• 제목/요약/키워드: Optical Displacement measurement

검색결과 151건 처리시간 0.029초

Nondestructive Testing of Residual Stress on the Welded Part of Butt-welded A36 Plates Using Electronic Speckle Pattern Interferometry

  • Kim, Kyeongsuk;Jung, Hyunchul
    • Nuclear Engineering and Technology
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    • 제48권1호
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    • pp.259-267
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    • 2016
  • Most manufacturing processes, including welding, create residual stresses. Residual stresses can reduce material strength and cause fractures. For estimating the reliability and aging of a welded structure, residual stresses should be evaluated as precisely as possible. Optical techniques such as holographic interferometry, electronic speckle pattern interferometry (ESPI), Moire interferometry, and shearography are noncontact means of measuring residual stresses. Among optical techniques, ESPI is typically used as a nondestructive measurement technique of in-plane displacement, such as stress and strain, and out-of-plane displacement, such as vibration and bending. In this study, ESPI was used to measure the residual stress on the welded part of butt-welded American Society for Testing and Materials (ASTM) A36 specimens with $CO_2$ welding. Four types of specimens, base metal specimen (BSP), tensile specimen including welded part (TSP), compression specimen including welded part (CSP), and annealed tensile specimen including welded part (ATSP), were tested. BSP was used to obtain the elastic modulus of a base metal. TSP and CSP were used to compare residual stresses under tensile and compressive loading conditions. ATSP was used to confirm the effect of heat treatment. Residual stresses on the welded parts of specimens were obtained from the phase map images obtained by ESPI. The results confirmed that residual stresses of welded parts can be measured by ESPI.

자기 변형 공진 기구를 이용한 레이저 스캐닝 진동측정기에 관한 연구 (A Study on a Laser Scanning Vibrometer Using a Magnetostrictive Resonant Device)

  • 이정화;류제길;박기환
    • 한국정밀공학회지
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    • 제15권11호
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    • pp.58-66
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    • 1998
  • A low power consuming laser scanning vibrometer is studied for its development. For its optical system, a laser interferometer is constructed to use the Doppler effect. In order to reduce the driving power of the scanning system, a small displacement of the scanning system is produced, which is achieved by using a magnetostrictive actuator. A sufficient rotating angle of the scanning system is obtained by using an amplified displacement from the resonant phenomena of a second order mechanical system composed of a mass and spring. The control of the magnetostrictive actuator using a Terfenol-D is performed without using a feedback system to help reduce the power consumption. The vibration analysis is made for the sinusoidal scanning input to have the space domain information from the time domain of the velocity of a vibration object. As a partial work of development of a tow power consuming laser scanning vibrometer, in this work, a scanning system which has the above features is developed and experimentally investigated. For the purpose of the optical system calibration, the vibration measurement for one axis is presented and the future works are discussed.

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레이저 스펙클과 1차원 CCD소자를 이용한 물체의 미소변위측정에 관한 연구 (Measurement of Micro-displacement of an Object by Laser Speckle using Linear Array CCD Detection System)

  • 우창헌;민동현;김수용
    • 한국광학회지
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    • 제5권1호
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    • pp.138-143
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    • 1994
  • 거친 표면을 가진 물체의 미소변위를 1차원 CCD소자와 레이저 스펙클(laser speckle) 방법을 이용하여 측정하였다. 거친 표면에서 산란된 레이저 광이 이루는 스펙클 무늬를 물체의 이동 전후에 얻고, 그것의 상호상관함수(cross-correlation)를 계산하여 스펙클 변위를 계산한다. 1차원 CCD소자를 이용하여 물체이동 전후의 스펙클 무늬를 측정하고, 레이저 스펙클 변위값을 386 PC로 인터페이스하여 PC에서 계산한다. 사용한 CCD 소자의 화소 간격은 $15\mu\textrm{m}$이고, 화소의 개수는 1728개이다. 스펙클 변위와 물체의 이동거리와는 비는 레이저 빔의 파면의 곡률에따라 1.03으로부터 5.20까지 변화한다. CCD 픽셀의 간격이 $15\mu\textrm{m}$이므로 물체의 $3\mu\textrm{m}$ 이동을 감지해 낼 수 있다.

