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WO2011081483A2 - Verre tri-couche présentant une structure à doubles intercalaires - Google Patents

Verre tri-couche présentant une structure à doubles intercalaires Download PDF

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Publication number
WO2011081483A2
WO2011081483A2 PCT/KR2010/009580 KR2010009580W WO2011081483A2 WO 2011081483 A2 WO2011081483 A2 WO 2011081483A2 KR 2010009580 W KR2010009580 W KR 2010009580W WO 2011081483 A2 WO2011081483 A2 WO 2011081483A2
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Prior art keywords
glass
rod
metal
space
double
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Ceased
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PCT/KR2010/009580
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English (en)
Korean (ko)
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WO2011081483A3 (fr
Inventor
김백두
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Publication of WO2011081483A2 publication Critical patent/WO2011081483A2/fr
Publication of WO2011081483A3 publication Critical patent/WO2011081483A3/fr
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    • 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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • E06B3/663Elements for spacing panes
    • E06B3/66309Section members positioned at the edges of the glazing unit
    • 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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • E06B3/663Elements for spacing panes
    • E06B3/66309Section members positioned at the edges of the glazing unit
    • E06B2003/66385Section members positioned at the edges of the glazing unit with special shapes

Definitions

  • the present invention relates to a triple multilayer glass, and more particularly, a first double rod for maintaining a space between the first glass facing the inner side of the building and the third glass located in the center of the interior of the space between the glass
  • the second inner rod is formed of a first inner inner rod and a first outer inner rod that surrounds the outer edge of the first inner inner rod, and maintains a space between the third glass and the second glass forming the outer wall of the building.
  • the second inner rod is located inside and the second outer rod surrounding the outer edge of the second inner rod is formed and installed on the same straight line with respect to the third glass, thereby minimizing the degree of leakage of gas filled between the glass
  • the first and second inner rods installed side by side and the first and second outer rods are provided in a triple laminated glass with a double rod structure to improve the bearing capacity against external impact.
  • a multi-layered glass installed in a window frame or a chassis partitioning the interior and exterior of a building is configured by installing a ganbong between the glass to maintain a distance and a certain distance between the plurality of glass.
  • FIG. 1 is a partial perspective view showing the structure of a conventional multilayer glass.
  • the conventional multi-layered glass has a first glass 10 facing the inside of a building, a second glass 20 forming an outer wall of the building, and the first glass and the second glass are spaced apart from each other. It was configured to include a liver bar 30 to maintain the space.
  • the rod is usually made of an aluminum material so as to firmly support the spaced glass.
  • the ganbong made of aluminum material in this way is bent the aluminum plate to the contact surface of the both sides contacting the first and second glass, the inner surface facing the inner space between the two glass, and the outer space between the two glass It was constructed by forming an outer surface facing toward.
  • the rod is formed by bending the aluminum material along the outer shape of the glass, or by connecting a plurality of rods made of a straight line by the coupling portion made of a predetermined shape.
  • the ganbong made of aluminum material has a high thermal conductivity, which significantly reduces the thermal insulation effect, and thus is caused by the temperature difference between the first glass located inside the building and the second glass located outside the building. There was a problem that the visual field is greatly disturbed by the condensation phenomenon.
  • a urethane resin or a moisture absorbent is injected into the interior of the aluminum liver rod and cured.
  • the manufacturing cost is increased due to the increase of the work process and the increase of working time required for over-hardening.
  • the insulation rods are frequently broken or cracked due to external pressure or impact, and the absorbent is exposed to the outside or filled gas leaks, so that the gas filling effect cannot be stably enjoyed. there was.
  • the problem to be solved by the present invention is the first double bar to maintain the space between the first glass and the third glass, and the second double bar to maintain the space between the second glass and the third glass, respectively located inside
  • a double liver rod structure consisting of an inner rod and an outer rod covering the outer periphery of the inner rod, the inner rods of the first and second double rods installed side by side while minimizing the leakage of gas filled between the glass
  • the present invention provides a triple multilayer glass having a double liver rod structure capable of improving a bearing capacity against external impact by an external rod.
