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基于多通道提取与校正的高温热干扰消除方法

High-temperature thermal disturbance elimination method based on multi-channel extraction and correction.

作者信息

Pan Wanlin, Liu Qianshan, Li Junrui, Fan Xiaokang, Zhou Lei, Wang Yonghong

出版信息

Appl Opt. 2024 Jan 10;63(2):367-376. doi: 10.1364/AO.509848.

Abstract

Digital image correlation (DIC) technology has been widely used in high-temperature measurement fields. However, due to the complexity of high-temperature environments, there are many interference factors that limit the development of high-temperature DIC technology, among which thermal disturbance is one of the most significant factors that severely affects the measurement accuracy of high-temperature DIC. In this paper, a multi-channel separation technique combined with a low-cost laser speckle device is proposed to eliminate thermal disturbance errors in high-temperature DIC measurements. First, a blue laser speckle generation system is independently designed to produce the most suitable speckle particles, and the best laser speckle is determined and projected onto the blue background white spot pattern. Then a green LED illuminates the sample to provide illumination for the sample's own grayscale characteristics. A color camera collects photos, and the obtained images are processed with channel separation to extract and calculate the displacement of different channels. Finally, the displacement fields of the green and blue channels are subtracted to separate the thermal disturbance error and correct the measurement values. In this paper, a laser speckle projection system is first assembled, followed by a comprehensive evaluation of the projected speckle and, finally, a DIC experimental system is constructed for verification experiments at both room temperature and high temperature, and the corrected values are compared with the true values. The results show that the corrected values are highly consistent with the true values, which verifies the reliability of the proposed method.

摘要

数字图像相关(DIC)技术已在高温测量领域得到广泛应用。然而,由于高温环境的复杂性,存在许多干扰因素限制了高温DIC技术的发展,其中热干扰是严重影响高温DIC测量精度的最重要因素之一。本文提出了一种结合低成本激光散斑装置的多通道分离技术,以消除高温DIC测量中的热干扰误差。首先,独立设计了一个蓝色激光散斑生成系统,以产生最合适的散斑颗粒,并确定最佳激光散斑并将其投影到蓝色背景白色斑点图案上。然后,用绿色发光二极管照亮样品,以提供样品自身灰度特征的照明。彩色相机采集照片,并对获得的图像进行通道分离处理,以提取和计算不同通道的位移。最后,将绿色和蓝色通道的位移场相减,以分离热干扰误差并校正测量值。本文首先组装了一个激光散斑投影系统,随后对投影散斑进行了全面评估,最后构建了一个DIC实验系统,在室温和高温下进行验证实验,并将校正值与真值进行比较。结果表明,校正值与真值高度一致,验证了所提方法的可靠性。

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