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Parameter Optimization of Biodegradable Composite PLA-Wood with New-Generation Infill Pattern
Mehmet Kivanc Turan1, Altug Bakirci2, Yusuf Alptekin Turkkan3
1Department of Mechanical Engineering, Bursa Uludag University, 16059 Bursa, Türkiye.
Biomimetics (Basel, Switzerland)
|February 26, 2026
Summary
Optimizing 3D printing settings like infill density and pattern significantly boosts the compressive force of polylactic acid (PLA)-wood composites. This research guides the creation of strong, eco-friendly, wood-like products.
Area of Science:
- Materials Science
- Additive Manufacturing
- Sustainable Materials
Background:
- Growing demand for sustainable materials drives innovation in bio-based composites for 3D printing.
- Polylactic acid (PLA)-wood composites offer a promising eco-friendly alternative for wood-like products.
Purpose of the Study:
- Investigate the combined impact of printing parameters and novel infill patterns on the compressive strength of PLA-wood composites.
- Optimize material extrusion parameters for enhanced mechanical performance.
Main Methods:
- Utilized the Taguchi method to design experiments, varying infill patterns (octet, cubic-subdivision, lightning), infill densities, printing temperatures, and layer heights.
- Applied signal-to-noise ratio and Analysis of Variance (ANOVA) to determine parameter significance and contribution.
Main Results:
- Optimal printing settings identified: 205°C printing temperature, 80% infill density, octet infill pattern, and 0.2 mm layer height, yielding a maximum compressive force of 7123.4 N.
- ANOVA revealed infill density as the most influential factor (60% contribution), followed by infill pattern, on compressive force.
Conclusions:
- Infill density and pattern are critical for maximizing the compressive strength of PLA-wood composites.
- Optimizing infill architecture and density provides design guidelines for lightweight, eco-friendly components with improved mechanical properties.
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