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Absolute Distance Measurements Using the Optical Comb of a Femtosecond Pulse Laser

  • Jin, Jong-Han;Kim, Young-Jin;Kim, Yun-Seok;Kim, Seung-Woo
    • International Journal of Precision Engineering and Manufacturing
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    • 제8권4호
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    • pp.22-26
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    • 2007
  • We describe a new way of implementing absolute displacement measurements by exploiting the optical comb of a femtosecond pulse laser as a wavelength ruler, The optical comb is stabilized by locking both the repetition rate and the carrier offset frequency to an Rb clock of frequency standard. Multiwavelength interferometry is then performed using the quasi-monochromatic beams of well-defined generated wavelengths by tuning an external cavity laser diode consecutively to preselected light modes of the optical comb. This scheme of wavelength synthesizing allows the measurement of absolute distances with a high precision that is traceable to the definition of time. The achievable wavelength uncertainty is $1.9{\times}10^{-10}$, which allows the absolute heights of gauge blocks to be determined with an overall calibration uncertainty of 15 nm (k = 1). These results demonstrate a successful industrial application of an optical frequency synthesis employing a femtosecond laser, a technique that offers many possibilities for performing precision length metrology that is traceable to the well-defined international definition of time.

Stiffness Comparison of Tissue Phantoms using Optical Coherence Elastography without a Load Cell

  • Chae, Yu-Gyeong;Park, Eun-Kee;Jeon, Min Yong;Jeon, Byeong-Hwan;Ahn, Yeh-Chan
    • Current Optics and Photonics
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    • 제1권1호
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    • pp.17-22
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    • 2017
  • Mechanical property of tissue is closely related to diseases such as breast cancer, prostate cancer, cirrhosis of the liver, and atherosclerosis. Therefore measurement of tissue mechanical property is important for a better diagnosis. Ultrasound elastography has been developed as a diagnostic modality for a number of diseases that maps mechanical property of tissue. Optical coherence elastography (OCE) has a higher spatial resolution than ultrasound elastography. OCE, therefore, could be a great help for early diagnosis. In this study, we made tissue phantoms and measured their compressive moduli with a rheometer measuring the response to applied force. Uniaxial strain of the tissue phantom was also measured with OCE by using cross-correlation of speckles and compared with the results from the rheometer. In order to compare stiffness of tissue phantoms by OCE, the applied force should be measured in addition to the strain. We, however, did not use a load cell that directly measures the applied force for each sample. Instead, we utilized one silicone film (called as reference phantom) for all OCE measurements that indirectly indicated the amount of the applied force by deformation. Therefore, all measurements were based on displacement, which was natural and effective for image-based elastography such as OCE.

Correcting the Elastic-modulus Error of Quartz Glass Using Digital Speckle-pattern Interferometry

  • Ziyang Song;Weixian Li;Sijin Wu;Lianxiang Yang
    • Current Optics and Photonics
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    • 제7권4호
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    • pp.337-344
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    • 2023
  • Three-point bending is the main method for measuring the elastic modulus of a thin plate. Although various displacement transducers may be used to measure the bending, these are single-point measurements, and it is difficult to eliminate the error caused by eccentric load and shear force. Error-correction models for the elastic modulus of quartz glass using digital speckle interferometry are proposed for eccentric load and shear force. First, the positional misalignment between maximum deflection and load is analyzed, and the error caused by eccentric load is corrected. Then, the additional displacement caused by shear force at different positions of the quartz glass plate is explored. The effect of shear deformation is also corrected, by measuring two points. Since digital speckle interferometry has the advantage of full-field measurement, it can simultaneously obtain deflection data for multiple points to realize error correction. Experimental results are presented to demonstrate that the proposed model can effectively correct the measurement error of the elastic modulus.

압전소자에 의한 미세이송시스템의 개발에 관한 연구 (Development of Piezo-Eloectric Micro-Depth Control System)

  • 김동식
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1995년도 춘계학술대회 논문집
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    • pp.40-62
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    • 1995
  • A micro positioning system using piezoelectric actuators have very wide application region such as ultra-precision machine tool optical device measurement system. In order to keep a high precision displacement resolution it to useful to take a position sensor and feedback of the error. From the practical point of view high-resolution displacement sensor systems are very expensive and it is difficult to make such a sensitive sensor work properly in a poor operational environment of industry. In this study a piezo-electric micro-depth control system which does not require position sensor but piezoelectric voltage feedback has been developed. It is driven by hysteresis-considering reference input voltage calculated in advance and actuator/sensor characteristics of piezoelectric materials. From the result of experiments a fast and stable response of micro-depth control system has been achieved and an efficient technique to control the piezoelectric actuator suggested.

