Effect of the Material Structure on the Noise Level in Phased Array Ultrasonic Tests

K. Kaczmarek, Leszek Grolik
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Abstract

The article presents results of tests performed to determine the noise level in ultrasonic Phased Array testing. The tests, involving non-alloy steel S355 and austenitic steel X5CrNi18-10, were carried out applying a frequently used test configuration and 16-element 5 MHz array probes having an aperture of 10 mm ×10 mm. The obtainment of a differentiated structure, i.e. characterised by various grain sizes, required the performance of special heat treatment processes. Metallographic tests, concerning both steel grades, were performed to quantify the grain size. Specimens containing artificially made SDH Ø3 cylindrical reflectors and spherical reflectors having various diameters were made of the material prepared in the above-presented manner. The tests also involved amplitude measurements and the identification of the noise level of the reflectors. The test results enabled the quantitative determination of the signal-noise ratio, affecting the detection of low-amplitude indications.
相控阵超声检测中材料结构对噪声级的影响
本文介绍了在超声相控阵测试中确定噪声水平的测试结果。测试涉及非合金钢S355和奥氏体钢X5CrNi18-10,采用常用的测试配置和孔径为10 mm ×10 mm的16单元5 MHz阵列探针进行。获得不同的结构,即以不同的晶粒尺寸为特征,需要特殊热处理工艺的性能。对两种钢种进行了金相试验,以量化晶粒尺寸。用上述方法制备的材料制成含有不同直径的人造SDH Ø3圆柱形反射器和球形反射器的试样。测试还包括幅度测量和识别反射器的噪声水平。测试结果可以定量确定信噪比,影响低幅度适应症的检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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