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Relationship Between Unusual High-Temperature Fatigue Crack Growth Threshold Behavior in Superalloys and Sudden Failure Mode Transitions

机译:高温合金中异常高温疲劳裂纹扩展阈值行为与突然失效模式转变之间的关系

摘要

An investigation of high temperature cyclic fatigue crack growth (FCG) threshold behavior of two advanced nickel disk alloys was conducted. The focus of the study was the unusual crossover effect in the near-threshold region of these type of alloys where conditions which produce higher crack growth rates in the Paris regime, produce higher resistance to crack growth in the near threshold regime. It was shown that this crossover effect is associated with a sudden change in the fatigue failure mode from a predominant transgranular mode in the Paris regime to fully intergranular mode in the threshold fatigue crack growth region. This type of a sudden change in the fracture mechanisms has not been previously reported and is surprising considering that intergranular failure is typically associated with faster crack growth rates and not the slow FCG rates of the near-threshold regime. By characterizing this behavior as a function of test temperature, environment and cyclic frequency, it was determined that both the crossover effect and the onset of intergranular failure are caused by environmentally driven mechanisms which have not as yet been fully identified. A plausible explanation for the observed behavior is proposed.
机译:对两种先进的镍圆盘合金的高温循环疲劳裂纹扩展(FCG)阈值行为进行了研究。该研究的重点是在这类合金的近阈值区域中的不寻常的交叉效应,在该条件下,巴黎体系中产生较高裂纹扩展速率的条件,在近阈值范围中产生较高的抗裂纹扩展能力。结果表明,这种交叉效应与疲劳破坏模式的突然变化有关,从巴黎状态下的主要跨晶模式转变为阈值疲劳裂纹扩展区域的完全晶间模式。这种断裂机制的突然变化以前尚未见过报道,考虑到晶间破坏通常与较快的裂纹扩展速率有关,而与近阈值状态的FCG速率较慢无关,这令人惊讶。通过将该行为表征为测试温度,环境和循环频率的函数,可以确定交叉效应和晶间破坏的发生均由尚未完全确定的环境驱动机制引起。提出了对观察到的行为的合理解释。

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