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Article detail · 2024 · article

Multi-objective optimization of 3D printing process parameters using gray-based Taguchi for composite PLA parts

ISSN0272-8397
YÖKSİS OpenAlex Open access · hybrid Top 10%
Year2024
Citations63OpenAlex
Citations59Semantic Scholar · 5 influential
Percentile%98.3
FWCI6.831.00 = world average
Scopus (SJR)Q1
WoS (JCR)Q2

Data source split

  • YÖKSİSYÖKSİS article record
  • YÖKSİS venuePOLYMER COMPOSITES
  • Catalog match (ISSN)Polymer Composites
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)
  • Semantic Scholarcitation count (not merged with OpenAlex)

Abstract

OpenAlex English

Abstract This study investigates the additive manufacturing (AM) process of 30% ceramic‐reinforced composite PLA material using the fused deposition modeling (FDM) technique. The effects of various printing parameters on tensile strength, build time, and material consumption are comprehensively analyzed through a combination of the Taguchi method, analysis of variance (ANOVA), and gray relational analysis (GRA). Experimental design parameters include nozzle diameter, infill density, infill pattern, wall line count, print speed, and layer height. Statistical analyses reveal significant contributions of these parameters to mechanical properties and production efficiency. Single and multi‐objective optimizations of the responses were performed. The single optimization resulted in a significant increase in tensile strength from 39.9 to 48.10 MPa. Production time was reduced from 16 to 9 min; material consumption decreased from 4.95 to 2.43 g for tensile test specimens. The use of GRA in multi‐objective optimization has led to a significant improvement of 8.31% in the gray relational grade (GRG) when compared to the initial parameter settings. These findings provide valuable insights for optimizing FDM processes in the fabrication of composite PLA materials. This contributes towards the advancement of additive manufacturing technology and its applications across various industries. and its applications across various industries. Highlights Tensile strength increased while reducing build time and material consumption. Optimal printing parameters were identified for a composite PLA material. Layer height and nozzle diameter were effective parameters.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

63citationsOpenAlex · cited_by_count (cache / database)

32 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2025 Thermal annealing optimization for improved mechanical performance of PLA parts produced via 3D printingCitations 51 · OpenAlex
  2. 2025 Thermal annealing optimization for improved mechanical performance of PLA parts produced via 3D printingCitations 51 · OpenAlex
  3. 2025 Multi-objective optimization of FDM process parameters for 3D-printed polycarbonate using Taguchi-based Gray Relational AnalysisCitations 48 · OpenAlex
  4. 2025 Thermal Annealing Optimization for Improved Mechanical Performance of PLA Parts Produced via 3D PrintingCitations 47 · OpenAlex
  5. 2024 Optimization of Flexural Performance of PETG Samples Produced by Fused Filament Fabrication with Response Surface MethodCitations 40 · OpenAlex
  6. 2024 Optimization of Flexural Performance of PETG Samples Produced by Fused Filament Fabrication with Response Surface MethodCitations 38 · OpenAlex
  7. 2025 Comprehensive analysis of heat treatment effects on PLA-wood biocompositesCitations 7 · OpenAlex
  8. 2025 Performance Enhancement of Lightweight PLA Parts Printed by FFF Using Taguchi–GRA MethodCitations 7 · OpenAlex
  9. 2025 Multi-Objective Optimization of Biodegradable and Recyclable Composite PLA/PHA PartsCitations 6 · OpenAlex
  10. 2025 Multi-Objective Optimization of Low-Velocity Impact and Compression Behavior of 3D-Printed PLA Cubic SamplesCitations 6 · OpenAlex

Authors

3
  1. OĞUZ TUNÇEL 1
  2. KENAN TÜFEKCİ BURSA ULUDAĞ ÜNİVERSİTESİ 2
  3. ÇAĞLAR KAHYA 3