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On the use of the combined FMC-ASED criterion for fracture prediction of notched specimens with nonlinear behavior

机译:关于使用非线性行为缺口标本的裂缝预测的组合FMC份标准

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The Averaged Strain Energy Density (ASED) criterion has been widely used for the prediction of fracture conditions in a number of materials containing notch type defects, similarly to other well-known methodologies such as the Theory of Critical Distances (TCD). This criterion is linear-elastic, so the results obtained in linear-elastic materials have been accurate. However, as soon as the material behavior becomes nonlinear, the resulting accuracy decreases. With the aim of using linear-elastic simple methods (such as the ASED criterion) in nonlinear materials, several attempts have been made to convert a physically nonlinear behavior into an equivalent linear behavior. Thus, when the tensile behavior in plain specimens reveals nonlinearity, but the fracture behavior in the presence of defects is linear, the Equivalent Material Concept (EMC) has been successfully validated (EMC-ASED criterion). However, there are situations in which the nonlinear behavior takes place in both tensile and fracture behaviors, and the EMC-ASED criterion loses accuracy and requires further evolution. At this point, the Fictitious Material Concept allows the analysis of nonlinear materials (at both tensile and fracture conditions) to be performed with significant accuracy. In this context, this article provides the prediction of fracture loads in single edge notched bending (SENB) specimens made of short glass fiber reinforced polyamide 6 (SGFR-PA6,10 wt.%) containing U-notches and different levels of moisture content. The predictions are obtained through the combination of the FMC and the ASED criterion (FMC-ASED combined criterion). The results are significantly more accurate than those obtained through the ASED and the EMC-ASED criteria, but less accurate than those used when combining the FMC with the TCD.
机译:平均菌株能量密度(ASED)标准已广泛用于预测含有凹口型缺陷的多种材料中的断裂条件,类似于其他众所周知的方法,例如临界距离理论(TCD)。该标准是线性弹性的,因此以线性弹性材料获得的结果已经准确。然而,一旦材料行为变为非线性,所得到的精度降低。通过使用非线性材料中的线性弹性简单方法(例如诸如亚的标准)的目的,已经进行了几次尝试将物理非线性行为转换为等同的线性行为。因此,当普通试样中的拉伸行为揭示非线性时,但是在存在缺陷存在下的断裂行为是线性的,所以已经成功验证了等效材料概念(EMC)(EMC分配标准)。然而,存在在拉伸和断裂行为中发生非线性行为的情况,并且EMC的标准失去准确性并且需要进一步的进化。此时,虚构的材料概念允许以显着的精度进行非线性材料(在抗拉和断裂条件下)的分析。在这种情况下,本文提供了由含有U-Notches和不同水分水分水平的短玻璃纤维增​​强聚酰胺6(SGFR-PA6,10wt.%)的单边缘切口弯曲(SENB)样本中的骨折载荷预测。通过FMC和ASED标准(FMC制备组合标准)的组合获得预测。结果比通过亚胺和EMC的标准获得的结果显着更准确,但比将FMC与TCD结合时使用的那些,而是更准确。

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