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A new analytical method for progressive failure analysis of two-dimensional triaxially braided composites

机译:二维三轴编织复合材料渐进破坏分析的新分析方法

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摘要

A new analytical model is developed for predicting progressive damage, equivalent stiffness and strength of a two-dimensional triaxially braided composite (2DTBC) under tensile and compressive loading. In this model, an alternative concept of equivalent lamina elements (ELEs) is first established for the four subcells parallel to the axial direction in a representative unit cell of the 2DTBC; Next, the ELEs are laminated in the thickness direction and integrated via a series-parallel model to establish a two-way stress-strain response within the unit cell, that allows failure initiation and propagation in the ELEs to be examined and ultimate failure strength to be predicted. The analytical results are validated against a finite element simulation of an infinite plate as well as experimental results. Numerical case studies are conducted to assess the sensitivity of analytical results against compressive strength of ELEs. The results demonstrate the capability and efficiency of the present model for predicting the mechanical responses of single-layer and multi-layer 2DTBC specimens under different loading conditions.
机译:开发了一种新的分析模型,用于预测在拉伸和压缩载荷下二维三轴编织复合材料(2DTBC)的渐进损伤,等效刚度和强度。在该模型中,首先为2DTBC的代表性单位单元中平行于轴向的四个子单元建立等效层板元素(ELEs)的替代概念;接下来,将电致发光元件沿厚度方向进行层压,并通过串联-平行模型进行积分,以在晶胞内建立双向应力应变响应,从而可以检查电致发光元件中的失效引发和传播,并确定最终的失效强度。被预测。通过对无限板的有限元模拟以及实验结果对分析结果进行了验证。进行了数值案例研究,以评估分析结果对ELEs抗压强度的敏感性。结果证明了本模型在不同载荷条件下预测单层和多层2DTBC试样力学响应的能力和效率。

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