1) Li-ion transfer
锂离子迁移性
1.
Study on electrochemical performance and Li-ion transfer of Li-Mn-○ compound;
Li-Mn-○化合物的电性能与锂离子迁移性研究
2) transference number
锂离子迁移数
1.
8×10~(-6) S/cm when the molecule ratio of O/Li was 16∶1 at room temperature,and the ionic transference number of Li~+ was t_+=0.
8×10-6S/cm,锂离子迁移数t+=0。
3) ionic migration
离子迁移
1.
It is put forward that ionic migration,creation and deposition of composite oxides under certain temperature and electric field result in good bonding between Kovar alloy and K4 glass.
分析了Kovar合金与K4玻璃阳极焊的结合机理和主要工艺参数对连接过程的影响,提出了金属与玻璃的连接机理为电场和温度场作用下的离子迁移、复合氧化物过渡层的生成和沉积,电压、温度、压力及试样表面质量是影响离子迁移和结合的主要因素,相匹配的热膨胀系数是防止开裂保证良好连接的必要条件。
2.
Due to the wire width and the space between wires on PWB becoming finer the insulating capability of PWB is affected by ionic migration, that was not paid enough attention to for a long time.
由于印刷线路板的线宽和线间间隔的细微化 ,以往不引人注意的离子迁移现象已经对线路板的绝缘性能造成影响。
3.
The relationship between the crystallographic structure and ionic migration of lithium niobate single crystals are microscopically analyzed and investigated by their crystallographic characteristics.
利用铌酸锂晶体的结晶学结构特征,从微观角度上分析和研究了铌酸锂晶体的结构与离子迁移之间的关系规律。
5) ion migration
离子迁移
1.
The ion migration process of D.
对直流盘形悬式绝缘子离子迁移过程进行了分析,认为离子迁移微观上表现为绝缘子内部某些金属正离子和自由电子的定向迁移。
2.
LC mechanism suggests that at the begining of the degradation ion migration lower the barrier height,and that when the barrier height decreases to some extent, VC(varistor chain) change to LC.
认为压敏电阻在外电场作用下因离子迁移而发生老化;老化到一定程度后,晶界可变电阻转化为线性电阻,即压敏链转化为线性链。
3.
During diagenesis, ion migration is related wi.
深入研究砂岩的成岩反应 ,是分析孔隙水演化过程中离子迁移的重要环节。
6) ion transfer
离子迁移
1.
In this paper,based on the ion transfer,the mechanism of concrete carbonation is analyzed,the accelerated corrosion phenomenon of concrete was discussed when Cl-and carbonation coexist in the concrete.
本文从离子迁移的角度详细地分析了混凝土的碳化机理,并论述了氯离子和碳化同时存在时混凝土加速腐蚀的现象。
补充资料:迁移性阳离子染料(migratingcationicdye)
【迁移性阳离子染料】(migratingcationicdye)具有分子小、扩散速度高、亲和力低、在染液中能较快地被吸尽的*阳离子染料。易于矫正聚丙烯腈纤维染色过程中的不均匀现象,而得到均匀的色泽。
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