Temperature distribution during laser based heat conduction welding of CFRP

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Autorschaft

  • V. Wippo
  • Y. Winter
  • P. Jaeschke
  • Oliver Suttmann
  • Stefan Kaierle
  • Ludger Overmeyer

Externe Organisationen

  • Laser Zentrum Hannover e.V. (LZH)
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)553-556
Seitenumfang4
FachzeitschriftProcedia CIRP
Jahrgang74
PublikationsstatusVeröffentlicht - 3 Sept. 2018
Extern publiziertJa
Veranstaltung10th CIRP Conference on Photonic Technologies, LANE 2018 - Furth, Deutschland
Dauer: 3 Sept. 20186 Sept. 2018

Abstract

For the implementation of carbon fiber reinforced (CFRP) parts, these need to be assembled to more complex structures. Therefore, laser transmission welding was transferred to heat conduction welding for joining thermoplastic CFRP to itself. The goal of these investigations was to determine the influence of the focal point geometry and the main fiber orientation within the CFRP on the temperature distribution at the upper joining member. A set-up was chosen consisting of two thermo cameras in order to measure the process temperatures on top and underneath the upper joining member. Furthermore, the heat affected width was determined and correlated to the process temperatures.

ASJC Scopus Sachgebiete

Zitieren

Temperature distribution during laser based heat conduction welding of CFRP. / Wippo, V.; Winter, Y.; Jaeschke, P. et al.
in: Procedia CIRP, Jahrgang 74, 03.09.2018, S. 553-556.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Wippo, V, Winter, Y, Jaeschke, P, Suttmann, O, Kaierle, S & Overmeyer, L 2018, 'Temperature distribution during laser based heat conduction welding of CFRP', Procedia CIRP, Jg. 74, S. 553-556. https://doi.org/10.1016/j.procir.2018.08.115
Wippo, V., Winter, Y., Jaeschke, P., Suttmann, O., Kaierle, S., & Overmeyer, L. (2018). Temperature distribution during laser based heat conduction welding of CFRP. Procedia CIRP, 74, 553-556. https://doi.org/10.1016/j.procir.2018.08.115
Wippo V, Winter Y, Jaeschke P, Suttmann O, Kaierle S, Overmeyer L. Temperature distribution during laser based heat conduction welding of CFRP. Procedia CIRP. 2018 Sep 3;74:553-556. doi: 10.1016/j.procir.2018.08.115
Wippo, V. ; Winter, Y. ; Jaeschke, P. et al. / Temperature distribution during laser based heat conduction welding of CFRP. in: Procedia CIRP. 2018 ; Jahrgang 74. S. 553-556.
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abstract = "For the implementation of carbon fiber reinforced (CFRP) parts, these need to be assembled to more complex structures. Therefore, laser transmission welding was transferred to heat conduction welding for joining thermoplastic CFRP to itself. The goal of these investigations was to determine the influence of the focal point geometry and the main fiber orientation within the CFRP on the temperature distribution at the upper joining member. A set-up was chosen consisting of two thermo cameras in order to measure the process temperatures on top and underneath the upper joining member. Furthermore, the heat affected width was determined and correlated to the process temperatures.",
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note = "Funding information: The authors thank the Federal Ministry for Economic Affairs and Energy (BMWI) for funding these investigations within the project InduLas (ZF4102310FH6).; 10th CIRP Conference on Photonic Technologies, LANE 2018 ; Conference date: 03-09-2018 Through 06-09-2018",
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Download

TY - JOUR

T1 - Temperature distribution during laser based heat conduction welding of CFRP

AU - Wippo, V.

AU - Winter, Y.

AU - Jaeschke, P.

AU - Suttmann, Oliver

AU - Kaierle, Stefan

AU - Overmeyer, Ludger

N1 - Funding information: The authors thank the Federal Ministry for Economic Affairs and Energy (BMWI) for funding these investigations within the project InduLas (ZF4102310FH6).

PY - 2018/9/3

Y1 - 2018/9/3

N2 - For the implementation of carbon fiber reinforced (CFRP) parts, these need to be assembled to more complex structures. Therefore, laser transmission welding was transferred to heat conduction welding for joining thermoplastic CFRP to itself. The goal of these investigations was to determine the influence of the focal point geometry and the main fiber orientation within the CFRP on the temperature distribution at the upper joining member. A set-up was chosen consisting of two thermo cameras in order to measure the process temperatures on top and underneath the upper joining member. Furthermore, the heat affected width was determined and correlated to the process temperatures.

AB - For the implementation of carbon fiber reinforced (CFRP) parts, these need to be assembled to more complex structures. Therefore, laser transmission welding was transferred to heat conduction welding for joining thermoplastic CFRP to itself. The goal of these investigations was to determine the influence of the focal point geometry and the main fiber orientation within the CFRP on the temperature distribution at the upper joining member. A set-up was chosen consisting of two thermo cameras in order to measure the process temperatures on top and underneath the upper joining member. Furthermore, the heat affected width was determined and correlated to the process temperatures.

KW - Carbon fiber

KW - Contour welding

KW - Heat conduction welding

KW - Process temperture

KW - Seam strength

KW - Thermoplastic

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U2 - 10.1016/j.procir.2018.08.115

DO - 10.1016/j.procir.2018.08.115

M3 - Conference article

AN - SCOPUS:85057359762

VL - 74

SP - 553

EP - 556

JO - Procedia CIRP

JF - Procedia CIRP

SN - 2212-8271

T2 - 10th CIRP Conference on Photonic Technologies, LANE 2018

Y2 - 3 September 2018 through 6 September 2018

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