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1)  orientation of precipitate
析出粒子的取向
2)  precipitating particle
析出粒子
1.
The sheet steel will indicate a better fish-scaling resistance when Ti exists as the state of the precipitating particles.
当Ti以析出粒子存在时,钢板具有更好的抗鳞爆效果。
3)  precipitate particle
析出相粒子
1.
Based on the ordinary grain growth models and synthetically considered curvature driving mechanism and energy driving one,a cellular automaton(CA) model with a novel transition rule for grain growth of material containing precipitate particle was established and the feasibility of simulating the grain growth of the material by CA method was examined.
为了探讨元胞自动机(CA)方法模拟析出相粒子对材料晶粒长大过程影响的应用,在现有晶粒长大CA模型的基础上,综合应用曲率驱动机制和能量驱动机制,建立了适合于含有析出相粒子材料和具有新转变规则的晶粒长大模型,应用该模型对含有不同体积分数析出相粒子的材料晶粒长大过程进行了仿真模拟和定量分析。
4)  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
5)  crystal orientation
晶粒取向
1.
By the analysis of microstructure,XRD pattern and the compressing experiment at room temperature(RT),the effects of the directional solidification technique on crystal orientations and mechanical properties at RT of AZ31 magnesium alloy are studied.
采用自行设计的定向凝固装置制备了AZ31镁合金铸件,通过金相观察、XRD分析和室温压缩试验,研究定向凝固工艺对AZ31镁合金晶粒取向和常温力学性能的影响。
2.
The orientation of the sheets processed by ECAR was changed and the crystal orientation evolved from (0002) basal orientation to non-basal orientation.
对采用等径角轧制工艺(ECAR)制备的ZK60镁合金板材研究发现,与直接轧制的板材相比,等径角轧制板材的晶粒取向由(0002)基面取向演化为非基面取向,经等径角轧制后,板材晶粒没有得到细化,同时形成了大量的平行排列的细密孪晶,强度明显提高。
3.
It is found that the orientation of the sheet processed by ECAR is changed and the crystal orientation evolves from(0002) basal plane orientation to coexistence of basal plane and non-basal plane.
结果表明:经等径角轧制后的板材,晶粒取向由等径角轧制前的(0002)基面取向演化为基面与非基面共存的取向。
6)  particle orientation
颗粒取向
补充资料:择尤取向

晶体在外界条件作用下,某些结晶位向与热流、电流或应力保持一定的相对取向,即晶体中结晶位向呈现某种有规则排列的现象。

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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