Experimental development process of similar material of water resisting layer in physical model test

The stability evaluation of water resisting layer in the process of coal mining is the key to study the law of water and soil loss and prevent the loss of water resources. The development and proportioning of similar materials are the basis to study the stability of water resisting layer by physical...

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Main Authors: Liu Qi, Chen Shaojie, Wang Shuai, Chai Jing, Zhang Dingding, Yao Kailiang
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/79/e3sconf_coal2021_01012.pdf
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spelling doaj-ffa34aeed2e445c1b347e5aedbb725bf2021-09-21T15:16:48ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013030101210.1051/e3sconf/202130301012e3sconf_coal2021_01012Experimental development process of similar material of water resisting layer in physical model testLiu QiChen Shaojie0Wang ShuaiChai Jing1Zhang Dingding2Yao Kailiang3Shandong University of Science and Technology, State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Provence and the Ministry of Science and TechnologySchool of Energy and Mining Engineering, Xi’an University of Science and TechnologySchool of Energy and Mining Engineering, Xi’an University of Science and TechnologySchool of Energy and Mining Engineering, Xi’an University of Science and TechnologyThe stability evaluation of water resisting layer in the process of coal mining is the key to study the law of water and soil loss and prevent the loss of water resources. The development and proportioning of similar materials are the basis to study the stability of water resisting layer by physical simulation. A new type of similar material considering water characteristics was developed through orthogonal experiments. The similar material was composed of river sand, bentonite, silicone oil, vaseline, and water. Determine the best test development process. First of all, the proportion test scheme is designed based on the orthogonal test. Then, the influence of cement concentration, mass ratio of silicone oil to vaseline and other components on the density, uniaxial compressive strength, elastic model and Poisson’s ratio of similar materials was analyzed by range analysis. Finally, the multiple linear regression equation between the parameters and the composition of similar materials for water resisting layer is obtained, and the optimal composition ratio is further determined according to the relationship between the test influencing factors and the mechanical properties of similar materials. The results show that the selected raw materials and their proportioning method are feasible. The content of river sand plays a major role in controlling the density and Poisson’s ratio of similar materials. The mass ratio of aggregate to binder is the main factor affecting the uniaxial compressive strength and elastic modulus of similar materials, while the cementing concentration has the second largest influence on the density, uniaxial compressive strength, elastic modulus and Poisson’s ratio of similar materials. Determining the cementing concentration that matches the design of similar material model tests is critical to improving test accuracy and provides a reference for the preparation of similar materials for water resisting layer under different requirements during the development of similar materials.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/79/e3sconf_coal2021_01012.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Liu Qi
Chen Shaojie
Wang Shuai
Chai Jing
Zhang Dingding
Yao Kailiang
spellingShingle Liu Qi
Chen Shaojie
Wang Shuai
Chai Jing
Zhang Dingding
Yao Kailiang
Experimental development process of similar material of water resisting layer in physical model test
E3S Web of Conferences
author_facet Liu Qi
Chen Shaojie
Wang Shuai
Chai Jing
Zhang Dingding
Yao Kailiang
author_sort Liu Qi
title Experimental development process of similar material of water resisting layer in physical model test
title_short Experimental development process of similar material of water resisting layer in physical model test
title_full Experimental development process of similar material of water resisting layer in physical model test
title_fullStr Experimental development process of similar material of water resisting layer in physical model test
title_full_unstemmed Experimental development process of similar material of water resisting layer in physical model test
title_sort experimental development process of similar material of water resisting layer in physical model test
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The stability evaluation of water resisting layer in the process of coal mining is the key to study the law of water and soil loss and prevent the loss of water resources. The development and proportioning of similar materials are the basis to study the stability of water resisting layer by physical simulation. A new type of similar material considering water characteristics was developed through orthogonal experiments. The similar material was composed of river sand, bentonite, silicone oil, vaseline, and water. Determine the best test development process. First of all, the proportion test scheme is designed based on the orthogonal test. Then, the influence of cement concentration, mass ratio of silicone oil to vaseline and other components on the density, uniaxial compressive strength, elastic model and Poisson’s ratio of similar materials was analyzed by range analysis. Finally, the multiple linear regression equation between the parameters and the composition of similar materials for water resisting layer is obtained, and the optimal composition ratio is further determined according to the relationship between the test influencing factors and the mechanical properties of similar materials. The results show that the selected raw materials and their proportioning method are feasible. The content of river sand plays a major role in controlling the density and Poisson’s ratio of similar materials. The mass ratio of aggregate to binder is the main factor affecting the uniaxial compressive strength and elastic modulus of similar materials, while the cementing concentration has the second largest influence on the density, uniaxial compressive strength, elastic modulus and Poisson’s ratio of similar materials. Determining the cementing concentration that matches the design of similar material model tests is critical to improving test accuracy and provides a reference for the preparation of similar materials for water resisting layer under different requirements during the development of similar materials.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/79/e3sconf_coal2021_01012.pdf
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