• Infrared Technology
  • Vol. 43, Issue 8, 777 (2021)
Jingjing SONG1、2, Zhonghui LI1、2、3、*, Xin ZHANG1、2, He TIAN1、2, Anqi ZHENG1、2, Zesheng ZANG1、2, and Quancong ZHANG1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: Cite this Article
    SONG Jingjing, LI Zhonghui, ZHANG Xin, TIAN He, ZHENG Anqi, ZANG Zesheng, ZHANG Quancong. Research on Normalized Histogram Characterization of Infrared Thermal Image of Rock Sample Damage[J]. Infrared Technology, 2021, 43(8): 777 Copy Citation Text show less

    Abstract

    Infrared thermal imaging is a very promising method for evaluating coal and rock damage. To further process the infrared image and extract the key information, the damage status of coal and rock can be distinguished according to this quantitative information. With uniaxial loading, fracture development maps were developed, and synchronous acquisition of infrared images of the rock samples was carried out. The infrared images were analyzed and processed using a normalized histogram, and the details of the infrared images were quantitatively characterized. The results show that the gray value distribution of the infrared images at different times can reflect the surface temperature changes and stress values during the failure process of the sample. When the main fracture occurred, the percentage of pixels in the gray value interval[240,255](the surface temperature of the rock sample was 29.01℃-33.19℃) increased by 13.85% compared with that in the previous moment. In addition, the change trend of the proportion of pixels in the gray value interval[224,255]over time is highly correlated with rock damage variables, which shows that the normalized histogram can characterize the damage and destruction process of the rock mass.
    SONG Jingjing, LI Zhonghui, ZHANG Xin, TIAN He, ZHENG Anqi, ZANG Zesheng, ZHANG Quancong. Research on Normalized Histogram Characterization of Infrared Thermal Image of Rock Sample Damage[J]. Infrared Technology, 2021, 43(8): 777
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