Evolution of Microstructure and Mechanical Properties of a Ni Base Superalloy during Thermal Exposure

Insoo Kim, B. Choi, J. Jung, J. Do, In-Yong Jung, C. Jo
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引用次数: 1

Abstract

The microstructural evolution of a cast Ni base superalloy, IN738LC, has been investigated after long term exposure at several temperatures. Most of the fine secondary γ ' particles resolved after 2000 hour exposure at 816 o C. At higher temperatures of 871 o C and 927 o C, secondary γ ' resolved after 1000 hours of exposure, and cuboidal primary γ ' grew with exposure time. During the thermal exposure, σ phase formed at all tested temperatures, and η phase was observed around interdendritic regions due to carbide degeneration. The influence of microstructural evolution during thermal exposure on the mechanical properties has been analyzed. The effects of γ ' particle growth are more pronounced on the high temperature creep properties than on the room temperature tensile properties.
Ni基高温合金热暴露过程中组织与力学性能的演变
研究了一种铸造镍基高温合金IN738LC在不同温度下长期暴露后的显微组织演变。在816℃和927℃的高温下,大部分细小的二次γ′在暴露2000 h后分解,1000 h后二次γ′分解,初生立方γ′随着暴露时间的增加而增大。在热暴露过程中,在所有测试温度下均形成σ相,在枝晶间区域附近由于碳化物的退化而形成η相。分析了热暴露过程中微观组织的演变对材料力学性能的影响。γ′晶粒长大对合金高温蠕变性能的影响比对室温拉伸性能的影响更为明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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