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Long-afterglow luminescent flexible building material and preparation method thereof
According to the long-afterglow luminescent flexible building material and the preparation method thereof, the long-afterglow luminescent material is applied to a flexible low-temperature curing building material, the luminescent property of the luminescent material can be effectively kept, the luminescent material is fixed in a luminescent layer, and the effective time of the luminescent function is prolonged. The long-afterglow luminescent flexible building material comprises a base layer and a luminescent layer located on the base layer, the base layer comprises the following raw materials in percentage by mass: 20-80% of modified inorganic powder, 5-50% of emulsion or latex powder, 1-20% of reinforced fibers, 1-20% of cement, 1-20% of quartz sand and 5-50% of water; the raw materials of the light-emitting layer comprise a main body material and long-afterglow light-emitting powder, the mass ratio of the long-afterglow light-emitting powder to the main body material is (6: 4)-(1: 9), and the main body material comprises the raw materials and the raw material dosage which are the same as those of the basic layer.
本发明公开一种长余辉发光柔性建筑材料及其制备方法,将长余辉发光材料应用于柔性的低温固化建材材料,能有效保持发光材料的发光性能,且发光材料被固定于发光层中,提高发光功能的有效时间。该长余辉发光柔性建筑材料,包括基本层和位于基本层之上的发光层;以质量百分比计:所述基本层的原料包括改性无机粉20‑80%、乳液或乳胶粉5‑50%、增强纤维1‑20%、水泥1‑20%、石英砂1‑20%和水5‑50%;所述发光层的原料包括主体料和长余辉发光粉,所述长余辉发光粉和所述主体料的质量比为(6:4)‑(1:9),所述主体料包括的原料及原料用量与所述基本层相同。
Long-afterglow luminescent flexible building material and preparation method thereof
According to the long-afterglow luminescent flexible building material and the preparation method thereof, the long-afterglow luminescent material is applied to a flexible low-temperature curing building material, the luminescent property of the luminescent material can be effectively kept, the luminescent material is fixed in a luminescent layer, and the effective time of the luminescent function is prolonged. The long-afterglow luminescent flexible building material comprises a base layer and a luminescent layer located on the base layer, the base layer comprises the following raw materials in percentage by mass: 20-80% of modified inorganic powder, 5-50% of emulsion or latex powder, 1-20% of reinforced fibers, 1-20% of cement, 1-20% of quartz sand and 5-50% of water; the raw materials of the light-emitting layer comprise a main body material and long-afterglow light-emitting powder, the mass ratio of the long-afterglow light-emitting powder to the main body material is (6: 4)-(1: 9), and the main body material comprises the raw materials and the raw material dosage which are the same as those of the basic layer.
本发明公开一种长余辉发光柔性建筑材料及其制备方法,将长余辉发光材料应用于柔性的低温固化建材材料,能有效保持发光材料的发光性能,且发光材料被固定于发光层中,提高发光功能的有效时间。该长余辉发光柔性建筑材料,包括基本层和位于基本层之上的发光层;以质量百分比计:所述基本层的原料包括改性无机粉20‑80%、乳液或乳胶粉5‑50%、增强纤维1‑20%、水泥1‑20%、石英砂1‑20%和水5‑50%;所述发光层的原料包括主体料和长余辉发光粉,所述长余辉发光粉和所述主体料的质量比为(6:4)‑(1:9),所述主体料包括的原料及原料用量与所述基本层相同。
Long-afterglow luminescent flexible building material and preparation method thereof
一种长余辉发光柔性建筑材料及其制备方法
CHEN ZHIFENG (Autor:in) / ZHANG ZHIPENG (Autor:in) / WANG XIAOJIAO (Autor:in) / LI ZHIHONG (Autor:in) / ZHONG BAOMIN (Autor:in)
30.08.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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