Alperen Doğru, Seçil Yilancioğlu, Görkem Ülkü, Buket ŞENTÜRK TURAN, M. Ö. Seydibeyoğlu
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引用次数: 0

摘要

塑料材料具有多种化学和机械性能,可用于各种各样的应用。然而,由于塑料垃圾的不可降解性影响了生态环境,造成了污染和巨大威胁。热固性聚合物,广泛应用于聚合物工业今天,有回收问题。这种情况造成了严重的环境问题。热塑性材料最重要的特点是它们可以回收利用。热塑性聚合物的使用在回收和环境问题上创造了显著的优势。增材制造的快速发展为循环经济的循环利用提供了一条新的途径。热塑性或热固性材料可以在增材制造中加工。增材制造方法(AM)今天在不同的行业中用于生产原型甚至最终产品。使用增材制造生产的零件中有51%使用聚合物材料。熔融长丝制造(FFF)方法是用增材制造成型聚合物最常用的方法。FFF方法是一种通过加热喷嘴挤出热塑性长丝线轴并熔化材料的方法。此外,与其他AM技术相比,FFF具有低成本和高打印速度。PLA材料是一种完全基于生物的热塑性聚合物,具有易于加工、强度、硬度和生物降解性等诸多优良性能,广泛应用于FFF法加工材料。在这项研究中,用天然纤维增强PLA基体,以提高机械性能并有助于回收。制备了木纤维增强PLA基重量为15%的生物复合材料。样品的制作采用生物复合材料、FFF法和注射成型法。对制备的化合物、细丝和生产的样品进行了热分析。天然纤维增强复合材料的Tg值降低,而Tm值升高。FFF法制备的样品Tg值较注射样品有所增加。此外,还比较了FFF法和注射成型法制备的试样的力学性能。结果表明,注射法制备试样的断裂应力值比FFF法制备试样高2倍。注射成型试样的冲击强度比FFF成型试样高51.75%。对制备的生物复合材料进行了扫描电镜(SEM)观察。研究了基体与纤维之间的表面相互作用和均匀纤维分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enjeksiyon Kalıplama ve Erimiş Filament Ekstrüzyonu (EFE) yöntemleri ile üretilen ahşap elyaf takviyeli PLA matris biyo-kompozitlerin karşılaştırılması
Plastic materials have a variety of chemical and mechanical properties that will be useful for a wide variety of applications. However, plastic waste creates pollution and poses a great threat due to the problem of non-degradability affecting ecological environments. Thermoset polymers, which are used extensively in the polymer industry today, have recycling problems. This situation creates serious environmental problems. The most important feature of thermoplastic materials is that they can be recycled. The use of thermoplastic polymers creates significant advantages in recycling and environmental issues. The rapid evolution in additive manufacturing provides a new path to the circular economy using recycling. Thermoplastic or thermoset materials can be processed in additive manufacturing. Additive Manufacturing Methods (AM) are used today in different industries to produce prototypes and even final products. The polymer material is used in 51% of the parts produced with AM. The Fused Filament Fabrication (FFF) method is the most popular method preferred for shaping polymers with AM. The FFF method is a method of extruding a spool of thermoplastic filament through a heated nozzle and melting the material. Also, FFF is known to have low cost and high printing speeds compared to other AM techniques. PLA material, which is a completely bio-based thermoplastic polymer with many desirable properties, including easy processing ability, strength, hardness, and biodegradability, is widely used in material processing by the FFF method. In this study, the PLA matrix was reinforced with natural fibers to increase the mechanical properties and contribute to recycling. Bio-composite compounds with 15% wood fiber reinforced PLA matrix by weight were prepared. Specimens’ productions were carried out using bio-composite materials, the FFF method, and injection molding methods. Thermal analyzes of the prepared compounds, filaments, and produced specimens were carried out. A decrease in the Tg value of the compound reinforced with natural fiber was observed, while an increase in the Tm value was observed. The Tg value of the specimens produced by the FFF method increased compared to the injection specimens. In addition, the mechanical properties of the specimens produced by FFF, and the injection molding method were compared. It was determined that the stress at break values of the specimens produced by injection were 2 times higher than the specimens produced by FFF. The impact strength of the specimens produced with injection molding is 51.75% higher than the specimens produced with FFF. The bio-composite materials produced in the study were examined under scanning electron microscopy (SEM). Surface interactions and homogeneous fiber distribution between matrix and fiber were investigated.
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