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Influence of 3D printing parameters on the properties of PLA/clay nanocomposites

机译:3D打印参数对PLA /粘土纳米复合材料性能的影响

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The aim of this work was to study the influence of printing temperature in the 3D printing process of PLA/clay nanocomposites. For this reason, PLA 4032D was melt compounded in a twin screw extruder with a layered silicate (Cloisite 30B) at 4 wt%. Then, using a single screw extruder, PLA and PLA/clay filaments were produced so as to obtain the required diameter (1.75 mm). Finally, dog-bone specimens were 3D printed via FDM technique using three different temperatures (185, 200 and 215°C) and such specimens were mechanically tested in tensile mode. Dynamic mechanical analysis (DMA) on PLA/clay filaments reported an increase of storage modulus both at 35°C and 70°C (8 and 40 %, respectively) in comparison to the PLA filament. Differential scanning calorimetry (DSC) demonstrated the ability of nanoclay to act as nucleating agent because cold crystallization temperature decreased of about 10°C. Finally, nanocomposite 3D printed samples exhibited always higher elastic modulus than PLA specimens and it increases at increasing printing temperature.
机译:这项工作的目的是研究PLA /粘土纳米复合材料的3D印刷过程中印刷温度的影响。因此,PLA 4032D在双螺杆挤出机中熔融配合,其中分层硅酸盐(Cloisite 30b),4wt%。然后,使用单一螺杆挤出机,生产PLA和PLA /粘土细丝,以获得所需的直径(1.75mm)。最后,使用三种不同温度(185,200和215℃)通过FDM技术印刷的3D,并且这种样品在拉伸模式下机械测试。 PLA /粘土长丝上的动态力学分析(DMA)报告与PLA灯丝相比,在35℃和70°C(分别为8和40%)的储存模量增加。差示扫描量热法(DSC)证明了纳米粘土作为成核剂的能力,因为冷结晶温度降低约10℃。最后,纳米复合三维印刷样品总是比PLA样品的始终更高的弹性模量,并且在增加的印刷温度下增加。

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