1) In-Ceram
In-Ceram
1.
Clinical Approach of the In-ceram All Ceramic Crown in Restoration of Anterior Teeth;
In-ceram全瓷冠前牙修复的临床研究
2.
The colour difference of In-Ceram restoration of different thickness;
不同厚度In-Ceram全瓷修复体的色差分析
3.
Comparison the color of In-Ceram alumina substrate by repeated infiltrating firing;
In-Ceram氧化铝基底玻璃料渗透后颜色的比较研究
2) In-Ceram
In-Ceram全瓷
1.
Study of color between opaque-dentine porcelain and In-Ceram glass/alumina composite;
不透明牙本质瓷厚度对In-Ceram全瓷修复体颜色影响的实验研究
2.
A study of color between different thickness of infiltrated alumina substrates and In-Ceram glass/alumina composite;
铝瓷基底厚度变化对In-Ceram全瓷修复体颜色的影响
3) In-Ceram
In-Ceram全瓷修复体
1.
Methods: The experimental group was divided into three groups, 10 specimens for each group, which consistsd of In-Ceram system (A group), the Titanium metal porcelain restoration (B group), and the Ni-Cr alloy porcelain restoration (C group).
方法:实验组为In-Ceram全瓷修复体(A组)、钛金属烤瓷修复体(B组)、镍铬合金烤瓷修复体(C组)。
4) Ceram
陶瓷
1.
Reaction mechanism of aluminithermic synthesis of ceramic raw material series TiB_2-Al_2O_3;
铝热法合成TiB_2-Al_2O_3系陶瓷原料反应机理
2.
Current situation of research and development for antibacterial ceramic products containing silver,such sanitary pottery,domestic ceramics were described at home and broad in this paper.
叙述了国内外载银抗菌陶瓷制品 ,诸如卫生陶瓷、日用陶瓷制品的研究开发现状。
3.
The present state of research and development for antibacterial ceram,such as antibacterial ceram of carrying silver and photocatalyst titania coating was described at recent years.
叙述了近年来抗菌陶瓷 ,诸如载银抗菌陶瓷和光催化二氧化钛涂层抗菌陶瓷的研究与开发现状。
5) In-Ceram alumina
In-Ceram氧化铝
1.
Effect of different infiltration speed on the marginal fitness of In-Ceram alumina base;
不同玻璃渗透方法对In-Ceram氧化铝全瓷冠基底适合性的影响
6) In-ceram Alumina
In-ceram Alumina
参考词条
terric ceram HB
lead magnesio-niobate piezoelectric ceram
particulate toughened composite ceram-ics
Tetric Ceram light cured complex
ceram/casting aluminum alloy composit
胰炎合剂
独立样本
补充资料:infrared ceramic
分子式:TeO2-ZnO-BaO
CAS号:
性质:一种以氧化碲为主组分,同时加入氧化钡、氧化锌经高温熔融而形成的碲酸盐玻璃材料。主要性能:透射波段0.3~0.6μm,折射率2,软化点320℃。适用于透过中、近红外线,用于制作窗口、透镜、棱镜等。
CAS号:
性质:一种以氧化碲为主组分,同时加入氧化钡、氧化锌经高温熔融而形成的碲酸盐玻璃材料。主要性能:透射波段0.3~0.6μm,折射率2,软化点320℃。适用于透过中、近红外线,用于制作窗口、透镜、棱镜等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。