The influence of high-energy ball milling parameters on the traditional W-type Ba-hexaferrite properties

Gyula Kakuk, Ágnes Csanády, I. Sajó, Katalin Papp, Péter Németh, Hajnalka Hargitai, Anna Sztaniszláv

Research output: Contribution to journalArticle

3 Citations (Scopus)

Abstract

The main task of our work was to study the influence of high energy ball milling on the process of W-type hexaferrite material production and to compare the structural, morphological and magnetic features of the different manufacturing ways. The products are analyzed mainly by XRD, SEM and TEM methods. It was shown that high energy ball milling can be used to enhance the synthesis of W-type Ba-hexaferrite due to the much smaller crystallite sizes and their larger surfaces that are produced by the milling process and due to the activation of these surfaces.

Original languageEnglish
Pages (from-to)397-402
Number of pages6
JournalMaterials Science Forum
Volume589
DOIs
Publication statusPublished - 2008

Fingerprint

Ball milling
balls
Crystallite size
Chemical activation
Transmission electron microscopy
Scanning electron microscopy
energy
manufacturing
activation
transmission electron microscopy
scanning electron microscopy
synthesis
products

Keywords

  • High energy ball milling (HEBM)
  • Magnetic properties
  • SEM
  • TEM
  • W-type Ba-hexaferrite
  • XRD

ASJC Scopus subject areas

  • Materials Science(all)
  • Condensed Matter Physics
  • Mechanical Engineering
  • Mechanics of Materials

Cite this

The influence of high-energy ball milling parameters on the traditional W-type Ba-hexaferrite properties. / Kakuk, Gyula; Csanády, Ágnes; Sajó, I.; Papp, Katalin; Németh, Péter; Hargitai, Hajnalka; Sztaniszláv, Anna.

In: Materials Science Forum, Vol. 589, 2008, p. 397-402.

Research output: Contribution to journalArticle

Kakuk, Gyula ; Csanády, Ágnes ; Sajó, I. ; Papp, Katalin ; Németh, Péter ; Hargitai, Hajnalka ; Sztaniszláv, Anna. / The influence of high-energy ball milling parameters on the traditional W-type Ba-hexaferrite properties. In: Materials Science Forum. 2008 ; Vol. 589. pp. 397-402.
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