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首页> 外文期刊>International Journal of Fatigue >Fatigue strength of additively manufactured polylactide (PLA): effect of raster angle and non-zero mean stresses
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Fatigue strength of additively manufactured polylactide (PLA): effect of raster angle and non-zero mean stresses

机译:含有含有含有粘接性聚物(PLA)的疲劳强度:光栅角和非零平均应力的影响

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摘要

As far as polymers are concerned, polylactide (PLA) is certainly the polymeric compound that is most commonly used along with commercial additive manufacturing technologies. In this context, the present paper aims to investigate the influence of manufacturing direction and superimposed static stresses on the fatigue strength of PLA 3D-printed by using the Fused Filament Fabrication technique. This was done not only by generating a large number of new experimental results, but also by re-analysing different data sets taken from the technical literature. As long as the fused deposition modelling technology is used to fabricate, flat on the build-plate, objects of PLA, the obtained results and the performed re-analyses allowed us to come to the following conclusions: (i) the influence of the manufacturing direction can be neglected with little loss of accuracy; (ii) the effect of superimposed static stresses can be quantified and assessed effectively by simply performing the fatigue assessment in terms of maximum stress in the cycle; (iii) if appropriate experiments cannot be run, AM PLA can be designed against fatigue (for a probability of survival larger than 90%) by referring to a unifying design curve having negative inverse slope equal to 5.5 and endurance limit (at = 2.10(6) cycles to failure) equal to 10% of the material ultimate tensile strength.
机译:只要聚合物所涉及,聚丙环(PLA)肯定是最常用的聚合物化合物以及商业添加剂制造技术。在这种情况下,本文旨在研究制造方向和叠加静压对PLA 3D印刷的疲劳强度的影响,通过使用熔丝丝制造技术。这是不仅通过产生大量新的实验结果,而且还通过再分析从技术文献中获取的不同数据集。只要融合沉积建模技术用于制造,平板在构建板上,PLA的物体,所获得的结果和进行的再分析允许我们得出以下结论:(i)制造业的影响方向可以忽略损失的准确性; (ii)通过简单地在循环中的最大应力方面进行疲劳评估,可以通过疲劳评估来定量和评估叠加静态应力的效果; (iii)如果不能运行适当的实验,可以通过参考具有等于5.5和耐久极限的统一设计曲线(AT = 2.10(以= 2.10)(AT = 2.10)(AT = 2.10(以= 2.10)(AT = 2.10)(AT = 2.10)(AT = 2.10)(AT = 2.10(以= 2.10)设计(用于大于90%而大于90%的存活率大于90%的概率)来设计AM PLA 6)循环到失效)等于材料极限拉伸强度的10%。

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