Composite fireproof hollow glass for buildings and preparation method and application thereof
A composite, architectural technology, used in buildings, fire doors, building components, etc., can solve the problems of affecting the lighting effect, easy to fog the glass, unable to meet the permeability and temperature control performance requirements of high-end high-rise residential buildings. , to achieve the effect of improving impact strength, excellent mechanical properties and prolonging service life
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Embodiment 1
[0054] Such as figure 1 As shown, this embodiment proposes a composite fireproof insulating glass, which is applied to buildings, especially to medium-to-high-end high-rise buildings. The composite fireproof insulating glass 10 includes: a first glass layer 12 , a first film layer 13 , a second glass layer 14 , a third glass layer 18 , a second fireproof film layer 19 , a fourth glass layer 20 and an electric heating assembly. Wherein, the first glass layer 12 , the second glass layer 14 , the third glass layer 18 and the fourth glass layer 20 are laminated sequentially from outside to inside. The first film layer 13 is disposed between the first glass layer 12 and the second glass layer 14 , and the first film layer 13 bonds the first glass layer 12 and the second glass layer 14 together. The first glass layer 12 is coated with the first anti-reflection film 11 on the side opposite to the first film layer 13, and the second glass layer 14 is coated on the side opposite to th...
Embodiment 2
[0058] Such as Figure 4 As shown, this embodiment proposes a kind of insulating glass. Compared with the above-mentioned embodiment 1, the difference is that in this embodiment, two sets of electric heating components are used, and the two sets of electric heating components are connected in parallel. In this embodiment, the composite fireproof insulating glass 10 The two groups of electric heating components are located at different positions of the composite fireproof insulating glass, bounded by the vertical center line of the composite fireproof insulating glass 10, the first group of electric heating components are located at the left half of the composite fireproof insulating glass 10, the second The group of electric heating components is located in the right half of the composite fireproof insulating glass 10. The input wire 164 of the first group of electric heating components is connected to the output end of the first thermostat, and the output wire 165 of the firs...
Embodiment 3
[0060] This embodiment proposes a compound type fireproof insulating glass. The difference compared with the above-mentioned embodiment 2 is that the diameter of the heating wire 161 in this embodiment is 0.1-0.2 mm. If the diameter of the heating wire 161 is too thin, the wire will be easily broken during the film wire laying stage, thus causing the heating element to fail to work normally; if the diameter of the heating wire 161 is too thick, it will take up more film space and cause the first film Layer 13 cannot firmly bond the first glass layer 12 and the second glass layer 14 with the first anti-reflection coating 11; when the diameter of the heating wire 161 is 0.1-0.2mm, it can ensure the long-term effective work of the heating element , and can ensure that the first film layer 13 has a good bonding ability. Preferably, the heating wire 161 in this embodiment is preferably a tungsten heating wire. Because the heating wires scattered in the first film layer 13 are not ...
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Abstract
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