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Fatigue Failure Analyses on a Ti-45Al-8Nb-0.2W-0.2B-0.1Y Alloy at Different Temperatures

机译:Ti-45Al-8Nb-0.2W-0.2B-0.1Y合金在不同温度下的疲劳失效分析

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摘要

The fatigue micro crack initiation and propagation tests of a TiAl alloy with 8% Nb content were carried out by using scanning electron microscopy in situ technology at room temperature and at 750 °C. These results indicated that the fatigue micro crack initiation was mainly caused by the stress concentration at room temperature, but at an elevated temperature (750 °C) the multi-cracks were caused by the coupled factors of both lamellar microstructure and stress concentration. Therefore, fatigue micro crack initiation behavior is much more dependent on the lamellar structure at an elevated temperature. One of the reasons is that the elevated temperature degrades the interface strength between the lamellar of the TiAl alloy with 8% Nb content. Therefore, the small fatigue crack propagation behavior of the alloy exhibited a mixture damage model of interlamellar and translamellar at a micro scale. The crack growth path and fracture characteristics provided a proof of crack deflection, branching and/or bridging induced either by interlamellar or by translamellar failure mode.
机译:采用室温扫描电子显微镜技术在750°C下对Nb含量为8%的TiAl合金进行了疲劳微裂纹的萌生和扩展测试。这些结果表明,疲劳微裂纹的萌生主要是由室温下的应力集中引起的,而在高温(750°C)下,多裂纹是由层状微结构和应力集中的耦合因素引起的。因此,在高温下疲劳微裂纹的萌生行为更多地取决于层状结构。原因之一是,升高的温度会使Nb含量为8%的TiAl合金层间的界面强度降低。因此,合金的小疲劳裂纹扩展行为在微观尺度上表现出层间和跨层的混合破坏模型。裂纹扩展路径和断裂特性提供了由层间或跨层破坏模式引起的裂纹变形,分支和/或桥接的证据。

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