TY - JOUR
T1 - A dual speckle method for eliminating air distortion in high temperature optical measurement experiments
AU - Zhang, Hongye
AU - Peng, Runlai
AU - Feng, Wei
AU - Fan, Chao
AU - Liu, Zhanwei
N1 - Publisher Copyright:
© 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
PY - 2022/12/15
Y1 - 2022/12/15
N2 - High-temperature deformation measurements based on optical measurement techniques are important for studying material properties. Due to the existence of temperature gradients between the high-temperature subject and the imaging system, the uneven air density distribution leads to random changes in the refractive index of air along the beam transmission path, which triggers random jitter in the images captured by the imaging system, resulting in large errors in the measured displacement field. In this paper, a dual speckle method is developed for eliminating air distortion in high-temperature experiments. The main experimental setup consists of two cameras, where one camera is focused on the speckles sprayed on the specimen surface that can measure the coupled displacement field, and the other camera is focused on the semipermeable speckles, which can measure the pure displacement caused by the change in the refraction index of air. Then, the true displacement of the tested specimen can be obtained by an arithmetic operation after the calculating point meets the one-to-one relationship. A simplified yet effective test was conducted and verified the feasibility of the method proposed, as the error analysis was analyzed in detail.
AB - High-temperature deformation measurements based on optical measurement techniques are important for studying material properties. Due to the existence of temperature gradients between the high-temperature subject and the imaging system, the uneven air density distribution leads to random changes in the refractive index of air along the beam transmission path, which triggers random jitter in the images captured by the imaging system, resulting in large errors in the measured displacement field. In this paper, a dual speckle method is developed for eliminating air distortion in high-temperature experiments. The main experimental setup consists of two cameras, where one camera is focused on the speckles sprayed on the specimen surface that can measure the coupled displacement field, and the other camera is focused on the semipermeable speckles, which can measure the pure displacement caused by the change in the refraction index of air. Then, the true displacement of the tested specimen can be obtained by an arithmetic operation after the calculating point meets the one-to-one relationship. A simplified yet effective test was conducted and verified the feasibility of the method proposed, as the error analysis was analyzed in detail.
UR - http://www.scopus.com/inward/record.url?scp=85169296526&partnerID=8YFLogxK
U2 - 10.1364/OPTCON.475186
DO - 10.1364/OPTCON.475186
M3 - Article
AN - SCOPUS:85169296526
SN - 2578-7519
VL - 1
SP - 2480
EP - 2489
JO - OSA Continuum
JF - OSA Continuum
IS - 12
ER -