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1)  CCF
面心立方设计
1.
This paper presents a comparative study of three important Central Composite Designs(CCDs) which including Central Composite Circumscribed design(CCC),Central Composite Inscribed design(CCI) and Central Composite Face-centered design(CCF) in Response Surface Methodology.
对响应曲面方法中最重要的三类中心复合设计(CCDs)-外切中心复合设计(CCC)、嵌套中心复合设计(CCI)和面心立方设计(CCF)进行了比较研究。
2)  fcc
面心立方
1.
The coupled twins induced by impurity atom in FCC crystal;
杂质原子在面心立方晶体中诱发的成对挛晶
2.
The theoretical calculations for the structural extinction conditions of fcc and Diamond cubic were supplied.
推导了面心立方点阵和金刚石立方结构的晶体衍射消光条件,并根据理论推算结果成功地对Cu(面心立方)单晶体的透射电镜电子衍射花样和S i(金刚石立方)德拜相进行了标定。
3)  face-centered cubic
面心立方
1.
Simulation of face-centered cubic lattice s First Brillouin zone with 3-dimensional animation;
面心立方晶格第一布里渊区的三维动画模拟
2.
All colloidal crystals have face-centered cubic structures and the structures are highly ordered.
实验结果表明,所得胶晶都具有面心立方结构,结构有序性相当高。
4)  elevation design
立面设计
1.
Combing with engineering practice, this paper introduces the elevation design and structure design of point mode steel pulling cable glass curtain wall.
本文依据黑龙江科技学院实际工程实例,介绍了点式钢拉索玻璃幕墙的立面设计和施工技术。
2.
In this article,the author introduces the elevation design and construction technology of the point\|mode steel pulling cable glass curtain wall.
介绍点式钢拉索玻璃幕墙的立面设计和施工技
3.
To counter the shortcoming of large artificial quangtites and inefficiency in elevation of road intersection, the method of surface fitting is adopted in elevation design of road intersection, which can improve the speed and quality of road intersection design.
针对现行交叉口立面设计手工计算量大、效率低的缺点 ,采用曲面对交叉口进行拟合设计的方法 ,该方法可以提高交叉口立面设计的速度与效率。
5)  facade design
立面设计
6)  vertical design
立面设计
1.
New vertical design method of Y-Intersection;
Y形平面交叉口立面设计新方法的研究
2.
This paper studied fundamental operations and dividing method of surface slices on the basis of bilinear Coons surface model for the vertical design of intersection.
以线性Coons曲面模型为基础,研究了平面交叉口立面设计在线性Coons曲面模型上定义的基本运算和Coons曲面片的划分方法。
补充资料:面心立方晶格
面心立方晶格
面心立方晶格

面心立方晶格(胞)(f.c.c.晶格)

面心立方晶胞如图所示,金属原子分布在立方体的八个角上和六个面的中心。面中心的原子与该面四个角上的原子紧靠。具有这种晶格的金属有铝(al)、铜(cu)、镍(ni)、金(au)、银(ag)、γ-铁(γ-fe,912℃~1394℃)等。

面心立方晶胞的特征是:

一、晶格常数:a=b=c,α=β=γ=90°

二、晶胞原子数:1/8×8+1/2×6=4(个)

三、原子半径:γ原子=四分之根号二a

四、致密度:0.74(74%)

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