Filho João, Xavier José, Nunes Luiz
Laboratory of Opto-Mechanics (LOM), Department of Mechanical Engineering (PGMEC-TEM), Universidade Federal Fluminense (UFF), Rua Passo da Pátria, 156, Bloco E, Sala 210, Rio de Janeiro 24210-240, Brazil.
Research and Development Unit for Mechanical and Industrial Engineering (UNIDEMI), Department of Mechanical and Industrial Engineering, NOVA School of Science and Technology, NOVA University Lisbon, 2825-149 Lisbon, Portugal.
Materials (Basel). 2022 Mar 25;15(7):2413. doi: 10.3390/ma15072413.
One of the main challenges in experimental fracture mechanics is to correctly estimate fracture parameters of a nonhomogeneous and nonlinear material under large deformation. The crack tip detection is strongly affected by fibers at crack tip, leading to inaccurate measures. To overcome this limitation, a novel methodology based on the Digital Image Correlation (DIC) method for crack tip detection of fibrous soft composites is proposed in this work. The unidirectional composite was manufactured using a matrix of polydimethylsiloxane reinforced with a single layer of extensible cotton knit fabric. For two different fiber orientations, the crack growth (da), Crack Tip Opening Displacement (CTOD) and Crack Tip Opening Angle (CTOA) were determined using pure shear specimens under mode I fracture. A consistent estimation of fracture parameters was obtained. The location of the crack tip position during the fracture test using the DIC-based methodology was validated against a visual inspection approach. Results indicated that the DIC-based methodology is easily replicable, precise and robust.
实验断裂力学中的主要挑战之一是在大变形情况下正确估计非均匀非线性材料的断裂参数。裂纹尖端检测受裂纹尖端处纤维的强烈影响,导致测量不准确。为克服这一局限性,本文提出了一种基于数字图像相关(DIC)方法的新型纤维软复合材料裂纹尖端检测方法。单向复合材料采用聚二甲基硅氧烷基体增强单层可拉伸棉针织面料制成。对于两种不同的纤维取向,在I型断裂模式下使用纯剪切试样确定裂纹扩展(da)、裂纹尖端张开位移(CTOD)和裂纹尖端张开角(CTOA)。获得了断裂参数的一致估计。使用基于DIC的方法在断裂试验期间裂纹尖端位置的定位通过目视检查方法进行了验证。结果表明,基于DIC的方法易于复制、精确且稳健。