  • Triple multilayer glass provided with a double liver structure for achieving the above object, the first glass installed inside the building; A second glass constituting the outer wall of the building; A third glass positioned between the first glass and the second glass; A first double rod comprising a first inner rod formed inside the space formed between the first glass and the third glass and a first outer rod enclosing the outer edge of the first inner rod; And a second inner rod formed of a second inner rod formed inside the space formed between the second glass and the third glass, and a second outer rod that surrounds the outer edge of the second inner rod.
  • the first inner rod is composed of a first insulating rod
  • the first outer rod is composed of a first metal rod
  • the first insulation bar is made of a first reinforcing material made of a metal material such as aluminum, and the first PVC portion surrounding the outside of the first reinforcing material, the first heat insulating absorbent is filled therein;
  • the first intermetallic rod may include a first metal bonding surface of both sides contacting the first and third glasses, a first metal inner surface facing the inner space between the glass in the bonded state, and an outer space between the glass.
  • first metal outer surface facing the space, both ends are connected by a straight key, the first metal absorbent is filled in the space surrounded by the first metal bonding surface, the first metal inner surface and the first metal outer surface It is characterized in that it is configured to.
  • the second inner rod is composed of a second insulating rod
  • the second outer rod is composed of a second metal rod
  • the second heat insulating rod is made of a second reinforcing material made of a metal material such as aluminum, and the second PVC portion surrounding the outside of the second reinforcing material, the inside is filled with a second heat insulating absorbent
  • the second intermetallic rod may include a second metal bonding surface of both sides contacting the second and third glasses, a second metal inner surface facing the inner space between the glass in the bonded state, and an outer surface between the glass.
  • the present invention provides an inner rod and an inner rod each having a first double rod for maintaining a space between the first glass and a second glass and a second double rod for maintaining a space between the second glass and the third glass.
  • FIG. 1 is a partial perspective view showing a structure of a conventional multilayer glass.
  • Figure 2 is a partial perspective view of a triple layered glass equipped with a double liver bar structure according to the present invention.
  • FIG. 3 is a cross-sectional view taken along the line A-A of FIG.
  • FIG. 4 is a cross-sectional view taken along line B-B in FIG.
  • Figure 5 is a block diagram showing a connection structure of the intermetallic rod in accordance with the present invention.
  • Figure 6 is a cross-sectional view showing another embodiment of a triple layered glass equipped with a double liver structure according to the present invention.
  • FIG 2 is a partial perspective view of a triple layered glass equipped with a double liver structure according to the present invention
  • Figure 3 is a cross-sectional view AA of Figure 2
  • Figure 4 is a cross-sectional view BB of Figure 2
  • Figure 5 is a metal according to the invention It is a block diagram which shows the connection structure of liver stick.
  • the triple layered glass provided with a double liver structure is the first glass 110 facing the inside of the building, the second glass 120 forming the outer wall of the building, A third glass rod 130 disposed between the first glass and the second glass, a first double rod for maintaining a space between the first glass and the third glass located at the center, and the second glass and the center It is configured to include a second double rod for maintaining the space between the third glass located in the.
  • the first double rod includes a first inner rod that is located inside the space formed between the first glass and the third glass, and a first outer rod that surrounds the outer edge of the first inner rod. .
  • the second double rod includes a second inner rod that is located inside the space formed between the second glass and the third glass, and a second outer rod that surrounds the outer edge of the second inner rod. .
  • the first and second double rods are provided along the outer surface between the first and second inner rods and the first and second outer rods between the two glasses so as to fill a sealed space therein with the insulating gas. It is preferable to be composed of a double structure to be installed side by side to seal the inside.
  • the first to third glass can reflect most of the infrared rays having a region of the wavelength related to cooling and heating of the wavelength of the solar light low-emissivity glass having a great difference from the ordinary glass in the infrared reflectance (Low-Emissivity) It is preferred to be composed of Low-E glass.
  • the first to the third glass is made of low-rise glass reflects the infrared rays generated by the heating mechanism inside the building back in the building in winter, and radiant heat generated by the solar heat applied from the outside of the building in the summer. By reflecting back to the outside it is possible to implement a good thermal insulation effect.
  • the first to third glass (110, 120, 130) composed of a Roy glass is cut to the size of the glass to the size suitable for the purpose to install the triple-layer glass, foreign matter on the surface of the cut glass to ensure solid adhesion and perfect visibility After washing, it is configured to dry sufficiently to remove the water remaining during the washing.
