Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission

Generally, reactive powder concrete (RPC) contains steel fibers often exposed to aggressive environments. Steel fibers in such RPCs are subjected to corrosion in-service, which can significantly change the mechanical properties of the structural components. In this paper, basalt fibers were used to...

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Main Authors: Hanbing Liu, Xiang Lyu, Yuwei Zhang, Guobao Luo, Wenjun Li
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/3/1138
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spelling doaj-4d98b52bbe0e491e95395d6540b019222020-11-25T01:40:00ZengMDPI AGApplied Sciences2076-34172020-02-01103113810.3390/app10031138app10031138Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic EmissionHanbing Liu0Xiang Lyu1Yuwei Zhang2Guobao Luo3Wenjun Li4College of Transportation, Jilin University, Changchun 130025, ChinaCollege of Transportation, Jilin University, Changchun 130025, ChinaCollege of Transportation, Jilin University, Changchun 130025, ChinaCollege of Transportation, Jilin University, Changchun 130025, ChinaCollege of Transportation, Jilin University, Changchun 130025, ChinaGenerally, reactive powder concrete (RPC) contains steel fibers often exposed to aggressive environments. Steel fibers in such RPCs are subjected to corrosion in-service, which can significantly change the mechanical properties of the structural components. In this paper, basalt fibers were used to replace steel fibers for preparing a new basalt fiber modified reactive powder concrete (BFRPC). The bending resistance of BFRPC beams was studied, and the crack propagation and failure type of BFRPC beam were monitored by acoustic emission (AE). During the bending test, the failure type of BFRPC was evaluated by AE. Besides, the effects of notch and interfacial damage on the bending resistance and failure type were also studied. During the test, ordinary Reactive Powder Concrete (RPC) without basalt fibers was used as a reference. Results revealed that failure type of the RPC beam and BFRPC beam was mainly caused by shear failure. The notch increased the number of tensile cracks in the beam failure crack, resulting in a decrease in the bending resistance of RPC beam and BFRPC beam. Besides, basalt fiber could improve the toughness and bending resistance of BFRPC beam and increase resistance of the BFRPC beam to notch and interface damage.https://www.mdpi.com/2076-3417/10/3/1138reactive powder concretebasalt fiberacoustic emissionnotchinterfacial damage
collection DOAJ
language English
format Article
sources DOAJ
author Hanbing Liu
Xiang Lyu
Yuwei Zhang
Guobao Luo
Wenjun Li
spellingShingle Hanbing Liu
Xiang Lyu
Yuwei Zhang
Guobao Luo
Wenjun Li
Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
Applied Sciences
reactive powder concrete
basalt fiber
acoustic emission
notch
interfacial damage
author_facet Hanbing Liu
Xiang Lyu
Yuwei Zhang
Guobao Luo
Wenjun Li
author_sort Hanbing Liu
title Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
title_short Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
title_full Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
title_fullStr Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
title_full_unstemmed Bending Resistance and Failure Type Evaluation of Basalt Fiber RPC Beam Affected by Notch and Interfacial Damage Using Acoustic Emission
title_sort bending resistance and failure type evaluation of basalt fiber rpc beam affected by notch and interfacial damage using acoustic emission
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-02-01
description Generally, reactive powder concrete (RPC) contains steel fibers often exposed to aggressive environments. Steel fibers in such RPCs are subjected to corrosion in-service, which can significantly change the mechanical properties of the structural components. In this paper, basalt fibers were used to replace steel fibers for preparing a new basalt fiber modified reactive powder concrete (BFRPC). The bending resistance of BFRPC beams was studied, and the crack propagation and failure type of BFRPC beam were monitored by acoustic emission (AE). During the bending test, the failure type of BFRPC was evaluated by AE. Besides, the effects of notch and interfacial damage on the bending resistance and failure type were also studied. During the test, ordinary Reactive Powder Concrete (RPC) without basalt fibers was used as a reference. Results revealed that failure type of the RPC beam and BFRPC beam was mainly caused by shear failure. The notch increased the number of tensile cracks in the beam failure crack, resulting in a decrease in the bending resistance of RPC beam and BFRPC beam. Besides, basalt fiber could improve the toughness and bending resistance of BFRPC beam and increase resistance of the BFRPC beam to notch and interface damage.
topic reactive powder concrete
basalt fiber
acoustic emission
notch
interfacial damage
url https://www.mdpi.com/2076-3417/10/3/1138
work_keys_str_mv AT hanbingliu bendingresistanceandfailuretypeevaluationofbasaltfiberrpcbeamaffectedbynotchandinterfacialdamageusingacousticemission
AT xianglyu bendingresistanceandfailuretypeevaluationofbasaltfiberrpcbeamaffectedbynotchandinterfacialdamageusingacousticemission
AT yuweizhang bendingresistanceandfailuretypeevaluationofbasaltfiberrpcbeamaffectedbynotchandinterfacialdamageusingacousticemission
AT guobaoluo bendingresistanceandfailuretypeevaluationofbasaltfiberrpcbeamaffectedbynotchandinterfacialdamageusingacousticemission
AT wenjunli bendingresistanceandfailuretypeevaluationofbasaltfiberrpcbeamaffectedbynotchandinterfacialdamageusingacousticemission
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