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IN SITU STRESS MEASUREMENTS OF Co-BASED MULTILAYER FILMS

  • Kim, Young-Suk;Shin, Sung-Chul
    • 한국자기학회지
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    • 제5권5호
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    • pp.470-473
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    • 1995
  • We have constructed an apparatus for in sity measurement of stress of the film prepared by sputtering using an optical noncontact displacement detector. A Change of the gap distance between the detector and the substrate, caused by stress of a deposited film, was detected by a corresponding change of the reflectivity. The sensitivity of the displacement detector was $5.9\;{\mu}V/{\AA}$ and thus, it was turned out to be good enough to detect stress caused by deposition of a monoatomic layer. The apparatus was applied to in situ stress measurements of Co/X(X=Pd or Pt) multilayer thin films prepared on the glass substrates by dc magnetron sputtering. At the very beginning of the deposition, both Co and X sublayers have subjected to their own intrinsic stresses. However, when the film was thicker than about $100{\AA}$, constant tensile stress in the Co sublayer and compressive stress in the X sublayer were observed, which is believed to be related to a lattice mismatch between the matching planes of Co and X.

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$Moir\acute{e}$ Fringe에 의한 액막 두께 미소 변위 측정 연구 (A Study on the Small Disturbance Measurement of Liquid Film Thickness by $Moir\acute{e}$ Fringe)

  • 전홍신;김경훈
    • 한국분무공학회지
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    • 제2권4호
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    • pp.29-35
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    • 1997
  • Liquid film thickness is measured by $moir\acute{e}$ topography which monitored liquid surface. $Moir\acute{e}$ fringe measurement techniques share the inherent simplicity found in optical interferometric techniques have the advantage of use over a greater range of displacement. $Moir\acute{e}$ fringe are the geometric interference patterns observed when two dense line grating are superposed. Light transmitted through a fixed line grating is deviated by the liquid film surface, producing a distored image of the grating. The $moir\acute{e}$ fringe produced by projection of this optically distored grating onto a second stationary grating permit visualization of the liquid surface and measurement of the liquid film thickness. This study measured the small amplitude of liquid film thickness to the $moir\acute{e}$ fringe pattern produced when spherical metal was dropped glycerin put)1 And the measurement of liquid film thickness flowing down an inclined plate are required to calculate the liquid slope in a position.

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편향 인장 및 트렐리스 시험에 의한 직물 복합재료의 면내 전단 물성 평가 (Characterization of In-plane Shear Behaviors of Woven Fabrics by Bias-extension and Trellis-frame Tests)

  • 이원오;엄문광;변준형
    • Composites Research
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    • 제23권5호
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    • pp.8-14
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    • 2010
  • 서로 다른 길이비를 갖는 세 종류의 유리 직물 복합재료(평직, 균형능직, 비균형능직)의 면내 전단 물성 평가를 위해 편향인장 시험을 실시하였다. 직물 복합재료의 전단각을 결정하기 위하여 인장 변형량과 직물의 크기에 기인한 이론식, 직접측정법 및 이미지 분석법등을 이용하여 서로의 장단점을 비교하여 보았으며, 편향 인장 시험의 기하구조를 이용하여 유도된 식을 통해 면내 전단력을 계산하였다. 또한 트렐리스 시험(trellis-frame test)에 의한 결과와의 비교를 통해 편향 인장 시험에 의한 전단 물성 측정법의 정확도를 평가하였다. 실험 결과, 이론식에 의한 전단각 계산법은 전단각이 30도 이내일 경우에 이미지를 통한 직접 측정의 결과와 유사하였으며, 면내 전단력은 평직이나 균형 능직과 같은 등방형 직물의 경우에만 측정 샘플의 길이비에 무관한 균일한 결과를 보였다. 또한 편향 인장 시험과 트렐리스 시험 모두 비등방성이 큰 직물에 대한 전단 평가를 수행하는 데 있어서 많은 편차를 나타내었다.