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1)  zinc oxide whisker
氧化锌晶须
1.
Effect of antistatic zinc oxide whisker on the properties of silicone rubber.;
抗静电氧化锌晶须对热硫化硅橡胶性能的影响
2.
Performance improvement of silicone rubber with tetrapod-like zinc oxide whisker
四针状氧化锌晶须改性硅橡胶的性能
3.
Composite based on tetragonal zinc oxide whisker(T-ZnOW)and polypropylene was prepared by hot-pressing molding.
采用热压成型工艺制备了氧化锌晶须(T-ZnOW)/聚丙烯(PP)复合材料,研究了晶须用量、不同偶联剂处理对复合材料导电性能、介电性能的影响。
2)  ZnO Whisker
氧化锌晶须
1.
The performance of fireproof coatings for steel structures were improved by use of the ZnO whisker.
以四角状纳米氧化锌晶须为添加剂来提高钢结构防火涂料的各项性能。
2.
Different shapes and preparation methods (oxidation method,liquid phase method,microwave radiation method,and ion exchange resin method) of ZnO whisker are systematically introduced.
系统地介绍了氧化锌晶须的不同形态和制备方法(氧化法、液相法、微波辐射法、离子交换树脂法),阐述了氧化法制备氧化锌晶须的生长机理及应用前景。
3.
ZnO whisker, the only tetrapod-shaped whisker among all kinds of whiskers, possesses good comprehensive properties.
氧化锌晶须是一种立体四针状单晶体微纤维,其原料来源广泛,成本低廉。
3)  zinc oxide whiskers
氧化锌晶须
1.
The abrasion resistance of screw pump's stator in heavy oil sand-carrying cold production will be improved by adding zinc oxide whiskers;
氧化锌晶须改善稠油冷采中螺杆泵定子的耐磨性能
2.
Surface Modification and Characterization of Zinc Oxide Whiskers;
氧化锌晶须表面改性及表征
3.
In this paper,the microwave absorption behaviors of zinc oxide whiskers were studied.
用四针状氧化锌晶须作为电磁波吸收材料,研究了氧化锌晶须结构对其电磁波吸收性能的影响:用SEM表征了其形貌,分析了氧化锌晶须针状体长径比、截面形貌和晶体结构等结构因素对其在8~12GHz电磁波频段吸收性能的影响,并初步分析了结构导致其电磁波吸收性能差异的原因。
4)  tetrapod-shaped ZnO whiskers
氧化锌晶须
1.
It is demonstrated that the product is the pure zinc oxide with a structure of hexagonal cross sections, and that the tetrapod-shaped ZnO whiskers have the performance of dielectrical dissipation materials in the microwave electromagnetic experime.
 以锌粉为原料,采用碳还原剂控制法制备了四脚状氧化锌晶须
5)  ZnO whiskers
氧化锌晶须
1.
Compressive mechanical properties of ZnO whiskers secondary reinforced composites
氧化锌晶须辅助增强复合材料压缩性能
6)  ZnO nanowhisker
氧化锌纳米晶须
补充资料:多晶莫来石晶须(纤维)
分子式:
CAS号:

性质:莫来石相为主晶相的多晶纤维。化学成分为Al2O3 72%~77%,SiO222%~17%,B2O3 3%~5%,P2O51.5%~3.0%。纤维直径2~7μm,纤维长度20~125μm。使用温度1350℃。多采用溶胶-凝胶法制造。主要用作补强填料,也可作为轻质、隔热保温材料使用。

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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