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1)  aluminum film
铝膜
1.
Aluminum film is produced on glass,H13 steel,plastic and pure Cu substrate by resistance heating vacuum evaporation,and the adhesive power of aluminum film is determined and analyzed.
采用电阻加热式真空蒸镀法在玻璃、H13钢、塑料和纯铜基体上镀制铝膜,并对其附着力进行了测试和分析。
2.
When the anode oxided aluminum film was immerced in polymer plastic fluid of all kinds of color, it has attractive decoration effect and wide application prospect.
经各种颜色的高分子浸塑液浸渍过的阳极氧化铝膜,具有诱人的装饰效果和广阔的应用前景。
3.
At the same time,transmission efficiency also can be raised and aluminum film can be protected from air erosion.
铝膜是从紫外到红外都有很高反射率的理想材料,用它来研制的空芯光纤的直线损耗和弯曲损耗均较小。
2)  Al films
铝膜
1.
The preparation techniques of ultrafine-grain/nanocrystalline Al films are reviewed and the influ- ence of technical parameters,such as substrates,argon gas pressure and target power on the microstructure and prop- erties of Al films are summarized as well.
综述了超细晶/纳米晶铝膜的制备技术和制备工艺参数如衬底类型、氩气分压和靶功率等对铝膜结构性能的影响;介绍了目前超细晶/纳米晶铝膜的显微组织、铝薄膜及超薄铝薄膜的研究和其机械性能等研究方面的现状和进展,并展望了超细晶/纳米晶铝膜研究的发展前景。
3)  reflecting aluminum film
铝反光膜
4)  alumina membrane
氧化铝膜
1.
The preferred orientation of alumina micrograin of the alumina membrane was studied byXRD.
利用TG-DTA、BET法分析研究了热处理过程的膜孔径分布、孔径大小及膜的比表面积、比孔容随焙烧温度的变化趋势,并用XRD研究了氧化铝膜的膜内晶体的晶面取向,用TEM、SEM观察用溶胶─凝胶法制备的氧化铝膜的表面及截面形貌。
2.
The tubular alumina membrane with most pore size of 0.
5%的两性表面活性剂卵磷脂,可有效地防止浆料中氧化铝微粒的聚集,制备了孔径基本呈正态分布的氧化铝膜管,最可几孔径为0。
3.
The affecting factors of preparation of γ-AlOOH sol through aluminum isopropoxide hydrolysis and the affecting factors of preparation of alumina membrane from the γ-AlOOH sol were studied.
本文研究了异丙醇铝在一定条件下水解制备γ-AlOOH溶胶的影响因素,探索出制备稳定、清澈γ-AlOOH溶胶的最佳条件,并研究了从γ-AlOOH溶胶制备氧化铝膜的影响因素,通过实验测出所制氧化铝膜的比表面积和孔径分布。
5)  Al thin film
铝薄膜
1.
Process technology for Al thin film deposited by DC magnetron sputtering;
直流磁控溅射制备铝薄膜的工艺研究
2.
The results show that the Al thin films are pure aluminum film with very fine grain.
采用直流磁控溅射法,在硅基片上制备铝薄膜。
3.
Process of Al thin film growth and its interaction with UO2 were investigated by auger electron spectroscopy(AES) and electron energy loss spectroscopy(EELS).
沉积过程中实时采集UO2表面的AES谱和低能电子损失谱(EELS),原位分析铝薄膜在UO2表面的生长过程和膜间界面反应。
6)  aluminum thin film
铝薄膜
1.
Determination of optical constants for aluminum thin film based on combined optimal algorism;
基于混合优化算法测定铝薄膜光学常数
补充资料:氮化铝膜
分子式:
CAS号:

性质:用气相沉积、液相沉积、表面转化或其他表面技术制备的氮化铝覆盖层。氮化铝的电阻率高(1012Ω·cm),热膨胀系数低,硬度高,化学稳定性好,而且热导率也很高(3.2W·cm-1·K-1)。氮化铝在整个可见光和红外频段都具有很高的光学透射率。这些性能都使氮化铝膜在微电子和光电子器件、衬底材料、绝缘层材料、封装材料上有着广阔的应用前景。它可用作声表面波器件,此外,氮化铝还具有良好的耐磨损和耐腐蚀性能,可用作防护膜。

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