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Influence of Stitch Density on Tensile Properties of Polyethylene-Stitched Composite Laminates
by
Lira-Martínez, Manuel Alejandro
, López-León, Abraham Leonel
, López-León, Luis Daimir
, Gomez-Avila, Marianggy
in
composite material
/ Composite materials
/ delamination
/ Epoxy resins
/ Fiberglass
/ Laminated materials
/ Laminates
/ Manufacturing
/ Mechanical properties
/ Polyethylene
/ Residual stress
/ stitch density
/ stitching composite
/ tensile resistance
/ Tensile strength
/ Viscosity
2026
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Influence of Stitch Density on Tensile Properties of Polyethylene-Stitched Composite Laminates
by
Lira-Martínez, Manuel Alejandro
, López-León, Abraham Leonel
, López-León, Luis Daimir
, Gomez-Avila, Marianggy
in
composite material
/ Composite materials
/ delamination
/ Epoxy resins
/ Fiberglass
/ Laminated materials
/ Laminates
/ Manufacturing
/ Mechanical properties
/ Polyethylene
/ Residual stress
/ stitch density
/ stitching composite
/ tensile resistance
/ Tensile strength
/ Viscosity
2026
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Do you wish to request the book?
Influence of Stitch Density on Tensile Properties of Polyethylene-Stitched Composite Laminates
by
Lira-Martínez, Manuel Alejandro
, López-León, Abraham Leonel
, López-León, Luis Daimir
, Gomez-Avila, Marianggy
in
composite material
/ Composite materials
/ delamination
/ Epoxy resins
/ Fiberglass
/ Laminated materials
/ Laminates
/ Manufacturing
/ Mechanical properties
/ Polyethylene
/ Residual stress
/ stitch density
/ stitching composite
/ tensile resistance
/ Tensile strength
/ Viscosity
2026
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Influence of Stitch Density on Tensile Properties of Polyethylene-Stitched Composite Laminates
Journal Article
Influence of Stitch Density on Tensile Properties of Polyethylene-Stitched Composite Laminates
2026
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Overview
Delamination in laminated composites originates from premature matrix cracking within the interlaminar region, ultimately leading to ply separation under indirect loading. Among the techniques proposed to mitigate this failure mode, through-thickness stitching has emerged as a localized reinforcement strategy capable of enhancing interlaminar performance without modifying the in-plane laminate architecture. However, previous studies report that stitching can either improve or degrade the mechanical properties of the composite, with stitch density identified as a critical variable. This work aims to keep the tensile strength of a stitched composite at levels comparable to its unstitched counterpart. The reinforcement was applied using an eight-strand polyethylene thread (0.28 mm in diameter) embedded in a low-viscosity epoxy infusion system (MAX 1618 A/B) combined with a 90° biaxial fiberglass woven fabric. The tensile behavior of laminates was examined for three longitudinal stitching configurations consisting of 2, 3, and 5 continuous stitch lines. Results show that increasing stitch count produces a progressive reduction in tensile strength, attributed to stress concentration around stitch sites and microstructural effects such as resin-rich zones and fiber waviness.
Publisher
MDPI AG
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