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1)  Ti40 burn resistant alloy
Ti40阻燃合金
2)  Ti40 burn resistant titanium alloy
Ti40阻燃钛合金
1.
Mechanism of V and Cr on mechanical properties of Ti40 burn resistant titanium alloy;
钒和铬对Ti40阻燃钛合金力学性能的影响机制
2.
Heat treatment of Ti40 burn resistant titanium alloy;
Ti40阻燃钛合金热处理的研究
3)  Ti40 alloy
Ti40合金
1.
Ti40 alloy is a new type burn resistant titanium alloy developed by China.
阻燃钛合金具有重要的应用前景,Ti40合金是我国研制的新型阻燃钛合金。
2.
This paper presented the fatigue crack propagation behavior of Ti40 alloy at room temperature, 300, 500 and 600 ℃, and the apparent active energy of Ti40 alloy at 300, 500 and 600 ℃ was calculated when ?K was 20 MPa·m1/2.
研究了Ti40合金在室温、300、500和600℃下的疲劳裂纹扩展行为,计算了Ti40合金在300、500、600℃下当△K为20MPam1/2时与裂纹扩展密切相关的表观激活能。
3.
Ti40 alloy is a new burn resistant titanium alloy designed for aeroengine in case the titanium burning under friction at high temperature.
Ti40合金是我国针对航空发动机钛结构件在高温、受摩擦条件下易燃问题而研制的一种新型阻燃合金,其名义成份为Ti-25V-15Cr-xSi。
4)  burn resistant titanium alloy
阻燃钛合金
1.
Ti40 alloy is a new type burn resistant titanium alloy developed by China.
阻燃钛合金具有重要的应用前景,Ti40合金是我国研制的新型阻燃钛合金。
5)  Ignition proof magnesium alloys
阻燃镁合金
1.
At present, the research and development about ignition proof magnesium alloys have received much attention all over the world, and consequently many researches have been carried out.
综述了阻燃镁合金的研究开发现状,尤其是Ca、Be、Zn和稀土在镁合金中的阻燃作用及其阻燃机理,指出了阻燃镁合金研究目前还存在的问题和今后的研究重点。
2.
The current situation of the research on the ignition proof magnesium alloys is reviewed.
介绍了镁合金的燃烧机制,总结了阻燃镁合金的研究现状,分析了合金元素Ca、Be、Zn和稀土的作用,指出其未来发展的方向。
6)  burn-resistant titanium alloy
阻燃钛合金
1.
Two Ti-V-Cr system burn-resistant titanium alloys of Ti-25V-15Cr-0.
2Si2种阻燃钛合金,分别测试其在不同热暴露和蠕变工艺条件下的热稳定性能和蠕变性能,并观察了组织。
2.
Three kinds of Ti-V-Cr burn-resistant titanium alloys with different V contents have been prepared.
配制不同V含量的3种阻燃钛合金,分别测试其在不同热暴露和蠕变工艺下的热稳定性能和蠕变性能,并观察其显微组织。
3.
To avoid the shortages of body burn-resistant titanium alloy like lower ratio strength, poor work process property and expensive cost, Cu element was introduced into the Ti-6Al-4V substrate by using double glow plasma surface alloying technology and the burn-resistant alloyed layer was formed on the surface.
为解决整体阻燃钛合金存在的比强度低、加工性差及价格昂贵等问题, 利用双层辉光离子渗金属技术,在Ti 6Al 4V的表面渗入Cu元素, 在其表面形成Ti Cu阻燃合金层。
补充资料:Ti_(3)Al基合金(金属间化合物)涡轮导风板


Ti_(3)Al基合金(金属间化合物)涡轮导风板


  TiaA,基合金(金属间化合物)涡、、风*。利;:,
  
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