Coal bursting tendency evaluation by needle penetration test

The bursting tendency is the inherent mechanical property of coal, and the important basis for evaluating the degree of coal bursting risk in underground coal mine. In this paper, an experimental method based on a needle penetration test for a rapid determination of coal bursting tendency was propos...

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Main Authors: Yixin ZHAO, Ronghuan XIE, Yirui GAO
Format: Article
Language:zho
Published: Editorial Office of Journal of China Coal Society 2023-05-01
Series:Meitan xuebao
Subjects:
Online Access:http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.0126
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author Yixin ZHAO
Ronghuan XIE
Yirui GAO
author_facet Yixin ZHAO
Ronghuan XIE
Yirui GAO
author_sort Yixin ZHAO
collection DOAJ
description The bursting tendency is the inherent mechanical property of coal, and the important basis for evaluating the degree of coal bursting risk in underground coal mine. In this paper, an experimental method based on a needle penetration test for a rapid determination of coal bursting tendency was proposed. Combined with the needle penetration test, longitudinal wave velocity test and uniaxial compression experiment, the differences in the physical and mechanical properties of coal samples with different needle penetration indexes ( NPI ) and the energy evolution law during compression failure were explored. The residual elastic energy release rate index KRE was used to quantitatively characterize the accumulation and release characteristics of elastic strain energy and evaluate the coal bursting tendency. Through data fitting and regression analysis, the corresponding relationships between NPI and the physical and mechanical parameters such as longitudinal wave velocity, uniaxial compressive strength, elastic modulus were obtained. The correlation expressions between NPI and the coal bursting tendency indexes such as bursting energy index, elastic strain energy index, dynamic failure time, residual elastic energy release rate index were established. The classification of coal bursting tendency based on NPI was proposed and validated using the ejection mass ratio of coal cuttings F. The results show that there is a power function positive correlation between the NPI and the physical and mechanical parameters such as longitudinal wave velocity, uniaxial compressive strength, elastic modulus, and the coal bursting tendency indexes such as bursting energy index, elastic strain energy index, dynamic failure time, residual elastic energy release rate index. An exponential function negative correlation was found between the NPI and the dynamic failure time. The larger the NPI is, the stronger the elastic deformation and energy storage performance of coal. When the NPI is 85 N/mm, there is a sudden change in the uniaxial compressive strength of coal. The needle penetration test is feasible and reliable in predicting the physical and mechanical properties, elastic strain energy storage and release characteristics and the bursting tendency of coal.
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spelling doaj.art-bcd9cade74784d919358da5710e307162023-06-20T07:05:48ZzhoEditorial Office of Journal of China Coal SocietyMeitan xuebao0253-99932023-05-014851932194210.13225/j.cnki.jccs.2023.01262023-0126Coal bursting tendency evaluation by needle penetration testYixin ZHAO0Ronghuan XIE1Yirui GAO2Beijing Key Laboratory for Precise Mining of Intergrown Energy and Resources, China University of Mining and Technology-Beijing, Beijing 100083, ChinaBeijing Key Laboratory for Precise Mining of Intergrown Energy and Resources, China University of Mining and Technology-Beijing, Beijing 100083, ChinaBeijing Key Laboratory for Precise Mining of Intergrown Energy and Resources, China University of Mining and Technology-Beijing, Beijing 100083, ChinaThe bursting tendency is the inherent mechanical property of coal, and the important basis for evaluating the degree of coal bursting risk in underground coal mine. In this paper, an experimental method based on a needle penetration test for a rapid determination of coal bursting tendency was proposed. Combined with the needle penetration test, longitudinal wave velocity test and uniaxial compression experiment, the differences in the physical and mechanical properties of coal samples with different needle penetration indexes ( NPI ) and the energy evolution law during compression failure were explored. The residual elastic energy release rate index KRE was used to quantitatively characterize the accumulation and release characteristics of elastic strain energy and evaluate the coal bursting tendency. Through data fitting and regression analysis, the corresponding relationships between NPI and the physical and mechanical parameters such as longitudinal wave velocity, uniaxial compressive strength, elastic modulus were obtained. The correlation expressions between NPI and the coal bursting tendency indexes such as bursting energy index, elastic strain energy index, dynamic failure time, residual elastic energy release rate index were established. The classification of coal bursting tendency based on NPI was proposed and validated using the ejection mass ratio of coal cuttings F. The results show that there is a power function positive correlation between the NPI and the physical and mechanical parameters such as longitudinal wave velocity, uniaxial compressive strength, elastic modulus, and the coal bursting tendency indexes such as bursting energy index, elastic strain energy index, dynamic failure time, residual elastic energy release rate index. An exponential function negative correlation was found between the NPI and the dynamic failure time. The larger the NPI is, the stronger the elastic deformation and energy storage performance of coal. When the NPI is 85 N/mm, there is a sudden change in the uniaxial compressive strength of coal. The needle penetration test is feasible and reliable in predicting the physical and mechanical properties, elastic strain energy storage and release characteristics and the bursting tendency of coal.http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.0126needle penetration testcoalbursting tendencyenergy evolutionejection mass ratio
spellingShingle Yixin ZHAO
Ronghuan XIE
Yirui GAO
Coal bursting tendency evaluation by needle penetration test
Meitan xuebao
needle penetration test
coal
bursting tendency
energy evolution
ejection mass ratio
title Coal bursting tendency evaluation by needle penetration test
title_full Coal bursting tendency evaluation by needle penetration test
title_fullStr Coal bursting tendency evaluation by needle penetration test
title_full_unstemmed Coal bursting tendency evaluation by needle penetration test
title_short Coal bursting tendency evaluation by needle penetration test
title_sort coal bursting tendency evaluation by needle penetration test
topic needle penetration test
coal
bursting tendency
energy evolution
ejection mass ratio
url http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.0126
work_keys_str_mv AT yixinzhao coalburstingtendencyevaluationbyneedlepenetrationtest
AT ronghuanxie coalburstingtendencyevaluationbyneedlepenetrationtest
AT yiruigao coalburstingtendencyevaluationbyneedlepenetrationtest