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1)  crystal alloy
晶态合金
1.
This paper focuses on recent progress of preparation of crystal alloy,nanocrystal alloy, amorphous alloy and composite electrode materials by the electrochemical method, and the mechanism of catalytic activity of hydrogen evolution reaction(HER)is reviewed.
介绍了采用电化学方法制备晶态合金、纳米晶合金、非晶态合金及复合金属等析氢电极材料的研究进展,并对电极催化析氢机理进行了概述。
2)  amorphous alloy
非晶态合金
1.
Preparation and application in welding of bulk Mg_(65)Cu_(22)Ni_3Y_(10) amorphous alloys;
块体Mg_(65)Cu_(22)Ni_3Y_(10)非晶态合金的制备及在焊接中的应用
2.
Formation and crystallized behavior of Mg_(65)Cu_(25)Y_(10) amorphous alloy;
Mg_(65)Cu_(25)Y_(10)非晶态合金的形成及其晶化行为
3.
Study for hydrogenation of furfuryl alcohol to tetrafurfural alcohol on NiB/SiO_2 amorphous alloy catalyst;
NiB/SiO_2非晶态合金催化剂用于糠醇加氢制四氢糠醇的研究
3)  amorphous alloys
非晶态合金
1.
The applications of amorphous alloys uesed in low-temperature fuel cells;
晶态合金催化剂在低温燃料电池中的应用
2.
The influence of anisotropic fields on stress-impedance effect in amorphous alloys;
各向异性场对非晶态合金应力阻抗效应的影响
3.
A method for predicting the crystallization temperature and crystallization driving force of ternary amorphous alloys was provided.
通过对Buschow提出的预测二元非晶态合金晶化温度的"最小空位"模型进行扩展,并进一步结合Miedema理论得到了一种预测三元非晶态合金晶化温度和晶化驱动力的理论方法。
4)  crystalline plating
晶态合金层
5)  NiB/SiO2 amorphous alloy
NiB/SiO2非晶态合金
1.
2,2-Dimethyl-3-(3-methylphenyl)-propan-1-ol was synthesized using NiB/SiO2 amorphous alloy as catalyst and 2,2-dimethyl-3-(3-methylphenyl)propionaldehyde as starting materials through hydrogenation.
以NiB/SiO2非晶态合金为催化剂,2,2-二甲基-3-(3-甲基苯基)丙醛(甲基铃兰醛)为原料,催化加氢合成了2,2-二甲基-3-(3-甲基苯基)丙醇(甲基铃兰醇)。
6)  Al-based amorphous alloy
铝基非晶态合金
1.
Al-based amorphous alloys and nano-Al enhanced amorphous composites have attracted much attention due to a combination of high specific strength, good ductility, corrosion resistance and reasonably low price.
铝基非晶态合金及其非晶复合材料具有高强、高韧、轻质、廉价、耐蚀等特点,具有广阔的应用前景。
2.
Al_(85)Ni_5Y_8Co_2 has the highest glass forming ability in Al-based amorphous alloys to date.
系统研究了铝基非晶态合金AI-Co-Y体系中富AI区的非晶形成能力形成非晶结构最佳成分为Al_(88)Co_5Y_7,条带临界厚度为230μm。
补充资料:非晶态合金
分子式:
CAS号:

性质:一种没有原子三维周期性排列的金属或合金固体。它在超过几个原子间距范围以外,不具有长程有序的晶体点阵排列。和普通晶态金属与合金相比,非晶态金属与合金具有较高的强度、良好的磁学性能和抗腐蚀性能等,通常又称之为金属玻璃或玻璃态合金。可部分替代硅钢、玻莫合金和铁氧体等软磁材料,且综合性能高于这些材料。

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