The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts

In this paper, the mechanism of the interface dilatancy of cement mortar rockbolts is studied based on the phenomenon of splitting failure of samples with a high sand content in the grouting material in laboratory tests. A conceptual model of the interface layer is used to explain the dilatancy mech...

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Main Authors: Yubao Zhan, Nan Li, Hui Wang, Pengqiang Zheng, Jun Zhang, Qihua Liu
Format: Article
Language:English
Published: Wiley 2020-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2020/8838488
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author Yubao Zhan
Nan Li
Hui Wang
Pengqiang Zheng
Jun Zhang
Qihua Liu
author_facet Yubao Zhan
Nan Li
Hui Wang
Pengqiang Zheng
Jun Zhang
Qihua Liu
author_sort Yubao Zhan
collection DOAJ
description In this paper, the mechanism of the interface dilatancy of cement mortar rockbolts is studied based on the phenomenon of splitting failure of samples with a high sand content in the grouting material in laboratory tests. A conceptual model of the interface layer is used to explain the dilatancy mechanism of the interface. Based on the thick-walled cylinder theory, the causes of splitting failure of the samples are analyzed. By using the numerical simulation method, the influences of different dilatancy angles of the interface layer on the interface shear stress and the radial stress are analyzed. The results show that the sand content of the grouting material has a substantial effect on the bearing capacity of the rockbolt. The higher the sand content in the grouting material is, the more obvious the interface dilatancy will be, and the greater the radial stress generated by dilatancy will be, which will produce a higher bearing capacity of the anchorage system. Under the same load, the maximum shear stress of the interface layer increases with increasing dilatancy angle. Similarly, the larger the dilatancy angle of the interface layer is, the greater the radial stress caused by dilatancy will be. Away from the interface layer, the radial stress decays rapidly. The influence range of the radial stress caused by dilatancy is mainly in the interface layer and the rock nearby.
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issn 1687-8086
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publishDate 2020-01-01
publisher Wiley
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series Advances in Civil Engineering
spelling doaj-art-ce9625c3151149efaf64f286cb12f74f2025-08-20T03:19:39ZengWileyAdvances in Civil Engineering1687-80861687-80942020-01-01202010.1155/2020/88384888838488The Mechanism of Interface Dilatancy of Cement Mortar RockboltsYubao Zhan0Nan Li1Hui Wang2Pengqiang Zheng3Jun Zhang4Qihua Liu5College of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaCollege of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaCollege of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaCollege of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaCollege of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaCollege of Resources, Shandong University of Science and Technology, Tai’an, Shandong 271019, ChinaIn this paper, the mechanism of the interface dilatancy of cement mortar rockbolts is studied based on the phenomenon of splitting failure of samples with a high sand content in the grouting material in laboratory tests. A conceptual model of the interface layer is used to explain the dilatancy mechanism of the interface. Based on the thick-walled cylinder theory, the causes of splitting failure of the samples are analyzed. By using the numerical simulation method, the influences of different dilatancy angles of the interface layer on the interface shear stress and the radial stress are analyzed. The results show that the sand content of the grouting material has a substantial effect on the bearing capacity of the rockbolt. The higher the sand content in the grouting material is, the more obvious the interface dilatancy will be, and the greater the radial stress generated by dilatancy will be, which will produce a higher bearing capacity of the anchorage system. Under the same load, the maximum shear stress of the interface layer increases with increasing dilatancy angle. Similarly, the larger the dilatancy angle of the interface layer is, the greater the radial stress caused by dilatancy will be. Away from the interface layer, the radial stress decays rapidly. The influence range of the radial stress caused by dilatancy is mainly in the interface layer and the rock nearby.http://dx.doi.org/10.1155/2020/8838488
spellingShingle Yubao Zhan
Nan Li
Hui Wang
Pengqiang Zheng
Jun Zhang
Qihua Liu
The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
Advances in Civil Engineering
title The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
title_full The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
title_fullStr The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
title_full_unstemmed The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
title_short The Mechanism of Interface Dilatancy of Cement Mortar Rockbolts
title_sort mechanism of interface dilatancy of cement mortar rockbolts
url http://dx.doi.org/10.1155/2020/8838488
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