A platform for research: civil engineering, architecture and urbanism
Method for making vacuum insulation panel with functional composite using fiber reinforced composite materials
The present invention relates to a method for producing a functional composite material-reinforced vacuum insulated panel using a fiber-reinforced composite material. In particular, the method produces a functional composite material-reinforced vacuum-insulated panel having a structure in which the exterior of a vacuum-insulated panel is surrounded with a fiber-reinforced composite material containing a mixture of strength-reinforcing cut fibers and expanding resin. The present invention can produce a vacuum-insulated panel with improved strength, which may be effectively used as a building material for walls, floors, roofs, and the like of a building; and can maximize insulation effects and improve product durability. Further, due to the structure in which the exterior of the vacuum-insulated panel is surrounded with a strength-reinforcing material containing a mixture of strength-reinforcing cut fibers and expanding closed cell resin, even when an outer skin material of the vacuum-insulated panel is damaged, vacuum can be retained by the closed cells expanded in the strength-reinforcing material, thus preventing a decrease in the insulation effects.
본 발명은 강도보강용 절단섬유 및 발포수지를 혼합한 섬유강화 복합재료가 진공단열패널의 외부를 감싸는 구조로 기능성 복합소재 보강 진공단열패널을 제조하는 것을 특징으로 하는 섬유강화 복합재료를 이용한 기능성 복합소재 보강 진공단열패널 제조방법에 관한 것으로, 강도가 향상된 진공단열패널을 제조할 수 있어 건물의 벽체, 바닥, 지붕 등의 건축구조물용 자재로 효과적으로 활용될 수 있고, 단열 효과의 극대화와 제품 내구성 향상이 도모될 수 있고, 독립 기포(closed cell resin)를 형성하는 발포수지에 강도보강용 절단섬유를 혼합한 강도보강재가 진공단열패널의 외부를 감싸는 구조이므로 진공단열패널의 외피재가 손상되더라도 강도보강재의 발포된 독립 기포(closed cell resin)에 의해 진공을 유지할 수 있고, 단열 효과가 상실되지 않는 장점이 있다.
Method for making vacuum insulation panel with functional composite using fiber reinforced composite materials
The present invention relates to a method for producing a functional composite material-reinforced vacuum insulated panel using a fiber-reinforced composite material. In particular, the method produces a functional composite material-reinforced vacuum-insulated panel having a structure in which the exterior of a vacuum-insulated panel is surrounded with a fiber-reinforced composite material containing a mixture of strength-reinforcing cut fibers and expanding resin. The present invention can produce a vacuum-insulated panel with improved strength, which may be effectively used as a building material for walls, floors, roofs, and the like of a building; and can maximize insulation effects and improve product durability. Further, due to the structure in which the exterior of the vacuum-insulated panel is surrounded with a strength-reinforcing material containing a mixture of strength-reinforcing cut fibers and expanding closed cell resin, even when an outer skin material of the vacuum-insulated panel is damaged, vacuum can be retained by the closed cells expanded in the strength-reinforcing material, thus preventing a decrease in the insulation effects.
본 발명은 강도보강용 절단섬유 및 발포수지를 혼합한 섬유강화 복합재료가 진공단열패널의 외부를 감싸는 구조로 기능성 복합소재 보강 진공단열패널을 제조하는 것을 특징으로 하는 섬유강화 복합재료를 이용한 기능성 복합소재 보강 진공단열패널 제조방법에 관한 것으로, 강도가 향상된 진공단열패널을 제조할 수 있어 건물의 벽체, 바닥, 지붕 등의 건축구조물용 자재로 효과적으로 활용될 수 있고, 단열 효과의 극대화와 제품 내구성 향상이 도모될 수 있고, 독립 기포(closed cell resin)를 형성하는 발포수지에 강도보강용 절단섬유를 혼합한 강도보강재가 진공단열패널의 외부를 감싸는 구조이므로 진공단열패널의 외피재가 손상되더라도 강도보강재의 발포된 독립 기포(closed cell resin)에 의해 진공을 유지할 수 있고, 단열 효과가 상실되지 않는 장점이 있다.
Method for making vacuum insulation panel with functional composite using fiber reinforced composite materials
섬유강화 복합재료를 이용한 기능성 복합소재 보강 진공단열패널 제조방법
JEONG YONG CHAE (author)
2018-11-21
Patent
Electronic Resource
Korean
IPC:
B29C
Formen oder Verbinden von Kunststoffen
,
SHAPING OR JOINING OF PLASTICS
/
B29D
PRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
,
Herstellen besonderer Gegenstände aus Kunststoff oder aus Stoffen in plastischem Zustand
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
European Patent Office | 2019
European Patent Office | 2018
|European Patent Office | 2019