Possibilities of Using of Surface and Subsurface Waves’ Amplitude-Angle Characteristics for Control of Materials with Surface-Hardened Inhomogeneous Layer

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
A. Baev, M. Asadchaya, A. Mayorov, O. Sergeeva, N. V. Delenkovsky
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引用次数: 1

Abstract

Improving the efficiency of ultrasonic control of hardened surface layers of metal products with a heterogeneous structure obtained using different technologies is a pressing problem of industrial production. The purpose of this work was to investigate the possibilities of measuring the depth of the surface inhomogeneous layer of steel objects on the basis of the use of amplitude and amplitude-angle characteristics of surface and subsurface transverse waves.The analysis of ultrasonic methods of control of physical and mechanical properties of metals by using surface and subsurface waves and experimentally investigated amplitude-angular characteristics of surface waves, the maximum angle of which increases by 3° at change of dimensionless layer depth hλ from zero to0.82. For the first time, the ratio of normalized amplitudes of surface waves taken at certain angles on theamplitude-angle characteristic curve obtained in the echo mode was proposed to be used as correlating parameters with the depth of the hardened layer. As a result of this research, the possibility of using a phased array transducers to solve the above problems.The effect of the hardened layer depth varying from zero to five in the working frequency range of 1.8– 10 MHz on the peculiarities of the refraction effect (including interference) and dependence of the subsurface wave amplitude on the acoustic base has been studied, making it possible to establish conditions that provide for the determination of the hardened layer depth.Circuit solutions have been offered in order to increase the efficiency of control of properties of the surface layers of metal articles on the basis of utilization of small-aperture transducers and ultrasonic reflectors making it possible to form fields of surface waves of different directional pattern. 
利用表面波和次表面波幅角特性控制表面硬化非均匀层材料的可能性
提高采用不同工艺获得的异质结构金属制品表面硬化层的超声控制效率是工业生产中迫切需要解决的问题。这项工作的目的是研究在利用表面和次表面横波的振幅和振幅角特性的基础上测量钢物体表面非均匀层深度的可能性。分析了利用表面波和次表面波控制金属物理力学性能的超声方法,并实验研究了表面波的幅角特性,当无量纲层深hλ从0到0.82变化时,表面波的最大角度增加了3°。首次提出在回波模式下获得的幅角特征曲线上,以一定角度的面波归一化幅值之比作为硬化层深度的相关参数。由于本研究的结果,有可能采用相控阵换能器来解决上述问题。研究了在1.8 - 10 MHz工作频率范围内,硬化层深度从0到5变化对折射效应特性(包括干涉)和次表面波振幅对声学基的依赖性的影响,从而有可能建立确定硬化层深度的条件。利用小孔径换能器和超声波反射器,可以形成不同方向图案的表面波场,从而提高对金属制品表面层性能的控制效率。
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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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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