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Searching for Rheological Conditions for FFF 3D Printing with PVC Based Flexible Compounds

机译:寻找基于PVC的柔性化合物进行FFF 3D打印的流变条件

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摘要

Rheology is proposed as a tool to explore plasticized poly(vinyl chloride) (PVC) formulations to be used in the fused filament fabrication (FFF) 3D printing process and so manufactures flexible and ductile objects by this technique. The viscoelastic origin of success/failure in FFF of these materials is investigated. The analysis of buckling of the filament is based on the ratio between compression modulus and viscosity, but for a correct approach the viscosity should be obtained under the conditions established in the nozzle. As demonstrated by small amplitude oscillatory shear (SAOS) measurements, PVC formulations have a crystallites network that provokes clogging in the nozzle. This network restricts printing conditions, because only vanishes at high temperatures, at which thermal degradation is triggered. It is observed that the analysis of the relaxation modulus G(t) is more performing than the G″/G′ ratio to get conclusions on the quality of layers welding. Models printed according to the established conditions show an excellent appearance and flexibility, marking a milestone in the route to obtain flexible objects by FFF.
机译:流变学被认为是一种工具,用于探索可用于熔融长丝制造(FFF)3D打印过程的增塑聚氯乙烯(PVC)配方,从而通过该技术来制造柔性且易延展的物体。研究了这些材料在FFF中成功/失败的粘弹性起源。长丝的屈曲分析基于压缩模量和粘度之间的比率,但是对于正确的方法,应在喷嘴确定的条件下获得粘度。正如小振幅振荡剪切(SAOS)测量所证明的那样,PVC配方具有微晶网络,导致喷嘴堵塞。该网络限制了打印条件,因为仅在高温下才消失,而在高温下会触发热降解。可以看出,对松弛模量G(t)的分析比对G''/ G'的比率更有效,从而得出关于层焊质量的结论。根据既定条件印刷的模型具有出色的外观和柔韧性,标志着通过FFF获得柔性物体的路线上的里程碑。

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