Details
Translated title of the contribution | Process Optimization through Thin Flash Prevention |
---|---|
Original language | German |
Pages (from-to) | 754-757 |
Number of pages | 4 |
Journal | Zeitschrift Kunststofftechnik/Journal of Plastics Technology |
Volume | 117 |
Issue number | 11 |
Early online date | 23 Nov 2022 |
Publication status | Published - 30 Nov 2022 |
Externally published | Yes |
Abstract
Process Optimization through Thin Flash Prevention. Due to the good flow properties of aluminum, the material tends to flow into tool gaps during flashless precision forging and produce the so-called thin flash. For the industrial implementation of flashless precision forging processes, an innovative prediction method for thin flash as well as sealing concepts are to be developed in cooperation with an industrial partner. Simulative studies show that local form filling does not correlate with high pres-sure or an increased potential for thin flash.
ASJC Scopus subject areas
- Materials Science(all)
- Polymers and Plastics
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In: Zeitschrift Kunststofftechnik/Journal of Plastics Technology, Vol. 117, No. 11, 30.11.2022, p. 754-757.
Research output: Contribution to journal › Article › Research › peer review
}
TY - JOUR
T1 - Prozessoptimierung durch Flittergratvermeidung
AU - Martini, Alexander
AU - Doede, Nils
AU - Kriwall, Mareile
AU - Stonis, Malte
AU - Behrens, Bernd Arno
PY - 2022/11/30
Y1 - 2022/11/30
N2 - Process Optimization through Thin Flash Prevention. Due to the good flow properties of aluminum, the material tends to flow into tool gaps during flashless precision forging and produce the so-called thin flash. For the industrial implementation of flashless precision forging processes, an innovative prediction method for thin flash as well as sealing concepts are to be developed in cooperation with an industrial partner. Simulative studies show that local form filling does not correlate with high pres-sure or an increased potential for thin flash.
AB - Process Optimization through Thin Flash Prevention. Due to the good flow properties of aluminum, the material tends to flow into tool gaps during flashless precision forging and produce the so-called thin flash. For the industrial implementation of flashless precision forging processes, an innovative prediction method for thin flash as well as sealing concepts are to be developed in cooperation with an industrial partner. Simulative studies show that local form filling does not correlate with high pres-sure or an increased potential for thin flash.
KW - FEM-simulation
KW - Forming Technology
KW - Precision Forging
KW - Process Optimization
KW - Sealing Concepts
KW - Thin Flash
UR - http://www.scopus.com/inward/record.url?scp=85142256023&partnerID=8YFLogxK
U2 - 10.1515/zwf-2022-1154
DO - 10.1515/zwf-2022-1154
M3 - Artikel
AN - SCOPUS:85142256023
VL - 117
SP - 754
EP - 757
JO - Zeitschrift Kunststofftechnik/Journal of Plastics Technology
JF - Zeitschrift Kunststofftechnik/Journal of Plastics Technology
SN - 1864-2217
IS - 11
ER -