基于ASED准则的u形缺口和v形缺口3D打印PLA和石墨烯增强PLA板断裂载荷估计

Marcos Sánchez, Sergio Arrieta, Sergio Cicero
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摘要

本文讨论了含有缺口的FFF(熔融长丝制造)印刷聚合物和复合材料的临界载荷估计。特别地,分析的重点是39块PLA(聚乳酸)和39块石墨烯增强PLA (PLA- gr)印刷板的断裂载荷估计,其中包含两种不同类型的缺口(U型和v型缺口),并结合不同的板厚和缺陷长度与板宽(a/W)比。石墨烯(1 wt.%)的添加增加了屈服应力和极限抗拉强度,也减少了断裂时的应变,从而产生了一种更接近线弹性的材料。在可用于估计临界载荷的不同评估工具中,本工作应用了众所周知的平均应变能密度(ASED)准则,该准则将缺口尖端一定控制体积上的平均应变能与相应的临界值进行比较,后者是材料的一种特性。这种方法具有线性弹性,因此应用于非完全线性材料可能需要使用特定的校正或校准。对于本文分析的PLA和PLA- gr两种材料,我们已经观察到,普通的线性弹性基于谱准则可以很好地估计PLA- gr材料,而原始PLA具有更明显的非线性行为,需要事先对基于谱的材料参数进行特定的校准才能获得准确的结果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fracture Load Estimations for U-Notched and V-Notched 3D Printed PLA and Graphene-Reinforced PLA plates using the ASED Criterion
This paper addresses the estimation of critical loads in FFF (Fused Filament Fabrication) printed polymers and composites containing notches. Particularly, the analysis is focused on the fracture load estimations of 39 PLA (polylactic acid) and 39 graphene reinforced PLA (PLA-Gr) printed plates containing two different types of notches (U- and V-notches) and combining different plate thicknesses and defect length to plate width (a/W) ratios. The addition of graphene (1 wt.%) increases both the yield stress and the ultimate tensile strength, also reducing the strain at rupture and, thus, generating a material whose behavior is closer to linear elasticity. Among the different assessment tools that may be used to estimate critical loads, this work applies the well-known Averaged Strain Energy Density (ASED) criterion, which compares the averaged strain energy over a certain control volume at the notch tip with the corresponding critical value, the latter being a material property. This approach has a linear-elastic nature, so its application to non-fully linear materials may require the use of specific corrections or calibrations. For the two materials analyzed here, PLA and PLA-Gr, it has been observed that the ordinary linear-elastic ASED criterion provides good estimations for the PLA-Gr material, whereas the pristine PLA, with more evident non-linear behavior, the obtainment of accurate results requires a previous specific calibration of the ASED material parameters
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