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首页> 外文期刊>Journal of Materials Science >Delayed hydride cracking velocity in Zr-2.5Nb: detection by acoustic emission and theoretical model testing
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Delayed hydride cracking velocity in Zr-2.5Nb: detection by acoustic emission and theoretical model testing

机译:Zr-2.5Nb中氢化物的延迟裂解速度:通过声发射检测和理论模型测试

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Acoustic emission (AE) detects elastic waves generated during delayed hydride cracking (DHC). The detection of the first acoustic signal is used to measure the propagation time. This time and the crack length measured on the broken specimen are used to determine the DHC velocity. In this work, DHC tests were carried out on Zr-2.5Nb alloy from CANDU pressure tubes. Linear relationship between cumulative count rate and cracking velocity was corroborated. It is generally accepted that the hydrides crack when they reach a critical length; nevertheless, in this work the number of signals generated during typical DHC test were higher than expected from that assumption. Dutton and Puls DHC model with some parameters calculated by Shmakov et al. was used to test out against experimental data. This modification is an original approach that makes more rational the DHC velocity calculation, avoiding arbitrary parameter selection. Good agreement was obtained for two different CANDU pressure tubes.
机译:声发射(AE)检测延迟氢化物裂解(DHC)期间产生的弹性波。第一声​​信号的检测用于测量传播时间。该时间和在断裂试样上测得的裂纹长度用于确定DHC速度。在这项工作中,对来自CANDU压力管的Zr-2.5Nb合金进行了DHC测试。证实了累积计数率与裂解速度之间的线性关系。通常认为,氢化物在达到临界长度时会破裂。但是,在这项工作中,典型DHC测试期间生成的信号数量高于该假设所预期的数量。 Dutton和Puls DHC模型,其中一些参数由Shmakov等人计算得出。用于测试实验数据。这种修改是使DHC速度计算更加合理,避免了任意参数选择的原始方法。对于两个不同的CANDU压力管,已达成良好的协议。

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