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Influence of Crystallographic Orientation on Creep Behavior of Aluminized Ni-Base Single Crystal Superalloys

机译:结晶取向对铝化Ni基单晶超合金蠕变行为的影响

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The effect of chemical compositions and secondary crystallographic orientation dependence on the formation of diffusion layer and creep behavior were investigated. Three alloys of different generations: PWA 1480 (1st generation), CMSX-4 (2nd generation) and TMS-75 (3rd generation), were studied. After aluminized coating process, creep rupture test were performed at 900 °C and 392 MPa. The creep rupture properties of the alloys with and without the aluminized coating treatment were compared. The coating treatment resulted in a significant decrease in rupture lives for three alloys. No reductions in rupture elongation were observed. Creep strength was significantly degraded with aluminide coating due to the diffusion layers formed under coating layer. Creep fractures of the coated materials were essentially controlled by the crack nuclei in the coated layer. It was also found that the specimens with (100) side-surface showed longer creep rupture life than the specimens with (110) sidesurface, which means the results were anisotropic with respect to the secondary orientation which is normal to the primary orientation. The anisotropic creep behavior was caused by the different arrangement of {111}<101l slip systems between the two side-surface specimens. The results obtained in this study suggest the importance of secondary orientation normal to the component surface on designing the single-crystalline turbine blades.
机译:研究了化学成分和二次结晶取向依赖性对扩散层的形成和蠕变行为的影响。研究了三种不同几代合金:研究了PWA 1480(第1代),CMSX-4(第2代)和TMS-75(第3代)。在铝化涂布过程之后,在900℃和392MPa下进行蠕变破裂试验。比较了合金的蠕变破裂性能,无需铝化涂层处理。涂层处理导致三种合金的破裂寿命显着降低。没有观察到破裂伸长的减少。由于在涂层下形成的扩散层,硅化化物涂层显着降低蠕变强度。涂覆材料的蠕变骨折基本上由涂层中的裂缝核控制。还发现,具有(100)侧表面的标本显示比具有(110)侧面的样品的蠕变破裂寿命更长,这意味着结果是关于初级取向的次级取向的各向异性。各向异性蠕变行为是由两个侧表面样本之间的{111} <101&gtl滑动系统的不同布置引起的。本研究中获得的结果表明,在设计单晶涡轮叶片上的组件表面上的二次取向正常的重要性。

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