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2024 | OriginalPaper | Buchkapitel

Effect of Basalt Fibre on the Properties of Concrete

verfasst von : Amruta Kulkarni, Rajkuwar Dubal

Erschienen in: Recent Developments in Structural Engineering, Volume 1

Verlag: Springer Nature Singapore

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Abstract

Basalt fibres helps to enhance the concrete’s toughened qualities and the use of Basalt fibres has grown recently. The hardened condition of concrete is altered when these fibres are incorporated into it. Yet, these fibres also have an impact on the workability of the corresponding fresh characteristics of concrete. It is crucial to comprehend how the basalt fibres’ integration affects the characteristics of fresh and cured concrete. Basalt fibre is an ideal material to reinforce concrete because of its great strength and heat resistance qualities, strong resilience to an alkaline environment, and low cost. Examining the impact of use of length of basalt fibre and it’s content on various mechanical properties of concrete plays an important role. The fact is that the length of basalt fibre and proportions have an significant impact on these properties. Workability, Strength in Compression, Strength on tension, flexural strength, permeability, and unit weight are among the mechanical characteristics of concrete are tested. The goal of this study is to provide a summary of what is currently known regarding the effects of basalt fibre on the characteristics of concrete. The study includes relevant research and conclusions, as well as the primary investigation and comparison between other available fibres. Current advances in the use of Basalt fibre and different prediction methodologies.

