댓글 0조회 수 232684추천 수 0
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print

http://link.springer.com/article/10.1007/s12541-015-0118-x

 

Non-contact measurement of elastic modulus by using laser ultrasound

  • Jongbeom Kim
  • , Kyoung-Young Jhang 

Abstract

Non-contact measurement of elastic modulus is necessary for the in-line assessment of material in harsh environments such as high temperature. In this paper, a fully non-contact method to measure elastic modulus is proposed based on the laser ultrasonic technique (LUT) that uses a short-pulsed laser to generate ultrasound and the other laser coupled to an interferometer using a photorefractive crystal to detect the ultrasonic wave displacement. Basically, this method measures velocities of shear wave and longitudinal wave to obtain the elastic modulus. The uniqueness is that the velocity of shear wave is measured in the thermo-elastic regime first and then the velocity of longitudinal wave is measured in the ablation regime. This is because the strong mode of generated ultrasound is the shear wave in the thermo-elastic regime while the longitudinal wave in the ablation regime. Regime change can be achieved simply by switching the laser power, with no change in the measurement setup. In order to demonstrate the usefulness of the proposed method, the elastic modulus of aluminum casting alloy has been measured and the results were compared with a conventional contact method and a destructive tensile test. They showed good agreement with each other, which verified the usefulness of the proposed noncontact elastic modulus measurement method.

Keywords

Elastic modulus Laser ultrasound Non-contact Non-destructive

분류 제목 조회 수
International Evaluation of Ultrasonic Nonlinear Characteristics in Heat-Treated Aluminum Alloy (Al-Mg-Si-Cu)   191761
International Evaluation of yield strength by ultrasonic reconstruction of quadratic nonlinear Stress-Strain curve   66059
International Experimental Comparison of Nonlinear Parameters Obtained from Absolute Measurement and Relative Measurement   168207
International Experimental investigation of nonlinear acoustic effect at crack   99558
International Experimental Verification of Contact Acoustic Nonlinearity at Rough Contact Interfaces   49988
International Failure Analysis and Evalutaion of Strength Properties for Brazed Joints   107875
International Fatigue-induced microdamage characterization of stainless steel 316L using innovative nonlinear acoustics   148385
International Finite Difference Method Analysis of Ultrasonic Nonlinearity in Partially Degraded Material   160397
International Finite element analysis of a low-velocity impact test for glass fiber-reinforced polypropylene composites considering mixed-mode interlaminar fracture toughness  fileimage 99223
International Frequency Response of Narrowband Surface Waves Generated by Laser Beams Spatially Modulated with a Line-arrayed Slit Mask   117250
International Full-range stress–strain curve estimation of aluminum alloys using machine learning-aided ultrasound   63
International Generation and Measurement of Gigahertz Ultrasonic Waves in Additively Manufactured Thin Metal Components using Femtosecond Laser and Application to In-situ Grain size Monitoring (Submitted)   26268
International GENERATION OF WAVELENGTH-MATCHED GUIDED WAVE IN TUBE BY ARRAYED LASER BEAM METHOD   123620
International Harmonic generation of an obliquely incident ultrasonic wave in solid-solid contact interfaces   113343
International Harmonic generation of an obliquely incident ultrasonic wave in solid-solid contact interfaces   95401
International Imaging of contact acoustic nonlinearity using synthetic aperture technique   120900
International Imaging of Defects in Thin Plate by Scanning of Laser-generated Focused-Lamb Waves   103102
International Improvement of Crack Sizing Performance by using Nonlinear Ultrasonic Technique   104094
International In situ detection of laser-induced slip initiation on the silicon wafer surface   104274
International In-Line Ultrasonic Monitoring for Sediments Stuck on Inner Wall of a Polyvinyl Chloride Pipe   129271
Board Pagination ‹ Prev 1 2 3 4 5 6 Next ›
/ 6
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