Lime Hemp and Rice Husk-Based Concretes for Building Envelopes
indgår i Biobased Polymers serien
- Indbinding:
- Paperback
- Sideantal:
- 104
- Udgivet:
- 13. oktober 2017
- Udgave:
- 12018
- Størrelse:
- 155x235x0 mm.
- Vægt:
- 1825 g.
- 8-11 hverdage.
- 17. januar 2025
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- Rabat på køb af fysiske bøger
- 1 valgfrit digitalt ugeblad
- 20 timers lytning og læsning
- Adgang til 70.000+ titler
- Ingen binding
Abonnementet koster 75 kr./md.
Ingen binding og kan opsiges når som helst.
- 1 valgfrit digitalt ugeblad
- 20 timers lytning og læsning
- Adgang til 70.000+ titler
- Ingen binding
Abonnementet koster 75 kr./md.
Ingen binding og kan opsiges når som helst.
Beskrivelse af Lime Hemp and Rice Husk-Based Concretes for Building Envelopes
This book provides the tools to understand the issues related to bio-based concretes using lime as binder.
Themes covered include specific properties of lignocellulosic aggregates (density, porosity, size distribution, water absorption, microstructure, soluble components under alkaline conditions), hardening of lime-based binders by carbonation and hydration (natural and curing processes) and microstructure of the binder in the vicinity of aggregates (dense or porous interphase). The mechanical (uniaxial and triaxial compression) and insulating properties of the relatively well-known hemp concretes and the novel rice husk concretes are also reviewed. Finally, a detailed and comprehensive description of the tools and methodologies that make it easier the design of such bio-based concretes is discussed.
Written for students as well as researchers, this book is aimed at individuals working in both academic and industrial fields.
Themes covered include specific properties of lignocellulosic aggregates (density, porosity, size distribution, water absorption, microstructure, soluble components under alkaline conditions), hardening of lime-based binders by carbonation and hydration (natural and curing processes) and microstructure of the binder in the vicinity of aggregates (dense or porous interphase). The mechanical (uniaxial and triaxial compression) and insulating properties of the relatively well-known hemp concretes and the novel rice husk concretes are also reviewed. Finally, a detailed and comprehensive description of the tools and methodologies that make it easier the design of such bio-based concretes is discussed.
Written for students as well as researchers, this book is aimed at individuals working in both academic and industrial fields.
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