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Static Strength of Composite Single-lap Joints Using I-fiber Stitching Process with different Stitching Pattern and Angle

Authors
Song, Sang-HoonBack, Joong-TakAn, Woo-JinChoi, Jin-Ho
Issue Date
Oct-2020
Publisher
KOREAN SOC COMPOSITE MATERIALS
Keywords
Stitching; I-fiber; Single-lap Joint
Citation
COMPOSITES RESEARCH, v.33, no.5, pp 296 - 301
Pages
6
Indexed
ESCI
KCI
Journal Title
COMPOSITES RESEARCH
Volume
33
Number
5
Start Page
296
End Page
301
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/6123
DOI
10.7234/composres.2020.33.5.296
ISSN
2288-2103
2288-2111
Abstract
Laminated composite materials have excellent in-plane properties, but are vulnerable in thickness directions, making it easy to delamination when bending and torsion loads are applied. Thickness directional reinforcement methods of composite materials that delay delamination include Z-pinning, Stitching, Tufting, etc., and typically Z-pinning and Stitching method are commonly used. The Z-pinning is reinforcement method by inserting metal or carbon pin in the thickness direction of prepreg, and the conventional stitching process is a method of reinforcing the mechanical properties in the thickness direction by intersecting the upper and lower fibers on the preform. In this paper, I-fiber stitching method, which complement and improve weakness of Z-pinning and Stitching method, was proposed, and the static strength of composite single-lap joints using I-fiber stitching process were evaluated. The single-lap joints were fabricated by a co-curing method using an autoclave vacuum bag process. The thickness of the composite adherend was fixed, and 5 types of specimens were manufactured with varying the stitching pattern (5x5, 7x7) and angle (0 degrees, 45 degrees). From the test, the failure load of the specimen reinforced by the I-fiber stitching process was increased by up to 143% compared to that of specimen without reinforcement.
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Choi, Jin Ho
대학원 (기계항공우주공학부)
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