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1)  titanium and titanium alloy Ti6Al4V
钛及钛合金Ti6Al4V
2)  Ti6Al4V alloy
Ti6Al4V钛合金
1.
Experimental Study on Cutting Temperature in High Speed Cutting of Ti6Al4V Alloy;
高速切削Ti6Al4V钛合金时切削温度的试验研究
3)  Titanium alloy Ti6A14V
钛合金Ti6Al4V
4)  titanium and its alloys
钛及钛合金
1.
A simultaneous determination of oxygen and hydrogen in titanium and its alloys on infrared absorption has been described,and the optimal conditions have been obtained.
叙述了用红外吸收法对钛及钛合金中氧和氢联合测定的方法,取得了测定的最佳条件。
2.
Anodizing coloring mechanism of titanium and its alloys was analyzed to make sure the relationship of fiun thickness and coloring power source, so that the technological method and current design parameters were deduced to keep the color consistence of bath production, which provided an available method for coloring of titanium and its alloys.
分析了钛及钛合金阳极氧化着色机理及色膜厚度与氧化着色电源之间的关系,得出了保证成批量着色颜色一致性的工艺方法及电流设计参数,为钛及钛合金着色的应用提供了一种可用的方法。
3.
However, the production and utilization of titanium and its alloys are limited for their high chemical activity at molten state.
钛及钛合金具有密度小、强度高、耐腐蚀等一系列优点,在航空航天、国防军事、民用轻工等领域均有广泛应用前景。
5)  Ti and its alloy
钛及钛合金
1.
The determination of Zr, Ru, Pd, Hf, Cu, Y, V, Mo, Nb, Al, Co, Ni, Ta, Bi, Sn, Cr and Mn in Ti and its alloys have been studied using an atomic emisson spectrum spectroscopy.
采用发射光谱分析技术,研究了钛及钛合金中Zr,Ru,Pd,Hf,Cu,Y,V,Mo,Nb,Al,Co,Ni,Ta,Bi,Sn,Cr,Mn的光谱测定方法。
6)  titanium and titanium alloy
钛及钛合金
1.
Discussion about specified residual elongation stress in the standard of titanium and titanium alloy;
钛及钛合金标准中规定残余伸长应力的探讨
2.
Preparation of metallographic specimen for titanium and titanium alloy used for surgical implants
外科植入物用钛及钛合金金相试样制作浅谈
3.
The paper introduces the possibility of application of the titanium and titanium alloy for wrought products of motorcar.
介绍了汽车中使用钛及钛合金各类加工材的可能性。
补充资料:耐热钛合金
分子式:
CAS号:

性质:可以在高温环境中长期工作的钛合金。能在500℃以下长期工作的主要是高铝当量的马氏体α-β型耐热钛合金,典型的合金有:Ti6Al4V,Ti6Al2.5Mo2Cr0.3Si0.5Fe,Ti6.5Al3.3Mo1.5Zr0.6Mo1Nb等。在500℃以上长期工作的主要是近α型耐热钛合金,典型的合金有Ti6Al2Sn4Zr2Mo,Ti5.5A 12.5 Sn3Zr1Nb0.3Mo0.3Si和Ti7.7Al 11Zr0.6Mo1Nb等。所有耐热钛合金的铝当量一般小于8%,以保证优良的热稳定性。主要用来制造气机中的盘、叶片、导向器、隔圈、进气机匣及其他零件。

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