A kind of manufacturing method of energy-saving glass curtain wall
A production method and technology of energy-saving glass, which can be applied to walls, coatings, building components, etc., can solve problems such as poor thermal environment and high energy consumption, achieve good filtration reduction, significant energy-saving effect, and avoid temperature transfer effects.
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Embodiment 1
[0021] A construction method for an energy-saving glass curtain wall, comprising low-emissivity glass and tempered glass, comprising the following steps:
[0022] Step 1: A hollow structure is provided in the center of the low-e glass, and an inert gas is filled in the hollow structure, and then sealed with a sealant;
[0023] Step 2: Toughened glass is bonded between two pieces of low-e glass through silicone glass glue, and the flat glass is connected to the fixed frame through metal connectors;
[0024] Step 3: A layer of metal film is laid on the outer surface of the tempered glass in step 2, and the thickness of the metal film is 0.45mm;
[0025] Step 4: Spraying a layer of radiation-cured coating on the outer surface of the low-emissivity glass;
[0026] Step 5: coating a layer of nano metal oxide on the ray curing coating in step 4;
[0027] Step 6: laying a layer of photosensitive film on the metal oxide in step 5, the thickness of the photosensitive film is 0.35mm. ...
Embodiment 2
[0035] A construction method for an energy-saving glass curtain wall, comprising low-emissivity glass and tempered glass, comprising the steps of:
[0036] Step 1: A hollow structure is provided in the center of the low-e glass, and an inert gas is filled in the hollow structure, and then sealed with a sealant;
[0037] Step 2: Toughened glass is bonded between two pieces of low-e glass through silicone glass glue, and the flat glass is connected to the fixed frame through metal connectors;
[0038] Step 3: A layer of metal film is laid on the outer surface of the tempered glass in step 2, and the thickness of the metal film is 0.3 mm;
[0039] Step 4: Spraying a layer of radiation-cured coating on the outer surface of the low-emissivity glass;
[0040] Step 5: coating a layer of nano metal oxide on the ray curing coating in step 4;
[0041] Step 6: A layer of photosensitive film is laid on the metal oxide in step 5, and the thickness of the photosensitive film is 0.2mm.
...
Embodiment 3
[0049] A construction method for an energy-saving glass curtain wall, comprising low-emissivity glass and tempered glass, comprising the steps of:
[0050] Step 1: A hollow structure is provided in the center of the low-e glass, and an inert gas is filled in the hollow structure, and then sealed with a sealant;
[0051] Step 2: Toughened glass is bonded between two pieces of low-e glass through silicone glass glue, and the flat glass is connected to the fixed frame through metal connectors;
[0052] Step 3: A layer of metal film is laid on the outer surface of the tempered glass in step 2, and the thickness of the metal film is 0.6 mm;
[0053] Step 4: Spraying a layer of radiation-cured coating on the outer surface of the low-emissivity glass;
[0054] Step 5: coating a layer of nano metal oxide on the ray curing coating in step 4;
[0055] Step 6: A layer of photosensitive film is laid on the metal oxide in step 5, and the thickness of the photosensitive film is 0.5 mm.
...
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