1)  TiN
氮化态
2)  nitridation
氮化
1.
Nitridation of SAPO-34 Molecular Sieve and Its Application in Methanol Transform into Olefins;
SAPO-34分子筛的氮化及在甲醇制烯烃(MTO)中的应用
2.
Study on Nitridation Reaction of Sialon-SiC from the View of Thermodynamic;
Sialon-SiC材料的氮化热力学研究
3.
Morphology of silicon in corundum silicon-nitride composites after nitridation;
氮化烧成后硅在刚玉氮化硅材料中的赋存形态
3)  nitriding
氮化
1.
TG-DTA on the Nitriding Process of Nitrided NiW Hydrotreating Catalysts;
氮化镍钨加氢精制催化剂氮化过程的TG-DTA研究
2.
A Study on the Nitriding of Low-Carbon Ferromanganese FeMn 84 C0.4;
低碳锰铁FeMn84C0.4氮化的实验研究
3.
The vacuum nitriding eqaipment and process by programmed control;
程序自动控制真空氮化设备与工艺
4)  nitrogenation
氮化
1.
Structural and nitrogenation of Sm_2Fe_(16.5)Ti_(0.5) alloy prepared by HDDR process;
HDDR处理的Sm_2Fe_(16.5)Ti_(0.5)合金的结构与氮化(英文)
2.
The nitrogenation behaviour of Sm_2Fe_(17) and Sm_(10.5)Fe_(88.5)Zr_(1.0);
Sm_2Fe_(17)和Sm_(10.5)Fe_(88.5)Zr_(1.0)的氮化行为
3.
The microstructures, phase compositions, magnetic properties of Sm2F17-type alloys and their nitrides have been studied by means of arc-melting, HDDR and nitrogenation processes.
通过采用电弧炉冶炼、HDDR及氮化的方法,对Sm2Fe17型合金及其氮化物的组织形貌、物相及磁性能进行研究发现,多补偿添加25%钐可使Sm2Fe17型合金退火后的α-Fe含量小于2%。
5)  nitrification
氮化
1.
The results show that a certain degree of increase of SiC content was helpful for nitrification of TiSi2, and SiC particles were nitrified during the SHS p.
结果表明:SiC在一定范围内增加有利于TiSi2的氮化, 且含40%(质量分数,下同)SiC和50%SiC的压坯在燃烧合成过程中发生了SiC的氮化反应。
6)  silicon nitride/hexahedral boron nitride
氮化硅/氮化硼
1.
Machinable silicon nitride/hexahedral boron nitride(Si3N4/h-BN)composite ceramics with silicon(Si)powders and hexahedral boron nitride(h-BN)as raw materials were synthesized in-situ in a nitrogen pressure by combustion synthesis gas-solid reaction.
以硅(Si)粉、六方氮化硼(h-BN)为原料,在氮气(N2)中用燃烧合成(combustion synthesis,CS)气固反应法,原位生成可加工氮化硅/氮化硼(Si3N4/h-BN)复相陶瓷。
参考词条
补充资料:氮化硅晶须补强氮化铝陶瓷基复合材料
分子式:
CAS号:

性质:以氧化铝陶瓷为基体,氮化硅晶须为增强体的复合材料,是一种性能优异的耐高温结构陶瓷。加入氮化硅晶须,可使氧化铝陶瓷的强度、韧性、抗热震性等得到明显的改善。在氧化铝基体中,加入20%(质量)氮化铝晶须制得的复合材料基强度提高了约50%,断裂韧性KIC达到氧化铝基体的1.5倍。这种材料可用于机械受力及耐磨部件以及作为耐热、耐腐蚀部件。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。