Influence of liquid nitrogen cryotherapy on mechanic properties of coal and constitutive model study

Liquid nitrogen (LN 2 ) cryotherapy can lead to fracture propagation, and affect the macroscopic mechanical property of coal. To explore the influence of LN 2 cryotherapy on coal mechanics, LN 2 cryotherapy was applied for the anthracite and coking coal samples. Then, the stress-strain curves of non...

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Bibliographic Details
Published inEnergy sources. Part A, Recovery, utilization, and environmental effects Vol. 41; no. 19; pp. 2364 - 2376
Main Authors Jin, Xiaomin, Gao, Jianliang, Su, chengdong, Liu, Jiajia
Format Journal Article
LanguageEnglish
Published Taylor & Francis 02.10.2019
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Summary:Liquid nitrogen (LN 2 ) cryotherapy can lead to fracture propagation, and affect the macroscopic mechanical property of coal. To explore the influence of LN 2 cryotherapy on coal mechanics, LN 2 cryotherapy was applied for the anthracite and coking coal samples. Then, the stress-strain curves of non-cryogenic coal samples and LN 2 cryogenic coal samples were acquired based on uniaxial compression test. Based on damage variable evolution rule, the strength statistical damage (SSD) constitutive model considering the whole process of stress-strain curve was established. The results showed that the elasticity modulus, compressive strength, brittleness index of LN 2 cryogenic anthracite and coking coal were decreased compared with the non-cryogenic coal samples, respectively. Based on the test results the damage evolution rule was obtained and the constitutive model parameters were calculated. The rationality of SSD constitutive model was verified through comparison of SSD modeling results, Mazars modeling results, and test results. After LN 2 cryotherapy, the coal samples changed from brittleness to ductility, which is mainly due to that the cohesive force decreased and friction force increased in loading process. In the SSD model, parameter m represents the brittle characteristics. The brittleness index decreased with the decreased of m value. This study provides a theoretical support for LN 2 cryogenic technology.
ISSN:1556-7036
1556-7230
DOI:10.1080/15567036.2018.1563245