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1)  seed orientation
籽晶取向
2)  seed orientation
籽晶取向<冶>
3)  grain orientation
晶粒取向
1.
EBSD study of CVD-W grain orientation and grain boundary;
CVD-W晶粒取向和晶界结构的EBSD研究
2.
Analysis of the grain orientation and texture of friction stir welded magnesium alloy lap joints;
镁合金搅拌摩擦焊接头晶粒取向和织构分析
3.
Effect of nitrogen ion implantation on grain orientation in surface layer of 6061 aluminum;
离子注N对6061铝合金表层晶粒取向的影响
4)  crystal orientation
晶体取向
1.
The surface mapping and crystal orientation of body-centered cubic thin metal tungsten films of different thickness;
体心立方金属W薄膜晶体取向的膜厚尺寸效应及其表面映射
2.
Multi-scale simulation of the deformation in nano-indentation under different crystal orientations
不同晶体取向下纳米压痕的多尺度模拟
3.
The evolvement characteristic of crystal orientation of AZ31 magnesium alloy sheet at different channel clearances and effects of channel clearances on its microstructures and mechanical properties during equal channel angular rolling(ECAR) are investigated.
研究了不同通道间隙下,AZ31镁合金板材在等径角轧制过程中晶体取向的演化特征以及通道间隙对其显微组织和力学性能的影响。
5)  crystallographic orientation
晶体取向
1.
Effects of crystallographic orientation on void growth and coalescence;
FCC晶体中晶体取向对孔洞长大和聚合的影响
2.
Optimization design of crystallographic orientation in single crystal turbine blade;
单晶涡轮叶片晶体取向优化设计
3.
It was found that the persistent slip bands(PSBs) might exhibit different dislocation features depending upon crystallographic orientation,such as ladder structures in the [■ 1 2] crystal and irregular or partially regular cell structures aligned along the primary sl.
结果表明,驻留滑移带(PSBs)的位错结构随晶体取向的不同可呈现出不同的形态,如:[■ 1 2]晶体中的楼梯结构和[■ 2 3]晶体中的沿主滑移面排列的不规则或较规则胞结构。
6)  orientation [英][,ɔ:riən'teɪʃn]  [美]['ɔrɪən'teʃən]
晶面取向
1.
Effect of Triangle Pulse Electric Current on the Orientation in Al-Si Near-eutectic Alloy;
三角波脉冲电流对近共晶Al-Si合金晶面取向的影响
2.
XRD measurement was used to study the effect of sputtering parameters on the orientation of Cr underlayers.
利用X射线衍射法对Cr底层晶面取向和磁控溅射参数之间的关系进行了研究 ,结果表明 :如果改变溅射参数 ,使沉积Cr原子获得较大的能量 ,则有利于Cr底层最终以 ( 110 )晶面择优取向。
补充资料:多晶莫来石晶须(纤维)
分子式:
CAS号:

性质:莫来石相为主晶相的多晶纤维。化学成分为Al2O3 72%~77%,SiO222%~17%,B2O3 3%~5%,P2O51.5%~3.0%。纤维直径2~7μm,纤维长度20~125μm。使用温度1350℃。多采用溶胶-凝胶法制造。主要用作补强填料,也可作为轻质、隔热保温材料使用。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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