Publication detail

Effect of width of kerf on machining accuracy and subsurface layer after WEDM

MOURALOVÁ, K. KOVÁŘ, J. KLAKURKOVÁ, L. PROKEŠ, T.

English title

Effect of width of kerf on machining accuracy and subsurface layer after WEDM

Type

WoS Article

Language

en

Original abstract

Wire electrical discharge machining (WEDM) is an unconventional machining technology that applies physical principles tomaterial removal.Material is removed by a series of recurring current discharges between the workpiece and the tool-electrode, and a ´kerf´ is created between the wire and the material being machined. The width of the kerf is directly dependant not only on the diameter of the wire used, but also on the machine parameter settingsand, in particular, on the set of mechanical and physical properties of the material being machined. To ensure precise machining, it is important to have the width of the kerf as small as possible. The presented study deals with the evaluation of the width of the kerf for 4 different metallic materials (some of them were subsequently heat treated using several methods) with different machine parameter settings. The kerf is investigated on metallographic cross sectionsusing light and electron microscopy.

Keywords in English

WEDM, electrical discharge machining, surface layer, width of kerf, aluminium 99.5, titanium alloy Ti6-Al-4V, Steel X210Cr12, steel 16MnCr5

Released

2018-02-23

Publisher

ASM International

Location

Ohio, USA

ISSN

1059-9495

Journal

JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE

Volume

27

Number

4

Pages from–to

1908–1916

Pages count

9

BIBTEX


@article{BUT138244,
  author="Kateřina {Mouralová} and Jiří {Kovář} and Lenka {Klakurková} and Tomáš {Prokeš}",
  title="Effect of width of kerf on machining accuracy and subsurface layer after WEDM",
  journal="JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE",
  year="2018",
  volume="27",
  number="4",
  pages="1908--1916",
  doi="10.1007/s11665-018-3239-4",
  issn="1059-9495",
  url="https://link.springer.com/article/10.1007/s11665-018-3239-4"
}