Plamadiala Ioan, Croitoru Catalin, Pop Mihai Alin, Roata Ionut Claudiu
Materials Engineering and Welding Department, Transilvania University of Brasov, 500036 Brasov, Romania.
Department of Materials Science, Transilvania University of Brasov, 500036 Brasov, Romania.
Polymers (Basel). 2025 Jan 14;17(2):191. doi: 10.3390/polym17020191.
This review explores the impact of various additives on the mechanical properties of polylactic acid (PLA) filaments used in Fused Deposition Modeling (FDM) 3D printing. While PLA is favored for its biodegradability and ease of use, its inherent limitations in strength and heat resistance necessitate enhancements through additives. The impact of natural and synthetic fibers, inorganic particles, and nanomaterials on the mechanical properties, printability, and overall functionality of PLA composites was examined, indicating that fiber reinforcements, such as carbon and glass fibers, significantly enhance tensile strength and stiffness, while natural fibers contribute to sustainability but may compromise mechanical stability. Additionally, the inclusion of inorganic particulate fillers like calcium carbonate improves dimensional stability and printability, although larger particles can lead to agglomeration issues. The study highlights the potential for improved performance in specific applications while acknowledging the need for further investigation into optimal formulations and processing conditions.
本综述探讨了各种添加剂对熔融沉积建模(FDM)3D打印中使用的聚乳酸(PLA)长丝机械性能的影响。虽然PLA因其生物降解性和易用性而受到青睐,但其在强度和耐热性方面的固有局限性需要通过添加剂来增强。研究了天然和合成纤维、无机颗粒和纳米材料对PLA复合材料机械性能、可打印性和整体功能的影响,结果表明,碳纤维和玻璃纤维等纤维增强材料可显著提高拉伸强度和刚度,而天然纤维有助于可持续性,但可能会损害机械稳定性。此外,碳酸钙等无机颗粒填料的加入可改善尺寸稳定性和可打印性,不过较大的颗粒可能会导致团聚问题。该研究强调了在特定应用中提高性能的潜力,同时也认识到需要进一步研究最佳配方和加工条件。