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Literatur
1.
Zurück zum Zitat Li Z, Ma J, Ma H, Xu X (2018) Properties and applications of basalt fibre and its composites. IOP Conf Series: Earth Environ Sci 186(2018):012052 Li Z, Ma J, Ma H, Xu X (2018) Properties and applications of basalt fibre and its composites. IOP Conf Series: Earth Environ Sci 186(2018):012052
2.
Zurück zum Zitat Khan M, Cao M, Xie C, Ali M (2022) Effectiveness of hybrid steel-basalt fibre reinforced concrete under compression. Case Stud Construct Mater 16:e00941CrossRef Khan M, Cao M, Xie C, Ali M (2022) Effectiveness of hybrid steel-basalt fibre reinforced concrete under compression. Case Stud Construct Mater 16:e00941CrossRef
3.
Zurück zum Zitat High C, Seliem HM, El-Safty A, Rizkalla SH (2015) Use of basalt fibres for concrete structures. Constr Build Mater 96:37–46CrossRef High C, Seliem HM, El-Safty A, Rizkalla SH (2015) Use of basalt fibres for concrete structures. Constr Build Mater 96:37–46CrossRef
4.
Zurück zum Zitat Francis Luther King M, Srinivasan V, Purushothaman T (2014) Basalt fiber: an ancient material for innovative and modern application. Middle-East J Sci Res 22(2):308–312 Francis Luther King M, Srinivasan V, Purushothaman T (2014) Basalt fiber: an ancient material for innovative and modern application. Middle-East J Sci Res 22(2):308–312
5.
Zurück zum Zitat Deák T, Czigány T (2009) Chemical composition and mechanical properties of basalt and glass fibres: a comparison. Text Res J 79:645–651CrossRef Deák T, Czigány T (2009) Chemical composition and mechanical properties of basalt and glass fibres: a comparison. Text Res J 79:645–651CrossRef
6.
Zurück zum Zitat Zheng Y, Zhuo J, Zhang P (2021) A review on durability of nano- SiO2 and basalt fibre modified recycled aggregate concrete. Constr Build Mater 304:124659CrossRef Zheng Y, Zhuo J, Zhang P (2021) A review on durability of nano- SiO2 and basalt fibre modified recycled aggregate concrete. Constr Build Mater 304:124659CrossRef
7.
Zurück zum Zitat Greco A, Maffezzoli A, Casciaro G, Caretto F (2014) Mechanical properties of basalt fibres and their adhesion to polypropylene matrices. Compos Part B Eng 67:233–238CrossRef Greco A, Maffezzoli A, Casciaro G, Caretto F (2014) Mechanical properties of basalt fibres and their adhesion to polypropylene matrices. Compos Part B Eng 67:233–238CrossRef
8.
Zurück zum Zitat Gutnikov SI, Malakho AP, Lazoryak BI, Loginov VS (2009) Influence of alumina on the properties of continuous basalt fibres. Russ J Inorg Chem 54:191–196CrossRef Gutnikov SI, Malakho AP, Lazoryak BI, Loginov VS (2009) Influence of alumina on the properties of continuous basalt fibres. Russ J Inorg Chem 54:191–196CrossRef
9.
Zurück zum Zitat Khan M, Cao M, Xie C, Ali M (2021) Efficiency of basalt fibre length and content on mechanical and microstructural properties of hybrid fibre concrete. Fatigue Fract Eng Mater Struct 2021:1–18 Khan M, Cao M, Xie C, Ali M (2021) Efficiency of basalt fibre length and content on mechanical and microstructural properties of hybrid fibre concrete. Fatigue Fract Eng Mater Struct 2021:1–18
10.
Zurück zum Zitat Wang D, Yanzhong J, Shen H, Libin X (2019) Mechanical properties of high-performance concrete reinforced with basalt fibre and polypropylene fibre. Constr Build Mater 197(2019):464–473CrossRef Wang D, Yanzhong J, Shen H, Libin X (2019) Mechanical properties of high-performance concrete reinforced with basalt fibre and polypropylene fibre. Constr Build Mater 197(2019):464–473CrossRef
11.
Zurück zum Zitat Sun X, Gao Z, Cao P, Zhou C (2019) Mechanical properties tests and multiscale numerical simulations for basalt fibre reinforced concrete. Constr Build Mater 202(2019):58–72CrossRef Sun X, Gao Z, Cao P, Zhou C (2019) Mechanical properties tests and multiscale numerical simulations for basalt fibre reinforced concrete. Constr Build Mater 202(2019):58–72CrossRef
12.
Zurück zum Zitat Alaskar A, Albidaha A, Alqarnia AS, Alyousef R, Hosseinic HM (2021) Performance evaluation of high-strength concrete reinforced with basalt fibres exposed to elevated temperatures. J Build Eng 35:102108CrossRef Alaskar A, Albidaha A, Alqarnia AS, Alyousef R, Hosseinic HM (2021) Performance evaluation of high-strength concrete reinforced with basalt fibres exposed to elevated temperatures. J Build Eng 35:102108CrossRef
13.
Zurück zum Zitat Khan M, Cao M, Xie C, Ali M (2021) Efficiency of basalt fibre length and content on mechanical and microstructural properties of hybrid fibre concrete. Fatigue Fract Eng Mater Struct 2021:1–18 Khan M, Cao M, Xie C, Ali M (2021) Efficiency of basalt fibre length and content on mechanical and microstructural properties of hybrid fibre concrete. Fatigue Fract Eng Mater Struct 2021:1–18
14.
Zurück zum Zitat Wang D, Ju Y, Shen H, Xu L (2019) Mechanical properties of high performance concrete reinforced with basalt fiber and polypro-pylene fiber. Constr Build Mater 197:464–473CrossRef Wang D, Ju Y, Shen H, Xu L (2019) Mechanical properties of high performance concrete reinforced with basalt fiber and polypro-pylene fiber. Constr Build Mater 197:464–473CrossRef
15.
Zurück zum Zitat Rooholamini H, Hassani A, Aliha M (2018) Fracture properties of hybrid fibre-reinforced roller-compacted concrete in mode I with consideration of possible kinked crack. Constr Build Mater 187:248–256CrossRef Rooholamini H, Hassani A, Aliha M (2018) Fracture properties of hybrid fibre-reinforced roller-compacted concrete in mode I with consideration of possible kinked crack. Constr Build Mater 187:248–256CrossRef
