An Investigation of in Fill Process Variables to Reduce Warpage in Fused Filament Fabrication

Pranav Addepalli, Sundaram Thirukkurungudi
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Abstract

Currently, three-dimensional (3D) printing is being widely used for rapid pro-totyping and Just in Time manufacturing. Many commercial 3D printers use fused filament fabrication (FFF), a printing technique where a solid thermo-plastic filament is melted and extruded onto sequential two-dimensional layers to produce a 3D object. In FFF printing, thermal stresses between layers due to inhomogeneous thermal conduction during cycles of heating and cooling create distortions, known as warpage. Process variables, especially infill density and infill pattern, cause thermal properties to become anisotropic because of thermal conduction through plastic and natural convection in air gaps. In order to identify the effect of these process variables on thermal warpage, Polylactic Acid (PLA) discs with varying infill densities and patterns were printed and the spatiotemporal temperature distribution was modeled. Trajectory similarity analysis using the Dynamic Time Warping algorithm as well as a temperature gradient analysis with statistical tests were conducted. Based on the analysis of the data, this study recommends that 30% infill density and trihexagonal infill pattern be used in FFF printing with PLA to mitigate the warpage. Keywords—Warpage; fused filament fabrication; infill; temperature distribution; thermal stress; dynamic time warping
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减少熔丝加工翘曲的填充工艺变量研究
目前,三维(3D)打印被广泛应用于快速原型制造和即时制造。许多商用3D打印机使用熔融长丝制造(FFF),这是一种打印技术,将固体热塑性长丝熔化并挤压到连续的二维层上,以产生3D物体。在FFF印刷中,由于加热和冷却循环过程中热传导不均匀,层之间的热应力会产生扭曲,称为翘曲。工艺变量,特别是填充密度和填充模式,由于通过塑料的热传导和空气间隙的自然对流,导致热性能变得各向异性。为了确定这些工艺变量对热翘曲的影响,打印了不同填充密度和图案的聚乳酸(PLA)圆盘,并对其时空温度分布进行了建模。采用动态时间翘曲算法进行轨迹相似性分析,并采用统计检验进行温度梯度分析。在分析数据的基础上,本研究建议采用30%的填充密度和三边形填充模式来缓解PLA的FFF打印翘曲。Keywords-Warpage;熔丝制造;加密;温度分布;热应力;动态时间规整
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