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The Effects of Off-Axis Loading on the Compression After Impact Strength of Quasi-Isotropic Face Sheet Honeycomb Core Sandwich StructureThis study presents experimental results of compression after impact (CAI) testing of aluminum honeycomb core sandwich structure with face sheets made of co-cured T1100/3960 quasi-isotropic carbon/epoxy when tested at +22.5⁰ and -22.5⁰ with respect to the 0⁰ fibers. In a previous study examining the CAI strengths of honeycomb sandwich structure, it was found that specimens had different CAI strengths, based on a [-45/90/+45/0]s layup, depending on whether they were tested in the 0⁰ direction (face sheet layup of [-45/90/+45/0]s) or 90⁰ direction (face sheet layup of [+45/0/-45/90]s). The CAI strength results showed that the specimens tested in the 90⁰ direction had a 19% drop in CAI strength compared to specimens tested in the 0⁰ direction. This was attributed to the 0⁰ load bearing plies in the 0⁰ direction specimens being “tucked in” at the center of the specimen thus providing more stability against microbuckling. This raised the question as to what CAI strength would specimens tested at +22.5⁰ (face sheet layup of [-22.5/- 67.5/+67.6/+22.5]s) and -22.5⁰ (face sheet layup of [-67.5/+67.5/+22.5/-22.5]s) have compared to specimens tested in the 0⁰ and 90⁰ direction. Results presented in this study show that the specimens loaded at +22.5⁰ and -22.5⁰ have a similar average CAI strength compared to the specimens loaded in the 0⁰ direction. The specimens loaded in the 90⁰ direction exhibit 16% lower average CAI strength. Additional specimens were tested in the +45⁰ direction to put the 0⁰ load bearing fibers on the outside of the specimen to see if this would decrease the strength as has been documented for undamaged strength. These specimens have average CAI strength values between the 0⁰ direction average CAI strength values and the 90⁰ direction average CAI strength values.
Document ID
20230007564
Acquisition Source
Marshall Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Alan T Nettles ORCID
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Baxter W Barnes
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
William E Guin ORCID
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
James P Mavo
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Date Acquired
May 15, 2023
Publication Date
May 26, 2023
Publication Information
Publication: Journal of Sandwich Structures & Materials
Publisher: SAGE Publications
Volume: 25
Issue: 7
Issue Publication Date: October 1, 2023
ISSN: 1099-6362
e-ISSN: 1530-7972
Subject Category
Composite Materials
Funding Number(s)
WBS: 58577.08.50.50.40.14
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Technical Review
External Peer Committee
Keywords
Sandwich structure
Damage tolerance
Compression after impact (CAI) strength
Co-cure
Off axis loading
Quasi-isotropic stacking sequence
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