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Makale detayı · 2023 · article

Stress relaxation of 3D printed PLA of various infill orientations under tensile and bending loadings

YÖKSİS OpenAlex Açık erişim · hybrid
Yıl2023
Atıf29OpenAlex
Atıf26Semantic Scholar · 2 etkili
Yüzdelik%86,1
FWCI2,041,00 = dünya ortalaması
Scopus (SJR)Q2
WoS (JCR)Q2

Veri kaynağı ayrımı

  • YÖKSİSYÖKSİS makale kaydı
  • YÖKSİS dergi adıJournal of Applied Polymer Science-Wiley
  • Katalog eşleşmesi (ISSN)Journal of Applied Polymer Science
  • OpenAlexOpenAlex zenginleştirmesi (özet, atıf, konular)
  • Semantic Scholaratıf sayısı (OpenAlex ile birleştirilmez)

Özet

OpenAlex İngilizce

Abstract In recent years, the widespread use of 3D printing technology in various industries has highlighted the crucial issue of how 3D printed polymers behave mechanically when subjected to stress relaxation. The time‐independent mechanical properties of these polymers, as well as their stress relaxation behavior, are both affected by the 3D printing parameters used. Therefore, this study examines the stress‐relaxation behavior of PLA under tensile and bending loading modes, specifically investigating how different raster orientations affect this behavior. The findings indicate that the ±45° infill orientation had the least amount of relaxation in both tensile and bending modes compared to the other orientations. Additionally, there was higher stress relaxation in the bending loading mode across all infill orientations. The findings indicate that the experimental duration should exceed 750 s to achieve an accurate model, as both Maxwell‐Weichert elements contribute to stress relaxation during this period. On the other hand, extending the test beyond 20,000 s is not necessary since neither of the elements contributes significantly to stress relaxation.

Konular

Atıflar

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29atıfOpenAlex · cited_by_count (önbellek / veritabanı)

Yerel katalogda bu makaleye atıf yapan 13 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).

  1. 2024 Optimization of Charpy Impact Strength of Tough PLA Samples Produced by 3D Printing Using the Taguchi MethodAtıf 65 · OpenAlex
  2. 2024 Multi-objective optimization of 3D printing process parameters using gray-based Taguchi for composite PLA partsAtıf 63 · OpenAlex
  3. 2024 Multi‐objective optimization of 3D printing process parameters using gray‐based Taguchi for composite PLA partsAtıf 61 · OpenAlex
  4. 2025 Thermal annealing optimization for improved mechanical performance of PLA parts produced via 3D printingAtıf 51 · OpenAlex
  5. 2025 Thermal annealing optimization for improved mechanical performance of PLA parts produced via 3D printingAtıf 51 · OpenAlex
  6. 2025 Thermal Annealing Optimization for Improved Mechanical Performance of PLA Parts Produced via 3D PrintingAtıf 47 · OpenAlex
  7. 2024 Optimization of Flexural Performance of PETG Samples Produced by Fused Filament Fabrication with Response Surface MethodAtıf 40 · OpenAlex
  8. 2024 Optimization of Flexural Performance of PETG Samples Produced by Fused Filament Fabrication with Response Surface MethodAtıf 38 · OpenAlex
  9. 2025 Predicting Mechanical Properties of FDM‐Produced Parts Using Machine Learning ApproachesAtıf 30 · OpenAlex
  10. 2025 Predicting Mechanical Properties of FDM‐Produced Parts Using Machine Learning ApproachesAtıf 30 · OpenAlex

Yazarlar

3
  1. KENAN TÜFEKCİ BURSA ULUDAĞ ÜNİVERSİTESİ 1
  2. BETÜL GÜLÇİMEN ÇAKAN 2
  3. Volkan Küçükakarsu 3