Publication detail

Study of polymer-based adhesive mortar with higher durability

HERMANN, R. FIGALA, P. MÉSZÁROSOVÁ, L. DROCHYTKA, R.

Original Title

Study of polymer-based adhesive mortar with higher durability

Type

conference paper

Language

English

Original Abstract

This paper deals with the study and development of polymer-based adhesive with high filling ratio of secondary raw materials and waste materials. The goal of this paper is to develop adhesive mortar with the highest filling rate of secondary raw materials and waste materials as possible while preserving very high physical-mechanical properties, including flexural and compressive strength, pull-off bond strength and abrasion resistance. High-temperature fly ash, waste slag and waste packaging glass are used in this paper as fillers. The resulting mortar shows high physical-mechanical properties, including high abrasive resistance and very high bonding strength to a large variety of building materials including concrete, steel, glass, and tiles.

Keywords

epoxy; waste glass; waste slag; high-temperature fly ash

Authors

HERMANN, R.; FIGALA, P.; MÉSZÁROSOVÁ, L.; DROCHYTKA, R.

Released

1. 12. 2021

Publisher

IOP Publishing

ISBN

1757-8981

Periodical

IOP Conference Series: Materials Science and Engineering

Year of study

1209

Number

1

State

United Kingdom of Great Britain and Northern Ireland

Pages from

1

Pages to

7

Pages count

7

URL

Full text in the Digital Library

BibTex

@inproceedings{BUT175502,
  author="Radek {Hermann} and Petr {Figala} and Lenka {Mészárosová} and Rostislav {Drochytka}",
  title="Study of polymer-based adhesive mortar with higher durability",
  booktitle="IOP Conference Series: Materials Science and Engineering",
  year="2021",
  series="2021",
  journal="IOP Conference Series: Materials Science and Engineering",
  volume="1209",
  number="1",
  pages="1--7",
  publisher="IOP Publishing",
  doi="10.1088/1757-899X/1209/1/012038",
  issn="1757-8981",
  url="https://iopscience.iop.org/article/10.1088/1757-899X/1209/1/012038"
}