Fracture mechanic principles for multi-layer pipe-wall design

Research output: Contribution to conferencePaperpeer-review

Standard

Fracture mechanic principles for multi-layer pipe-wall design. / Arbeiter, Florian; Gosch, Anja; Wiener, Johannes et al.
2018. 1 Paper presented at SPE ANTEC 2018, Orlando, Florida, United States.

Research output: Contribution to conferencePaperpeer-review

Harvard

Arbeiter, F, Gosch, A, Wiener, J, Frank, A & Pinter, GG 2018, 'Fracture mechanic principles for multi-layer pipe-wall design', Paper presented at SPE ANTEC 2018, Orlando, United States, 6/05/18 - 10/05/18 pp. 1.

APA

Arbeiter, F., Gosch, A., Wiener, J., Frank, A., & Pinter, G. G. (2018). Fracture mechanic principles for multi-layer pipe-wall design. 1. Paper presented at SPE ANTEC 2018, Orlando, Florida, United States.

Vancouver

Arbeiter F, Gosch A, Wiener J, Frank A, Pinter GG. Fracture mechanic principles for multi-layer pipe-wall design. 2018. Paper presented at SPE ANTEC 2018, Orlando, Florida, United States.

Author

Arbeiter, Florian ; Gosch, Anja ; Wiener, Johannes et al. / Fracture mechanic principles for multi-layer pipe-wall design. Paper presented at SPE ANTEC 2018, Orlando, Florida, United States.4 p.

Bibtex - Download

@conference{7ba00fcbed9f4e34877f1f595feb15cc,
title = "Fracture mechanic principles for multi-layer pipe-wall design",
abstract = "To overcome the competitive nature of stiffness and toughness, multi-layered structures are a potential solution. By using intelligent design criteria, it is possible to severely increase toughness while keeping the stiffness of the structure at a sufficiently high level. This method can be used for smart pipe-wall design in demanding applications. First multi-layer composites of pure and also highly reinforced thermoplastic materials have been produced and tested with regard to their toughness-increase in bending set-up, with interfaces perpendicular to the applied force. As expected, interface properties and mechanical property mismatch play a key role in the development of optimized structures.",
author = "Florian Arbeiter and Anja Gosch and Johannes Wiener and Andreas Frank and Pinter, {Gerald Gerhard}",
year = "2018",
month = may,
day = "7",
language = "English",
pages = "1",
note = "SPE ANTEC 2018 : The Plastics Technology Conference, ANTEC2018 ; Conference date: 06-05-2018 Through 10-05-2018",
url = "https://www.eiseverywhere.com/ehome/252707",

}

RIS (suitable for import to EndNote) - Download

TY - CONF

T1 - Fracture mechanic principles for multi-layer pipe-wall design

AU - Arbeiter, Florian

AU - Gosch, Anja

AU - Wiener, Johannes

AU - Frank, Andreas

AU - Pinter, Gerald Gerhard

PY - 2018/5/7

Y1 - 2018/5/7

N2 - To overcome the competitive nature of stiffness and toughness, multi-layered structures are a potential solution. By using intelligent design criteria, it is possible to severely increase toughness while keeping the stiffness of the structure at a sufficiently high level. This method can be used for smart pipe-wall design in demanding applications. First multi-layer composites of pure and also highly reinforced thermoplastic materials have been produced and tested with regard to their toughness-increase in bending set-up, with interfaces perpendicular to the applied force. As expected, interface properties and mechanical property mismatch play a key role in the development of optimized structures.

AB - To overcome the competitive nature of stiffness and toughness, multi-layered structures are a potential solution. By using intelligent design criteria, it is possible to severely increase toughness while keeping the stiffness of the structure at a sufficiently high level. This method can be used for smart pipe-wall design in demanding applications. First multi-layer composites of pure and also highly reinforced thermoplastic materials have been produced and tested with regard to their toughness-increase in bending set-up, with interfaces perpendicular to the applied force. As expected, interface properties and mechanical property mismatch play a key role in the development of optimized structures.

M3 - Paper

SP - 1

T2 - SPE ANTEC 2018

Y2 - 6 May 2018 through 10 May 2018

ER -