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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Detection and evaluation of focalized damage under creep-fatigue loading at 1000°F using acoustic emission technique
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Detection and evaluation of focalized damage under creep-fatigue loading at 1000°F using acoustic emission technique

机译:使用声发射技术检测和评估1000°F蠕变疲劳载荷下的聚焦损伤

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摘要

Acoustic emission (AE) technique was applied as a non-destructive test method to detect and evaluate the localized damage at high temperature environment. The creep-fatigue crack growth tests were carried out with the acquisition of AE signal at 1000°F. Under trapezoidal waveform loadings, AE results showed different features according to each damage mode. During the creep period, low and steady emissions were shown, while emissions were burst and high counts rate was recorded during the fatigue loading. Based on these characteristics, damage contribution was expressed in terms of acoustic emission parameter as a part-time monitoring method. Comparisons of damage contribution with respect to lifetime showed the transient behavior from cycle-dependent to time-dependent procesp. In case of full-time monitoring, bilinear behavior between AE counts and life was represented. From both monitoring results, it was confirmed that creep and fatigue damage can be characterized by means of emission features and AE is possible way to evaluate the localized damage at elevated temperature.
机译:声发射(AE)技术被用作无损检测方法,以检测和评估高温环境下的局部损伤。蠕变疲劳裂纹扩展测试是在1000°F下采集AE信号进行的。在梯形波形载荷下,AE结果根据每种损伤模式显示出不同的特征。在蠕变期间,显示出低而稳定的排放,而在疲劳载荷期间,排放被爆裂并记录了高计数率。基于这些特征,通过声发射参数来表示损伤贡献,作为一种兼职监测方法。损害贡献相对于寿命的比较显示了从循环依赖到时间依赖的过程的瞬时行为。在全时监控的情况下,代表了AE计数与寿命之间的双线性行为。从这两个监测结果可以确认,蠕变和疲劳损伤可以通过排放特征来表征,而AE是评估高温下局部损伤的一种可能方法。

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