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Transverse cracking based numerical analysis and its effects on cross-ply laminates strength under thermo-mechanical degradation

机译:基于横向裂纹的数值分析及其对热机械降解下交叉层压板强度的影响

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摘要

Components manufactured from composite materials are frequently subjected to superimposed mechanical and thermal loadings during their operating service. Both types of loadings may cause fracture and failure of composite structures. When composite cross-ply laminates of type [0(m)/90(n)](s) are subjected to uni-axial tensile loading, different types of damage are set-up and developed such as matrix cracking: transverse and longitudinal cracks, delamination between disoriented layers and broken fibers. The development of these modes of damage can be detrimental for the stiffness of the laminates. From the experimental point of view, transverse cracking is known as the first mode of damage. In this regard, the objective of the present paper is to investigate the effect of transverse cracking in cross-ply laminate under thermo-mechanical degradation. A Finite Element (FE) simulation of damage evolution in composite cross ply laminates of type [0(m)/90(n)](s).subjected to uni-axial tensile loading is carried out. The effect of transverse cracking on the cross-ply laminate strength under thermo-mechanical degradation is investigated numerically. The results obtained by prediction of the numerical model developed in this investigation demonstrate the influence of the transverse cracking on the bearing capacity and resistance to damage as well as its effects on the variation of the mechanical properties such as Young's modulus, Poisson's ratio and coefficient of thermal expansion. The results obtained are in good agreement with those predicted by the Shear-lag analytical model as well as with the obtained experimental results available in the literature.
机译:由复合材料制成的组件在其运行服务期间经常承受叠加的机械和热载荷。两种类型的载荷都可能导致复合结构破裂和破坏。当类型[0(m)/ 90(n)](s)的复合交叉层压材料承受单轴拉伸载荷时,会产生并产生不同类型的损伤,例如基体裂纹:横向和纵向裂纹,错位的层和断裂的纤维之间的分层。这些损坏方式的发展可能不利于层压板的刚度。从实验的角度来看,横向裂纹被称为第一破坏方式。在这方面,本发明的目的是研究在热机械降解下交叉层压板中的横向裂纹的影响。进行[0(m)/ 90(n)](s)型复合交叉层板层压板损伤损伤的有限元(FE)模拟。数值研究了热机械降解条件下横向裂纹对交叉层压板强度的影响。通过对本研究中开发的数值模型进行预测而获得的结果表明,横向裂纹对轴承承载力和抗破坏性的影响以及其对力学性能(如杨氏模量,泊松比和合金系数)变化的影响。热膨胀。获得的结果与剪切滞后分析模型所预测的结果以及文献中可获得的实验结果非常吻合。

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