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Double-layer heat-preservation stone door and machining method thereof
The invention relates to a double-layer heat-preservation stone door and a machining method thereof. The double-layer heat-preservation stone door comprises a cross beam arranged at the upper end of a stone door body and the stone door body, wherein a three-dimensional adjusting mechanism is fixed to one side of the upper portion of the stone door body; a supporting structure is fixedly arranged on one side of the lower portion of the stone door body; the three-dimensional adjusting mechanism and the supporting structure are located on the same rotating center line; and the stone door body comprises an indoor decorative plate, a natural stone decorative plate, a heat insulation layer, a heat preservation layer, a steel framework and a sectional material. According to the double-layer heat-preservation stone door and the machining method thereof, the heat insulation and sound insulation performance of the double-layer heat-preservation stone door is improved; the overall structure is firm and attractive, and operation is convenient; and meanwhile, in order to reduce the dead weight of the door body and improve the structural strength, a computer three-dimensional simulation means is applied for frame design, fire fighting linkage is achieved in cooperation with a manual or automatic door closer, an electromagnetic lock and a remote control module, and a complete large venue access control system is formed.
本发明涉及一种双层保温石材门及其加工方法,其包括设置在石材门本体上端的横梁和石材门本体,所述的石材门本体上部一侧固定三维调节机构;所述的石材门本体下部一侧固定设置支撑结构;所述的三维调节机构与支撑结构在同一旋转中心线上;所述的石材门本体包括室内装饰板、天然石材装饰板、隔热层、保温层、钢骨架和型材。该双层保温石材门及其加工方法,提高双层保温石材门的隔热、隔音性能;整体结构坚固美观,操作方便,同时为减轻门体自重,增加结构强度,运用计算机三维模拟手段进行框架设计,配合手动或自动闭门器、电磁锁、远程控制模块实现消防联动,组成完整的大型场馆门禁系统。
Double-layer heat-preservation stone door and machining method thereof
The invention relates to a double-layer heat-preservation stone door and a machining method thereof. The double-layer heat-preservation stone door comprises a cross beam arranged at the upper end of a stone door body and the stone door body, wherein a three-dimensional adjusting mechanism is fixed to one side of the upper portion of the stone door body; a supporting structure is fixedly arranged on one side of the lower portion of the stone door body; the three-dimensional adjusting mechanism and the supporting structure are located on the same rotating center line; and the stone door body comprises an indoor decorative plate, a natural stone decorative plate, a heat insulation layer, a heat preservation layer, a steel framework and a sectional material. According to the double-layer heat-preservation stone door and the machining method thereof, the heat insulation and sound insulation performance of the double-layer heat-preservation stone door is improved; the overall structure is firm and attractive, and operation is convenient; and meanwhile, in order to reduce the dead weight of the door body and improve the structural strength, a computer three-dimensional simulation means is applied for frame design, fire fighting linkage is achieved in cooperation with a manual or automatic door closer, an electromagnetic lock and a remote control module, and a complete large venue access control system is formed.
本发明涉及一种双层保温石材门及其加工方法,其包括设置在石材门本体上端的横梁和石材门本体,所述的石材门本体上部一侧固定三维调节机构;所述的石材门本体下部一侧固定设置支撑结构;所述的三维调节机构与支撑结构在同一旋转中心线上;所述的石材门本体包括室内装饰板、天然石材装饰板、隔热层、保温层、钢骨架和型材。该双层保温石材门及其加工方法,提高双层保温石材门的隔热、隔音性能;整体结构坚固美观,操作方便,同时为减轻门体自重,增加结构强度,运用计算机三维模拟手段进行框架设计,配合手动或自动闭门器、电磁锁、远程控制模块实现消防联动,组成完整的大型场馆门禁系统。
Double-layer heat-preservation stone door and machining method thereof
一种双层保温石材门及其加工方法
HU CHUANGANG (author) / SANG YEBING (author)
2021-09-10
Patent
Electronic Resource
Chinese
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
/
B32B
LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
,
Schichtkörper, d.h. aus Ebenen oder gewölbten Schichten, z.B. mit zell- oder wabenförmiger Form, aufgebaute Erzeugnisse
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