Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction

Concrete is the most widely utilized construction material in the world. Thus, any action intended to enhance the sustainability of the construction industry must consider the supply chain, production, distribution demolition and eventual disposal, landfilling or recycling of this composite material...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (206 p.)
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ctrlnum (CKB)5690000000012046
(oapen)https://directory.doabooks.org/handle/20.500.12854/87493
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spelling Minelli, Fausto edt
Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
1 electronic resource (206 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Concrete is the most widely utilized construction material in the world. Thus, any action intended to enhance the sustainability of the construction industry must consider the supply chain, production, distribution demolition and eventual disposal, landfilling or recycling of this composite material. High-performance concrete may be one of the most effective options to make the construction sector more sustainable. Experience proves that the use of recycled concrete aggregates, as well as the partial replacement of ordinary Portland cement with other supplementary cementitious materials or alternative binders, are generally accepted as the most realistic solutions to reduce the environmental impacts, leading to sufficiently high mechanical performances. In structural applications such as those concerning the seismic and energy retrofitting of existing buildings, the use of high-performance cementitious composites often represents the more cost-effective solution, which allows us to minimize the costs of the intervention and the environmental impact. Eventually, the challenge of enhancing sustainability by raising durability of concrete structures is particularly relevant in those applications where maintenance is particularly expensive and impactful, in terms of both direct intervention costs and indirect costs deriving from downtime. The present Special Issue aims at providing readers with the most recent research results on the aforementioned subjects and further foster a collaboration between the scientific community and the industrial sector on a common commitment towards sustainable concrete constructions.
English
Technology: general issues bicssc
History of engineering & technology bicssc
recycled concrete aggregate
recycled aggregate concrete
durability
freeze-thaw cycles
mechanical properties
concrete
recycled concrete
recycled aggregate
shrinkage
slags
cement replacement
existing beams
retrofitting method
environmental assessment
fly ash
moment-curvature relationship
precast elements
basalt
concrete properties
recycled natural basalt
recycled concrete powder
seismic retrofitting
multilayer coating
Steel Fiber Reinforced Mortar
energy performance of buildings
point thermal bridges
thermal behavior in summer
case study
prestressed concrete
prestress losses
bridges
flexural strength
shear strength
drying and autogenous shrinkage
creep
sustainability
shear bond
UHPFRC
push-off test
tensile bond strength
concrete overlay
strengthening
existing infrastructures
digital microscopy
surface roughness
mortars
MSWI bottom ash
pozzolanic activity
supplementary cementing materials
water-retaining structures
aggressive environment
3-0365-4461-5
3-0365-4462-3
Martinelli, Enzo edt
Facconi, Luca edt
Minelli, Fausto oth
Martinelli, Enzo oth
Facconi, Luca oth
language English
format eBook
author2 Martinelli, Enzo
Facconi, Luca
Minelli, Fausto
Martinelli, Enzo
Facconi, Luca
author_facet Martinelli, Enzo
Facconi, Luca
Minelli, Fausto
Martinelli, Enzo
Facconi, Luca
author2_variant f m fm
e m em
l f lf
author2_role HerausgeberIn
HerausgeberIn
Sonstige
Sonstige
Sonstige
title Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
spellingShingle Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_full Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_fullStr Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_full_unstemmed Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_auth Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_new Innovative Structural Applications of High Performance Concrete Materials in Sustainable Construction
title_sort innovative structural applications of high performance concrete materials in sustainable construction
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2022
physical 1 electronic resource (206 p.)
isbn 3-0365-4461-5
3-0365-4462-3
illustrated Not Illustrated
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