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1)  Ti Ni hydrogen storage alloy
钛-镍贮氢合金
2)  rare earth nickel type hydrogen storage alloy
稀土-镍贮氢合金
3)  TiFe hydrogenated alloy
钛铁贮氢合金
4)  Ti-Ni alloy
钛镍合金
1.
A new kind of boron nitride based shell mold used for investment casting titanium alloys was fabricated and the reaction between it and Ti-Ni alloy was investigated.
研究了一种新型钛合金精密铸造用型壳——氮化硼基复合型壳及其与钛镍合金的界面反应和反应层的形成机制。
2.
The practicability on Ti-Ni alloy manufactured by direct electrochemical reduction of TiO2 and NiO oxides was investigated.
研究了利用熔盐电解法从金属氧化物中直接电解制备钛镍合金的可行性。
5)  NiTi alloy
镍钛合金
1.
Application of NiTi alloy bronchial occlusive device in bronchial fistula occlusion;
镍钛合金支气管封堵器在支气管瘘封堵中的应用
2.
Phase transformation from austenite to martensite in NiTi alloy strips under uniaxial tension has been observed in experiments and has been numerically simulated as a localized deformation.
单向拉伸镍钛合金带中从奥氏体到马氏体的相变已在实验中观测到,并被看作为局部变形进行了数值模拟。
3.
This paper describes the biomimetic synthesis of calcium phosphate composite coating with chitosan on NiTi alloy.
将高浓度模拟体液5×SBF与壳聚糖溶液相互结合,在预处理后的镍钛合金基体上快速形成了含壳聚糖的钙磷复合涂层。
6)  NiTi alloys
镍钛合金
1.
The surfage modification of NiTi alloys grafted by silylation MPEG;
硅烷化甲氧基聚乙二醇接枝改性镍钛合金
2.
A coating on NiTi alloys surfaces was prepared under diethylene glycol dimethyl ether (diglyme) microwave cold-plasma in electron cyclotron resonance conditions.
在微波电子回旋共振低温等离子体条件下,用二乙二醇二甲醚为试剂对镍钛合金进行表面改性。
3.
However, NiTi alloys have high resistance to deformation, low thermo-conductivity, non-uniform deformation during hot processing.
本文着重进行了以下几个方面的研究: 采用DEFORM-3D商用软件对镍钛合金管坯等温挤压过程进行数值模拟分析。
补充资料:钛铁贮氢合金
分子式:
CAS号:

性质:一种性能优良、成本低廉的贮氢材料。它吸氢量大,含氢重量比为1.8%,吸放氢迅速,这些优点对其应用十分有利。不足之处是活化困难,须加热到250℃以上作反复的充氢——抽空操作,另外抗中毒能力差。这些缺点可以通过Mn、Co等合金化加以改善。TiFe合金已在氢的贮存净化、氢压机等领域获得应用。

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