Publication detail

Design of High-Strength Concrete for Ready-Mixed Concrete Production

ŤAŽKÝ, M. KŘÍŽOVÁ, K.

Original Title

Design of High-Strength Concrete for Ready-Mixed Concrete Production

Type

conference paper

Language

English

Original Abstract

The high-strength concrete is a cement composite reaching high compressive strength, namely, pursuant to the legislation, higher than 60 MPa in the terms of cube compressive strength. The development of high-strength concretes exceeding 100 MPa is still an up-to-date issue and the production of these concretes is still limited only to a prefabrication. Contemporary construction industry and projecting activity have begun to focus on a construction of statically demanding buildings, which can include e.g. high-rise buildings. Such projecting often requires using of the state-of-the-art materials like cement composites with high mechanical parameters for construction of more subtle buildings. Within this article, the procedure of ready-mixed concretes development with the compressive strength around 100 MPa designed according to a project documentation for actual construction of high-rise building with the height up to 160 meters and 46 floors is described, together with the influence of the aggregate on the resulting composite strength.

Keywords

high-strength concrete (HSC), silica fume, cement composite, workability

Authors

ŤAŽKÝ, M.; KŘÍŽOVÁ, K.

Released

11. 10. 2021

Publisher

Trans Tech Publication

Location

Switzerland

ISBN

978-3-0357-1870-6

Book

Binders, Materials and Technologies in Modern Construction VII

ISBN

1662-9779

Periodical

Solid State Phenomena

Number

325

State

Swiss Confederation

Pages from

113

Pages to

118

Pages count

6

BibTex

@inproceedings{BUT176536,
  author="Martin {Ťažký} and Klára {Křížová}",
  title="Design of High-Strength Concrete for Ready-Mixed Concrete Production",
  booktitle="Binders, Materials and Technologies in Modern Construction VII",
  year="2021",
  journal="Solid State Phenomena",
  number="325",
  pages="113--118",
  publisher="Trans Tech Publication",
  address="Switzerland",
  doi="10.4028/www.scientific.net/SSP.325.113",
  isbn="978-3-0357-1870-6",
  issn="1662-9779"
}