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Daylighting panel made of weather-resistant fiber reinforced composite material and preparation method of daylighting panel
The invention discloses a weather-resistant fiber reinforced composite material daylighting panel and a preparation method thereof, the weather-resistant fiber reinforced composite material daylighting panel comprises the following raw materials: 50-70 parts of an FRP base material, 10-15 parts of a film, 8-15 parts of alkali-free glass fiber, 10-15 parts of a curing agent, 10-15 parts of a composite material, and 8-15 parts of an anti-aging resin layer. The proportion of the curing agent is 1-6 parts, the proportion of the composite material is 30-35 parts, and the proportion of the anti-aging resin layer is 10-12 parts. According to the weather-resistant fiber reinforced composite material daylighting panel and the preparation method, the polyamide powder and maleic anhydride grafted polyamide in the added composite material can ensure that the water absorption capacity of the daylighting panel is improved, meanwhile, the color difference, brightness and other durability of the daylighting panel are obviously improved, and the daylighting panel provided with the composite material has the advantages that the weather-resistant fiber reinforced composite material has good weather resistance; the tensile load and the tensile strength are improved, so that the overall mechanical property is obviously improved.
本发明公开了一种耐候性纤维增强复合材料的采光板及制备方法,包括以下原材料:FRP基材、薄膜、无碱玻璃纤维、固化剂、复合材料、防老化树脂层,所述FRP基材的份额为50‑70份,所述薄膜的份额为10‑15份,所述无碱玻璃纤维的份额为8‑15份,所述固化剂的份额为1‑6份,所述复合材料的份额为30‑35份,所述防老化树脂层的份额为10‑12份。本发明所述的一种耐候性纤维增强复合材料的采光板及制备方法,本发明中添加的复合材料,其中的聚酰胺粉末、马来酸酐接枝聚酰能保证采光板吸水量的提升,同时其色差和明度等耐久均有明显的提升,且配备有复合材料的采光板,其拉伸载荷和抗拉强度有所提升,以此其整体的力学性能均得到明显的提升。
Daylighting panel made of weather-resistant fiber reinforced composite material and preparation method of daylighting panel
The invention discloses a weather-resistant fiber reinforced composite material daylighting panel and a preparation method thereof, the weather-resistant fiber reinforced composite material daylighting panel comprises the following raw materials: 50-70 parts of an FRP base material, 10-15 parts of a film, 8-15 parts of alkali-free glass fiber, 10-15 parts of a curing agent, 10-15 parts of a composite material, and 8-15 parts of an anti-aging resin layer. The proportion of the curing agent is 1-6 parts, the proportion of the composite material is 30-35 parts, and the proportion of the anti-aging resin layer is 10-12 parts. According to the weather-resistant fiber reinforced composite material daylighting panel and the preparation method, the polyamide powder and maleic anhydride grafted polyamide in the added composite material can ensure that the water absorption capacity of the daylighting panel is improved, meanwhile, the color difference, brightness and other durability of the daylighting panel are obviously improved, and the daylighting panel provided with the composite material has the advantages that the weather-resistant fiber reinforced composite material has good weather resistance; the tensile load and the tensile strength are improved, so that the overall mechanical property is obviously improved.
本发明公开了一种耐候性纤维增强复合材料的采光板及制备方法,包括以下原材料:FRP基材、薄膜、无碱玻璃纤维、固化剂、复合材料、防老化树脂层,所述FRP基材的份额为50‑70份,所述薄膜的份额为10‑15份,所述无碱玻璃纤维的份额为8‑15份,所述固化剂的份额为1‑6份,所述复合材料的份额为30‑35份,所述防老化树脂层的份额为10‑12份。本发明所述的一种耐候性纤维增强复合材料的采光板及制备方法,本发明中添加的复合材料,其中的聚酰胺粉末、马来酸酐接枝聚酰能保证采光板吸水量的提升,同时其色差和明度等耐久均有明显的提升,且配备有复合材料的采光板,其拉伸载荷和抗拉强度有所提升,以此其整体的力学性能均得到明显的提升。
Daylighting panel made of weather-resistant fiber reinforced composite material and preparation method of daylighting panel
一种耐候性纤维增强复合材料的采光板及制备方法
LI JIEMENG (Autor:in) / LI HONGLIN (Autor:in)
12.09.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
B29C
Formen oder Verbinden von Kunststoffen
,
SHAPING OR JOINING OF PLASTICS
/
B29L
INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
,
Index-Schema für besondere Gegenstände in Verbindung mit Unterklasse B29C
/
C08L
COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
,
Massen auf Basis makromolekularer Verbindungen
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