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1)  anti-ultraviolet
抗紫外线
1.
Study on the Capability of Anti-ultraviolet Rays of Tussah Silk Fibroin Powder and the Compatibility with Cosmetics;
柞蚕丝素粉的抗紫外线能力及其与化妆品相容性的研究
2.
Influence of structural parameters of polyester fabric on its anti-ultraviolet properties;
结构参数对涤纶长丝织物抗紫外线功能的影响
3.
At the same time,nanometer powders with anti-ultraviolet property were added into the coating reagent.
采用对环境污染小的水性聚氨酯作涂层剂,利用自制的羊毛角蛋白溶液对其进行改性以提高涂层织物的透湿性能,同时向涂层剂中加入抗紫外线纳米粉体。
2)  Anti-UV
抗紫外线
1.
It was shown that the performances of silk treated were improved,including the wrinkle-resistant,anti-UV and anti-bacterial.
结果表明:经整理的真丝织物抗皱、抗紫外线辐射、抗菌效果均有所提高。
2.
5 respectively,which show good anti-UV properties except yellow dyes.
5,除黄色外都达到了很好的抗紫外线效果。
3)  anti-ultraviolet ray
抗紫外线
1.
The treated fabrics have been tested by the ultraviolet ray protects system,and the results showed that better anti-ultraviolet ray effect is obtained after finished,when the content of .
用紫外线防护系统测试织物,发现整理后织物具有较好的抗紫外线效果,且当纳米TiO2含量在1。
2.
Test results indicated the textile added with the modified power has high antimicrobial and anti-ultraviolet ray efficiency.
选用 Span80对纳米级 ZnO、TiO_2和抗菌粉体进行表面处理,使 Span80包覆于粉体表面,不但解决了粉体的严重团聚问题,而且将粉体的表面由极性变为非极性,在纺丝过程中能很好的与纤维表面相结合,测试结果表明,加入这种粉体生产的织物的抗菌和抗紫外线效率很高。
3.
These kinds of structural fabrics are suitable for the functional sportswear which both have moisture-transfer and fast drying properties and anti-ultraviolet ray functions.
根据功能性运动服装对织物的导湿快干和抵抗紫外线要求,选用不同细度、具有沟槽结构的新型聚酯纤维,利用点、线接触,差动效应的原理,设计出单面菠萝花织物、双面鱼眼组织织物和三层法式罗纹组织织物等3种新型结构的针织织物。
4)  anti-ultraviolet radiation
抗紫外线
1.
The properties of anti-ultraviolet radiation and fastness to light of wool fabric before and after treating were also tested.
测试了羊毛织物的抗紫外线和耐日晒性能。
5)  uviofast
抗紫外线的
6)  UV resistant properties
抗紫外线性
1.
The UV resistant properties and antibacterial activity of composite film were also discussed.
研究了纳米ZnO复合聚苯丙乳液涂膜的抗紫外线性能和抗菌性能,结果表明使用纳米ZnO复合聚苯丙乳液的涂层材料具有明显的抗菌和吸收紫外线功能。
补充资料:抗紫外线增效剂
分子式:
CAS号:

性质:为提高塑料制品在紫外光线下的稳定作用通常加入光稳定剂,如紫外吸收剂,它可吸收紫外光并将其能量放出。为提高其稳定性常与其他种类的光稳定剂如猝灭剂、自由基捕捉剂等配合使用,使用效果大于单一稳定剂,可获得产生光稳定性良好的协同效应,体系中所配合使用的其他协同助剂称抗紫外线增效剂。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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