因科镍合金
高温合金
材料科学
停留时间
粒度
扫描电子显微镜
冶金
微观结构
断裂力学
电子背散射衍射
晶界
复合材料
合金
临床心理学
医学
作者
Jonas Saarimäki,Mattias Lundberg,Johan Moverare
标识
DOI:10.1002/adem.201700930
摘要
Inconel 718 is a commonly used superalloy for turbine discs in the gas turbine industry. Turbine discs are normally subjected to dwell‐fatigue as a result of long constant load cycles. Dwell‐times have been shown to give rise to increased crack propagation rates in superalloys at elevated temperatures. Dwell‐time crack propagation behavior in Inconel 718 has been tested at 550 °C using Kb test samples with 2160 s dwell‐times at maximum load and “pure fatigue” tests. The dwell‐time effect has been studied for differently processed Inconel 718, that is, fine grained bar, grain enlarged bar, and cast material. This has been done in order to investigate the effect of grain size on crack propagation. Microstructure characterization is conducted using scanning electron microscopy techniques such as electron channeling contrast imaging and electron backscatter diffraction. Time dependent crack propagation rates are strongly affected by grain size. Propagation rates increase with decreasing grain size, whereas crack tip blunting increased with increasing grain size.
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