INSULATING GLASS UNIT AND METHODS TO PRODUCE IT
20190024442 ยท 2019-01-24
Assignee
Inventors
Cpc classification
E06B3/67343
FIXED CONSTRUCTIONS
C03C27/048
CHEMISTRY; METALLURGY
Y02B80/22
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02A30/249
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E06B3/66352
FIXED CONSTRUCTIONS
E06B3/6621
FIXED CONSTRUCTIONS
E06B3/66304
FIXED CONSTRUCTIONS
International classification
Abstract
An insulating glass unit (IGU) comprising at least a first glass plate, a second glass plate, a spacer and an edge element, wherein the spacer is fastened to the first glass plate by a first immediate tack and green strength structural adhesive seal, the edge element is fastened to the first glass plate by a second immediate tack and green strength structural adhesive seal, one of the spacer and the edge element is fastened to the second glass plate by a third immediate tack and green strength structural adhesive seal, and the other one of the spacer and the edge element being fastened to the second glass plate by a compressible adhesive seal.
Claims
1. An insulating glass unit (IGU) comprising; a first glass plate, a second glass plate, a spacer, and an edge element, wherein said spacer is fastened to said first glass plate by a first immediate tack and green strength structural adhesive seal, said edge element being fastened to said first glass plate by a second immediate tack and green strength structural adhesive seal; one of said spacer and said edge element is fastened to said second glass plate by a third immediate tack and green strength structural adhesive seal, the other one of said spacer and said edge element being fastened to said second glass plate by a compressible adhesive seal.
2. The insulating glass unit (IGU) according to claim 1, wherein at least one of said immediate tack and green strength structural adhesive seals comprises a double side mounting tape or a curable thermoplastic sealant that is structural when cured.
3. The insulating glass unit (IGU) according to claim 1, wherein at least one of said immediate tack and green strength structural adhesive seals comprises a double side mounting tape and at least another one of said immediate tack and green strength structural adhesive seal comprises a curable thermoplastic sealant that is structural when cured.
4. The insulating glass unit (IGU) according to claim 2, wherein said double side mounting tape comprises a polyurethane foam carrier and an acrylate based adhesive or an acrylic foam carrier and an acrylate based adhesive.
5. The insulating glass unit (IGU) according to claim 1, wherein said compressible adhesive seal comprises a double side soft foam tape.
6. The insulating glass unit (IGU) according to claim 5, wherein said double side soft foam tape comprises a polyethylene foam carrier and an acrylate based adhesive.
7. The insulating glass unit (IGU) according to claim 1, characterized in that wherein said compressible adhesive seal comprises a thermoplastic sealant.
8. The insulating glass unit (IGU) according to claim 1, wherein said spacer and edge element contact each other.
9. The insulating glass unit (IGU) according to claim 1, wherein at least the spacer and green strength and immediate tack structural adhesive are transparent.
10. The insulating glass unit (IGU) according to claim 1, wherein it the IGU comprises a third glass plate fastened to the first or second glass plate.
11. A window comprising the IGU according to claim 1.
12. A door comprising the IGU according to claim 1.
13. A method to produce an insulating glass unit (IGU) according to claim 1 comprising: Forming a first assembly by fastening to a first glass plate a spacer and an edge element, said spacer being fastened by a first immediate tack and green strength structural adhesive, said edge element being fastened by a second immediate tack and green strength structural adhesive; Fastening by pressing a second glass plate to said first assembly, said second glass plate being fastened to the spacer and to the edge element, said edge element being fastened by a third immediate tack and green strength structural adhesive, said spacer being fastened by a compressible adhesive.
14. A method to produce an insulating glass unit (IGU) according to claim 1 comprising: Forming a first assembly by fastening to a first glass plate a spacer and an edge element, said spacer being fastened by a first immediate tack and green strength structural adhesive, said edge element being fastened by a second immediate tack and green strength structural adhesive; Fastening by pressing a second glass plate to said first assembly, said second glass plate being fastened to the spacer and to the edge element, said spacer being fastened by a third immediate tack and green strength structural adhesive, said edge element being fastened by a compressible adhesive.
15. A method to produce an insulating glass unit (IGU) according to claim 1 comprising: Forming a first assembly by fastening to a first glass plate a spacer and an edge element, one of said spacer and said edge element being fastened by a first immediate tack and green strength structural adhesive, the other one of said spacer and said edge element being fastened by a compressible adhesive; Fastening by pressing a second glass plate to said first assembly, said second glass plate being fastened to the spacer and to the edge element, said spacer being fastened by a second immediate tack and green strength structural adhesive, said edge element being fastened by a third immediate tack and green strength structural adhesive.
