Ultra high Performance Concrete and Nanotechnology in Construction

Ultra high Performance Concrete and Nanotechnology in Construction
Author: Universität Kassel,Hipermat
Publsiher: Unknown
Total Pages: 1036
Release: 2012
Genre: Electronic Book
ISBN: 3862192652

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Ultra High Performance Concrete and Nanotechnology in Construction Proceedings of Hipermat 2012 3rd International Symposium on UHPC and Nanotechnology for High Performance Construction Materials

Ultra High Performance Concrete and Nanotechnology in Construction  Proceedings of Hipermat 2012  3rd International Symposium on UHPC and Nanotechnology for High Performance Construction Materials
Author: Insert Name Here
Publsiher: kassel university press GmbH
Total Pages: 1059
Release: 2012-01-01
Genre: Concrete
ISBN: 9783862192649

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Ultra High Performance Concrete and High Performance Construction Materials

Ultra High Performance Concrete and High Performance Construction Materials
Author: Ekkehard Fehling,Bernhard Middendorf,Jenny Thiemicke
Publsiher: kassel university press GmbH
Total Pages: 274
Release: 2016-03-01
Genre: Technology & Engineering
ISBN: 9783737600941

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Ultra High Performance Concrete and High Performance Construction Materials

Ultra High Performance Concrete and High Performance Construction Materials
Author: Bernhard Middendorf,Ekkehard Fehling,Alexander Wetzel
Publsiher: BoD – Books on Demand
Total Pages: 206
Release: 2020-01-01
Genre: Technology & Engineering
ISBN: 9783737608282

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With HiPerMat 5 on March 11-13, 2020 the 5th International Symposium on Ultra-High Performance Concrete and High Performance Construction Materials documents the actual state of development of application in the fields of: Material Science and Development, Composite Concrete Materials, Strength and Deformation behaviour of UHPC, Durability and Sustainability of UHPC, Design and Construction with UHPC, Structural Modelling and Optimisation, Lightweight Concrete Structures, High-Precision Manufacturing for Pre-Fabrication, Nanotechnology for Construction Materials, Innovative Applications, Smart Construction Materials, This volume contains the short versions (two pages) of all contributions that have been accepted for publication at HiPerMat 5.

Ultra High Performance Concrete

Ultra High Performance Concrete
Author: Caijun Shi,Zemei Wu,Nemkumar Banthia
Publsiher: CRC Press
Total Pages: 505
Release: 2024-02-23
Genre: Technology & Engineering
ISBN: 9781003834717

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Ultra-high performance concrete (UHPC) is an advanced cement-based composite material with compressive strength of over 120 MPa, high toughness, and superior durability. Since its development in the early 1990s, UHPC has attracted great interest worldwide due to its advantages. This book covers material selection and mixture design methods for developing UHPC, as well as the performance of UHPC, including fresh and hardened properties, setting and hardening, dimensional stability, static and dynamic properties, durability, long-term properties, and self-healing properties. A range of potential applications and case studies are presented to illustrate how UHPC meets requirements for lightweight, high-rise, large-span, heavy-load bearing, fast-construction, and highly durable structures in civil and construction engineering. Also introduced is a typical new concrete, seawater sea-sand UHPC, which avoids the use of freshwater and river sand in marine construction. The first book to fully cover the design, performance, and applications of UHPC, this is ideal for concrete technologists, designers, contractors, and researchers.

Ultra High Performance Concrete and High Performance Building Materials for Sustainable Construction

Ultra High Performance Concrete and High Performance Building Materials for Sustainable Construction
Author: Ekkehard Fehling,Bernhard Middendorf,Jenny Thiemicke
Publsiher: BoD – Books on Demand
Total Pages: 310
Release: 2024-01-01
Genre: Technology & Engineering
ISBN: 9783737611596

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Sustainable construction, with the overarching goal of reducing the environmental footprint of everything we build is becoming increasingly important and urgent in the light of the climate change the world is facing. The use of innovative and sustainable building materials, especially concrete as the worldwide most commonly used building material, offers a great opportunity to significantly reduce climate-relevant emissions in the construction sector. Due to their performance and reliable durability, the use of innovative high-performance concretes will help to reduce the need for new constructions and to sustainably repair existing infrastructure. In new buildings in particular, the use of high-performance materials can help to save energy and natural resources, which reduces climate-relevant emissions and thus global warming. With the current HiPerMat 6, we are responding to the growing understanding of the impact of our construction activities on the environment by placing greater emphasis on sustainability issues.

New Materials in Civil Engineering

New Materials in Civil Engineering
Author: Pijush Samui,Dookie Kim,Nagesh R. Iyer,Sandeep Chaudhary
Publsiher: Butterworth-Heinemann
Total Pages: 1105
Release: 2020-07-07
Genre: Technology & Engineering
ISBN: 9780128190753

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New Materials in Civil Engineering provides engineers and scientists with the tools and methods needed to meet the challenge of designing and constructing more resilient and sustainable infrastructures. This book is a valuable guide to the properties, selection criteria, products, applications, lifecycle and recyclability of advanced materials. It presents an A-to-Z approach to all types of materials, highlighting their key performance properties, principal characteristics and applications. Traditional materials covered include concrete, soil, steel, timber, fly ash, geosynthetic, fiber-reinforced concrete, smart materials, carbon fiber and reinforced polymers. In addition, the book covers nanotechnology and biotechnology in the development of new materials. Covers a variety of materials, including fly ash, geosynthetic, fiber-reinforced concrete, smart materials, carbon fiber reinforced polymer and waste materials Provides a “one-stop resource of information for the latest materials and practical applications Includes a variety of different use case studies

Waste and Byproducts in Cement Based Materials

Waste and Byproducts in Cement Based Materials
Author: Jorge de Brito,Carlos Thomas,Cesar Medina,Francisco Agrela
Publsiher: Woodhead Publishing
Total Pages: 810
Release: 2021-06-03
Genre: Technology & Engineering
ISBN: 9780128208953

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Waste and By-Products in Cement-Based Materials: Innovative Sustainable Materials for a Circular Economy covers various recycled materials, by-products and wastes that are suitable for the manufacture of materials within the spectrum of so-called cement-based materials (CBM). Sections cover wastes for replacement of aggregates in CBM, focus on the application of wastes for the replacement of clinker and mineral additions in the manufacture of binders, discuss the optimization process surrounding the manufacture of recycled concrete and mortars, multi-recycling, advanced radiological studies, optimization of self-compacting concrete, rheology properties, corrosion prevention, and more. Final sections includes a review of real-scale applications that have been made in recent years of cement-based materials in roads, railway superstructures, buildings and civil works, among others, as well as a proposal of new regulations to promote the use of waste in the manufacture of CBM. Favors the institution of the circular economy in the construction industry by eliminating the barriers that currently prevent industrial waste from being valorized by its inclusion in CBM design Features an in-depth exploration of the strengths and weaknesses of new raw materials and their application to CBMs Features real-scale applications that have been made in recent years of cement-based materials in roads, railway superstructures, buildings and civil works, among others Presents current, state-of-the-art, and future-prospects for the use of industrial waste in CBMs