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Progressive damage and nonlinear analysis of pultruded composite structures

机译:拉挤复合结构的渐进破坏与非线性分析

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This study combines a simple damage modeling approach with micromechanical models for the progressive damage analysis of pultruded composite materials and structures. Two micromodels are used to generate the nonlinear effective response of a pultruded composite system made up from two alternating layers reinforced with roving and continuous filaments mat (CFM). The layers have E-glass fiber and vinylester matrix constituents. The proposed constitutive and damage framework is integrated within a finite element (FE) code for a general nonlinear analysis of pultruded composite structures using layered shell or plate elements. The micromechanical models are implemented at the through-thickness Gaussian integration points of the pultruded cross-section. A layer-wise damage analysis approach is proposed. The Tsai-Wu failure criterion is calibrated separately for the CFM and roving layers using ultimate stress values from off-axis pultruded coupons under uniaxial loading. Once a failure is detected in one of the layers, the micromodel of that layer is no longer used. Instead, an elastic degrading material model is activated for the failed layer to simulate the post-ultimate response. Damage variables for in-plane modes of failure are considered in the effective anisotropic strain energy density of the layer. The degraded secant stiffness is used in the FE analysis. Examples of progressive damage analysis are carried out for notched plates under compression and tension, and a single-bolted connection under tension. Good agreement is shown when comparing the experimental results and the FE models that incorporate the combined micromechanical and damage models.
机译:这项研究将简单的损伤建模方法与微机械模型相结合,用于拉挤复合材料和结构的渐进式损伤分析。两个微观模型用于生成拉挤复合材料系统的非线性有效响应,该复合材料系统由两层交替的粗纱和连续长丝毡(CFM)增强的交替层组成。这些层具有电子玻璃纤维和乙烯基酯基体成分。拟议的本构和损伤框架集成在有限元(FE)代码中,用于使用层状壳或板单元对拉挤复合结构进行常规非线性分析。微机械模型是在拉挤截面的整个厚度高斯积分点处实现的。提出了一种分层损伤分析方法。对于CFM和粗纱层,Tsai-Wu破坏准则是使用来自单轴载荷下离轴拉挤试件的极限应力值分别校准的。一旦在其中一层中检测到故障,就不再使用该层的微模型。取而代之的是,为失效层激活弹性降解材料模型,以模拟最终计算后的响应。在层的有效各向异性应变能密度中考虑了平面内破坏模式的损伤变量。有限元分析中使用了降低的割线刚度。渐进式损伤分析的示例是在压缩和拉伸下对带缺口的板进行的,在拉伸下进行单螺栓连接。比较实验结果和结合了微机械模型和损伤​​模型的有限元模型时,显示出很好的一致性。

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