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Accuracy Analysis of Classical Lamination Theory and Finite Element Method for Fiber Reinforced Composites under Thermomechanical Loading

机译:热机械负荷下纤维增强复合材料经典层压理论和有限元方法的准确性分析

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The most commonly used composite structure is fiber-reinforced composite, which comprises of matrix and fiber. Due to their superior longitudinal strength but poor transverse strength, layers of composites are stacked in different angular orientations to form laminates, further enhancing the mechanical properties in multiple directions. Hence, laminated composites are utilized for various real-world applications such as infrastructure and automobile structure; thus, it is crucial to accurately assess the overall laminate performance under various loading situations. However, the most common approaches for structural analysis of laminated composites such as finite element method and classical lamination theory yield only approximate values. In this study, we explored the discrepancies between stress and strain values calculated by finite element method, classical lamination theory and experimental data. We applied thermomechanical load in different directions on fiber-reinforced single ply and laminated ply with $[ 0^{circ}, 90^{circ}, 0^{circ}]$, $[pm 45^{circ}]_{4}$, and $[0^{circ}, 90^{circ}]$4 structures. Then, we analyzed the stress-strain, strain-strain and strain-temperature curve to highlight the discrepancy by comparing the slope values.
机译:最常用的复合结构是纤维增强复合材料,其包括基质和纤维。由于它们卓越的纵向强度但横向强度差,复合材料层以不同的角度取向堆叠以形成层压板,进一步提高多个方向的机械性能。因此,层压复合材料用于各种现实世界应用,例如基础设施和汽车结构;因此,在各种装载情况下准确地评估整体层压性能至关重要。然而,叠层复合材料的结构分析的最常见方法诸如有限元方法和经典层压理论的含量仅产生近似值。在这项研究中,我们探讨了通过有限元方法,经典层压理论和实验数据计算的应力和应变值之间的差异。我们在纤维增强的单个层上涂上不同方向的热机械负载,并用$ [0 ^ { rIN},90 ^ { rIN},0 ^ { ric},0 ^ { ric}] $,$ [pm 45 ^ {循环}] _ {4} $,以及$ [0 ^ { rIN},90 ^ { rIC}] $ 4 结构。然后,我们通过比较斜率值来分析应力 - 应变,应变 - 应变和应变 - 温度曲线来突出差异。

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