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Progressive Damage and Failure Prediction of Interlaminar Tensile Specimen with Initial Fabrication Induced Defects

机译:初始制造诱发缺陷的层间拉伸试样的渐进损伤和破坏预测

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An automatic solution process to evaluate the effects of fabrication induced defects in composite components is developed. The framework of this approach includes defects extraction from the X-ray computed tomography (CT) scan data, defects mapping into a finite element model, characterization of intra- and inter- ply damage progression and their interaction, and evaluation of the ultimate strength in the presence of fabrication and load induced damage. Initial CT scans are performed along with photomicrographs to determine the location and geometric configuration of voids and ply waviness in an interlaminar tensile (ILT) test specimen. Voids induced initial delamination zones are inserted at ply interfaces. The effects of voids are characterized using a micromechanics model to capture the degradation of initial properties at the ply-level. Two key solution modules are developed and integrated with our Composite Bolted and Bonded Analysis Toolkit for Abaqus (CB~2ATA) toolkit to assign initial intra-ply properties in the perturbed local material coordinates resulting from the ply waviness and insert initial delaminations at corresponding ply interfaces. In order to explore the effects of these defects, two analyses are performed for the ILT specimen with and without the observed defects. The predicted load deflection curves and progression of failure patterns are compared with the experimental measurements.
机译:开发了一种自动解决方法,用于评估复合材料组件中制造引起的缺陷的影响。这种方法的框架包括从X射线计算机断层扫描(CT)扫描数据中提取缺陷,将缺陷映射到有限元模型,表征内部和内部损伤的进展以及它们之间的相互作用以及评估抗拉强度。制造和负载引起的损坏。最初的CT扫描与显微照片一起执行,以确定层间拉伸(ILT)测试样品中空隙和层波纹度的位置和几何构型。空隙引起的初始分层区域插入到层界面处。使用微力学模型来表征空隙的影响,以捕获层级初始性能的下降。开发了两个关键解决方案模块,并将其与我们的Abaqus复合螺栓和粘结分析工具包(CB〜2ATA)工具包集成在一起,以便在由层波纹引起的受扰局部材料坐标中分配初始层内属性,并在相应的层界面处插入初始分层。为了探索这些缺陷的影响,对有无观察到的缺陷的ILT标本进行了两次分析。将预测的载荷挠度曲线和破坏模式的进展与实验测量值进行比较。

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