Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill

ObjectiveThe preparation of multi-source coal-based solid waste into filling materials for interval strip filling mining is one of the important means of green coal mining. The deformation and failure law of multi-source coal-based solid waste cemented backfill during strip coal pillar mining direct...

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Main Authors: Xiang HE, Longqiang WEI, Ke YANG, Tong ZHANG, Cun ZHANG, Zilong ZHANG, Yanjun CHEN
Format: Article
Language:zho
Published: Editorial Office of Coal Geology & Exploration 2025-05-01
Series:Meitian dizhi yu kantan
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Online Access:http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.25.01.0049
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author Xiang HE
Longqiang WEI
Ke YANG
Tong ZHANG
Cun ZHANG
Zilong ZHANG
Yanjun CHEN
author_facet Xiang HE
Longqiang WEI
Ke YANG
Tong ZHANG
Cun ZHANG
Zilong ZHANG
Yanjun CHEN
author_sort Xiang HE
collection DOAJ
description ObjectiveThe preparation of multi-source coal-based solid waste into filling materials for interval strip filling mining is one of the important means of green coal mining. The deformation and failure law of multi-source coal-based solid waste cemented backfill during strip coal pillar mining directly affects the stability of the stope.MethodsFive typical solid wastes were mixed with cement to prepare cemented backfill. The conventional triaxial and constant axial pressure unloading confining pressure stress tests of backfill specimens were carried out. The stress-strain curves and failure characteristics of backfill under two stress loading paths were analyzed. The evolution law of deformation parameters with confining pressure during unloading confining pressure was explored, and the unloading damage mechanism and strength criterion of backfill were revealed. Results and Conclusions The results show that: (1) The backfill specimens show brittle failure characteristics in the conventional triaxial test. The cracks gradually develop and rapidly expand during failure. The brittle failure characteristics in the unloading confining pressure test are enhanced. The strain change value before the failure of the specimen is less than 6.5% of the failure. (2) In the process of unloading confining pressure, the volume deformation of the filling body specimen changes from compression to expansion, the deformation modulus decreases by 10% of the failure stage, and the Poisson’s ratio breaks through the elastic-plastic material limit of 0.5 when the specimen is destroyed. (3) The confining pressure difference ratio decreases linearly with the initial confining pressure, which indicates that the backfill is more likely to be destroyed under high confining pressure environment, and the evolution of damage factor D is highly synchronized with Poisson’s ratio. (4) The Mogi-Coulomb strength criterion is suitable for the triaxial test of backfill specimens under constant axial compression and unloading confining pressure. The unloading behavior has a weakening effect on the cohesion of the backfill, and has a strengthening effect on the internal friction angle. The research results provide a reference for the stability control of interval strip filling mining.
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publisher Editorial Office of Coal Geology & Exploration
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series Meitian dizhi yu kantan
spelling doaj-art-a3038c5b3dab4df1b58bf6c65004c35f2025-08-20T02:17:00ZzhoEditorial Office of Coal Geology & ExplorationMeitian dizhi yu kantan1001-19862025-05-0153516317510.12363/issn.1001-1986.25.01.004925-01-0049hexiangExperimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfillXiang HE0Longqiang WEI1Ke YANG2Tong ZHANG3Cun ZHANG4Zilong ZHANG5Yanjun CHEN6School of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaSchool of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaSchool of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaSchool of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaSchool of Energy and Mining Engineering, China University of Mining and Technology (Beijing), Beijing 100083, ChinaSchool of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaSchool of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, ChinaObjectiveThe preparation of multi-source coal-based solid waste into filling materials for interval strip filling mining is one of the important means of green coal mining. The deformation and failure law of multi-source coal-based solid waste cemented backfill during strip coal pillar mining directly affects the stability of the stope.MethodsFive typical solid wastes were mixed with cement to prepare cemented backfill. The conventional triaxial and constant axial pressure unloading confining pressure stress tests of backfill specimens were carried out. The stress-strain curves and failure characteristics of backfill under two stress loading paths were analyzed. The evolution law of deformation parameters with confining pressure during unloading confining pressure was explored, and the unloading damage mechanism and strength criterion of backfill were revealed. Results and Conclusions The results show that: (1) The backfill specimens show brittle failure characteristics in the conventional triaxial test. The cracks gradually develop and rapidly expand during failure. The brittle failure characteristics in the unloading confining pressure test are enhanced. The strain change value before the failure of the specimen is less than 6.5% of the failure. (2) In the process of unloading confining pressure, the volume deformation of the filling body specimen changes from compression to expansion, the deformation modulus decreases by 10% of the failure stage, and the Poisson’s ratio breaks through the elastic-plastic material limit of 0.5 when the specimen is destroyed. (3) The confining pressure difference ratio decreases linearly with the initial confining pressure, which indicates that the backfill is more likely to be destroyed under high confining pressure environment, and the evolution of damage factor D is highly synchronized with Poisson’s ratio. (4) The Mogi-Coulomb strength criterion is suitable for the triaxial test of backfill specimens under constant axial compression and unloading confining pressure. The unloading behavior has a weakening effect on the cohesion of the backfill, and has a strengthening effect on the internal friction angle. The research results provide a reference for the stability control of interval strip filling mining.http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.25.01.0049triaxial unloading confining pressuremulti-source coal-based solid wastecemented backfilldamage evolutionmogi-coulomb strength criterion
spellingShingle Xiang HE
Longqiang WEI
Ke YANG
Tong ZHANG
Cun ZHANG
Zilong ZHANG
Yanjun CHEN
Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
Meitian dizhi yu kantan
triaxial unloading confining pressure
multi-source coal-based solid waste
cemented backfill
damage evolution
mogi-coulomb strength criterion
title Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
title_full Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
title_fullStr Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
title_full_unstemmed Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
title_short Experimental study on unloading confining pressure deformation and damage failure of multi-source coal-based solid waste cemented backfill
title_sort experimental study on unloading confining pressure deformation and damage failure of multi source coal based solid waste cemented backfill
topic triaxial unloading confining pressure
multi-source coal-based solid waste
cemented backfill
damage evolution
mogi-coulomb strength criterion
url http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.25.01.0049
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