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1)  nanostructured coating
纳米涂层
1.
It is shown that the nanostructured coating contains α-Al_2O_3,γ-Al_2O_3 and rutile TiO_2 phases,and has a microstructure consisting of fully melted columnar crystal region and partially melted nanostructured region.
研究了等离子喷涂特征参数(CPSP)对Al2O3-13wt%TiO2纳米涂层相组成、微观组织和性能的影响。
2.
Thermal sprayed nanostructured coating is one of the present promising fields in nanostructured coating.
热喷涂纳米涂层的研究是目前纳米涂层领域研究热点之一。
3.
The results show that the wear resistance of the nanostructured coating is better than that of the conventional coating, and the wear mechanism changes of these two kinds of coatings are different with the increase of the wearing load.
结果表明,纳米涂层的耐磨损性能明显好于传统陶瓷涂层,且随着磨损载荷的增大,纳米涂层和传统涂层的磨损机制的变化是不同的。
2)  nano-coating
纳米涂层
1.
Investigation on preparation and electrocatalytic characteristics of Ti-base SnO_2 electrode with nano-coating;
钛基SnO_2纳米涂层电催化电极的制备及性能研究
2.
Modified with ZnO,SnO2,TiO2 nano-coating on α-alumina microfiltration membrane(0.
30μm左右α-Al2O3微滤膜其孔内表面涂覆ZnO、SnO2、TiO2纳米涂层,均可以显著地提高膜的水通量。
3.
Also the development trend of detonation gun was put forward,and it was pointed out that detonation gun spraying is a new method to prepare nano-coating.
本文详细介绍了爆炸喷涂的原理、特点及爆炸喷涂涂层的发展现状 ,并对爆炸喷涂涂层发展趋势作了推测 ,提出纳米涂层是爆炸喷涂涂层的新的发展方向。
3)  Nanostructured Coatings
纳米涂层
4)  nano coating
纳米涂层
1.
Ternary anode nano coating of Ti/interlayer/RuSnCo was prepared by thermal decomposition.
采用热分解法,制备了结构为Ti/中间层/RuSnCo的三元阳极纳米涂层,研究了涂层的结构与物化性能。
2.
Ti-based TiSnRuMn nano coatings for electrolytic manganese dioxide anode(EMD) are prepared by the thermal decomposition.
采用热分解法制备了不同温度和元素含量配比的电解二氧化锰Ti/TiSnRuMn阳极纳米涂层
5)  Nanometer coating
纳米涂层
1.
It is pointed that as the new development trend of the material for arc spraying ,the powder cored wires can be tried to obtain the amorphous coating,metal ceramic coating and nanometer coating.
指出粉芯丝材作为电弧喷涂材料新的发展方向 ,可以用其尝试获得非晶涂层、金属陶瓷涂层及纳米涂层
2.
Study on the Thermal Radiation Properties of Nanometer Coating;
本文首先采用浸渍—提拉法在玻璃基底上制备不同材料的纳米涂层
6)  nanolayered coating
纳米层涂层
补充资料:温控涂层
分子式:
CAS号:

性质:又称热控涂层,是用于航天器的表面,具有特定热辐射性质、调节辐射热交换的表面涂层。这种涂层具有特定的太阳辐射吸收比和红外辐射率,在空间环境中有良好的稳定性。使用这种温控涂层,再配合其他温控措施,就可以使航天器各部位处于合理的温度范围,调节航天器蒙皮的温度梯度以及进入地球背面时的降温速度。

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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