Publication detail

SLM process parameters development of Cu-alloy Cu7.2Ni1.8Si1Cr

PALOUŠEK, D. KOČICA, M. PANTĚLEJEV, L. KLAKURKOVÁ, L. ČELKO, L. KOUTNÝ, D. KAISER, J.

Czech title

SLM process parameters development of Cu-alloy Cu7.2Ni1.8Si1Cr

English title

SLM process parameters development of Cu-alloy Cu7.2Ni1.8Si1Cr

Type

journal article in Web of Science

Language

en

Original abstract

Materials with a high thermal conductivity, such as Cu-alloys hold the most interest to the plastic moulding industry. Additive manufacturing, especially selective laser melting of metals, allows the production of parts with complicated internal cooling and increased production efficiency. The portfolio of alloys for metal additive manufacturing is limited and still missing process parameters for the processing of copper alloys. The aim of this paper is the first preview of the process parameters of high strength alloy Cu7.2Ni1.8Si1Cr processed by selective laser melting

English abstract

Materials with a high thermal conductivity, such as Cu-alloys hold the most interest to the plastic moulding industry. Additive manufacturing, especially selective laser melting of metals, allows the production of parts with complicated internal cooling and increased production efficiency. The portfolio of alloys for metal additive manufacturing is limited and still missing process parameters for the processing of copper alloys. The aim of this paper is the first preview of the process parameters of high strength alloy Cu7.2Ni1.8Si1Cr processed by selective laser melting

Keywords in English

Selective laser melting, Copper, Alloys, Additive Manufacturing, Cu alloy

Released

04.03.2019

Publisher

Emerald Publishing Limited

ISSN

1355-2546

Volume

25

Number

2

Pages from–to

266–276

Pages count

11

BIBTEX


@article{BUT146672,
  author="David {Paloušek} and Martin {Kočica} and Libor {Pantělejev} and Lenka {Klakurková} and Ladislav {Čelko} and Daniel {Koutný} and Jozef {Kaiser},
  title="SLM process parameters development of Cu-alloy Cu7.2Ni1.8Si1Cr",
  year="2019",
  volume="25",
  number="2",
  month="March",
  pages="266--276",
  publisher="Emerald Publishing Limited",
  issn="1355-2546"
}