1) quasicrystal multi component alloys
准晶多元合金
2) multi-component amorphous alloys
多元非晶态合金
3) multi-component alloy
多元合金
1.
The construction and application of the many-body potential for the Fe-Cr-V-Ni-Si-C system multi-component alloy;
Fe-Cr-V-Ni-Si-C系多元合金的原子间互作用势的构建及应用
2.
Geometry optimization of multi-component alloy clusters;
多元合金团簇构型优化的研究
3.
The electroless plating experimental data of 60 multi-component alloys were analyzed.
利用二维Miedema坐标( 和 )以及加入尺寸因素 R/RA构成的三维化学坐标揭示了化学镀多元合金的非晶形成规律。
4) multi-element alloy
多元合金
1.
The non-equilibrium solidification path of steel AH36 under the specific cooling rate has been numerically calculated by application of the micro segregation mathematic model for solidification of multi-element alloy in the mushy zone.
应用多元合金两相区凝固显微偏析数学模型,对AH36钢在一定冷却条件下的非平衡凝固路径进行了数值计算,获得了相应的局部固相分数与局部温度之间的变化关系,为该钢种对应的连铸浇铸过程仿真及其它凝固过程仿真提供了必要而准确的耦合数据,具有重要的理论意义和广泛的适用性。
2.
This is a preliminary investigation of alloy design for multi-element alloys at electronic and atomic scale.
本文是在电子、原子层次上进行多元合金设计的一个初步探索。
5) multicomponent alloys
多元合金
1.
Simulation of dendritic growth of multicomponent alloys using phase-field method;
相场法模拟多元合金过冷熔体中的枝晶生长
2.
Simulation of effect of latent heat release on solidification process of multicomponent alloys with phase-field method;
相场法模拟潜热的释放对多元合金凝固过程的影响
6) Multicomponent alloy
多元合金
1.
The preparation of multicomponent alloy can optimize material compositions and improve thermoelectric properties.
制备多元合金可以优化材料的成分,提高材料的热电性能。
2.
The rapid dendrite growth of multicomponent alloys is an important research subject in the field of materials science.
多元合金的深过冷与快速枝晶生长是材料科学领域的重要研究课题。
3.
The research status of electroless Ni–P composite plating on magnesium alloy was introduced, including the electroless double-layer composite plating, electroless multicomponent alloy composite plating and electroless powder composite plating.
介绍了镁合金化学复合镀技术的研究现状,包括双层化学复合镀、多元合金化学复合镀和粉体化学复合镀。
补充资料:A1-Cu-Co合金中十次对称准晶单晶体及其衍射图
A1-Cu-Co合金中十次对称准晶单晶体及其衍射图
‘ Al Cu—Co合金中十次对称准晶堕晶体e1)及其衍射圈(z) 中国科学盹垒禹研览听供稿
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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