Description
[0025] The invention will be better understood upon reading the following description in view of the attached figures that will in no way limit the scope of the invention and wherein:
[0026]
[0027]
[0028]
[0029] The figures are not drawn to scale. Generally, identical components are denoted by the same reference numerals in the figures.
[0030]
[0031] In the present invention, the spacer 3 delimits an insulated cavity 7 between the first glass plate 1 and a second glass plate 2. The spacer 3 has consequently a surrounding shape which spaces apart the glass plates 1 and 2 on their edge. It can be made of one piece or can alternatively comprise a plurality of elements having their extremities abutted to form the surrounding shape. The spacer 3 can be metallic, polymeric, a composite material reinforced by glass fibres or a mix of several of these materials. The spacer 3 can be hollow in order to be able to receive for example some drying material. Such spacer 3 is then perforated to allow the drying material to trap water vapor that is coming in the cavity of the IGU. In a particular embodiment, the spacer 3 is made of a transparent material. In this case, the green strength and immediate tack structural adhesive 51 is also made of a transparent material. Preferably, all the elements between the transparent spacer 3 and the glass plates 1 and 2 are made of transparent materials. The advantage of this embodiment is to increase the size of transparent surface of the IGU compared to classical non transparent spacers.
[0032] The spacer 3 is fastened to the first glass plate 1 by means of first immediate tack and green strength structural adhesive seal 51.
[0033] In the present invention, the adhesive 51 can comprise a double side mounting tape, comprising for example a polyurethane foam carrier and an acrylate based adhesive, an acrylic foam carrier and an acrylate based adhesive or a curable thermoplastic sealant. Such sealant will start to cure after application in contact with ambient atmosphere to become structural after curing.
[0034] The immediate tack and green strength structural adhesive seal 51 will allow a very accurate positioning and instantaneous fastening of the spacer 3 to the first glass plate 1. The structural properties of the adhesive 51 will furthermore provide a rigid fastening of the spacer 3 to the IGU.
[0035] The spacer 3 is fastened to the second glass plate by means of a compressible adhesive seal 6.
[0036] In the present invention, the compressible adhesive seal 6 can be a double side soft foam tape, for example a polyethylene foam carrier and an acrylate based adhesive, or alternatively a thermoplastic sealant. A characteristic of this compressible adhesive seal 8 is its capacity to deform itself and to maintain this deformation with a very low force. The importance of such feature will be understood further in the text when describing
[0037] In the present invention, the edge element 4 can either be a continuous peripheral element with a structure surrounding the spacer 3 or can comprise a plurality of disconnected elements placed in the periphery of the spacer 3. Furthermore, the edge element 4 can be hollow or filled. The edge element can have different shapes. It can for instance be U-shaped what is interesting in the case of a frameless window or door as it can receive the fastening or fixing means. Any shape that can fulfil this function is also suitable for frameless window or door. Advantageously, it comprises two opposite surfaces to bond the edge element 4 to the two glass planes 1 and 2. The edge element 2 can be metallic, polymeric, in composite materials reinforced by glass fibres or a mix of several of these materials.
[0038] As already explained above, the edge element 4 can have different uses, for example: [0039] to receive fastenings or fixing means to connect the IGU with another IGU, with a fixed frame or with a building structure; [0040] to strengthen the IGU and reduce its deflection; [0041] to make a seal between the IGU and another IGU, a frame or a building structure; [0042] to protect the edge of the IGU; [0043] to put some cables or wires.
[0044] In this regard, the edge element 2 can be protruding from the IGU, for example to make a seal with surrounding parts.
[0045] The edge element 4 is fastened to the first glass plate 1 by means of a second immediate tack and green strength structural adhesive seal 52 and to the second glass plate 2 thanks to a third immediate tack and green strength structural adhesive seal 53. The immediate tack and green strength structural adhesive seals 52 and 53 will allow a very accurate positioning and instantaneous fastening of the edge element 4 to the glass plates 1 and 2. The structural properties of seals 52 and 53 will on the other hand ensure the mechanical cohesion of the whole IGU according to the invention by sustaining the mechanical constraints induced by the glass own weight, the difference of thermal expansion of the different parts of the IGU, the force of the wind . . . .
[0046] The seals 51, 52 and 53 can be made of the same adhesive or alternatively can be made of different adhesives.
