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1)  zirconia foam ceramics
氧化锆泡沫陶瓷
2)  Al2O3 ceramic foam
氧化铝泡沫陶瓷
1.
The research development and production of Al2O3 ceramic foam filters used in molten steel and high temperature alloys were introduced and the recent overseas progress on the application of Al2O3 ceramic foam filter are presented.
介绍了目前国内外铸钢与高温合金用氧化铝泡沫陶瓷材料的研制与生产现状,以及国外在这类泡沫陶瓷过滤器的应用技术方面的最新进展。
3)  zirconia ceramics
氧化锆陶瓷
1.
The effects of coatings with three different SiO_2 thickness on shear bonding strength of zirconia ceramics to the opaque dentin porcelain
三种厚度硅涂层对氧化锆陶瓷与牙本质瓷结合强度的影响
2.
Adhesion of oral Streptococcus mutans in zirconia ceramics polished and glazed under shaking cultivation
振荡培养条件下变形链球菌在牙科氧化锆陶瓷表面黏附的实验研究
3.
The characterizations of the zirconia ceramics and the important properties such as thermal shock resistance and chemical stability of the setter plate used for sintering of MnZn ferrites have been described.
对氧化锆陶瓷的特征以及用作MnZn铁氧体烧结承烧板(SetterPlate)的主要性能,如抗热震性、化学稳定性作了阐述。
4)  zirconia ceramic
氧化锆陶瓷
1.
Preliminary study on biocompatibility of zirconia ceramic with skin tissues;
氧化锆陶瓷与皮肤组织生物相容性的初步研究
2.
The phase stability of zirconia ceramics doped with stabilizers plays an important role in obtaining metastable tetragonal phase and phase transformation toughening.
综述了国内外稳定氧化锆陶瓷研究的现状及其发展趋势,稳定剂对氧化锆的稳定作用,单一稳定和复合稳定氧化锆陶瓷的性能对比以及近年来其他稳定剂(Nb2O5、Ta2O5、La2O3等)对氧化锆的稳定作用的研究进展。
3.
Objective:The biological safety of zirconia ceramics dopanted with 5 kinds of colorants were tested by in vitro cytotoxicity.
目的:对掺杂5种微量着色剂的氧化锆陶瓷的生物安全性进行初步评价。
5)  zirconium oxide ceramics
氧化锆陶瓷
1.
After study and tests, zirconium oxide ceramics is selected as the material for the frame of the potentiometer, and the problem is solved.
经研究和试验,改用氧化锆陶瓷材料制作电位器骨架,比较好地解决了这一问题,这是一条提高高温高湿条件下线绕电位器绝缘电阻的途径。
6)  SiC foam ceramics
泡沫碳化硅陶瓷
1.
Electrical properties of SiC foam ceramics;
泡沫碳化硅陶瓷的导电性能
2.
The growth of SiC whiskers by in-situ on the surface of SiC foam ceramics;
泡沫碳化硅陶瓷表面原位生长碳化硅晶须
补充资料:锆英石陶瓷
分子式:
CAS号:

性质:以锆英石(ZrSiO4)为主要成分的陶瓷。四方晶系结构。密度3.5~3.8g/cm3。热导率4.2~6.3W/(m·k)。抗拉强度70~105MPa。抗压强度560~1050MPa。抗弯强度140~245MPa。弹性模量115~173GPa。介电强度10.6~14.87kV/mm。介电常数8~9。申眉目率1013~1015Ω·cm(室温)。介质损耗角正切值(6~20)×10-4(/MC)。良好的抗热震性、耐酸性。耐碱性不佳。有时原料中含有放射性二氧化钍,要注意保护。生产工艺与一般特种陶瓷相似。主要用于制作火花塞、高强度高温电瓷、瓷舟、坩埚、高温窑炉用的承烧板、熔制玻璃炉的炉衬、红外辐射陶瓷等。

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