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Updated: May 23, 2026

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
Published on: May 20, 2018
[Thermal infrared spectral variation and sensitive waveband of quartzy sandstone under pressure]
Shan-jun Liu1, Li-xin Wu, Zhe Feng
1College of Resources and Civil Engineering, Northeastern University, Shenyang 110819, China. liusjdr@126.com
Abstract:
In the present paper the thermal infrared spectral variation of quartz sandstone under uniaxial compression was detected by a spectroradiometer to study the sensitively responding waveband of infrared radiation excited by the pressure. The experimental result shows that the infrared spectrum varies with the load, and the variation feature is different in different wavebands. The infrared radiation intensity increases with the increase in the load within the waveband 8.0-11.5 microm (specially in 8.6-9.1 microm), and there is a quadratic correlation between them, meanwhile the signal-to-noise ratio of spectrum radiation is also higher in the waveband. But in other wavebands the correlation is worse and the signal-to-noise is also lower. This indicates that the waveband 8.0-11.5 microm is the sensitive waveband of infrared radiation to the pressure, and it is also the superior waveband for infrared remote sensing monitoring the stress and catastrophe of rock. The optimum waveband is 8.6-9.1 microm.
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