566T3 (es) Acristalamiento de seguridad laminado con capa intermedia posiblemente perforada
CN2789251Y (zh) 夹胶缝隙折光玻璃
CN207503547U (zh) 光纤块显示屏的改良结构
CN201865225U (zh) 一种建筑幕墙用节能型透光石材复合中空玻璃
CN208873737U (zh) 太阳能组件和太阳能发电系统
CN205382839U (zh) 新型可调光中空玻璃
CN205907190U (zh) 一种高强度的夹胶low‑e复合玻璃
CN202248443U (zh) 一种透明混凝土外墙结构
CN104863306B (zh) 玻璃方条拼接式玻璃板及其制造方法
CN112431521A (zh) 一种防火中空玻璃、制作方法及应用
RU74948U1 (ru) Стеклопакет
RU48325U1 (ru) Стеклопакет с художественным витражом
CN2469147Y (zh) 带有隐形窗帘的调光透射窗装置
CN2616536Y (zh) 聚酯隔膜多层中空玻璃
CN203559734U (zh) 一种多功能复合结构玻璃体
CN204199500U (zh) 防污染节能型幕墙用透光石材复合板
RU191564U1 (ru) Объемное мозаичное изделие

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application
NENP Non-entry into the national phase

Ref country code: DE

WWW Wipo information: withdrawn in national office

Country of ref document: DE

NENP Non-entry into the national phase

Ref country code: RU

WWW Wipo information: withdrawn in national office

Country of ref document: RU

122 Ep: pct application non-entry in european phase

Ref document number: 06741914

Country of ref document: EP

Kind code of ref document: A1