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Microstructure and creep resistance of a diffusionally aluminized Ni-base superalloy

机译:扩散镀铝镍基超合金的微观结构和抗蠕变性

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An aluminide layer was formed on a wrought Ni-base superalloy by the diffusional aluminizing method, which involves a physical vapor deposition of Al followed by two-step heat treatment in vacuum. Microstructural analysis revealed the presence of an aluminide layer, inter-diffusion zone (IDZ), and affected substrate, all of which developed due to the inter-diffusion of deposited Al and elements in the matrix. In addition, a wide carbide free zone, in which grain boundaries were mostly denuded of carbides, was found below the IDZ. Depth profiling analysis using a glow discharge spectrometer confirmed the reduced carbon content in the carbide free zone. At 900 A degrees C, the diffusionally aluminized specimens showed a decrease in creep-rupture life caused by the presence of the carbide free zone. Fracture surface and cross-section microstructure observation confirmed the detrimental effect of the carbide free zone on the creep resistance of the diffusionally aluminized Alloy 617.
机译:通过扩散铝化方法在锻造Ni基超合金中形成铝化层,这涉及Al的物理气相沉积,然后在真空中进行两步热处理。 微结构分析显示,由于沉积的Al和基质中的元素的间隙,所有这些都显影了铝化层,扩散区和受影响的基质。 此外,在IDZ下方发现了一种宽的碳化物自由区,其中晶界大多剥离碳化物。 使用辉光放电光谱仪进行深度分析分析证实了碳化物自由区中的碳含量降低。 在900℃下,扩散铝化样本显示出通过碳化物区域存在引起的蠕变破裂寿命的降低。 断裂表面和横截面微观结构观察证实了碳化物自由区对扩散镀铝合金617的蠕变电阻的不利影响。

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