[0047]
[0048] In this embodiment, the rigid fastening of the edge element 4 is ensured by the immediate tack and green strength adhesive seal 52, while the mechanical cohesion of the whole IGU will be ensured by the structural seals 51 and 53 between the spacer 3 and respectively the first glass plate 1 and second glass plate 2.
[0049] The general principle of the invention relies on the fact that one of the spacer 3 and the edge element 4 will be fastened to both the first and second glass plates 1 and 2 by means of structural seals, which will ensure the mechanical cohesion of the IGU and consequently eliminate the necessity to inject a structural sealant between the spacer 3 and the edge element 4 as in the prior art. The other one of the spacer 3 and the edge element 4 will on the other hand be rigidly fastened to either the first glass plate 1 or second glass plate 2 thanks to a third structural seal, while the compressible seal 6 will confer a degree of freedom allowing an efficient and reliable manufacturing of the IGUs according to the invention (see below for more details). The immediate tack and green strength features of the adhesive seals 51, 52 and 53 will furthermore allow a very accurate positioning and quick fastening of the spacer 3 and edge element 4.
[0050] In the embodiments of
[0051] Furthermore, a third glass plate can be fastened to the first glass plate 1 or second glass plate 2 in order to obtain a triple glazing IGU.
[0052]
[0053] At step i), a first glass plate 1 comprising an enamelled area 11 over its entire periphery is disposed.
[0054] At step ii), a spacer 3 covered with a double side mounting tape 51 on its first side is positioned on said enamelled area 11 of the first glass plate 1.
[0055] The double side mounting tape 51 comprises an immediate tack and green strength structural adhesive for example a polyurethane foam carrier and an acrylate based adhesive or an acrylic foam carrier and an acrylate based adhesive.
[0056] The other side of the spacer 3 is also covered with a double side mounting tape 52 comprising an immediate tack and green strength structural adhesive.
[0057] Although in
[0058] At step iii), the first side of an edge element 4 is positioned on the first glass plate 1 with a double side mounting tape 53 in between. The double side mounting tape 53 comprises an immediate tack and green strength structural adhesive. In
[0059] The layer of immediate tack and green strength structural adhesive 53 will allow a very accurate positioning of the edge element 4 while also making possible to store the IGU in a vertical position right after the positioning of the edge element 4.
[0060] The opposite side of the edge element 4 is covered with a compressible adhesive seal 6.
[0061] The compressible adhesive seal 6 can be a double side soft mounting tape, for example a polyethylene foam carrier and an acrylate adhesive, or alternatively a thermoplastic sealant. The compressible adhesive seal 6, on one hand, holds the edge element 4 in position. Another characteristic of this compressible adhesive seal 6 is its capacity to deform itself and to maintain this deformation with a very low force.
[0062] At step iv), a second glass plate 2 also comprising an enamelled area 12 is placed parallel to the assembly obtained at step iii). At step iv) an insulating gas can optionally be injected between the two glass plates 1 and 2, as an advantageous embodiment of the invention.
[0063] At step v), both glass plates 1, 2 are pressed in order to reach the requisite distance between said glass plates 1 and 2 before releasing the pressure. During this step, the compressible adhesive seal 6 deforms itself and maintains its deformation in order not to stretch or even destroy the IGU double seal between the spacer 3 and glass plates 1 and 2.
[0064] During this step, the second glass plate 2 is fastened to the IGU spacer 1 by means of the double side mounting tape 52 and to the edge element 2 thanks to the compressible adhesive seal 6. The double side mounting tape 51 and 52 on both sides of the IGU spacer constitutes an IGU double seal preventing water vapor to get in the IGU cavity and potentially to keep an insulating gas inside the IGU cavity. Additional sealing means to the IGU double seal can be provided in order to increase its tightness capabilities.
[0065] The enamelled areas 11 and 12 will have an aesthetic function by concealing the IGU spacer 3 and the edge element 4 from the view of the people looking through the window or door comprising the IGU according the invention. It is however understood that in other embodiments of the method of the invention, the glass plates do not comprise enamelled areas.
[0066] In other embodiments of the method to produce IGUs according to the invention, the order of steps ii) and iii) can be reversed. The spacer 3 can also for instance be fastened to the first glass plate 1 or to the second glass plate 2 by means of a compressible adhesive seal 6, the edge element 4 being in this case fastened to both the first glass plate 1 and second glass plate 2 thanks to an immediate tack and green strength adhesive.