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1)  Si 3N 4 ceramic powder
Si_3N_4陶瓷粉末
2)  ceramic powders
陶瓷粉末
1.
Synthesis and analysis of boride ceramic powders;
硼化物陶瓷粉末的合成与分析
2.
borides and composite ceramic powders.
采用自蔓延高温还原合成方法制备TiB2,TiB2-A l2O3和ZrB2-Al2O3陶瓷粉末。
3.
The base principle,key technology,characteristic and progress on synthesis of ceramic powders by solid-state metathesis reactions are described.
本文扼要地介绍了固态复分解反应法制备陶瓷粉末的基本原理、关键技术、特点及其研究进展。
3)  ceramic powder
陶瓷粉末
1.
The experimental research on the low-voltage electromagnetic compaction of PZT ceramic powders;
PZT陶瓷粉末低电压电磁压制实验研究
2.
Research on Selective Laser Sintering of Ceramic Powder;
选择激光烧结陶瓷粉末的研究
3.
Mechanism analysis and experimental research on forming parts by laser sintering ceramic powders;
激光烧结陶瓷粉末成型零件的机理分析和实验研究
4)  Si_3N_4 ceramics
Si_3N_4陶瓷
1.
Three groups of organic substance were selected as the main compositions that were used for preparation of high-efficiency organic grinding fluid for Si_3N_4 ceramics.
选择了三组有机物作为主要成分,制备用于磨削Si_3N_4陶瓷的高效有机磨削液,通过在自行研制的磨削机构上进行磨削效率实睑,发现这几种有机磨削液的磨削性能均优于普通磨削液,磨削效率最低可提高1。
5)  Si_3N_4 ceramic
Si_3N_4陶瓷
1.
The Mechanism of zirconium coating on Si_3N_4 ceramic surface by molten salt reaction has been studied.
研究了Si_3N_4陶瓷表面镀锆的融盐热析出反应,以X射线衍射仪分析了镀膜物相,以电镜(SEM)对镀件进行了显微观察。
2.
The tribological properties of Si_3N_4 ceramic pin sliding against GCr15 steel disc under the lubrication of 500SN base oil containing compound additive T406+P120 were investigated on a MPX2000 friction-wear tester in a pin-on-disc configuration.
对Si_3N_4陶瓷/GCr15钢副在油性剂T406与极压抗磨剂P120复配作用下的摩擦磨损性质进行了对比试验研究。
3.
Silicon nitride is one of the most promising structural ceramics for high temperature applications, it is extremely important in both theory and practice to investigate the bonding of the Si_3N_4 ceramic.
使用Cu-Pd-Ti钎料钎焊连接预金属化的Si_3N_4陶瓷。
6)  Si_3N_4 balls
Si_3N_4陶瓷球
1.
The transition of NiMoO_2S_2 to the surface of Si_3N_4 balls was also found,which shows that NiMoO_2S_2 super-fine powder could be used as a kind of solid lub.
实验结果表明,NiMoO_2S_2细粉能使 Si_3N_4/ GH3128摩擦副在不同温度下的摩擦系数均有所降低,并显著提高室温下 Si_3N_4的耐磨性,同时还发生了 NiMoO_2S_2在摩擦过程中向 Si_3N_4陶瓷球的转移。
补充资料:氮化硅(si_(3)N_(2))基陶瓷制品


氮化硅(si_(3)N_(2))基陶瓷制品


氟化硅(s11N z)基陶瓷制品中国科学院上海硅酸盐研究所供稿
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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