  • the first inner rod and the second inner rod constituting the first and second double rods are composed of an insulation rod that is provided with aluminum rods as a reinforcement inside and wrapped with a synthetic resin (PVC) to improve the insulation effect, It is preferable that it is comprised from the foamed resin interrod which consists of foamable resin which is a silicone product containing a moisture absorbent as an extrusion molding product.
  • the first outer rod and the second outer rod constituting the first and second double rod is preferably composed of a metal rod made of a metal material so as to sufficiently support the external impact, such as wind blowing from the outside.
  • the foamed resin rod is preferably composed of a super spacer.
  • a first inner inter-bar forming the first double rod is constituted by a first insulating rod, and a first outer inter-bong consists of a first metal rod, and the second double rod forms a second double rod. It describes that the inner rod is composed of the second insulating rod and the second outer rod is composed of the second metal rod.
  • the first insulation bar 210 is installed between the first glass 110 and the third glass 130 to separate the glass, the first reinforcing material 211 made of a metal material such as aluminum and the first reinforcing material of It is made of a first PVC part 212 surrounding the outside, the inside is configured to be filled with a first heat-absorbing absorbent (213).
  • the first insulation rod 210 is bent along the outer shape of the first and third glass, the loop formed by bending the first insulation rod is placed inside the first and third glass. Rather, the first metal rod 220 forming the first outer rod may be small enough to be placed inside the loop formed by bending.
  • the outer peripheral surface of the bent first insulating interrod forms a slightly smaller loop than the inner peripheral surface of the bent first intermetallic rod. Accordingly, after attaching the first insulating interrod between the first and the third glass, it is possible to easily attach the first intermetallic rod to the outside thereof.
  • the first intermetallic rod may be first attached between the first and third glasses, and then the first insulating interlayer may be attached thereto.
  • the adhesive is applied to both sides of the first insulating intermittent bent so as to form a small loop, or an adhesive tape is attached to the first and third glass surfaces. Accordingly, the first and third glass 110 and 130 and the first insulating interlayer is surrounded by the first insulating space 210 is formed.
  • the first inner space may be configured by injecting argon gas (Ar) or krypton gas (Kr), which is an insulating gas that can improve the heat insulating effect to prevent heat transfer by air between the glass by the air.
  • Ar argon gas
  • Kr krypton gas
  • the first intermetallic rod 220 is configured by bending aluminum or stainless steel sheet to a certain size using an auto bending machine.
  • the first intermetallic rod 220 may be bent to form a loop having a smaller size than the outermost portions of the first and third glass as well as to surround the outer edge of the first insulating interrod.
  • both ends of the first intermetallic rod 220 forming a loop are connected by a straight key 250.
  • the first intermetallic rod 220 formed by bending the aluminum or stainless steel sheet is bonded to the first metal bonding surface 221 on both sides of the first and third glass, respectively, in the bonded state.
  • the first metal inner surface 222 is composed of a wide plate having a width suitable for the spaced space between the first and the third glass, the first metal outer surface 223 than the first metal inner surface It is configured to have a narrow width, it is configured to apply an adhesive to the first metal bonding surface 221 or to fix to the first and third glass using an adhesive tape.
  • the first metal absorbent 224 is injected into a space surrounded by the first metal bonding surface, the first metal inner surface, and the first metal outer surface of the first metal intermetallic rod. It is preferably configured to form a constant through hole in the first metal inner surface in order to improve the absorption efficiency.
  • first intermetallic bar is bent along the shape between the first glass and the third glass and attached to the first and third glass by an adhesive or adhesive tape provided on the first metal bonding surface. It will support the first and third glass.
  • the first intermetallic rod is bent to form a loop that is larger than the first thermal insulation rod and smaller than the first and third glass rods 110 and 130, and the first and third insulation rods are positioned therein.
  • the outermost portion of the glass (110,130) is configured to be attached to the inner portion, about 3 ⁇ 10 mm slightly inwardly. Accordingly, the first inner space is formed in the interior of the first insulating interrod to prevent the movement of the first intermetallic rod in the space from the outer peripheral surface of the first intermetallic rod to the outermost of the first and third glass
  • the first sealing part is further formed to prevent the inflow of moisture or foreign matter.
