Publication detail

Micro-fibres containing laminates prepared by EPD: kinetics of co-deposition

HADRABA, H. CHLUP, Z. DRDLÍK, D. CIHLÁŘ, J.

Original Title

Micro-fibres containing laminates prepared by EPD: kinetics of co-deposition

Type

journal article in Scopus

Language

English

Original Abstract

The aim of this work was preparation of alumina laminates and fibre reinforced alumina containing zirconia micro-fibres inside the inter-layer interface. Electrophoretic deposition was performed from concentrated isopropanolic suspensions stabilised by monochloracetic acid containing mixture of alumina powder and certain amount of zirconia micro-fibres. A method for in-situ monitoring the deposition of alumina and zirconia particles and fibres mass was applied to control deposition kinetics. Two different approaches for composite deposition were applied: i) electrophoretic deposition of powders mixture and ii) electrophoretic deposition from milled suspension containing stabilization aid. Applying the optimised procedure the alumina laminates reinforced with zirconia fibres were prepared. The fibres located in the interlayer boundary affected dramatically the fracture response of these materials.

Keywords

electrophoretic deposition; laminate; composite; micro-fibres; kinetic

Authors

HADRABA, H.; CHLUP, Z.; DRDLÍK, D.; CIHLÁŘ, J.

RIV year

2015

Released

1. 7. 2015

Publisher

Trans Tech Publications

Location

Switzerland

ISBN

1013-9826

Periodical

Key Engineering Materials (print)

Year of study

654

Number

1

State

Swiss Confederation

Pages from

65

Pages to

69

Pages count

5

URL

BibTex

@article{BUT115897,
  author="Hynek {Hadraba} and Zdeněk {Chlup} and Daniel {Drdlík} and Jaroslav {Cihlář}",
  title="Micro-fibres containing laminates prepared by EPD: kinetics of co-deposition",
  journal="Key Engineering Materials (print)",
  year="2015",
  volume="654",
  number="1",
  pages="65--69",
  doi="10.4028/www.scientific.net/KEM.654.65",
  issn="1013-9826",
  url="http://www.scientific.net/KEM.654.65"
}