Research on the sensor for detection of carburized case depth based on nonlinear ultrasound

Carburized case depth may be characterized by using nonlinear ultrasound. However, the excitation and receiving sensors are difficult to control in the same conditions in each experiment and the operation process is complicated, therefore, a specialized sensor needs to be developed. In this work, th...

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Main Authors: Yan Tang, Genge Zhang, Hanling Mao, Jiaming Ren, Zhenfeng Huang, Xinxin Li, Qingzhu Li
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Results in Physics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379722005988
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author Yan Tang
Genge Zhang
Hanling Mao
Jiaming Ren
Zhenfeng Huang
Xinxin Li
Qingzhu Li
author_facet Yan Tang
Genge Zhang
Hanling Mao
Jiaming Ren
Zhenfeng Huang
Xinxin Li
Qingzhu Li
author_sort Yan Tang
collection DOAJ
description Carburized case depth may be characterized by using nonlinear ultrasound. However, the excitation and receiving sensors are difficult to control in the same conditions in each experiment and the operation process is complicated, therefore, a specialized sensor needs to be developed. In this work, the influence of the backing materials with different constituents and thickness on the characteristics of sensors is investigated. The structure of the specialized sensor is designed, applied, and verified in the detection of carburized case depth based on nonlinear ultrasound. The results show that the backing layer consists of three-dimensional graphene (3DG) 1wt%/tungsten powder 80wt%/epoxy resin has high acoustic impedance and attenuation characteristics, the backing layer with thicknesses of 8 mm has high sensitivity and residual vibration suppression, the specialized senor simplifies the detection procedure, and improves the efficiency and stability of detection.
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spelling doaj.art-f9abac92b3894311ba747fa30da236b12022-12-22T04:07:17ZengElsevierResults in Physics2211-37972022-11-0142105984Research on the sensor for detection of carburized case depth based on nonlinear ultrasoundYan Tang0Genge Zhang1Hanling Mao2Jiaming Ren3Zhenfeng Huang4Xinxin Li5Qingzhu Li6School of Mechanical Engineering Guangxi University, Nanning 530004, ChinaTransportation College, Nanning University, Nanning 530200, China; Corresponding authors at: Nanning University, Nanning 530200, China (G. Zhang); Guangxi University, Nanning 530004, China (H. Mao).School of Mechanical Engineering Guangxi University, Nanning 530004, China; Guangxi Key Laboratory of Advanced Manufacturing, Nanning 530004, China; Corresponding authors at: Nanning University, Nanning 530200, China (G. Zhang); Guangxi University, Nanning 530004, China (H. Mao).School of Mechanical Engineering Guangxi University, Nanning 530004, ChinaSchool of Mechanical Engineering Guangxi University, Nanning 530004, China; Guangxi Key Laboratory of Advanced Manufacturing, Nanning 530004, ChinaSchool of Mechanical Engineering Guangxi University, Nanning 530004, China; Guangxi Key Laboratory of Advanced Manufacturing, Nanning 530004, ChinaSchool of Mechanical Engineering Guangxi University, Nanning 530004, ChinaCarburized case depth may be characterized by using nonlinear ultrasound. However, the excitation and receiving sensors are difficult to control in the same conditions in each experiment and the operation process is complicated, therefore, a specialized sensor needs to be developed. In this work, the influence of the backing materials with different constituents and thickness on the characteristics of sensors is investigated. The structure of the specialized sensor is designed, applied, and verified in the detection of carburized case depth based on nonlinear ultrasound. The results show that the backing layer consists of three-dimensional graphene (3DG) 1wt%/tungsten powder 80wt%/epoxy resin has high acoustic impedance and attenuation characteristics, the backing layer with thicknesses of 8 mm has high sensitivity and residual vibration suppression, the specialized senor simplifies the detection procedure, and improves the efficiency and stability of detection.http://www.sciencedirect.com/science/article/pii/S2211379722005988SensorCarburized case depthNonlinear ultrasoundBacking layerNonlinear ultrasonic parameter
spellingShingle Yan Tang
Genge Zhang
Hanling Mao
Jiaming Ren
Zhenfeng Huang
Xinxin Li
Qingzhu Li
Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
Results in Physics
Sensor
Carburized case depth
Nonlinear ultrasound
Backing layer
Nonlinear ultrasonic parameter
title Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
title_full Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
title_fullStr Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
title_full_unstemmed Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
title_short Research on the sensor for detection of carburized case depth based on nonlinear ultrasound
title_sort research on the sensor for detection of carburized case depth based on nonlinear ultrasound
topic Sensor
Carburized case depth
Nonlinear ultrasound
Backing layer
Nonlinear ultrasonic parameter
url http://www.sciencedirect.com/science/article/pii/S2211379722005988
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AT jiamingren researchonthesensorfordetectionofcarburizedcasedepthbasedonnonlinearultrasound
AT zhenfenghuang researchonthesensorfordetectionofcarburizedcasedepthbasedonnonlinearultrasound
AT xinxinli researchonthesensorfordetectionofcarburizedcasedepthbasedonnonlinearultrasound
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