Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite

This data article presents experimental data on the in-plane mechanical behavior of a carbon-epoxy twill woven composite. Properties under tension, shear, and compression are measured and reported, which include force vs. stroke curves, stress vs. strain curves, in-plane on-axis and off-axis moduli,...

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Main Authors: Felix Liu, Leana Grotz, Yanyan Cui, Kedar Kirane
Format: Article
Language:English
Published: Elsevier 2022-12-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340922008551
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author Felix Liu
Leana Grotz
Yanyan Cui
Kedar Kirane
author_facet Felix Liu
Leana Grotz
Yanyan Cui
Kedar Kirane
author_sort Felix Liu
collection DOAJ
description This data article presents experimental data on the in-plane mechanical behavior of a carbon-epoxy twill woven composite. Properties under tension, shear, and compression are measured and reported, which include force vs. stroke curves, stress vs. strain curves, in-plane on-axis and off-axis moduli, in-plane shear modulus, tensile and compressive strengths, post-peak residual stress under compression, and on-axis and off-axis Poisson ratios. Laminate plates of the composite were ordered from a commercial vendor and specimens of desired dimensions were cut using a waterjet cutter. Tests were conducted in accordance with ASTM standards D3039 and D6641, under on-axis and off-axis tension, and under on-axis compression. The data represents a complete set of in-plane mechanical properties for the composite and can be used directly as lamina level input to numerical FEA models and design analyses with woven composite laminates. It can also serve as benchmark for the calibration and validation of these models. It can be used to calculate properties for other off-axis configurations using transformation equations. Since the data is intended to be a lamina level input, it can be used to determine and model the in-plane behavior of any laminate layup with this composite. The data also serves to demonstrate the marked anisotropy and tension compression asymmetry exhibited by woven composites.
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spelling doaj.art-dd9b531320ae49a78ed327958a5cebc82022-12-22T03:49:13ZengElsevierData in Brief2352-34092022-12-0145108650Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven compositeFelix Liu0Leana Grotz1Yanyan Cui2Kedar Kirane3Department of Mechanical Engineering, Stony Brook University, 112 Light Engineering, Stony Brook, NY 11794, USADepartment of Mechanical Engineering, Stony Brook University, 112 Light Engineering, Stony Brook, NY 11794, USADepartment of Mechanical Engineering, Stony Brook University, 112 Light Engineering, Stony Brook, NY 11794, USACorresponding author.; Department of Mechanical Engineering, Stony Brook University, 112 Light Engineering, Stony Brook, NY 11794, USAThis data article presents experimental data on the in-plane mechanical behavior of a carbon-epoxy twill woven composite. Properties under tension, shear, and compression are measured and reported, which include force vs. stroke curves, stress vs. strain curves, in-plane on-axis and off-axis moduli, in-plane shear modulus, tensile and compressive strengths, post-peak residual stress under compression, and on-axis and off-axis Poisson ratios. Laminate plates of the composite were ordered from a commercial vendor and specimens of desired dimensions were cut using a waterjet cutter. Tests were conducted in accordance with ASTM standards D3039 and D6641, under on-axis and off-axis tension, and under on-axis compression. The data represents a complete set of in-plane mechanical properties for the composite and can be used directly as lamina level input to numerical FEA models and design analyses with woven composite laminates. It can also serve as benchmark for the calibration and validation of these models. It can be used to calculate properties for other off-axis configurations using transformation equations. Since the data is intended to be a lamina level input, it can be used to determine and model the in-plane behavior of any laminate layup with this composite. The data also serves to demonstrate the marked anisotropy and tension compression asymmetry exhibited by woven composites.http://www.sciencedirect.com/science/article/pii/S2352340922008551Polymer matrix compositeWoven compositeElastic modulusPoisson's ratioStrengthFailure
spellingShingle Felix Liu
Leana Grotz
Yanyan Cui
Kedar Kirane
Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
Data in Brief
Polymer matrix composite
Woven composite
Elastic modulus
Poisson's ratio
Strength
Failure
title Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
title_full Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
title_fullStr Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
title_full_unstemmed Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
title_short Experimental dataset on the in-plane tensile, shear, and compressive properties of a carbon-epoxy twill woven composite
title_sort experimental dataset on the in plane tensile shear and compressive properties of a carbon epoxy twill woven composite
topic Polymer matrix composite
Woven composite
Elastic modulus
Poisson's ratio
Strength
Failure
url http://www.sciencedirect.com/science/article/pii/S2352340922008551
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