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A Nondestructive Life Evaluation Using Creep-Fatigue Damage by SDA

机译:使用SDA使用蠕变疲劳损伤的无损寿命评估

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Generally, as the hold time of static load increases, the degradation of material becomes more rapid and the creep-fatigue life decreases. Under the creep-fatigue interaction, the cause of life decrease was mainly the initiation and growth of microvoid with increasing hold time. In this study, using the newly developed alloy of P92, the artificial creep-fatigue degradation tests and its ultrasonic inspection were carried out to evaluate creep-fatigue life. From the relations between the creep-fatigue life and the nondestructive degradation assessment by backscattered ultrasound inspection, the new nondestructive life evaluation parameter, SDA (Slope of Decaying Amplitude) was proposed. Also, to verify the nondestructive life evaluation ability, the life evaluation results by SDA were compared with those of the destructive life evaluation obtained through the fraction of cavity area. From the test result of backscattering Rayleigh surface wave, the linear relationship between SDA and experimental life could be obtained. The good agreement between the experimental life and the predicted life by SDA was also obtained. Finally, it can be stated that the new life evaluation/degradation parameter, SDA (Slope of Decaying Amplitude) could be utilized for the evaluation of the material degradation under creep-fatigue interaction.
机译:通常,随着静电载荷的保持时间增加,材料的劣化变得更快速,蠕变疲劳寿命减少。在蠕变 - 疲劳相互作用下,寿命的原因主要是微脂偶氮的开始和生长随着保持时间的增加。在本研究中,使用P92的新开发的合金,进行人工蠕变 - 疲劳降解试验及其超声波检查,以评估蠕变疲劳寿命。从蠕变疲劳寿命与非破坏性降解评估的关系,提出了新的非破坏性寿命评价参数,SDA(衰减幅度)。此外,为了验证非破坏性生活评估能力,将SDA的寿命评估结果与通过腔面积的级分获得的破坏性寿命评估进行比较。从反向散射瑞利表面波的测试结果,可以获得SDA和实验寿命之间的线性关系。还获得了SDA实验生命与预测寿命之间的良好一致性。最后,可以说新的寿命评估/降解参数,SDA(衰减幅度)可用于评估蠕变 - 疲劳相互作用下的材料劣化。

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