Scattering of Elastic Waves by an Inhomogeneous Boundary in the Acoustic Testing of Permanent Joints

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION Devices and Methods of Measurements Pub Date : 2019-12-12 DOI:10.21122/2220-9506-2019-10-4-360-372
А. Р. Баев, Н. В. Левкович, А. Л. Майоров, М. В. Асадчая
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引用次数: 3

Abstract

Improving the reliability and testing performance of permanent joints оf different materials made by welding, spraying, gluing, soldering and other methods is an important production task, for which the ultrasonic method is the simplest and most effective. The purpose of this work was to expand the technical possibilities and increase the sensitivity of ultrasonic testing of adhesion defects of materials joints based on the establishment of laws governing the formation of a scattering field of elastic waves from an inhomogeneous boundary in three-dimensional space and issuing recommendations for the development of suggested method.For the first time, in the framework of classical concepts, the scattering fields of elastic waves of an acoustic beam with a circular cross section moving across the boundary of a semi-infinite defect are calculated. It is proposed to use a phase shift between the waves reflected from the indicated surfaces, which varies in the range of π/4–π, as an important parameter of the material joint's defect. It has a significant effect on the field pattern and its angular amplitude extrema — minima and maxima of different orders when the defect boundary is moved relative to the center of the acoustic beam spot.The features of the evolution of the structure of the scattering field are established, which make it possible to identify optimal conditions for the detection of weakly reflective defects in sound. It is shown that it is possible in principle to estimate the defect's area by measuring a change in the amplitude of the primary maximum of the radiation pattern of the scattered waves.Specific examples show the effectiveness of using the proposed method for a number of practical applications.
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弹性波在永久接头声学检测中的非均匀边界散射
通过焊接、喷涂、粘合、焊接等方法制成的不同材料的永久接头,提高其可靠性和检测性能是一项重要的生产任务,其中超声波方法是最简单有效的方法。本工作的目的是在建立三维空间非均匀边界弹性波散射场形成规律的基础上,扩大材料接头粘附缺陷超声检测的技术可能性和灵敏度,并对建议方法的发展提出建议。首次在经典概念的框架下,计算了具有圆形截面的声波束穿过半无限缺陷边界时的弹性波的散射场。提出了用指示表面反射波之间的相移作为材料接头缺陷的重要参数,其变化范围为π/4 -π。当缺陷边界相对于声波束光斑中心移动时,对声场图及其不同阶角振幅的极值-极小值和最大值有显著影响。建立了散射场结构的演化特征,为确定检测声音弱反射缺陷的最佳条件提供了可能。结果表明,原则上可以通过测量散射波辐射谱图的一次最大值的振幅变化来估计缺陷的面积。具体算例表明,该方法在实际应用中是有效的。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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