  • the first call is formed in the first sealing portion formed on the outer surface of the first metal outer circumference provided in the first metal intermetallic rod 300 is filled in the empty space between the first metal outer circumferential surface and the first and third glass
  • the first intermetallic rod 220 is more firmly fixed between the first and third glasses.
  • the coupling force between the first and the third glass can be further strengthened.
  • the first intermetallic rod can be prevented from being directly exposed to external moisture or foreign matter.
  • the path from the outer space to the space between the first and the third glass is extended by the cheocol 300, so that external moisture or the like passes through the cheocol and the first insulation rod and the first
  • the total diffusion distance to be diffused into the intermetallic rod increases, and the adsorption time of moisture also increases, thereby reducing the occurrence of condensation by external moisture.
  • the second insulating interlayer 310 is installed between the second glass 120 and the third glass 130 to separate the glass, a second reinforcing material 311 made of a metal material such as aluminum, and the second It is made of a second PVC part 312 surrounding the outside of the reinforcement, the inside is configured to be filled with a second heat-absorbing absorbent (313).
  • the second insulating rod 310 is bent along the outer shape of the second and third glass like the first insulating rod, the loop formed by bending the second insulating rod is the second and third glass
  • the second outer rod forming the second outer rod is formed small enough to be placed inside the loop formed by bending the intermetallic rod 320.
  • the adhesive is applied to both sides of the second heat insulating rod bent to form a small loop as described above, and is attached to the second and third glass surfaces by applying an adhesive tape.
  • a second sealed inner space surrounded by the second and third glasses 120 and 130 and the second insulating interlayer 310 is formed.
  • the second inner space may be configured by injecting argon gas (Ar) or krypton gas (Kr), which is an insulating gas that can improve the thermal insulation effect to prevent heat transfer by air between the glass by the air. have.
  • the second intermetallic rod 320 is configured by bending aluminum or stainless steel sheet to a certain size using an auto bending machine.
  • the second intermetallic rod 320 may not only surround the outer edge of the second insulating interrod like the first intermetallic rod, but also form a loop having a smaller size than the outermost portions of the second and third glass. Bending is formed.
  • the second intermetallic rod 320 formed by bending the aluminum or stainless steel sheet is in contact with the second metal bonding surface 321 of both sides of the second and third glass, respectively.
  • the second metal absorbent 324 is injected into a space surrounded by the second metal bonding surface, the second metal inner surface, and the second metal outer surface of the second intermetallic rod, and absorbs moisture from the second metal absorbent.
  • the same is also configured to form a constant through hole in the second metal inner surface in order to improve the efficiency.
  • the second metal rod is bent to form a loop that is larger than the second insulation rod and smaller than the second and third glasses 120 and 130.
  • the second insulation rod and the second insulation rod may be positioned while placing the second insulation rod therein. It is configured to be attached to the inner part of the seat, about 3-10 mm slightly inward from the outermost part of the (120,130). Accordingly, the second inner space is prevented from moving the second intermetallic rod in the space extending from the outer circumferential surface of the second intermetallic rod to the outermost of the second and third glass, and formed inside the second insulating interrod
  • the second sealing portion is further formed to prevent the inflow of moisture or foreign matter.
  • the second sealing part is filled with the cheol call 300 is filled in the empty space between the second outer surface and the second and third glass and the second metal rod 320 and the second and third glass
  • the second metal rod can be prevented from being directly exposed to external moisture or foreign matter.
  • each of the double rods installed between the first to third glasses is formed of a double structure of an inner insulation rod and an outer metal rod of the inner side, such that argon gas or krypton gas is filled in the inner space between the glasses.
  • argon gas or krypton gas is filled in the inner space between the glasses.
  • a first inner inter rod constituting the first double rod is composed of a first foaming resin inter rod
  • a first outer inter rod is composed of a first metal inter rod
  • a second inside constituting the second double rod is composed of the liver rod
  • the second outer rod is composed of the second metal rod.
  • the first metal rods constituting the first outer rod and the second metal rods constituting the second outer rod are the same as described above, the first and second foam resin rods will be described below. .
  • Figure 6 is a cross-sectional view showing another embodiment of a triple layered glass provided with a double liver structure according to the present invention.
  • the first foamed resin rod is made of an extrusion-molded product including a moisture absorbent, and is molded to have a thickness of a desired distance to separate the first glass and the third glass, or to have a predetermined thickness. It is made by cutting. At this time. It goes without saying that the first foaming resin rod may be configured as a super spacer.
