Design of an electromagnetic system to avoid horizontal ram displacement

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Authors

View graph of relations

Details

Original languageEnglish
Title of host publicationWGP Congress 2014
Subtitle of host publicationProgress in Production Engineering
EditorsMarion Merklein, Hinnerk Hagenah, Jörg Franke
Pages237-244
Number of pages8
ISBN (electronic)9783038352457
Publication statusPublished - 2014
EventWGP Congress 2014 - Erlangen, Germany
Duration: 9 Sept 201410 Sept 2014

Publication series

NameAdvanced Materials Research
Volume1018
ISSN (Print)1022-6680
ISSN (electronic)1662-8985

Abstract

Forming complex asymmetric parts lead to high horizontal process forces applied to the ram of a forming machine. These forces entail horizontal ram displacement and influence the quality of the finished parts negatively. By application of horizontal counterforces to the ram, the displacement could be avoided and the process stability could be improved. This paper presents a design of an electromagnetic system, which is capable to apply such high horizontal counterforces. To obtain high counterforces and a high dynamic simultaneously, the techniques premagnetisation and overexcitation have been tested numerically. Both mentioned techniques improve dynamic of electromagnetic systems by a large extent as illustrated in the paper.

Keywords

    Displacement control, Modelling, Press

ASJC Scopus subject areas

Cite this

Design of an electromagnetic system to avoid horizontal ram displacement. / Gröne, Michael; Salfeld, Valerian; Krimm, Richard.
WGP Congress 2014: Progress in Production Engineering. ed. / Marion Merklein; Hinnerk Hagenah; Jörg Franke. 2014. p. 237-244 (Advanced Materials Research; Vol. 1018).

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Gröne, M, Salfeld, V & Krimm, R 2014, Design of an electromagnetic system to avoid horizontal ram displacement. in M Merklein, H Hagenah & J Franke (eds), WGP Congress 2014: Progress in Production Engineering. Advanced Materials Research, vol. 1018, pp. 237-244, WGP Congress 2014, Erlangen, Germany, 9 Sept 2014. https://doi.org/10.4028/www.scientific.net/AMR.1018.237
Gröne, M., Salfeld, V., & Krimm, R. (2014). Design of an electromagnetic system to avoid horizontal ram displacement. In M. Merklein, H. Hagenah, & J. Franke (Eds.), WGP Congress 2014: Progress in Production Engineering (pp. 237-244). (Advanced Materials Research; Vol. 1018). https://doi.org/10.4028/www.scientific.net/AMR.1018.237
Gröne M, Salfeld V, Krimm R. Design of an electromagnetic system to avoid horizontal ram displacement. In Merklein M, Hagenah H, Franke J, editors, WGP Congress 2014: Progress in Production Engineering. 2014. p. 237-244. (Advanced Materials Research). Epub 2014 Sept 12. doi: 10.4028/www.scientific.net/AMR.1018.237
Gröne, Michael ; Salfeld, Valerian ; Krimm, Richard. / Design of an electromagnetic system to avoid horizontal ram displacement. WGP Congress 2014: Progress in Production Engineering. editor / Marion Merklein ; Hinnerk Hagenah ; Jörg Franke. 2014. pp. 237-244 (Advanced Materials Research).
Download
@inproceedings{1b7747169be94ed89884d7f8fb7f75a8,
title = "Design of an electromagnetic system to avoid horizontal ram displacement",
abstract = "Forming complex asymmetric parts lead to high horizontal process forces applied to the ram of a forming machine. These forces entail horizontal ram displacement and influence the quality of the finished parts negatively. By application of horizontal counterforces to the ram, the displacement could be avoided and the process stability could be improved. This paper presents a design of an electromagnetic system, which is capable to apply such high horizontal counterforces. To obtain high counterforces and a high dynamic simultaneously, the techniques premagnetisation and overexcitation have been tested numerically. Both mentioned techniques improve dynamic of electromagnetic systems by a large extent as illustrated in the paper.",
keywords = "Displacement control, Modelling, Press",
author = "Michael Gr{\"o}ne and Valerian Salfeld and Richard Krimm",
year = "2014",
doi = "10.4028/www.scientific.net/AMR.1018.237",
language = "English",
series = "Advanced Materials Research",
pages = "237--244",
editor = "Marion Merklein and Hinnerk Hagenah and J{\"o}rg Franke",
booktitle = "WGP Congress 2014",
note = "WGP Congress 2014 ; Conference date: 09-09-2014 Through 10-09-2014",

}

Download

TY - GEN

T1 - Design of an electromagnetic system to avoid horizontal ram displacement

AU - Gröne, Michael

AU - Salfeld, Valerian

AU - Krimm, Richard

PY - 2014

Y1 - 2014

N2 - Forming complex asymmetric parts lead to high horizontal process forces applied to the ram of a forming machine. These forces entail horizontal ram displacement and influence the quality of the finished parts negatively. By application of horizontal counterforces to the ram, the displacement could be avoided and the process stability could be improved. This paper presents a design of an electromagnetic system, which is capable to apply such high horizontal counterforces. To obtain high counterforces and a high dynamic simultaneously, the techniques premagnetisation and overexcitation have been tested numerically. Both mentioned techniques improve dynamic of electromagnetic systems by a large extent as illustrated in the paper.

AB - Forming complex asymmetric parts lead to high horizontal process forces applied to the ram of a forming machine. These forces entail horizontal ram displacement and influence the quality of the finished parts negatively. By application of horizontal counterforces to the ram, the displacement could be avoided and the process stability could be improved. This paper presents a design of an electromagnetic system, which is capable to apply such high horizontal counterforces. To obtain high counterforces and a high dynamic simultaneously, the techniques premagnetisation and overexcitation have been tested numerically. Both mentioned techniques improve dynamic of electromagnetic systems by a large extent as illustrated in the paper.

KW - Displacement control

KW - Modelling

KW - Press

UR - http://www.scopus.com/inward/record.url?scp=84912097539&partnerID=8YFLogxK

U2 - 10.4028/www.scientific.net/AMR.1018.237

DO - 10.4028/www.scientific.net/AMR.1018.237

M3 - Conference contribution

AN - SCOPUS:84912097539

T3 - Advanced Materials Research

SP - 237

EP - 244

BT - WGP Congress 2014

A2 - Merklein, Marion

A2 - Hagenah, Hinnerk

A2 - Franke, Jörg

T2 - WGP Congress 2014

Y2 - 9 September 2014 through 10 September 2014

ER -

By the same author(s)