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1)  titanium-base alloy
钛基合金
1.
These high temperature materials include heat-resisting steels, iron-base nickel-iron-base, nickel-base, titanium-base alloys, intermetallics and also super-high temperature tungsten-base refractory alloys.
综述了耐热钢、铁基、铁 镍基、镍基、钛基合金、金属间化合物以及钨基超高温材料的发展、应用及其在高温合金领域中的重要研究进展。
2)  Titanium alloy
钛基合金
1.
After four doses of nitrogen ions——3×1017, 6×1017, 9××1017 and 2× 1018N+/cm2 arerespectively injected into Ti -6Al -4V of titanium alloy, microhardness is determined and so is its wearability by scratching tests.
钛基合金Ti-6AI-4V上分别注入3×10~(17)、6×10~(17)、9×10~(17)和2×10~(18)N~+/cm~2四种剂量的氮离了后,进行显微硬度的测定及通过划痕试验测定其耐磨性,结果表明:经离子注入后的钛合金,其显微硬度及耐磨性均有不同程度的提高,但其提高的程度与注入剂量的大小有关,其中,以6×10~(17)和9×10~(17)N~+/cm~2为佳,表明在离子注入技术用于材料改性时,注入剂量与材料表面性能的提高有着密不可分的关系。
3)  Ti-based alloy
钛基合金
1.
Study on Corrosion Behaviors of Fe-based and Ti-based Alloy in Molten LiCl-Li_2O;
铁基及钛基合金在熔融LiCl-Li_2O中的腐蚀行为研究
4)  TiAl-based alloys
钛铝基合金
1.
Present research status of brazing technology of TiAl-based alloys;
钛铝基合金钎焊技术的研究现状
2.
It is of significance to prepare TiAl-based alloys by cold crucible electromagnetic confinement and directional solidification technique because of its unique features without contamination and continuity during process.
冷坩埚电磁约束成形与定向凝固技术对于探索高质量钛铝基合金的制备成形具有重要意义。
5)  TiAl-based alloy
钛铝基合金
1.
Effect of the compression on the oxidation resistance of the siliconized TiAl-based alloy;
压缩变形对渗硅钛铝基合金抗氧化性能的影响
2.
Siliconizing treatment on TiAl-based alloy was conducted by Al-Si molten alloy.
使用Al—Si合金熔体对钛铝基合金进行表面渗硅处理,在表层发生了不同程度的界面反应,生成成分比例不同的以Si,Ti,Al三元素为主的物相。
6)  Ti-V-based alloys
钛钒基合金
1.
Based on a overall review of the research and development of the Ti-V-based hydrogen storage electrode alloys, and the degradation mechanism of the hydrogen storage alloy electrodes, the Ti-V-based alloys were selected as the study objects of this thesis.
在此基础上,确定以钛钒基贮氢电极合金为研究对象,采用XRD/Rietveld、SEM、TEM和AES等材料分析方法以及恒电流充放电、电化学阻抗谱、线性极化、阳极极化和恒电位阶跃等电化学测试技术,对钛钒基合金的成分、相结构与电化学性能三者之间的关系进行了系统的研究,提出贮氢电极合金的“本征/非本征衰退机理”,并以钛钒基合金为实例对该机理进行了验证。
补充资料:钛基超塑性合金
分子式:
CAS号:

性质:以钛为基的超塑性合金。为α+β型两相合金。不需要特殊处理能在一定条件下表现出超塑性。主要有钛5铝2锡、钛6铝4钒、钛15钼、钛6铝5锆4钼1铜0.25硅等。多采用真空自耗电弧炉熔炼或等离子熔炼方法制取。利用其超塑性进行等模锻,可制出复杂形状的精密零件。

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