Detail publikačního výsledku

Effect of Cement Replacement by Zeolite on the Basic Mechanical Fracture Properties of Concrete: a Parametric Study

ROVNANÍKOVÁ, P.; SCHMID, P.; KERŠNER, Z.

Original Title

Effect of Cement Replacement by Zeolite on the Basic Mechanical Fracture Properties of Concrete: a Parametric Study

English Title

Effect of Cement Replacement by Zeolite on the Basic Mechanical Fracture Properties of Concrete: a Parametric Study

Type

Paper in proceedings (conference paper)

Original Abstract

This paper introduces the results of fracture experiments on concrete specimes of different composition modified by zeolite (7.5 to 30% by weight of cement dosage). It presents the determination and comparison of basic mechanical/fracture parameter values such as volume density, compressive strength, elasticity modulus, effective fracture toughness and fracture energy.

English abstract

This paper introduces the results of fracture experiments on concrete specimes of different composition modified by zeolite (7.5 to 30% by weight of cement dosage). It presents the determination and comparison of basic mechanical/fracture parameter values such as volume density, compressive strength, elasticity modulus, effective fracture toughness and fracture energy.

Keywords

concrete, zeolite, fracture test

Key words in English

concrete, zeolite, fracture test

Authors

ROVNANÍKOVÁ, P.; SCHMID, P.; KERŠNER, Z.

RIV year

2015

Released

01.02.2014

Location

Switzerland

ISBN

978-3-03835-147-4

Book

Advanced Materials Research

ISBN

1022-6680

Periodical

Advanced Materials Research

Volume

969

Number

2014

State

Swiss Confederation

Pages from

140

Pages to

143

Pages count

4

Full text in the Digital Library

BibTex

@inproceedings{BUT114290,
  author="Pavla {Rovnaníková} and Pavel {Schmid} and Zbyněk {Keršner}",
  title="Effect of Cement Replacement by Zeolite on the Basic Mechanical Fracture Properties of Concrete: a Parametric Study",
  booktitle="Advanced Materials Research",
  year="2014",
  journal="Advanced Materials Research",
  volume="969",
  number="2014",
  pages="140--143",
  address="Switzerland",
  doi="10.4028/www.scientific.net/AMR.969.140",
  isbn="978-3-03835-147-4",
  issn="1022-6680"
}