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The Use of the Acoustic Emission Method to Identify Crack Growth in 40CrMo Steel

机译:利用声发射法识别40CrMo钢的裂纹扩展

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摘要

The article presents the application of the acoustic emission (AE) technique for detecting crack initiation and examining the crack growth process in steel used in engineering structures. The tests were carried out on 40CrMo steel specimens with a single edge notch in bending (SENB). In the tests crack opening displacement, force parameter, and potential drop signal were measured. The fracture mechanism under loading was classified as brittle. Accurate AE investigations of the cracking process and SEM observations of the fracture surfaces helped to determine that the cracking process is a more complex phenomenon than the commonly understood brittle fracture. The AE signals showed that the frequency range in the initial stage of crack development and in the further crack growth stages vary. Based on the analysis of parameters and frequencies of AE signals, it was found that the process of apparently brittle fracture begins and ends according to the mechanisms characteristic of ductile crack growth. The work focuses on the comparison of selected parameters of AE signals recorded in the pre-initiation phase and during the growth of brittle fracture cracking.
机译:本文介绍了声发射(AE)技术在工程结构钢中检测裂纹萌生和检查裂纹扩展过程中的应用。测试是在40CrMo钢试样上进行的,该试样具有弯曲的单边缘缺口(SENB)。在测试中,测量了开裂位移,力参数和电势下降信号。载荷作用下的断裂机理为脆性。准确的AE研究裂纹过程和SEM观察断裂表面有助于确定裂纹过程是比通常理解的脆性断裂更复杂的现象。声发射信号表明,裂纹发展的初始阶段和裂纹进一步发展的频率范围都在变化。通过对声发射信号的参数和频率的分析,发现明显脆性断裂的过程根据韧性裂纹扩展的机理特征开始和结束。这项工作的重点是比较在初始阶段和脆性破裂裂纹扩展过程中记录的AE信号的选定参数。

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