1) Mg-B binary system
Mg-B二元体系
2) Li-Mg-B-H system
Li-Mg-B-H体系
1.
TiF3 was mechanically milled with 2LiH+MgB2 mixture and its effect on the reversible dehydrogenation of Li-Mg-B-H system was examined.
结果表明,掺杂TiF3可显著改善Li-Mg-B-H体系的可逆吸/放氢性能。
3) binary system
二元体系
1.
Phase diagram of binary system PE-AMP;
多元醇PE-AMP二元体系相图
2.
Methods for calculation of the critical properties of binary systems with supercritical CO 2;
CO_2二元体系临界性质计算方法的研究
3.
The experimental phase diagram of binary system trimethylol ethane-tris(hydroxymethyl)aminomethane(PG-TAM) was established by three kinds of techniques: differential thermal analysis(DTA) method, X-ray diffraction and IR spectra at various temperatures.
多元醇在固-固相变时能够可逆地吸收大量的热而被用做贮热材料,特别是三羟甲基乙烷(PG)和三羟氨基甲烷(TAM)构成的二元体系,有很宽的适宜于太阳能贮存的温度范围。
4) Mg-Ni
Mg-Ni体系
5) Mg-W system
Mg-W体系
1.
A Mg-W system prepared for graded density impactor(GDI) for quasi-isentropic compression was proposed by means of numerical simulations.
2 mm和Mg-W最大阻抗混合质量分数的致密条件限制,开展了对新的Mg-W体系密度梯度飞片实现冲击加载-准等熵加载过程计算设计,给出了满足加载要求的飞片结构特征;从计算给出的粒子速度波剖面可见,密度梯度飞片波阻抗分布对加载过程和加载强度非常敏感,通过精心设计准连续型变阻抗的梯度飞片,可以进行不同复杂加/卸载过程的物理模型设计和实验研究。
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