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Investigation by Digital Image Correlation of Mixed-Mode I and II Fracture Behavior of Polymeric IASCB Specimens with Additive Manufactured Crack-Like Notch

机译:聚合物IASCB标本的混合模式I和II断裂行为的数字图像相关性研究添加制造的裂纹槽

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摘要

In this work, the fracture mechanics properties of polyamide (PA) specimens manufactured by the selective laser sintering (SLS) technology are investigated, in which an embedded crack-like notch was inserted in the design and produced during the additive manufacturing (AM) phase. To cover a wide variety of mode I/II mixity levels, the inclined asymmetrical semicircular specimen subjected to three points loading (IASCB) was employed. The investigation was carried out by analyzing the full displacement field in the proximity of the crack tip by means of the digital image correlation (DIC) technique. To characterize the material, which exhibits a marked elastic-plastic behavior, the quantity J-integral was evaluated by two different methods: the first one exploits the full fields measured by the DIC, whereas the second one exploits the experimental load–displacement curves along with FEM analysis. The DIC methodology was experimentally validated and proposed as an alternative method to evaluate the J-integral. It is especially suited for conditions in which it is not possible to use the conventional LDC method due to complex and possibly unknown loading conditions. Furthermore, results showed that the AM technique could be used effectively to induce cracks in this type of material. These two aspects together can lead to both a simplification of the fracture characterization process and to the possibility of dealing with a wider number of practical, real-world scenarios. Indeed, because of the nature of the additive manufacturing process, AM crack-like notches can be sintered even having complex geometry, being three-dimensional and/or inside the tested structure.
机译:在这项工作中,研究了通过选择性激光烧结(SLS)技术制造的聚酰胺(PA)样本的裂缝力学性质,其中在设计中插入了嵌入的裂纹状凹口,并在添加剂制造期间产生。为了覆盖各种模式I / II的混合水平,采用倾斜的不对称半周标本进行三分载荷(IASCB)。通过数字图像相关(DIC)技术通过分析裂纹尖端接近的全位移场进行研究。为了表征呈现标记的弹性塑性行为的材料,通过两种不同的方法评估数量J-Integral:第一个利用DIC测量的完整场,而第二个是利用实验负载 - 位移曲线用有限元分析。 DIC方法是通过实验验证的,并提出作为评估J-Intional的替代方法。它特别适用于由于复杂和可能未知的负载条件而无法使用传统的LDC方法的条件。此外,结果表明,AM技术可以有效地用于诱导这种类型材料的裂缝。这两个方面的共同可能导致骨折表征过程的简化以及处理更广泛的实际,现实世界场景的可能性。实际上,由于添加剂制造过程的性质,湿裂缝的凹口可以烧结甚至具有复杂的几何形状,是三维和/或测试结构内的三维和/或内部。

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