1) ВТ36 high temperature titanium alloy
ВТ36高温钛合金
2) high-temperature titanium alloy
高温钛合金
1.
Ti-60 high-temperature titanium alloy was used to determine the location of fatigue crack source by second electron image(SEI) and back electron image(BEI) technique in scanning electron microscopy.
对Ti60高温钛合金的疲劳断口进行了扫描电镜(SEM)、二次电子像(SEI)背散射电子像(BEI)分析,根据疲劳裂纹源所在位置的不同研究了Ti60高温钛合金的疲劳裂纹源位置。
2.
The effect of Al content and heating treatments on the precipitation and distribution ofα_2 phase and silicide in bimodal microstructure of near-αhigh-temperature titanium alloys was investigated.
本文考察了近α高温钛合金双态组织不同热处理制度和不同Al含量下α_2有序相、硅化物的析出长大形态及分布规律,对不同时效时间下合金的热强性(持久性能、蠕变性能)和热稳定性(毛坯热暴露后室温拉伸性能)以及时效时间对性能的影响进行了系统研究。
3) high temperature titanium alloy
高温钛合金
1.
The development course and application of 600℃ high temperature titanium alloys are summa- rized in this paper.
综述了国内外600℃高温钛合金的发展历程及其应用。
2.
The precipitation behavior of sillicide in BT25y high temperature titanium alloy under solution treatment and thermal exposure was observed with TEM.
TEM观察了BT25y高温钛合金硅化物在固溶处理以及热暴露过程中的析出行为,结合Calphad相图计算技术研究了该合金硅化物的析出机制。
3.
The effect of element C on heat-treatment processing window of 600℃ high temperature titanium alloy (Ti60) was studied in this paper.
研究了间隙元素C对600℃高温钛合金(Ti60)热处理温度窗口的影响。
4) high-temperature titanium alloys
高温钛合金
1.
The research and development of high-temperature titanium alloys and particulate-reinforced titanium matrix composites;
高温钛合金和颗粒增强钛基复合材料的研究和发展
5) High temperature and high strength titanium alloy
高温高强钛合金
6) Ti-60 high-temperature titanium alloy
Ti-60高温钛合金
补充资料:Ti-55高温钛合金显微组织
Ti-55高温钛合金显微组织
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