  • the first foaming resin rod is bent along the outer shape of the first and third glass, the loop formed by bending the first foaming resin rod is not only placed inside the first and third glass, It is preferred that the first outer rod forming the first outer rod is small enough to be placed inside the loop formed by bending.
  • the outer circumferential surface of the bent first foaming resin interrod is bent in consideration of the thicknesses of the first foamed resin interroded rod and the first intermetallic rod itself. It is preferable to form a loop slightly smaller than the inner circumferential surface of the liver rod. Accordingly, after attaching the first foamed resin interrod between the first and the third glass, it is possible to easily attach the first intermetallic rod to the outside thereof. In this case, the first intermetallic rod may be first attached between the first and third glasses, and then the first foaming resin interrod may be formed therein.
  • the first foaming resin inter-bar 230 formed as described above is the first foaming resin bonding surface 231 of both sides attached to the first and third glass in contact with each other, and the inner space between the glass in the bonded state.
  • the third inner space formed by the first and third glass and the inner surface of the first foamed resin may be argon gas (Ar) or krypton, which may improve the thermal insulation effect to prevent heat transfer by air between the glasses. It may be configured by injecting gas Kr or the like.
  • the first intermetallic rod constituting the first outer interrod is formed by bending an aluminum steel or stainless steel sheet with an auto bending machine, and is formed to surround the outer periphery of the first foaming resin of the first foaming resin interstice. Same as the case where the inner rod is made of the first insulating rod.
  • the first intermetallic rod is slightly inserted inward from the outermost portions of the first and third glasses, and is attached to the inner side of the first intermetallic rod about 3 to 10 mm, and wraps around the outer circumferential surface of the first intermetallic rod.
  • the third sealing portion made of a chi-col is also provided is the same as the case where the first inner liver rod is made of a first insulating interrod.
  • the second foaming resin rod is bent along the outer shape of the second and third glass, the loop formed by bending the second foaming resin rod is not only placed inside the second and third glass, It is preferable that the second outer rod forming the second outer rod is formed small enough to be placed inside the loop formed by bending.
  • the outer circumferential surface of the bent second inter-foam inter-bar is considered in consideration of the thicknesses of the second inter-expansion inter-bar and the second metal inter-bar itself to the bent second metal. It is preferable to form a loop slightly smaller than the inner circumferential surface of the liver rod. Accordingly, after attaching the second foamed resin interrod between the second and the third glass, it is possible to easily attach the second intermetallic rod to the outside thereof. In this case, the second intermetallic rod may be first attached between the second and third glasses, and then the second foaming resin interrod may be formed therein.
  • the second foamed resin inter-bar 330 bent as described above is the second foamed resin bonding surface 331 of both sides attached to the second and third glass in contact with each other, the inner space between the two glass in the bonded state
  • an adhesive to the second foamed resin bonding surface 331 or by attaching an adhesive tape to fix the second and third glass on one surface it is surrounded by the second and third glass and the second foamed resin between the rods. This will form a closed fourth internal space.
  • the fourth inner space formed by the second and third glass and the inner surface of the second foamed resin may be formed of argon gas (Ar) or krypton gas (A), which may improve the thermal insulation effect to prevent heat transfer between the glasses. Kr) or the like may be injected.
  • the second metal rods constituting the second outer rod are formed by bending an aluminum steel or stainless steel sheet with an auto bending machine, and are formed to surround the outer peripheral surface of the second foamed resin rod of the second foamed resin rod. Same as the case where the inner rod is made of the second insulating rod.
  • the second intermetallic rod is slightly inserted inward from the outermost portions of the second and third glasses, and is attached to the inside of about 3 to 10 mm, and wraps around the outer circumferential surface of the second intermetallic rod, and the second In order to prevent the movement of the intermetallic rod and the inflow of moisture into the inner space is further provided with a fourth sealing portion made of a Chi-Col is the same as the case of the second inner inter-bar is made of a second insulating inter-bar.
  • a third glass is positioned between the first glass facing the inside of the building and the second glass constituting the outer wall of the building, and a first double rod is attached between the first glass and the third glass located in the middle.
  • a second double rod is attached between the second glass and the third glass positioned in the middle.
