1) superfine cellular crystal
超细胞晶
1.
6μm and a novel "superfine cellular crystal", which is the extremely fine needle like cell .
6μm的细枝晶和完全无侧向分枝的“超细胞晶”。
2) supercell
超晶胞
1.
The optical properties and electrical structure of V in ZnS supercell have been computed by means of plane wave pseudo-potential method(PWP) with generalized gradient approximation(GGA).
运用密度泛函平面波赝势方法(PWP)和广义梯度近似(GGA),对替代式掺杂钒(V)的闪锌矿(ZnS)的超晶胞电子结构进行了计算。
3) super cell
超晶胞
1.
Secondly,the equilibrium morphology calculations were processed on gibbsite 3×4×2 super cell and its (001),(100),(010),(011),(110),(101) and (112) slab models.
首先,用BFDH法说明了生长过程中最重要的面;其次,采用晶体平衡形态(Equilibrium morphology)法,用Morphology程序对氢氧化铝3×4×2超晶胞及其(001),(100),(010),(011),(110),(101)和(112)面真空slab模型进行平衡形态计算,计算结果与实验结果吻合,很好地预测了各显露面族(001),(100),(010),(011),(110),(101)和(112)面族。
4) superfine grain
超细晶粒
1.
The use of the die successfully produced superfine grain columnar material with average grain size as 1.
5μm的超细晶粒纯铜柱状材料,经实验分析,所获得超细晶粒纯铜的许多力学性能指标均得到了提高,抗拉强度从原来的235MPa提高到420MPa,硬度从114HV提高到184。
2.
The planking of superfine grain is made by the mold in laboratory,such as 5A02.
利用该模具,可以在实验室制备具有超细晶粒度的板状材料。
5) ultrafine crystallite
超细晶体
6) ultrafine-grained copper
超细晶铜
1.
The fatigue deformation and damage behavior of ultrafine-grained copper produced by equal channel angular pressing were investigated at different stress amplitudes ranging from 100 MPa to 200 MPa.
分别在应力幅为100 MPa、150 MPa和200 MPa下研究了等通道转角挤压制备的超细晶铜的疲劳变形及损伤行为。
补充资料:超复杂细胞
超复杂细胞
hypecomplex cell
超复杂细胞(hypeeompze、eelz)参见“特征检察器·。
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