Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test

In situ leaching was a very important technical approach in ion-adsorption rare earth mining, because it can effectively avoid the geological hazards, protect the environment, and reduce the mining costs. The critical issue of this mining technique was to increase the permeability of ion-adsorption...

Full description

Bibliographic Details
Main Authors: Yichen Miao, Changwu Liu, Zhiliang He, Yuanjun Ma, Haikuan Wu, Ding Wang
Format: Article
Language:English
Published: Hindawi-Wiley 2020-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2020/8844168
id doaj-da37977d9c6740dfa1a980a116766f76
record_format Article
spelling doaj-da37977d9c6740dfa1a980a116766f762020-11-25T02:36:00ZengHindawi-WileyGeofluids1468-81151468-81232020-01-01202010.1155/2020/88441688844168Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB TestYichen Miao0Changwu Liu1Zhiliang He2Yuanjun Ma3Haikuan Wu4Ding Wang5Institute of Disaster Management and Reconstruction, Sichuan University-The Hong Kong Polytechnic University, Chengdu, ChinaState Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, ChinaInstitute of Disaster Management and Reconstruction, Sichuan University-The Hong Kong Polytechnic University, Chengdu, ChinaState Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, ChinaState Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, ChinaSchool of Civil Engineering and Architecture, Southwest University of Science & Technology, Mianyang, ChinaIn situ leaching was a very important technical approach in ion-adsorption rare earth mining, because it can effectively avoid the geological hazards, protect the environment, and reduce the mining costs. The critical issue of this mining technique was to increase the permeability of ion-adsorption rare earth deposits. Due to the close relationship between the permeability and the porosity, in this paper, several experiments were conducted to find the dynamic characteristics of the granite deposit and the relationship between the dynamic characteristics and the porosity. Moreover, the SHPB test system was equipped to conduct the dynamic test, and the ultrasonic wave detector with high precision was employed to obtain the damage factor of granites. The test results showed that the failure mode under dynamic load and static load was close, and they both had splitting failure. Besides, when cyclic dynamic loading velocity was between 5.8 m/s and 8.4 m/s, the specimen was not a failure, but it caused the damage and changed the porosity. And the dynamic thresholds of failure stress and damage stress were found. Finally, a linear relationship between the porosity and the damage factor was found, which would help to analyze and predict the change of porosity under different dynamic loading velocities.http://dx.doi.org/10.1155/2020/8844168
collection DOAJ
language English
format Article
sources DOAJ
author Yichen Miao
Changwu Liu
Zhiliang He
Yuanjun Ma
Haikuan Wu
Ding Wang
spellingShingle Yichen Miao
Changwu Liu
Zhiliang He
Yuanjun Ma
Haikuan Wu
Ding Wang
Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
Geofluids
author_facet Yichen Miao
Changwu Liu
Zhiliang He
Yuanjun Ma
Haikuan Wu
Ding Wang
author_sort Yichen Miao
title Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
title_short Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
title_full Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
title_fullStr Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
title_full_unstemmed Analysis of Dynamic Damage-Induced Porosity Changes of Granites in Leaching Mining Technique Based on SHPB Test
title_sort analysis of dynamic damage-induced porosity changes of granites in leaching mining technique based on shpb test
publisher Hindawi-Wiley
series Geofluids
issn 1468-8115
1468-8123
publishDate 2020-01-01
description In situ leaching was a very important technical approach in ion-adsorption rare earth mining, because it can effectively avoid the geological hazards, protect the environment, and reduce the mining costs. The critical issue of this mining technique was to increase the permeability of ion-adsorption rare earth deposits. Due to the close relationship between the permeability and the porosity, in this paper, several experiments were conducted to find the dynamic characteristics of the granite deposit and the relationship between the dynamic characteristics and the porosity. Moreover, the SHPB test system was equipped to conduct the dynamic test, and the ultrasonic wave detector with high precision was employed to obtain the damage factor of granites. The test results showed that the failure mode under dynamic load and static load was close, and they both had splitting failure. Besides, when cyclic dynamic loading velocity was between 5.8 m/s and 8.4 m/s, the specimen was not a failure, but it caused the damage and changed the porosity. And the dynamic thresholds of failure stress and damage stress were found. Finally, a linear relationship between the porosity and the damage factor was found, which would help to analyze and predict the change of porosity under different dynamic loading velocities.
url http://dx.doi.org/10.1155/2020/8844168
work_keys_str_mv AT yichenmiao analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
AT changwuliu analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
AT zhilianghe analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
AT yuanjunma analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
AT haikuanwu analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
AT dingwang analysisofdynamicdamageinducedporositychangesofgranitesinleachingminingtechniquebasedonshpbtest
_version_ 1715439834190839808