Supplementary Material

Published: 30 September 2025| Version 1 | DOI: 10.17632/frbdnyhk3x.1
Contributors:
hao zhang, Yi Chen, Wenzhe Song, Jing-hua Zheng, CongzeC Fan, Zhongde Shan

Description

This dataset comprises experimental measurements and model predictions for analyzing the Mode I interlaminar fracture toughness (GIC) of additively manufactured continuous glass fiber-reinforced polyetheretherketone (CGF/PEEK) composites. The study employed Response Surface Methodology (Box–Behnken design) to systematically investigate the effects of three key processing parameters—nozzle temperature (400–440°C), printing speed (1–5 mm/s), and layer thickness (0.16–0.24 mm)—on GIC. Core data include load-displacement curves and calculated GIC values from Double Cantilever Beam (DCB) tests, crystallinity measurements obtained via Differential Scanning Calorimetry (DSC), and microstructural images and surface roughness data acquired through optical and laser confocal microscopy. Additionally, the dataset provides input parameters and predictive results from an interlayer fusion model based on thermal history, molecular diffusion, and interfacial contact mechanisms, which demonstrated high consistency with experimental results (coefficient of determination R² ≈ 0.972).

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Mechanical Strength

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