Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Standard

Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles. / Lehner, Sophia; Neunkirchen, Stefan; Fauster, Ewald et al.
2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings. IEEE Xplore (online): Institute of Electrical and Electronics Engineers Inc., 2021.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Harvard

Lehner, S, Neunkirchen, S, Fauster, E & O'Leary, P 2021, Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles. in 2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings. Institute of Electrical and Electronics Engineers Inc., IEEE Xplore (online), 2021 IEEE International Instrumentation and Measurement Technology Conference , 17/05/21.

APA

Lehner, S., Neunkirchen, S., Fauster, E., & O'Leary, P. (2021). Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles. In 2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings Institute of Electrical and Electronics Engineers Inc..

Vancouver

Lehner S, Neunkirchen S, Fauster E, O'Leary P. Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles. In 2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings. IEEE Xplore (online): Institute of Electrical and Electronics Engineers Inc. 2021

Author

Lehner, Sophia ; Neunkirchen, Stefan ; Fauster, Ewald et al. / Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles. 2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings. IEEE Xplore (online) : Institute of Electrical and Electronics Engineers Inc., 2021.

Bibtex - Download

@inproceedings{6f491d38be5a4f1ebc6384ebfb1b7ecf,
title = "Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles",
abstract = "The major advantage of products made from composite materials, such as carbon fiber reinforced polymers (CFRP), is given by their superior weight-specific, mechanical properties such as strength and stiffness. These properties can be weakened by defects induced in the manufacturing process. In dry fiber filament winding, online detection and analysis of the processed fiber bundle geometry is a key factor for the quality assurance of the final part. In this work, the instrumentation and data evaluation for determining the surface geometry of fiber bundles by means of a light sectioning sensor was examined. Profiles of glass fibers were measured continuously in a specifically developed inspection test rig. By application of an interactive polynomial fitting algorithm, data segmentation of object and base line was robustly achieved on varying background conditions. In addition, unwanted defects as well as lateral movement of the fiber bundles were reliably detected. The information revealed by the proposed algorithm provides the basis for robust online monitoring of fiber bundle geometry in highly automated composite manufacturing processes.",
author = "Sophia Lehner and Stefan Neunkirchen and Ewald Fauster and Paul O'Leary",
year = "2021",
month = jun,
day = "29",
language = "English",
booktitle = "2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
address = "United States",
note = "2021 IEEE International Instrumentation and Measurement Technology Conference ; Conference date: 17-05-2021 Through 20-05-2021",
url = "https://i2mtc2021.ieee-ims.org/",

}

RIS (suitable for import to EndNote) - Download

TY - GEN

T1 - Instrumentation of a Roving Inspection Test Rig with Surface Geometry Measurement of Fiber Bundles

AU - Lehner, Sophia

AU - Neunkirchen, Stefan

AU - Fauster, Ewald

AU - O'Leary, Paul

PY - 2021/6/29

Y1 - 2021/6/29

N2 - The major advantage of products made from composite materials, such as carbon fiber reinforced polymers (CFRP), is given by their superior weight-specific, mechanical properties such as strength and stiffness. These properties can be weakened by defects induced in the manufacturing process. In dry fiber filament winding, online detection and analysis of the processed fiber bundle geometry is a key factor for the quality assurance of the final part. In this work, the instrumentation and data evaluation for determining the surface geometry of fiber bundles by means of a light sectioning sensor was examined. Profiles of glass fibers were measured continuously in a specifically developed inspection test rig. By application of an interactive polynomial fitting algorithm, data segmentation of object and base line was robustly achieved on varying background conditions. In addition, unwanted defects as well as lateral movement of the fiber bundles were reliably detected. The information revealed by the proposed algorithm provides the basis for robust online monitoring of fiber bundle geometry in highly automated composite manufacturing processes.

AB - The major advantage of products made from composite materials, such as carbon fiber reinforced polymers (CFRP), is given by their superior weight-specific, mechanical properties such as strength and stiffness. These properties can be weakened by defects induced in the manufacturing process. In dry fiber filament winding, online detection and analysis of the processed fiber bundle geometry is a key factor for the quality assurance of the final part. In this work, the instrumentation and data evaluation for determining the surface geometry of fiber bundles by means of a light sectioning sensor was examined. Profiles of glass fibers were measured continuously in a specifically developed inspection test rig. By application of an interactive polynomial fitting algorithm, data segmentation of object and base line was robustly achieved on varying background conditions. In addition, unwanted defects as well as lateral movement of the fiber bundles were reliably detected. The information revealed by the proposed algorithm provides the basis for robust online monitoring of fiber bundle geometry in highly automated composite manufacturing processes.

M3 - Conference contribution

BT - 2021 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings

PB - Institute of Electrical and Electronics Engineers Inc.

CY - IEEE Xplore (online)

T2 - 2021 IEEE International Instrumentation and Measurement Technology Conference

Y2 - 17 May 2021 through 20 May 2021

ER -