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Acoustic wave propagation in austenitic stainless steel AISI 304L: Application examples

机译:奥氏体不锈钢AISI 304L中的声波传播:应用示例

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Prior to the detection and monitoring by acoustic emission of defects in steel, this paper deals with the use of waveguide that avoids direct contact between the sensor and monitoring structure when working at high temperature. The study of the waveguide effect on elastic wave transmission shows that waveguide deforms the waveform but it does not affect its frequency. Waveguide length does not affect signal magnitude. An experimental example of compact tensile specimen monitoring by acoustic emission is given. The monitoring of the damage at low and high temperature "450℃" by acoustic emission enables us to identify crack propagation stages and their acoustic signature.
机译:在通过声发射检测和监测钢中的缺陷之前,本文涉及使用波导,该波导可避免在高温下工作时传感器与监测结构之间的直接接触。对波导对弹性波传输的影响的研究表明,波导使波形变形但不影响其频率。波导长度不影响信号幅度。给出了通过声发射监测致密拉伸试样的实验示例。通过声发射监测在低温和高温“ 450℃”下的损坏,使我们能够识别裂纹的扩展阶段及其声学特征。

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