Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research

The improvement of efficiency, reliability and productivity of ultrasonic testing of objects with cohesion between materials connected by welding, soldering, gluing, etc. is 'an important problem of the modern production technologies. The purpose of the paper is to determine in 3D space the con...

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Main Authors: A. R. Bayev, A. L. Mayorov, N. V. Levkovich, D. V. Shavlovskiy, M. V. Asadchaya
Format: Article
Language:English
Published: Belarusian National Technical University 2021-06-01
Series:Приборы и методы измерений
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Online Access:https://pimi.bntu.by/jour/article/view/711
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author A. R. Bayev
A. L. Mayorov
N. V. Levkovich
D. V. Shavlovskiy
M. V. Asadchaya
author_facet A. R. Bayev
A. L. Mayorov
N. V. Levkovich
D. V. Shavlovskiy
M. V. Asadchaya
author_sort A. R. Bayev
collection DOAJ
description The improvement of efficiency, reliability and productivity of ultrasonic testing of objects with cohesion between materials connected by welding, soldering, gluing, etc. is 'an important problem of the modern production technologies. The purpose of the paper is to determine in 3D space the conditions for increasing the sensitivity and reliability of the flaw detection in the cohesion zone between materials when the form of defect interface can be different.In the first part of the theoretical study the features of the formation of the acoustic fields of ultrasonic waves scattered from solid's interface when spot of an acoustic beam crosses the boundary of the defective region in the shape of an ellipse or a long strip have been investigated. In this case, the boundary conditions in the defect area change discretely or linearly.It was suggested to use a phase shift between reflected waves from the defect and defect-free interfaces as the more informative parameter depending on the cohesion between materials. There is shown that there are conditions to achieve sufficiently high sensitivity detection of interface defects when the scattered waves receiving are to be at angles outside the main directivity lobe of the scattering field pattern. The evolution features of the scattering field structure which are needed for the development of the method of evaluation the cohesion of materials has been got.
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institution Kabale University
issn 2220-9506
2414-0473
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publishDate 2021-06-01
publisher Belarusian National Technical University
record_format Article
series Приборы и методы измерений
spelling doaj-art-e106212f9fbe415e87965c45d47555db2025-02-03T11:37:38ZengBelarusian National Technical UniversityПриборы и методы измерений2220-95062414-04732021-06-0112212413210.21122/2220-9506-2021-12-2-124-132545Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical researchA. R. Bayev0A. L. Mayorov1N. V. Levkovich2D. V. Shavlovskiy3M. V. Asadchaya4Institute of Applied Physics of the National Academy of Science of BelarusInstitute of Applied Physics of the National Academy of Science of BelarusBelarusian State UnivercityBeltopgas SPAInstitute of Applied Physics of the National Academy of Science of BelarusThe improvement of efficiency, reliability and productivity of ultrasonic testing of objects with cohesion between materials connected by welding, soldering, gluing, etc. is 'an important problem of the modern production technologies. The purpose of the paper is to determine in 3D space the conditions for increasing the sensitivity and reliability of the flaw detection in the cohesion zone between materials when the form of defect interface can be different.In the first part of the theoretical study the features of the formation of the acoustic fields of ultrasonic waves scattered from solid's interface when spot of an acoustic beam crosses the boundary of the defective region in the shape of an ellipse or a long strip have been investigated. In this case, the boundary conditions in the defect area change discretely or linearly.It was suggested to use a phase shift between reflected waves from the defect and defect-free interfaces as the more informative parameter depending on the cohesion between materials. There is shown that there are conditions to achieve sufficiently high sensitivity detection of interface defects when the scattered waves receiving are to be at angles outside the main directivity lobe of the scattering field pattern. The evolution features of the scattering field structure which are needed for the development of the method of evaluation the cohesion of materials has been got.https://pimi.bntu.by/jour/article/view/711ultrasonic wavesdiagram directivity (dd)reflectionwave scattering
spellingShingle A. R. Bayev
A. L. Mayorov
N. V. Levkovich
D. V. Shavlovskiy
M. V. Asadchaya
Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
Приборы и методы измерений
ultrasonic waves
diagram directivity (dd)
reflection
wave scattering
title Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
title_full Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
title_fullStr Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
title_full_unstemmed Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
title_short Influence of Geometry and Boundary Conditions in Area of Cohesion between Materials on the Reflection of an Ultrasonic Beam. Part 1. Theoretical research
title_sort influence of geometry and boundary conditions in area of cohesion between materials on the reflection of an ultrasonic beam part 1 theoretical research
topic ultrasonic waves
diagram directivity (dd)
reflection
wave scattering
url https://pimi.bntu.by/jour/article/view/711
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