Publication detail

Mechanical and fatigue parameters of two types of alkali-activated concrete.

SEITL, S. BÍLEK, V. ŠIMONOVÁ, H. KERŠNER, Z.

Original Title

Mechanical and fatigue parameters of two types of alkali-activated concrete.

Type

conference paper

Language

English

Original Abstract

The alkali-activated concrete is prepared as a new potential material for the production of concrete elements developed by ZPSV, a. s. company. Note that civil engineering structures are usually made of ordinary Portland cement (OPC) based concrete but today, the cement industry is responsible for emitting between 6% and 7% of all the CO2 emission into the atmosphere. Therefore, it is essential to seek different binders to provide environmental friendly materials. One possible alternative is the application of alkali-activated concrete. The optimal design of concrete mixture was studied in this investigation. Two types of concrete have a similar application and therefore the fatigue parameters can be compared. To this aim, specimens were prepared and tested under static (compressive cube strength) and cyclic loading (fatigue parameters − Wöhler curve). The experimentally obtained results (both mechanical and fatigue) of both types of concrete are compared and the suitability of these types of composites for its application is discussed.

Keywords

Alkali-activated concrete, Fracture parameters, Fatigue parameters, Wöhler curve.

Authors

SEITL, S.; BÍLEK, V.; ŠIMONOVÁ, H.; KERŠNER, Z.

Released

1. 3. 2016

Publisher

Trans Tech Publications

Location

Switzerland

ISBN

978-3-03835-541-0

Book

Key Engineering Materials: Advances in Fracture and Damage Mechnics XIV

ISBN

1013-9826

Periodical

Key Engineering Materials (print)

Year of study

827

State

Swiss Confederation

Pages from

129

Pages to

132

Pages count

4

BibTex

@inproceedings{BUT119136,
  author="Stanislav {Seitl} and Vlastimil {Bílek} and Hana {Šimonová} and Zbyněk {Keršner}",
  title="Mechanical and fatigue parameters of two types of alkali-activated concrete.",
  booktitle="Key Engineering Materials: Advances in Fracture and Damage Mechnics XIV",
  year="2016",
  journal="Key Engineering Materials (print)",
  volume="827",
  pages="129--132",
  publisher="Trans Tech Publications",
  address="Switzerland",
  isbn="978-3-03835-541-0",
  issn="1013-9826"
}