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1)  high Nb-containing γ-TiAl based alloy
高铌γ-TiAl合金
2)  high Nb containing TiAl alloys
高铌TiAl合金
1.
The properties,applications of high Nb containing TiAl alloys have been reviewed,and the progress in fundamental aspects of these materials has been outlined.
文章首先综述了高铌TiAl合金的性能特点和应用前景,并简单介绍了该合金的最新基础研究情况,随后介绍了制备高铌TiAl合金的基本工艺。
3)  high Nb containing TiAl Alloy
高铌TiAl合金
1.
The processing technology of high Nb containing TiAl alloy was studied.
结果表明,感应凝壳熔炼时的合金收得率远远小于自耗熔炼时的合金收得率,因此在熔炼过程中损失主要来自于感应熔炼过程,而感应熔炼过程中合金的损失主要来自于凝壳大小及合金熔液挥发的多少;高铌TiAl合金的成分波动主要是由于凝壳大小波动造成的,感应熔炼完成后合金的Al含量取决于凝壳和合金溶液挥发对合金Al含量的共同影响效果;高铌TiAl合金在熔炼过程中,Nb的含量是在逐渐增加的。
2.
The influence of C and B micro-alloying elements on the microstructures and mechanical properties for high Nb containing TiAl alloy was systematically studied.
采用光学显微镜(OM)、扫描电镜(SEM)、透射电镜(TEM)等设备,以及拉伸和蠕变试验系统研究微量间隙元素C,B对高铌TiAl合金显微组织与力学性能的影响。
3.
The hot compressive deformation behaviour of high Nb containing TiAl alloy was investigated in the temperature range of 900~1250 ℃, at the strain rate range of 5×10-4 ~1 s-1 and the engineering strain range of 50%~80% on Gleeble-1500 hot simulator.
在Gleeble-1500热模拟试验机上对高铌TiAl合金进行等温热压缩试验,研究其热压缩变形的流变应力行为。
4)  TiAl alloy containing high Nb
高铌TiAl合金
1.
Effect of hot forging on microstructure of TiAl alloy containing high Nb;
热锻开坯对高铌TiAl合金微观组织的影响
5)  γ-TiAl alloy
γ-TiAl合金
1.
Cavitation erosion of γ-TiAl alloy;
γ-TiAl合金的空蚀行为
2.
To investigate the microstructural stability,stress-strain response and fatigue fracture of a new generation γ-TiAl alloy with high Nb content under cyclic deformation,Low aycle fatigue tests under total strain controlling were carried out in the temperature range of 550℃~750℃ Deformed microstructures and fatigue fracture surfaces were observed.
为研究新一代高Nb含量γ-TiAl合金在低周疲劳过程中双态组织稳定性对应力-应变响应和疲劳断裂过程的影响,测试了Ti-47Al-5Nb合金在总应变控制条件下550℃~750℃温度范围的低周疲劳性能,并观察了循环变形后的显微组织,缺陷特征和断口形貌。
6)  TiAl
合金γ-TiAl
1.
Calculation of Valence Electron Structures in Alloying γ-TiAl and Its Mechanical Properties;
合金γ-TiAl价电子结构的计算及其力学性能
补充资料:TiAl合金(金属间化合物)显微组织


TiAl合金(金属间化合物)显微组织


  T·Al台金(金属间化合物)显微组织
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条