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1)  γ-alloys
γ-基合金
2)  γ-TiAl based alloy
γ-TiAl基合金
1.
Superplastic diffusion bonding of Ni based alloy/γ-TiAl based alloy;
Ni基合金/γ-TiAl基合金的超塑扩散连接
2.
To investigate the size effect of effective elastic properties for a nearly lamellar γ-TiAl based alloy,a micromechanical method was developed based on the micropolar theory.
基于微极理论细观力学方法,详细分析了近片层γ-TiAl基合金材料有效弹性性能的微结构尺度效应。
3.
With aluminum isopropoxide(Al(OC3H7)3) as precursor,an Al2O3 film was deposited on a γ-TiAl based alloy by sol-gel method.
以异丙醇铝(Al(OC3H7)3)为原料,采用溶胶-凝胶法在γ-TiAl基合金表面制备Al2O3涂层。
3)  γ-MnFe based alloys
γ-MnFe基合金
4)  γ-MnFe alloy
γ-MnFe合金
1.
4at% Mnγ-MnFe alloys within the temperature range from 50~250℃by means of force vibration.
4at%Mnγ-MnFe合金降温过程的内耗和模量性质。
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:γ-正丙基-γ-丁内酯
    又名4-羟基庚酸-γ-内酯、γ-正丙基-γ-丁内酯、1,4-庚内酯。无色微呈油状液体。分子量128.17。密度1.0021g/cm3。沸点107℃(2kPa)。折射率1.4410。几乎不溶于水。溶于乙醇。具有类似坚果和焦糖的香气,类似麦芽和焦糖的甜味,并稍带药草的味道。
    生产方法:主要采用还原法。以。α-呋喃丙烯酸为原料,在氢氧化钠溶液中,在镍-铝合金存在下,进行还原反应,然后经分离、洗涤、干燥、蒸馏而得。
    用途:内酯类合成香料。主要用作调合香料。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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