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The effect of printing velocity on the temperature and viscosity of the polymer thread at the nozzle exit in 3D printers

机译:印刷速度对3D打印机喷嘴出射射线螺纹温度和粘度的影响

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摘要

Fused Deposition Modelling (FDM) is a powerful method for advanced additive manufacturing of polymeric materials, due to its simplicity and low cost. However, the process implies complex phenomena which are not fully understood yet. In particular, the effect of viscosity on the printed thread is a key parameter to control if good quality products are to be obtained. Experimental data of two grades of acrylonitrile-butadiene- styrene copolymer (ABS) was employed to analyse, by using ANSYS Fluent simulation package, six printing velocities at a temperature of 230 degrees C. A drastic temperature change was observed as the printing velocity increases, confirming the effect of viscosity on the shear created on the wall of the nozzle transversal to the printing bed. The polymers analysed present different viscosity behavior even under the same angular frequency range (0.1 to 100 rad/s), and testing temperature (230 degrees C), which could lead to inhomogeneities. Our results allow taking into account these parameters as part of the design criteria.
机译:熔融沉积模型(FDM)由于其简单和低成本,是先进的聚合物材料添加剂制造的有力方法。然而,这一过程隐含着复杂的现象,目前尚未完全理解。特别是,粘度对印刷线的影响是控制是否获得高质量产品的关键参数。利用两个牌号的丙烯腈-丁二烯-苯乙烯共聚物(ABS)的实验数据,利用ANSYS Fluent模拟软件包,对230℃下的六种印刷速度进行了分析,确认粘度对横向于印刷床的喷嘴壁上产生的剪切力的影响。即使在相同的角频率范围(0.1至100 rad/s)和测试温度(230℃)下,分析的聚合物也呈现不同的粘度行为,这可能导致不均匀性。我们的结果允许将这些参数作为设计标准的一部分加以考虑。

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