Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design
Research output: Chapter in Book/Report/Conference proceeding › Conference contribution
Standard
Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design. / Riedler, Martin; Stockinger, Martin; Stoschka, Michael et al.
Eucomas2009. 2009. p. 20-21.
Eucomas2009. 2009. p. 20-21.
Research output: Chapter in Book/Report/Conference proceeding › Conference contribution
Harvard
Riedler, M, Stockinger, M, Stoschka, M, Oberwinkler, B & Tan, W 2009, Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design. in Eucomas2009. pp. 20-21.
APA
Riedler, M., Stockinger, M., Stoschka, M., Oberwinkler, B., & Tan, W. (2009). Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design. In Eucomas2009 (pp. 20-21)
Vancouver
Riedler M, Stockinger M, Stoschka M, Oberwinkler B, Tan W. Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design. In Eucomas2009. 2009. p. 20-21
Author
Bibtex - Download
@inproceedings{e82efb8e5b274fd78905673515e619bd,
title = "Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design",
author = "Martin Riedler and Martin Stockinger and Michael Stoschka and Bernd Oberwinkler and Wen Tan",
year = "2009",
language = "English",
pages = "20--21",
booktitle = "Eucomas2009",
}
RIS (suitable for import to EndNote) - Download
TY - GEN
T1 - Computational Fatigue Optimization – Application for purposeaimed Component and Forging Process Design
AU - Riedler, Martin
AU - Stockinger, Martin
AU - Stoschka, Michael
AU - Oberwinkler, Bernd
AU - Tan, Wen
PY - 2009
Y1 - 2009
M3 - Conference contribution
SP - 20
EP - 21
BT - Eucomas2009
ER -