댓글 0조회 수 129266추천 수 0
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print

http://www.hindawi.com/journals/tswj/2014/731621/


The Scientific World Journal
Volume 2014 (2014), Article ID 731621, 8 pages
http://dx.doi.org/10.1155/2014/731621
Research Article

In-Line Ultrasonic Monitoring for Sediments Stuck on Inner Wall of a Polyvinyl Chloride Pipe

1Department of Mechanical Convergence Engineering, Hanyang University, Seoul 133-791, Republic of Korea
2School of Mechanical Engineering, Hanyang University, Seoul 133-791, Republic of Korea

Received 28 March 2014; Accepted 2 July 2014; Published 28 August 2014

Academic Editor: Ying Lei

Abstract

This research verified the applicability and effectiveness of the ultrasonic monitoring of sediments stuck on the inner wall of polyvinyl chloride (PVC) pipes. For identifying the transmittance of acoustic energy and the speed of sound in the PVC material, the pulse-echo ultrasonic testing was conducted for PVC sheets of different thicknesses. To simulate the solidified sediment, the hot melt adhesive (HMA) was covered on the inner wall of the PVC pipe in different heights. From the experiment, the speeds of sound in the PVC and the HMA materials were obtained as about 2258 and 2000 m/s, respectively. The thickness of the materials was calculated through the signal processing such as taking the absolute value and low pass filtering, the echo detection, and the measurement of the time of flight. The errors between actual and measured thicknesses of PVC sheets were below 5%. In the case of the substance stuck on the inner wall, the errors were below 2.5%. Since the pulse-echo ultrasonic inspection is available on the outer surface and its measurement accuracy was over 95%, it can be an efficient and effective in-service structural health monitoring for the sediment on the wall of PVC pipes.


분류 제목 조회 수
Domestic A6061 합금의 석출경화 열처리에 따른 탄성파의 음향 특성 연구   124344
Domestic Porosity evaluation of additive manufactured parts: ultrasonic testing and eddy current testing   124251
International Assessment of Thermal Aging of Aluminum Alloys by Acoustic Nonlinearity Measurement of Surface Acoustic Waves   124136
Domestic 회절초음파를 이용한 노치 피로균열의 균열깊이 평가   123871
International GENERATION OF WAVELENGTH-MATCHED GUIDED WAVE IN TUBE BY ARRAYED LASER BEAM METHOD   123591
International Automatic Non-Contact Defect Inspection of Cylindrical Shell Using a Laser-Ultrasonic Technique   123551
International Nanotribological and wetting performance of hierarchical patterns   123488
International Influence of laser beam profiles on the frequency bandwidth of laser-generated surface acoustic waves   121902
Domestic Evaluation of Ultrasonic Nonlinear Characteristics in Artificially Aged Al6061-T6   121852
International Acoustic Nonlinearity of a Laser-Generated Surface Wave in a Plastically Deformed Aluminum Alloy   121075
Domestic "웨이브렛 변환을 이용한 초음파 펄스 에코신호의 디컨볼루션"   120874
International Imaging of contact acoustic nonlinearity using synthetic aperture technique   120869
International " Bending Fatigue Evaluation of Al6061 Alloy by Laser-generated Surface Wave"   119856
Domestic 초음파주사현미경의 분해능 향상을 위한 중첩된 펄스에코 신호의 분리기법(디컨볼루션과 웨이브렛 변환의 혼합기법)   119551
International "Study on the Development of Multi-Path Ultrasonic Gas Flow Meter"   119343
Domestic Evaluation of Ultrasonic Nonlinear Characteristics in Heat-Treated Aluminum Alloy   118650
Domestic "차선의 회전 방향 인식을 위한 신경회로망 응용 화상처리"   118254
Domestic "도플러 방식과 헤테로다인 방식의 광간섭법을 병용한 절대높이 측정 정밀도 향상"   118237
International Reliability Evaluation of Hinges Used in Electronic Communication Devices   118175
Domestic "ASV를 위한 차량 탑재용 거리 계측 기술"   118117
Board Pagination ‹ Prev 1 2 3 4 5 6 7 8 9 10 Next ›
/ 10
Designed by hikaru100

나눔글꼴 설치 안내


이 PC에는 나눔글꼴이 설치되어 있지 않습니다.

이 사이트를 나눔글꼴로 보기 위해서는
나눔글꼴을 설치해야 합니다.

설치 취소

SketchBook5,스케치북5

SketchBook5,스케치북5

SketchBook5,스케치북5

SketchBook5,스케치북5

ISNDE Laboratory
203-2,Engineering Center Annex
Hanyang University,
222 Wangsimni-ro, Seongdong-gu
Seoul 04763, Korea
04763 서울특별시 성동구 왕십리로 222
한양대학교 공업센터 별관 203-2호
지능계측 및 비파괴평가 연구실
Tel: 02 - 2220 - 4220
Fax: 02 - 2299 - 7207