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Microstructural evolution of monocrystalline Co-Al-W-based superalloys by high-temperature creep deformation

机译:高温蠕变变形单晶CO-AL-W基超合金的微观结构演化

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Creep tests of monocrystalline Co-Al-W-based alloys with a tensile stress of 137 MPa at 1000 °C were carried out. The microstructures of the crept specimens were investigated by scanning electron microscope (SEM) and transmission electron microscope (TEM). The γ' phase in the specimens was not only elongated along the stress direction as expected by the sign of the lattice misfit but also elongated in one of the <100> directions perpendicular to the stress direction. As a result, the shape of the γ' phase is not a rod but a plate. In the TEM images, it was observed that many SISFs are induced in the γ' phase by creep. A similar microstructure is also observed in Ni-based superalloys, but the microstructure was formed under relatively lower temperatures and higher applied stresses. The observation of numerous stacking faults in the γ' phase is a clear indication that the γ' phase precipitated in the present alloy is weaker than that in many modern Ni-based superalloys.
机译:进行了在1000℃下具有137MPa的拉伸应力的单晶CO-Al-W基合金的蠕变试验。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了爪子的微观结构。样品中的γ'相位不仅沿着晶格错配的符号延长应力方向,而且在垂直于应力方向的<100个方向之一中伸长。结果,γ'相的形状不是杆,而是板。在TEM图像中,观察到许多SISF通过蠕变在γ'相中诱导。在Ni基超合金中也观察到类似的微观结构,但在相对较低的温度和更高的施加应力下形成微结构。在γ'相中观察γ'相中的许多堆叠故障是清楚的指示,即当前合金中沉淀的γ'相比在许多现代Ni基超合金中较弱。

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