1) BaTiO3
BaTiO_3
1.
PTC Characteristic of BaTiO3 Ceramics Doped with Donor La and Acceptor Mn;
施受主杂质La、Mn共掺BaTiO_3陶瓷PTC特性的研究
2.
So a new way for preparing BaTiO3 ceramic concentrated suspen.
采用胶体电空间稳定机制改善陶瓷粉体的分散性,以聚合物电解质PMAA—NH_4为分散剂,利用Zeta电位、沉降实验、粘度测定和粒度分析等手段,研究了分散剂的用量和pH值对BaTiO_3水基悬浮液流变性的影响,并在最佳分散剂用量和pH值条件下,制备出了高分散高稳定的BaTiO_3水基悬浮液。
3.
Media-low temperature sintering technique is- widely used for the fabrication of BaTiO3 based ceramics.
通过B_2O_3蒸汽掺杂,Y-BaTiO_3陶瓷的烧结温度大幅度降低。
2) Ag/ BaTiO_3
Ag/BaTiO_3
3) CuOBaTiO3
CuO-BaTiO_3
5) BaTiO_3 single crystal
BaTiO_3单晶
1.
Investigation on electro-strain effect in Rh-doped BaTiO_3 single crystals;
掺铑BaTiO_3单晶场致应变特性的研究
2.
Domain switching and propagation of an unloaded indentation crack for BaTiO_3 single crystal under residual stress and applied stress in humid air and water have been in situ investigated.
原位研究了残余应力和外加应力导致 BaTiO_3单晶压痕裂纹在湿空气和水中的滞后扩展及畴变。
3.
Effect of humidity on domain switching behaviors in BaTiO_3 single crystal under sustained electric field were investigated by polarized light microscopy(PLM).
通过偏振光显微镜观察了在恒电场作用下湿空气对BaTiO_3单晶畴变的影响。
6) high purity BaTiO_3
高纯BaTiO_3
1.
Presented was the production of high purity BaTiO_3 pow ders for PTC thermistor,semiconductor capacitor and MLCC,including techniques(s olid state reaction,oxalate co-precipitation and hydrothermal synthesis and so o n,main manufacturers annual output and market(price of BaTiO_3 capacity of mark et).
介绍了国内外已产业化的、三种生产高纯BaTiO_3的方法,即:固相法,草酸共沉淀法及水热合成法。
补充资料:acid fast yellow ag
CAS:6373-74-6
分子式:C18H14N4O7S·Na
中文名称:酸性橙3
英文名称:Benzenesulfonic acid, 5-[(2,4-dinitrophenyl)amino]-2-(phenylamino)-, monosodium salt
2-anilino-5-(2,4-dinitroanilino)-benzenesulfonic aci monosodium salt
acid fast yellow ag; acid fast yellow e5r; acid leather light brown g
分子式:C18H14N4O7S·Na
中文名称:酸性橙3
英文名称:Benzenesulfonic acid, 5-[(2,4-dinitrophenyl)amino]-2-(phenylamino)-, monosodium salt
2-anilino-5-(2,4-dinitroanilino)-benzenesulfonic aci monosodium salt
acid fast yellow ag; acid fast yellow e5r; acid leather light brown g
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