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1)  cubic laves phase
立方Laves相
1.
95 substantially retained the MgCu 2 type C 15 cubic Laves phase structure and the lattice constant increases with increasing x.
95完全保持MgCl2立方Laves相结构 ,晶格常量a随Al含量x的增加而增大 。
2)  Laves phase
Laves相
1.
Research progress in TaCr_2 Laves phase intermetallics;
Laves相TaCr_2金属间化合物的研究进展
2.
Vacuum sintering of Laves phase Nb-Cr alloy;
Laves相Nb-Cr合金的真空烧结
3.
Structure and electrochemical properties of Ti-based Laves phase hydrogen storage alloy;
Ti基AB_2 Laves相合金的结构与电化学性能
3)  Laves phase
Laves 相
1.
35)Fe_2 alloys with high magnetostriction under low magnetic field are prepared by melting- top casting- annealing process,and its structure belongs to MgCu_2 cubic Laves phase structure.
35)Fe_2四元合金,合金为 MgCu_2型 Laves 相结构。
4)  Laves phase NbCr_2
Laves相NbCr_2
5)  Laves-Fe_2Mo Phase
Laves-Fe_2Mo相
6)  Laves phase NbCr2
Laves相NbCr2
1.
Laves phase NbCr2 alloys with a stoichiometric composition were prepared by mechanical alloying followed by hot pressing.
采用机械合金化+热压工艺路线来制备化学配比成分的单相Laves相NbCr2合金。
2.
The application of Laves phase NbCr2 at high temperaturs (over 1200℃) as high temperature structural materials in aeronautical and astronautical field is hindered by its poor high temperature oxidation resistance.
Laves相NbCr2的高温抗氧化性能限制了其作为高温结构材料在1200℃以上的应用进程。
3.
Laves phase NbCr2 reinforced Nb matrix composites were prepared by mechanical alloying followed by hot pressing.
采用机械合金化+热压工艺制备了Laves相NbCr2增强的Nb基复合材料。
补充资料:Hilbert立方体


Hilbert立方体
Hflbert cube

s沁口目s脚止)).这是一个内容丰富成果丰硕的研究领域. 【AI]中有绝好的介绍及参考文献.1翻卜时立方体〔f口加时。谕.;几几诵epT佃二.钾.,l HIIb叮空间(托1饮成sP别笼)l:的子空间,它的点x一(xl,xZ,…)满足条件0‘x,‘(合)一,,2,·…Hilbert立方体是一个紧统(印代甲aCtllnl),拓扑等价(同胚)于可数多个区间的T叮oHoB积,即毛盯OHo.立方体(T泪如加v CUbe)I从。.这是具有可数基的度量空间类中的万有空间(u苗记岛沮sp即笼)(yP“coH摩粤化定理(Ul笋ohnn毖tri皿山nd笙幻reln)). B .A.nac卜川劝B撰【补注】到山比d立方体的拓扑结构是在无穷维拓扑这一领域内得到研究的(见无穷维空间(而丽记~dinrn-
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