Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin

For improving the toughness and long-term strength of the fractured rock mass reinforced with epoxy resin and reducing the opening displacement of the crack tip, three types of converging cracks are established according to the deformation and failure characteristics of the rock mass, structural pla...

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Main Authors: Jun Wang, Junjie Xu, Zhipeng Nie, Lin Liu, Min Qin, Rongzi Ou
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2021/1582745
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spelling doaj-ee6b67d233204c7f8a1828e0e6c4e0922021-09-06T00:00:35ZengHindawi LimitedAdvances in Civil Engineering1687-80942021-01-01202110.1155/2021/1582745Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy ResinJun Wang0Junjie Xu1Zhipeng Nie2Lin Liu3Min Qin4Rongzi Ou5School of Building EngineeringSchool of Building EngineeringSchool of Building EngineeringSchool of Building EngineeringXiang Jiankezhi Engineering Co., Ltd.Jing Tong Space Technology (Heyuan) Co., Ltd.For improving the toughness and long-term strength of the fractured rock mass reinforced with epoxy resin and reducing the opening displacement of the crack tip, three types of converging cracks are established according to the deformation and failure characteristics of the rock mass, structural planes, and epoxy resin composite structure. The stress intensity factor of the type II compound crack and the analytical formula of the crack surface tip opening displacement are obtained. An improved Kelvin nonlinear creep model is proposed. Through the creep isochronous curve, the time and long-term strength of accelerated creep failure are obtained, as well as creep rupture coupling characteristics. The ductile plastic deformation is used to characterize the toughness, and the toughness of epoxy resin is enhanced by adding mud powder, and the relationship between toughness and long-term strength is established. Combined with experimental verification, when the drying mud powder content is 20%, the toughness of the epoxy resin has a good correlation with the long-term strength; when the mud powder content exceeds 30%, its ductility and long-term strength decrease, and at the same time the toughness effect is significantly weakened. The research results can provide a useful reference for toughened epoxy resin to strengthen fractured rock mass engineering.http://dx.doi.org/10.1155/2021/1582745
collection DOAJ
language English
format Article
sources DOAJ
author Jun Wang
Junjie Xu
Zhipeng Nie
Lin Liu
Min Qin
Rongzi Ou
spellingShingle Jun Wang
Junjie Xu
Zhipeng Nie
Lin Liu
Min Qin
Rongzi Ou
Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
Advances in Civil Engineering
author_facet Jun Wang
Junjie Xu
Zhipeng Nie
Lin Liu
Min Qin
Rongzi Ou
author_sort Jun Wang
title Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
title_short Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
title_full Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
title_fullStr Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
title_full_unstemmed Creep Fracture Characteristics of Fractured Rock Mass Strengthened with Toughened Epoxy Resin
title_sort creep fracture characteristics of fractured rock mass strengthened with toughened epoxy resin
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8094
publishDate 2021-01-01
description For improving the toughness and long-term strength of the fractured rock mass reinforced with epoxy resin and reducing the opening displacement of the crack tip, three types of converging cracks are established according to the deformation and failure characteristics of the rock mass, structural planes, and epoxy resin composite structure. The stress intensity factor of the type II compound crack and the analytical formula of the crack surface tip opening displacement are obtained. An improved Kelvin nonlinear creep model is proposed. Through the creep isochronous curve, the time and long-term strength of accelerated creep failure are obtained, as well as creep rupture coupling characteristics. The ductile plastic deformation is used to characterize the toughness, and the toughness of epoxy resin is enhanced by adding mud powder, and the relationship between toughness and long-term strength is established. Combined with experimental verification, when the drying mud powder content is 20%, the toughness of the epoxy resin has a good correlation with the long-term strength; when the mud powder content exceeds 30%, its ductility and long-term strength decrease, and at the same time the toughness effect is significantly weakened. The research results can provide a useful reference for toughened epoxy resin to strengthen fractured rock mass engineering.
url http://dx.doi.org/10.1155/2021/1582745
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