16.
Zurück zum Zitat Khan M, Cao M, Xie C, Ali M (2021) Experimental and analytical study of hybrid fibre reinforced concrete prepared with basalt fibre under high temperature, Wiley. Fire Mater 2021:1–22 Khan M, Cao M, Xie C, Ali M (2021) Experimental and analytical study of hybrid fibre reinforced concrete prepared with basalt fibre under high temperature, Wiley. Fire Mater 2021:1–22
17.
Zurück zum Zitat Deng X, Hoo MS, Cheah YW, Tran LQN (2022) Processing and mechanical properties of basalt fibre-reinforced thermoplastic composites. Polymers (Basel) 14(6):1220CrossRef Deng X, Hoo MS, Cheah YW, Tran LQN (2022) Processing and mechanical properties of basalt fibre-reinforced thermoplastic composites. Polymers (Basel) 14(6):1220CrossRef
18.
Zurück zum Zitat Sagar B, Sivakumar MVN (2021) Performance evaluation of basalt fbre-reinforced polymer rebars in structural concrete members–a review. Innov Infrastr Sol 6:75CrossRef Sagar B, Sivakumar MVN (2021) Performance evaluation of basalt fbre-reinforced polymer rebars in structural concrete members–a review. Innov Infrastr Sol 6:75CrossRef
19.
Zurück zum Zitat ACI 440.3R-04 (2004) Guide test methods for fiber-reinforced polymers (FRPs) for reinforcing or strengthening concrete structures. In: ACI committee 440. American Concrete Institute, Farmington Hills, Michigan, USA ACI 440.3R-04 (2004) Guide test methods for fiber-reinforced polymers (FRPs) for reinforcing or strengthening concrete structures. In: ACI committee 440. American Concrete Institute, Farmington Hills, Michigan, USA
20.
Zurück zum Zitat ASTM D7913/D7913M-14 (2014) Standard test method for bond strength of fiber-reinforced polymer matrix composite bars to concrete by pullout testing. ASTM standards, West Conshohocken ASTM D7913/D7913M-14 (2014) Standard test method for bond strength of fiber-reinforced polymer matrix composite bars to concrete by pullout testing. ASTM standards, West Conshohocken
21.
Zurück zum Zitat Jiang C, Fan K, Fei W, Chen D (2014) Experimental study on the mechanical properties and microstructure of chopped basalt fibre reinforced concrete. Mater Des 58:187–193CrossRef Jiang C, Fan K, Fei W, Chen D (2014) Experimental study on the mechanical properties and microstructure of chopped basalt fibre reinforced concrete. Mater Des 58:187–193CrossRef
23.
Zurück zum Zitat Khademi F, Behfarnia K (2016) Evaluation of concrete compressive strength using artificial neural network and multiple linear regression models. Int J Optim Civ Eng 6:423–432 Khademi F, Behfarnia K (2016) Evaluation of concrete compressive strength using artificial neural network and multiple linear regression models. Int J Optim Civ Eng 6:423–432
24.
Zurück zum Zitat Pathak SS, Vesmawala GR, Mane SJ (2023) Prediction of fracture energy of concrete notched beam using artificial neural network. Asian J Civ Eng Pathak SS, Vesmawala GR, Mane SJ (2023) Prediction of fracture energy of concrete notched beam using artificial neural network. Asian J Civ Eng
25.
Zurück zum Zitat Feng D-C, Liu Z-T, Wang X-D, Chen Y, Chang J-Q, Wei D-F, Jiang Z-M (2020) Machine learning-based compressive strength prediction for concrete: an adaptive boosting approach. J Constr Build Mater 230(10):117000CrossRef Feng D-C, Liu Z-T, Wang X-D, Chen Y, Chang J-Q, Wei D-F, Jiang Z-M (2020) Machine learning-based compressive strength prediction for concrete: an adaptive boosting approach. J Constr Build Mater 230(10):117000CrossRef
26.
Zurück zum Zitat Salehi H, Burgueño R (2018) Emerging artificial intelligence methods in structural engineering. Eng Struct 171:170–189CrossRef Salehi H, Burgueño R (2018) Emerging artificial intelligence methods in structural engineering. Eng Struct 171:170–189CrossRef
28.
Zurück zum Zitat Yang L, Xie H, Fang S, Huang C, Yang A, Chao YJ (2021) Experimental study on mechanical properties and damage mechanism of basalt fibre reinforced concrete under uniaxial compression. Structures 31:330–340CrossRef Yang L, Xie H, Fang S, Huang C, Yang A, Chao YJ (2021) Experimental study on mechanical properties and damage mechanism of basalt fibre reinforced concrete under uniaxial compression. Structures 31:330–340CrossRef
29.
Zurück zum Zitat Mane KM, Kulkarni DK, Prakash KB (2019) Prediction of flexural strength of concrete produced by using pozzolanic materials and partly replacing NFA by MS. J Soft Comput Civ Eng 3(2):65–75 Mane KM, Kulkarni DK, Prakash KB (2019) Prediction of flexural strength of concrete produced by using pozzolanic materials and partly replacing NFA by MS. J Soft Comput Civ Eng 3(2):65–75
30.
Zurück zum Zitat Haido JH, Tayeh BA, Majeed SS, Karpuzcu M (2020) Effect of high temperature on the mechanical properties of basalt fibre self-compacting concrete as an overlay material. Constr Build Mater 268:121725CrossRef Haido JH, Tayeh BA, Majeed SS, Karpuzcu M (2020) Effect of high temperature on the mechanical properties of basalt fibre self-compacting concrete as an overlay material. Constr Build Mater 268:121725CrossRef
Metadaten
Titel
Effect of Basalt Fibre on the Properties of Concrete
verfasst von
Amruta Kulkarni
Rajkuwar Dubal
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9625-4_21