1)  sic foam ceramics
SiC泡沫陶瓷
1.
With the combination of many excellent properties, sic foam ceramics have been becoming potential material.
SiC泡沫陶瓷以其优良的综合性能成为颇具潜力的应用材料,分析了浆料组成成份、粘度、PH值以及相组成、显微组织对SiC泡沫陶瓷性能的影响;分析了当前泡沫陶瓷存在的问题和发展方向。
2)  SiC foam conductive ceramic
导电SiC泡沫陶瓷
1.
The role of SiC foam conductive ceramic for purifying CO and HC of diesel exhaust;
导电SiC泡沫陶瓷在净化柴油车尾气中的作用
3)  Si
Si
1.
DCXRD Investigation of a Ge/Si(001) Island Multilayer Structure;
DCXRD分析Ge/Si(001)多层纳米岛材料(英文)
2.
ICP-AES Determination of Mn,Si,Al,Ti,Nb,La in Ultrahigh Strength Steel;
ICP-AES法测定超高强度钢中Mn,Si,Al,Ti,Nb,La杂质元素
3.
Effects of Trace Si,Ba and Sn on the As-cast Microstructure of AZ91 Magnesium Alloy;
微量Si、Ba、Sn对AZ91铸态组织的影响
4)  Silicon
Si
1.
Mechanism of effect of nutrient silicon and water temperature on phytoplankton;
营养盐Si和水温影响浮游植物的机制
2.
Silicon, aluminium and other, a total of 10 elements in different kinds of biological samples, were measured by ICP-AES.
探讨不同种类生物样品中Si和Al等10种元素的测定方法,采用干灰化结合偏硼酸锂碱熔灰分的前处理方法,用电感耦合等离子体原子发射光谱法(ICP-AES)同时测定试样中Si和Al以及Ca,Mg,Fe,Na,P,Mn,Sr,Ti。
3.
This suggests that sodium attack of both aluminium and Al-12%Si alloy is the result of a reaction between sodium and the silicon contained in the aluminium.
本文研究了纯Al及Al-12%Si合金在液态Na中的腐蚀特性。
5)  Si)
Si)
6)  a-Si
a-Si
1.
Inner circuit and noise equivalent temperature difference (NETD) of the a-Si FPA were analyzed and the equation of NETD was deduced at length.
本文根据对a-Si微测辐射热计焦平面内部的微观电路结构和噪声等效温差(noise equivalent temperature difference,NETD)的分析,经过详细地推导NETD公式,认为可调节两个偏置电压,使焦平面可以在较低的温度下稳定工作。
2.
In this dissertation,preparation and thermoelectric characterization of conventional silicon-based materials and devices have been studied, including amorphous silicon (a-Si) films, polycrystalline silicon germanium (polySiGe) films and amorphous silicon thin-film-transistors (a-Si TFT).
本文深入系统地研究了a-Si薄膜、polySiGe薄膜和a-Si TFT等三种常规硅基材料和器件的制备方法和热电特性,开发了一套新型的基于多孔硅牺牲层技术的MEMS-IC集成工艺,利用该工艺成功地制作了a-Si和polySiGe薄膜电阻式测辐射热计,在国际上首次提出并实现了基于a-Si TFT的室温红外探测器单元与8×8阵列原型,器件初步具备了室温红外热成像的能力。
参考词条
补充资料:泡沫陶瓷
分子式:
分子量:
CAS号:

性质:一种多孔而质的陶瓷。如陶粒和轻质砖等。在易熔的粘土等中加入起泡剂如碳酸盐、煤粉、炭粒或木屑等,经混合、成型、干燥、烧成而得。具有高的机械强度和良好的绝热性能。广泛用作轻质建筑材料和隔热材料。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。