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Effect of Cr on microstructural evolution of aluminized fourth generation Ni-base single crystal superalloys

机译:Cr对渗铝第四代镍基单晶高温合金组织演变的影响

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An effect of Cr on microstructural evolution of aluminized fourth generation Ni-base single crystal superalloys was investigated. Aluminized fourth generation alloys, having different amounts of Cr in substrates, were examined at 1100 °C up to 300 h. After aluminizing, all alloys exhibited similar phase constitutions, however, they showed distinctive morphologies of secondary reaction zones (SRZs): an alloy containing the highest Cr content developed continuous SRZs under an inter-diffusion zone (IDZ), whereas the other alloys hardly developed SRZ formation. The highest Cr containing alloy particularly exhibited higher coverage of SRZ after aluminizing, and this suggests higher Cr in substrate encourages SRZ formation. All alloys developed more SRZ formation after 300 h, and higher Cr containing alloys precipitated more topologically close-packed (TCP) phases in substrate. All alloys demonstrated increases of SRZ coverage, whereas penetration depth of SRZ in each alloy was not significantly different after 300 h. Higher Cr containing alloys precipitated TCP phases in substrate after 300 h, and this prevents further growth of SRZ.
机译:研究了铬对渗铝第四代镍基单晶高温合金组织演变的影响。在1100°C至300 h的时间内检查了基底中Cr含量不同的第四代镀铝合金。渗铝后,所有合金均表现出相似的相组成,但是它们表现出独特的次级反应区(SRZs)形态:Cr含量最高的合金在相互扩散区​​(IDZ)下形成连续的SRZs,而其他合金几乎不发育SRZ的形成。镀铝后,含铬最高的合金尤其表现出较高的SRZ覆盖率,这表明基材中较高的Cr促进了SRZ的形成。 300 h后,所有合金均形成了更多的SRZ,并且含Cr较高的合金在基材中析出了拓扑上更紧密堆积的(TCP)相。所有合金均显示出SRZ覆盖率的增加,而每种合金中SRZ的渗透深度在300 h后没有显着差异。 300 h后,含Cr较高的合金会在基材中沉淀TCP相,这会阻止SRZ的进一步生长。

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