Form-flexible handling technology for automated preforming

Publikation: KonferenzbeitragPaperForschungPeer-Review

Autoren

  • Christian Löchte
  • Holger Kunz
  • Raphael Schnurr
  • Franz Dietrich
  • Annika Raatz
  • K. Dilger
  • Klaus Dröder

Externe Organisationen

  • Technische Universität Braunschweig
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten4073-4084
Seitenumfang12
PublikationsstatusVeröffentlicht - 2013
Extern publiziertJa
Veranstaltung19th International Conference on Composite Materials, ICCM 2013 - Montreal, Kanada
Dauer: 28 Juli 20132 Aug. 2013

Konferenz

Konferenz19th International Conference on Composite Materials, ICCM 2013
Land/GebietKanada
OrtMontreal
Zeitraum28 Juli 20132 Aug. 2013

Abstract

The production of composite components for automotive applications using the RTM (resin transfer molding) technology still faces challenges. This paper focuses challenges that occur during the preforming. With respect to the handling technology, the preforming is one of the remaining automation challenges in the RTM process chain. To face these challenges this paper suggests a concept for a formflexible handling technology, in called FormHand in this article. Further, this paper describes the application of this concept, looks at key aspects of the realization phase for a first experimental set-up and discusses test results with a first prototype. This prototype already validates the features of the proposed concept. After a summary, this paper discusses future research fields according to the concept of FormHand.

ASJC Scopus Sachgebiete

Zitieren

Form-flexible handling technology for automated preforming. / Löchte, Christian; Kunz, Holger; Schnurr, Raphael et al.
2013. 4073-4084 Beitrag in 19th International Conference on Composite Materials, ICCM 2013, Montreal, Kanada.

Publikation: KonferenzbeitragPaperForschungPeer-Review

Löchte, C, Kunz, H, Schnurr, R, Dietrich, F, Raatz, A, Dilger, K & Dröder, K 2013, 'Form-flexible handling technology for automated preforming', Beitrag in 19th International Conference on Composite Materials, ICCM 2013, Montreal, Kanada, 28 Juli 2013 - 2 Aug. 2013 S. 4073-4084.
Löchte, C., Kunz, H., Schnurr, R., Dietrich, F., Raatz, A., Dilger, K., & Dröder, K. (2013). Form-flexible handling technology for automated preforming. 4073-4084. Beitrag in 19th International Conference on Composite Materials, ICCM 2013, Montreal, Kanada.
Löchte C, Kunz H, Schnurr R, Dietrich F, Raatz A, Dilger K et al.. Form-flexible handling technology for automated preforming. 2013. Beitrag in 19th International Conference on Composite Materials, ICCM 2013, Montreal, Kanada.
Löchte, Christian ; Kunz, Holger ; Schnurr, Raphael et al. / Form-flexible handling technology for automated preforming. Beitrag in 19th International Conference on Composite Materials, ICCM 2013, Montreal, Kanada.12 S.
Download
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T1 - Form-flexible handling technology for automated preforming

AU - Löchte, Christian

AU - Kunz, Holger

AU - Schnurr, Raphael

AU - Dietrich, Franz

AU - Raatz, Annika

AU - Dilger, K.

AU - Dröder, Klaus

PY - 2013

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AB - The production of composite components for automotive applications using the RTM (resin transfer molding) technology still faces challenges. This paper focuses challenges that occur during the preforming. With respect to the handling technology, the preforming is one of the remaining automation challenges in the RTM process chain. To face these challenges this paper suggests a concept for a formflexible handling technology, in called FormHand in this article. Further, this paper describes the application of this concept, looks at key aspects of the realization phase for a first experimental set-up and discusses test results with a first prototype. This prototype already validates the features of the proposed concept. After a summary, this paper discusses future research fields according to the concept of FormHand.

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KW - Handling and draping

KW - Integration of functionality

KW - Preform gripper

KW - Preforming

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T2 - 19th International Conference on Composite Materials, ICCM 2013

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