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Defects Characterization, Damage Mapping, and Property Evaluation of Composites

机译:复合材料的缺陷表征,损伤映射和属性评估

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The presence of voids in the composite laminates can reduce the mechanical properties in composites and these voids can become precursors in the activation of other failure modes such as delamination. Knowing the volume fraction of voids is not enough since their criticality is highly reliant on their location, size, and geometric configuration. While the use of X-ray computed tomography (CT) combined with an advanced image processing and segmentation procedure can extract geometric configurations of voids, the introduction of these voids into a finite element model has posed a great challenge due to the presence of distinct length scales in the description of these voids and evaluation of their effects on the performance of composite components. In order to map an arbitrary distribution of voids into a 3D finite element model, two modeling approaches are developed based on an immersed method for an implicit representation of voids and a computational geometry method to explicitly determine the intersection of a discretized void with its surrounding elements. Based on the intersection of an arbitrarily oriented void with elements and a ply interface, the resulting volume fraction of voids within each element and the surface area at the ply interface is determined and used to compute the initial stiffness degradation and initial delamination area for the subsequent progressive failure analysis. Modeling efficiency and accuracy of both methods are demonstrated using a void with an analytical geometry and a discretized geometry generated from the X-ray CT data.
机译:复合层压板中的空隙的存在可以降低复合材料中的机械性能,并且这些空隙可以成为激活其他故障模式的前体,例如分层。知道空隙的体积分数是不够的,因为他们的临界性高度依赖于它们的位置,尺寸和几何配置。虽然使用X射线计算机断层扫描(CT)与先进的图像处理和分割过程相结合,但可以提取空隙的几何配置,因此将这些空隙引入有限元模型引起了由于存在明显长度的存在而产生的巨大挑战在这些空隙的描述中进行缩放和对它们对复合组件性能的影响的评估。为了将空隙的任意分布映射到3D有限元模型中,基于用于空隙的隐式表示的浸入方法和计算几何方法来开发两个建模方法,以明确地确定与其周围元素的离散空隙的交叉点。基于与元件的任意取向的空隙的交点,确定每个元件内的空隙的所得体积分数,并用于计算随后的初始刚度劣化和初始分层区域逐步失败分析。使用具有分析几何形状的空隙和从X射线CT数据产生的离散的几何形状来证明两种方法的建模效率和准确性。

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