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Production process of heat-insulating explosion-proof hollow glass
The invention relates to the technical field of glass preparation, and particularly relates to a production process of heat-insulating explosion-proof hollow glass. An explosion-proof plate can protect the hollow glass from bursting, and meanwhile, even if the glass is damaged, the phenomenon that glass fragments are scattered cannot occur; when the hollow glass is illuminated for a long time, intramolecular hydrogen bonds formed between hydrogen on hydroxyl in a molecular structure in the explosion-proof plate can be broken, the molecular structure reaches an unstable high-energy state, the molecular structure in the high-energy state returns to a low-energy state by releasing heat, and hydrogen bonds are formed again, so that the explosion-proof plate cannot be affected by ultraviolet rays to be aged; meanwhile, heat-insulating glue is prepared in the process of preparing the hollow glass, and a molecular chain of the heat-insulating glue contains a large number of hindered phenol structures, so that the heat-insulating glue is not prone to aging to cause separation of the explosion-proof plate and the glass, and normal use of the hollow glass is guaranteed; and meanwhile, the heat-insulating glue contains mullite chopped fibers, so that a good heat-insulating effect is achieved.
本发明涉及玻璃制备技术领域,具体涉及一种隔热防爆式中空玻璃的生产工艺,防爆板的设置能够保护中空玻璃发生爆裂,同时即使玻璃破损后也不会出现玻璃碎屑散落的现象,在中空玻璃长时间受到光照时,防爆板内部的分子结构中羟基上的氢之间形成的分子内氢键会发生断裂,而分子结构达到不稳定的高能状态,处于高能状态的分子结构通过释放热量回到低能状态,再次形成氢键,使得防爆板不会受紫外线影响出现老化,同时在制备中空玻璃的过程中制备了隔热胶,该隔热胶分子链中含有大量受阻酚结构,使得隔热胶不易出现老化导致防爆板和玻璃脱离,保证了中空玻璃的正常使用,同时隔热胶内含有莫来石短切纤维具有很好的隔热效果。
Production process of heat-insulating explosion-proof hollow glass
The invention relates to the technical field of glass preparation, and particularly relates to a production process of heat-insulating explosion-proof hollow glass. An explosion-proof plate can protect the hollow glass from bursting, and meanwhile, even if the glass is damaged, the phenomenon that glass fragments are scattered cannot occur; when the hollow glass is illuminated for a long time, intramolecular hydrogen bonds formed between hydrogen on hydroxyl in a molecular structure in the explosion-proof plate can be broken, the molecular structure reaches an unstable high-energy state, the molecular structure in the high-energy state returns to a low-energy state by releasing heat, and hydrogen bonds are formed again, so that the explosion-proof plate cannot be affected by ultraviolet rays to be aged; meanwhile, heat-insulating glue is prepared in the process of preparing the hollow glass, and a molecular chain of the heat-insulating glue contains a large number of hindered phenol structures, so that the heat-insulating glue is not prone to aging to cause separation of the explosion-proof plate and the glass, and normal use of the hollow glass is guaranteed; and meanwhile, the heat-insulating glue contains mullite chopped fibers, so that a good heat-insulating effect is achieved.
本发明涉及玻璃制备技术领域,具体涉及一种隔热防爆式中空玻璃的生产工艺,防爆板的设置能够保护中空玻璃发生爆裂,同时即使玻璃破损后也不会出现玻璃碎屑散落的现象,在中空玻璃长时间受到光照时,防爆板内部的分子结构中羟基上的氢之间形成的分子内氢键会发生断裂,而分子结构达到不稳定的高能状态,处于高能状态的分子结构通过释放热量回到低能状态,再次形成氢键,使得防爆板不会受紫外线影响出现老化,同时在制备中空玻璃的过程中制备了隔热胶,该隔热胶分子链中含有大量受阻酚结构,使得隔热胶不易出现老化导致防爆板和玻璃脱离,保证了中空玻璃的正常使用,同时隔热胶内含有莫来石短切纤维具有很好的隔热效果。
Production process of heat-insulating explosion-proof hollow glass
一种隔热防爆式中空玻璃的生产工艺
LIU YONG (Autor:in) / YAO LEILEI (Autor:in) / LIU NING (Autor:in) / CHANG PING (Autor:in)
02.11.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
/
C08G
MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
,
Makromolekulare Verbindungen, anders erhalten als durch Reaktionen, an denen nur ungesättigte Kohlenstoff-Kohlenstoff-Bindungen beteiligt sind
/
C08J
Verarbeitung
,
WORKING-UP
/
C08K
Verwendung von anorganischen oder nichtmakromolekularen organischen Stoffen als Zusatzstoffe
,
USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
/
C08L
COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
,
Massen auf Basis makromolekularer Verbindungen
/
C09J
ADHESIVES
,
Klebstoffe
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