1) anisotrophy
各向异生
2) anisotropic grain growth
各向异性生长
1.
High purity Al2TiO5 powders with anisotropic grain growth were synthesized through the mechanical activated powder mixtures of α-Al2O3 and anatase TiO2 at the condition of relatively low temperature and short plateau time.
采用高能球磨处理方式对合成Al2TiO5的原料混合体系进行高球料比的机械激活处理,在相对低温和短时条件下制备了高纯度Al2TiO5粉体,并使得其各向异性生长特性得以体现,其典型结构特征为棒状晶粒。
2.
But the codoped specimen exhibited anisotropic grain growth and the volume is very large.
8~4nm的无定形层,晶界处的液相同样影响晶界能,从而诱导各向异性生长。
3) induced anisotropy
感生各向异性
4) field induced magnetic anisotropy
磁感生各向异性
1.
Furthermore,a better magnetic annealing effect can be obtained,which results from its larger field induced magnetic anisotropy.
与典型成分的Finemet合金相比 ,该合金铁损和矫顽力很低 ,有优良的综合软磁性能且磁场退火效果很好 ,这种更好的磁场退火效果来源于该合金有大的磁感生各向异性常数Ku。
5) inherent anisotropy
原生各向异性
1.
Difference and connection of soil’s inherent anisotropy and stress-induced anisotropy are compared.
分析了原生各向异性和应力各向异性的区别与联系,认为土体材料的颗粒结构性是各向异性产生的根本原因,复杂的应力状态是各向异性产生的客观条件;强调了各向异性,尤其是应力各向异性在土体本构理论研究中的重要性,对以后各向异性研究方法提出自己的观点。
6) induced anisotropy
次生各向异性
1.
The inherent anisotropy and the induced anisotropy are important characters of soil.
原生和次生各向异性是土体的重要特性,两种各向异性既有区别,又有联系,都与土体所具有的结构性特点密切相关,但所产生的条件和机理有所不同。
2.
S0il anisotropyoriginates from both depeitional and induced anisotropy, and the latter can only come into being underanisotropic consolidation stress.
如果土样承受过的大小主应力比σ_1/σ_3较大,则土的次生各向异性更明显,试验结果表明,当σ_1/σ_3值约大于2。
补充资料:生各支
1.活生生地。
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