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首页> 外文期刊>Archives of acoustics >Acoustic Emission Response and Damage Process for Q235 Steel in an in Situ Tensile Test
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Acoustic Emission Response and Damage Process for Q235 Steel in an in Situ Tensile Test

机译:Q235钢在原位拉伸试验中的声发射响应和损伤过程

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摘要

Q235 steel is widely used in engineering and construction. Therefore, it is important to identify the damage mechanism and the acoustic emission (AE) response of the material to ensure the safety of structures. In this study, an AE monitor system and an in situ tensile test with an optical microscope were used to investigate the AE response and insight into the damage process of Q235 steel. The surface of the specimen was polished and etched before the test in order to improve the quality of micrographs. Two kinds of AE responses, namely a burst and a continuous signal, were recorded by the AE monitor system during the test. Based on the in situ test, it was observed that the damage of Q235 steel was induced by the crystal slip and the inclusion fracture. Since the crystal slip was an ongoing process, continuous AE signals were produced, while burst AE signals were possibly produced by the inclusion fracture which occurred suddenly with released higher energy. In addition, a great number of AE signals with high amplitude were observed during the yielding stage and then the number and amplitude decreased.
机译:Q235钢广泛用于工程和建筑。因此,重要的是要确定材料的损坏机理和声发射(AE)响应,以确保结构的安全性。在这项研究中,使用AE监测系统和光学显微镜进行原位拉伸试验来研究AE响应并深入了解Q235钢的损伤过程。为了提高显微照片的质量,在测试前对样品的表面进行了抛光和蚀刻。在测试过程中,AE监控系统记录了两种AE响应,即突发和连续信号。在原位测试的基础上,观察到Q235钢的损伤是由晶体滑移和夹杂物断裂引起的。由于晶体滑移是一个持续的过程,因此会产生连续的AE信号,而破裂的AE信号可能是由于夹杂物的破裂而产生的,该夹杂物的破裂突然发生并释放出更高的能量。此外,在屈服阶段观察到大量高振幅的AE信号,然后数量和振幅减小。

著录项

  • 来源
    《Archives of acoustics》 |2019年第4期|807-813|共7页
  • 作者单位

    School of Environmental & Safety Engineering Changzhou University Changzhou 213164 China;

    Northeast Petroleum University Daqing 163000 China;

    Sino-French Institute of Nuclear Engineering and Technology Sun Yat-sen University Zhuhai 519082 China;

    School of Civil Engineering Sun Yat-sen University Zhuhai 519082 China;

    School of Chemical Engineering Fuzhou University Fuzhou 350-116 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Q235; damage; acoustic emission; in situ tensile test;

    机译:Q235;损伤;声发射原位拉伸试验;

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