Die pressing of complex components from titanium powder

Research output: Contribution to journalReview articleResearchpeer review

Authors

  • B. A. Behrens
  • E. Gastan
View graph of relations

Details

Original languageEnglish
Pages (from-to)16-18
Number of pages3
JournalWire
Volume55
Issue number5
Publication statusPublished - Oct 2005

Abstract

The process of die pressing of complex components from titanium and its alloys is investigated. Powder metallurgy processing of titanium for the production of near-net-shape parts offers cost reduction because of highly efficient utilization of material as well as the shortened production process. It was found that the use of titanium powder with longish grains and a rough surface as well as a higher bulk density is more advantageous for pressing than atomized titanium powder with a smooth surface. The results show that die pressing represents an excellent economical process, which is also suitable for processing titanium.

ASJC Scopus subject areas

Cite this

Die pressing of complex components from titanium powder. / Behrens, B. A.; Gastan, E.
In: Wire, Vol. 55, No. 5, 10.2005, p. 16-18.

Research output: Contribution to journalReview articleResearchpeer review

Behrens, BA & Gastan, E 2005, 'Die pressing of complex components from titanium powder', Wire, vol. 55, no. 5, pp. 16-18.
Behrens, B. A., & Gastan, E. (2005). Die pressing of complex components from titanium powder. Wire, 55(5), 16-18.
Behrens BA, Gastan E. Die pressing of complex components from titanium powder. Wire. 2005 Oct;55(5):16-18.
Behrens, B. A. ; Gastan, E. / Die pressing of complex components from titanium powder. In: Wire. 2005 ; Vol. 55, No. 5. pp. 16-18.
Download
@article{853b51a44e6049cf9e843c701b608d44,
title = "Die pressing of complex components from titanium powder",
abstract = "The process of die pressing of complex components from titanium and its alloys is investigated. Powder metallurgy processing of titanium for the production of near-net-shape parts offers cost reduction because of highly efficient utilization of material as well as the shortened production process. It was found that the use of titanium powder with longish grains and a rough surface as well as a higher bulk density is more advantageous for pressing than atomized titanium powder with a smooth surface. The results show that die pressing represents an excellent economical process, which is also suitable for processing titanium.",
author = "Behrens, {B. A.} and E. Gastan",
year = "2005",
month = oct,
language = "English",
volume = "55",
pages = "16--18",
number = "5",

}

Download

TY - JOUR

T1 - Die pressing of complex components from titanium powder

AU - Behrens, B. A.

AU - Gastan, E.

PY - 2005/10

Y1 - 2005/10

N2 - The process of die pressing of complex components from titanium and its alloys is investigated. Powder metallurgy processing of titanium for the production of near-net-shape parts offers cost reduction because of highly efficient utilization of material as well as the shortened production process. It was found that the use of titanium powder with longish grains and a rough surface as well as a higher bulk density is more advantageous for pressing than atomized titanium powder with a smooth surface. The results show that die pressing represents an excellent economical process, which is also suitable for processing titanium.

AB - The process of die pressing of complex components from titanium and its alloys is investigated. Powder metallurgy processing of titanium for the production of near-net-shape parts offers cost reduction because of highly efficient utilization of material as well as the shortened production process. It was found that the use of titanium powder with longish grains and a rough surface as well as a higher bulk density is more advantageous for pressing than atomized titanium powder with a smooth surface. The results show that die pressing represents an excellent economical process, which is also suitable for processing titanium.

UR - http://www.scopus.com/inward/record.url?scp=27744514766&partnerID=8YFLogxK

M3 - Review article

AN - SCOPUS:27744514766

VL - 55

SP - 16

EP - 18

JO - Wire

JF - Wire

SN - 0043-5996

IS - 5

ER -