Elastic Response of Open-Hole Material-Extruded PLA Plates: Equivalent Laminate Architectures and Perimeter Paths

The elastic response of an open-hole material-extruded plate depends on both its interior raster architecture and the deposition paths around its boundaries. This study examines whether laminate preferences obtained from a homogeneous model persist when perimeter paths are represented. Six symmetric equivalent-laminate architectures were compared for polylactic acid plates at hole-diameter-to-width ratios of 0.20, 0.25, and 0.40 using plane-stress finite-element models with homogeneous interiors, tangential hole bands, and combined hole and outer bands. Mesh refinement, an independent block mesh, and layered-shell comparisons assessed numerical consistency. In the finest homogeneous comparison at a ratio of 0.25, [90/45/90] reduced the stress concentration factor by 0.90% relative to [0/0/0], while increasing displacement by approximately 2.84%. Adding hole and outer bands reversed this stress advantage, giving a 1.38% higher stress concentration for [90/45/90]. Across the complete perimeter-model screen, [0/0/0] gave both the lowest stress concentration and the lowest displacement, eliminating the preference-dependent trade-off found in the homogeneous models. Comparison with published tensile curves gave elastic-slope discrepancies of 0.5–3.9% for the primary material dataset and 13.2–16.0% for the experimental source’s constants; this literature-based benchmark is limited to global elastic response and does not validate local hole-edge stresses, failure loads, or laminate ranking. Perimeter paths can therefore determine the preferred elastic architecture even when the interior material exhibits only weak orthotropy.

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Publication Details

Journal
Polymers
Published
2026-09-20
DOI
https://doi.org/10.3390/polym18182301
Primary Topic
Mechanical Behavior of Composites
Type
article
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Elastic Response of Open-Hole Material-Extruded PLA Plates: Equivalent Laminate Architectures and Perimeter Paths

Mehmet Emin Baysal, Yasin Uslugil
Polymers
Mechanical Behavior of Composites
article

Elastic Response of Open-Hole Material-Extruded PLA Plates: Equivalent Laminate Architectures and Perimeter Paths

Mehmet Emin Baysal, Yasin Uslugil
article en

Abstract

The elastic response of an open-hole material-extruded plate depends on both its interior raster architecture and the deposition paths around its boundaries. This study examines whether laminate preferences obtained from a homogeneous model persist when perimeter paths are represented. Six symmetric equivalent-laminate architectures were compared for polylactic acid plates at hole-diameter-to-width ratios of 0.20, 0.25, and 0.40 using plane-stress finite-element models with homogeneous interiors, tangential hole bands, and combined hole and outer bands. Mesh refinement, an independent block mesh, and layered-shell comparisons assessed numerical consistency. In the finest homogeneous comparison at a ratio of 0.25, [90/45/90] reduced the stress concentration factor by 0.90% relative to [0/0/0], while increasing displacement by approximately 2.84%. Adding hole and outer bands reversed this stress advantage, giving a 1.38% higher stress concentration for [90/45/90]. Across the complete perimeter-model screen, [0/0/0] gave both the lowest stress concentration and the lowest displacement, eliminating the preference-dependent trade-off found in the homogeneous models. Comparison with published tensile curves gave elastic-slope discrepancies of 0.5–3.9% for the primary material dataset and 13.2–16.0% for the experimental source’s constants; this literature-based benchmark is limited to global elastic response and does not validate local hole-edge stresses, failure loads, or laminate ranking. Perimeter paths can therefore determine the preferred elastic architecture even when the interior material exhibits only weak orthotropy.

PolymersVol. 18(18)
Konya Technical University (TR), KTO Karatay University (TR)
Sustainable cities and communities
Openalex Percentile: Top 19%
Mechanical Behavior of Composites
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Elastic Response of Open-Hole Material-Extruded PLA Plates: Equivalent Laminate Architectures and Perimeter Paths — Mehmet Emin Baysal, Yasin Uslugil · Polymers (2026) | TGRS Research Map | TGRS