  • the first double rod is attached to the first inner rod is made of a heat insulation rod or foam resin rod
  • the first metal rod is a first outer rod that surrounds the first inner rod is attached to the first glass and Space the third glass.
  • the second inner rod is also attached to the inside of the second inner rod, which is made of an insulating rod or a foamed resin rod
  • a second outer rod which is a second outer rod surrounding the second inner rod, is attached to the second glass. Space the third glass.
  • argon gas or the like is filled in the sealed inner space formed between the first glass and the third glass by the first and second inner interrods.
  • the thickness of the first inner interbar and the first outer interbar that is, the distance separating the first and the third glass are equally formed, and the second It is a matter of course that the thickness of the inner rod and the second outer rod, that is, the distance separating the second and the third glass should be formed equally.
  • the argon gas is filled in the inner space formed by the inner rod, the path that the gas has to travel to leak to the outside is also long, and the bonding surface between the inner rod and the glass and the bonding surface between the outer rod and the glass is doubled. It can be sealed to significantly reduce the degree of gas leakage it is possible to implement a more improved insulation effect.
  • the present invention provides an inner rod and an inner rod each having a first double rod for maintaining a space between the first glass and a second glass and a second double rod for maintaining a space between the second glass and the third glass.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Joining Of Glass To Other Materials (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Load-Bearing And Curtain Walls (AREA)

Abstract

La présente invention concerne un verre tri-couche, et plus précisément un verre tri-couche présentant une structure à doubles intercalaires, caractérisé en ce qu'un premier intercalaire double destiné à maintenir un espace entre une première vitre orientée vers l'intérieur d'un bâtiment et une troisième vitre située au milieu comporte un premier intercalaire intérieur situé à l'intérieur d'un espace entre les vitres et un premier intercalaire extérieur englobant la partie extérieure du premier intercalaire intérieur, un deuxième intercalaire double destiné à maintenir un espace entre la troisième vitre et une deuxième vitre formant une paroi extérieure d'un bâtiment comporte un deuxième intercalaire intérieur situé à l'intérieur d'un espace entre les vitres et un deuxième intercalaire extérieur englobant la partie extérieure du deuxième intercalaire intérieur, et en ce que les premier et deuxième intercalaires doubles sont installés sur la même ligne droite en se basant sur la troisième vitre. Le verre tri-couche présentant une structure à doubles intercalaires minimise ainsi les fuites de gaz remplissant l'espace entre les vitres, et peut améliorer la capacité de résistance aux impacts externes des premier et deuxième intercalaires intérieurs et des premier et deuxième intercalaires extérieurs installés côte à côte.
PCT/KR2010/009580 2009-12-31 2010-12-30 Verre tri-couche présentant une structure à doubles intercalaires Ceased WO2011081483A2 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR20090135907 2009-12-31
KR10-2009-0135907 2009-12-31
KR1020100030895A KR101021849B1 (ko) 2009-12-31 2010-04-05 이중 간봉구조가 구비된 3중 복층 유리
KR10-2010-0030895 2010-04-05

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WO2011081483A2 true WO2011081483A2 (fr) 2011-07-07
WO2011081483A3 WO2011081483A3 (fr) 2011-11-10

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KR101338871B1 (ko) * 2011-09-27 2014-01-06 (주) 콘즈 자동 절곡을 위한 이중 유리창용 간봉
KR101660517B1 (ko) * 2016-06-09 2016-09-29 (주)동해공영 합성수지판이 내입된 단열방범유리 및 그 제조방법

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JPH10292743A (ja) 1997-04-11 1998-11-04 Asahi Glass Co Ltd 複層ガラス用スペーサーおよび複層ガラス
JPH10306658A (ja) * 1997-04-30 1998-11-17 Central Glass Co Ltd 複層ガラスパネル
JPH11247540A (ja) 1998-03-02 1999-09-14 Asahi Glass Co Ltd 複層ガラス用のスペーサ及び複層ガラス
JP2000008719A (ja) * 1998-06-22 2000-01-11 Yodose Kensho:Kk 複層ガラス
US20030108694A1 (en) * 2001-12-11 2003-06-12 Cheng-Tsung Lin Reinforced transparent glass assembly
JP2005060141A (ja) * 2003-08-08 2005-03-10 Asahi Glass Co Ltd 複層ガラス

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