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Fatigue lifespan study of PLA parts obtained by additive manufacturing

机译:通过添加剂制造获得的PLA部件的疲劳寿命研究

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Currently, additive manufacturing (AM) is not limited to prototype manufacturing, but is also used to generate parts with final applications. This paper considers this aspect of 3D printing, and aims to characterize fatigue life of parts manufactured through fused filament fabrication. This is one of the most complex AM technologies, due to the high number of parameters that must be taken into account. The knowledge of the influence of the different manufacturing parameters on the mechanical behavior of the parts has been previously considered for static forces, but so far, dynamic working regimes have not been explored. In this paper, a design of experiments through Taguchi orthogonal arrays is applied to analyze the influence of five factors on fatigue life on PLA specimens. Five fatigue tests are performed for each combination of parameters. Results show that fill density, nozzle diameter and layer height are the most influential factors on fatigue lifespan. Finally, honeycomb proves to be the most beneficial infill pattern with regards to fatigue life.
机译:目前,添加剂制造(AM)不限于原型制造,但也用于产生最终应用的零件。本文考虑了3D打印的这一方面,旨在表征通过熔合长丝制造制造的部件的疲劳寿命。这是最复杂的AM技术之一,由于必须考虑的数量很多。对不同制造参数对零件的力学行为的影响已经考虑了静力,但到目前为止,没有探索动态的工作制度。本文通过Taguchi正交阵列进行了实验的设计,用于分析五种因素对PLA标本疲劳寿命的影响。为每个参数组合进行五种疲劳测试。结果表明,填充密度,喷嘴直径和层高度是疲劳寿命最有影响力的因素。最后,蜂窝被证明是疲劳生活中最有益的填充模式。

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