体积反射器在超声检测参数调整中的应用

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
L. Yu. Mogilner, Ya. G. Smorodinsky, V. V. Tishkin
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引用次数: 0

摘要

在超声波探伤中,传统上采用横向圆柱形钻孔来调整和检查设备参数。其他体积反射器,如垂直钻井或球形孔隙,很少使用。在本文中指出,各种类型的体积反射器便于用作焊缝内部和表面缺陷的模型。此外,各种定向的钻孔易于制造。长期以来,在超声无损检测中使用钻孔建模的局限性在于弹性波绕过圆柱腔时衍射效应所产生的噪声。值得注意的是,这些影响目前得到了很好的研究。它们可以用来识别缺陷的类型并测量它们的大小。本文叙述了用圆柱体和球观察不同偏振的纵波和横波散射的实验结果,并给出了这些衍射效应的表现和应用的典型例子。还注意到不仅使用钻孔而且使用球形孔的便利性。对透明玻璃样品进行了孔散射超声波的实验。比较数据显示了衍射效应如何在不同体积的空腔中表现出来。特别地,注意到包络球形孔的信号的聚焦。注意到超声波脉冲持续时间的限制,其中衍射信号可用于增加缺陷检测中的信息含量。建议在样品中扩大直径为2mm的横向钻孔的使用,以调节超声监测时用回声计的灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Use of Volumetric Reflectors for Adjusting Ultrasonic Testing Parameters

The Use of Volumetric Reflectors for Adjusting Ultrasonic Testing Parameters

In ultrasonic flaw detection, lateral cylindrical drilling is traditionally used to adjust and check equipment parameters. Other volumetric reflectors such as vertical drilling or spherical pores are rarely used. In this article, it is noted that volumetric reflectors of various types are convenient for use as a model of internal and surface defects of welds. Moreover, drillings of various orientations are easy to manufacture. For a long time, the limitations on using drilling for modeling in ultrasonic nondestructive testing were related to the noise caused by diffraction effects as elastic waves bypass cylindrical cavities. It is noted that these effects are currently well studied. They can be used to identify the type of defects and measure their size. The present paper describes the results of experiments on the observation of scattering of longitudinal and transverse waves with various polarization by cylinders and spheres and provides typical examples of the manifestation and use of these diffraction effects. The expediency of using not only drilling but also spherical pores is also noted. Experiments with scattering of ultrasonic waves by pores were performed on transparent glass samples for clarity. Comparative data are presented showing how diffraction effects manifest themselves on various volumetric cavities. In particular, it is noted that a focusing of signals that envelope spherical pores is observed. Limitations on the pulse duration of ultrasonic waves are noted in which diffraction signals can be used to increase information content in the detection of defects. It is recommended to expand the use of lateral drilling with a diameter of 2 mm in samples to adjust sensitivity during ultrasonic monitoring with an echometer.

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来源期刊
Russian Journal of Nondestructive Testing
Russian Journal of Nondestructive Testing 工程技术-材料科学:表征与测试
CiteScore
1.60
自引率
44.40%
发文量
59
审稿时长
6-12 weeks
期刊介绍: Russian Journal of Nondestructive Testing, a translation of Defectoskopiya, is a publication of the Russian Academy of Sciences. This publication offers current Russian research on the theory and technology of nondestructive testing of materials and components. It describes laboratory and industrial investigations of devices and instrumentation and provides reviews of new equipment developed for series manufacture. Articles cover all physical methods of nondestructive testing, including magnetic and electrical; ultrasonic; X-ray and Y-ray; capillary; liquid (color luminescence), and radio (for materials of low conductivity).
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