1) Silicon-based structural ceramic
硅基结构陶瓷
3) Al2O3-matrix engineering ceramics
Al_2O_3基结构陶瓷
4) structural ceramic
结构陶瓷
1.
Thermal stress analysis for structural ceramics during laser beam machining;
结构陶瓷激光加工的热应力分析
2.
Al2O3 structural ceramic has many advantages such as high strength, high hardness and good wear resistance.
Al2O3结构陶瓷具有高强度和硬度且耐磨等诸多优点,但其脆性大,从而制约了其应用。
3.
Silicon resins have become an important joining material for structural ceramics.
有机硅树脂已经成为结构陶瓷的重要连接剂之一。
5) structural ceramics
结构陶瓷
1.
Progress on research of joining structural ceramics with silicon resin;
用有机硅树脂连接结构陶瓷的研究进展
2.
As the present advantaged situation of rare-earth resources in our country,the application and mechanisms of rare-earth element in structural ceramics,such as Al2O3,Si3N4,ZrO2,functional ceramics,such as dielectric ceramics,piezoelectric ceramics,conducting ceramics and glaze materials were elaborated in detail through the rare-earth element atomic structure and chemical characteristic.
针对我国稀土资源得天独厚的现状,从稀土元素的原子结构和化学特性出发,较详细地阐述了稀土元素在Al2O3、Si3N4、ZrO2等结构陶瓷以及介电、压电、导电陶瓷等功能陶瓷和陶瓷色釉料中的应用以及作用机理。
6) structure ceramic
结构陶瓷
1.
The influencing factors of high temperature creep of structure ceramics;
结构陶瓷高温蠕变的影响因素
2.
The results indicated: the PN-2,APN-2 high temperature active filler metals had good ability of plastic deformation,had good wetting property on structure ceramics,its could directly broze structure ceramics,structure ceramics and metals compone.
结果表明 :PN - 2 ,APN - 2高温活性钎料具有良好的塑性变形能力 ,对结构陶瓷具有优异的润湿性 ,可直接钎焊结构陶瓷和结构陶瓷 /金属组
3.
Structure ceramics are becoming popular materials for industrialcomponents, and grinding with diamond wheel has been widely used in theproduction of structure ceramics components.
结构陶瓷材料因其优异的机械、热学等性能而被广泛应用于各个工业领域,显示出优良的适应性和广阔的应用前景。
补充资料:氮化硅晶须补强碳化硅陶瓷基复合材料
分子式:
CAS号:
性质:以碳化硅陶瓷为基体,以氮化硅晶须为增强体的复合材料。它既保留了碳化硅陶瓷优良的耐高温、抗蠕变、抗氧化、抗化学腐蚀、耐磨等性能,又具有比碳化硅陶瓷更高的强度和韧性,最高使用温度可达1400℃以上。由于氮化硅晶须与碳化硅陶瓷基体具有较好的物理相容性,化学性质相近,界面的结合力较强。该复合材料的烧结温度高,界面控制困难,成本高,主要用于航空、航天领域的高温部件。
CAS号:
性质:以碳化硅陶瓷为基体,以氮化硅晶须为增强体的复合材料。它既保留了碳化硅陶瓷优良的耐高温、抗蠕变、抗氧化、抗化学腐蚀、耐磨等性能,又具有比碳化硅陶瓷更高的强度和韧性,最高使用温度可达1400℃以上。由于氮化硅晶须与碳化硅陶瓷基体具有较好的物理相容性,化学性质相近,界面的结合力较强。该复合材料的烧结温度高,界面控制困难,成本高,主要用于航空、航天领域的高温部件。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条