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1)  Ti3SiC2 layered ceramic
Ti3SiC2层状陶瓷
2)  Ti3SiC2 ceramic
Ti3SiC2陶瓷
1.
The microstructural evolution during self-propagating high-temperature synthesis (SHS) of Ti3SiC2 ceramic was studied by means of the combustion front quenching method.
本文采用燃烧波前沿淬熄法研究了层状Ti3SiC2陶瓷在自蔓延高温合成(SHS)过程中的显微组织转变过程。
3)  conductive ceramics Ti3SiC2
导电陶瓷Ti3SiC2
4)  Ti3SiC2 multiphase ceramics
Ti3SiC2复合陶瓷
1.
Ti3SiC2 multiphase ceramics with 4% MoS2 were fabricated by hot press sintering (HP).
采用热压烧结法制备MoS2添加量为4%(质量分数)的Ti3SiC2复合陶瓷,并研究其与GCr15钢在干摩擦和油润滑条件下的摩擦磨损特性及磨损机制。
5)  laminated ceramics
层状陶瓷
1.
Study on SiC/Si laminated ceramics fabricated from paper by laminated design;
纸叠层设计制备SiC/Si层状陶瓷研究
2.
The surface flaws of different sizes were introduced into SiC/BN laminated ceramics by Vickers indentation method.
 采用压痕法在SiC/BN层状陶瓷试样的表面引入不同尺寸的表面裂纹,利用三点弯曲测量含裂纹试样的极限断裂应力,研究了不同尺寸的表面裂纹对层状陶瓷断裂强度的影响;根据压痕载荷-强度实验结果,测定层状陶瓷的阻力曲线,并与单相SiC陶瓷对比。
6)  laminated ceramic
层状陶瓷
1.
In the present work,aqueous gelcasting-hot pressing technique to prepare oxide matrix laminated ceramic composites by(using) Al_2O_3(YAG) as matrix layers and LaPO_4 as interfacial layers.
重点研究工艺参数及界面层成分对层状陶瓷复合材料室温性能的影响。
2.
Tribological behavior and wear mechanism of ZrO 2-Al 2O 3 laminated ceramics under dry friction and water lubrication conditions were studied.
结果表明 :相同条件下 ,层状陶瓷的摩擦系数和磨损率均低于单层陶瓷 ,根本原因在于层状陶瓷表面的压应力导致的韧性提高和磨损表面剪切应力的降低。
补充资料:层状结构催化剂
分子式:
CAS号:

性质:在层状结构物中层与层之间引进有机或无机的基因,从而具有催化作用的催化剂。其优点是可通过控制层间距(如0.5~4.0nm),使反应物定向,以达到独特的反应物和产物选择性。层状结构材料可以用天然层状黏土或水滑石等改性,也可以用K2La2Ti3O10等起始层板材料分步交换制得。提高柱层状结构物的热稳定性和水热稳定性,目前还比较困难。

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