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A Mesoscopic Analytical Model to Predict the Onset of Wrinkling in Plain Woven Preforms under Bias Extension Shear Deformation

机译:介观分析模型可预测偏斜延伸剪切变形下平纹编织预成型坯起皱的发生

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摘要

A mesoscopic analytical model of wrinkling of Plain-Woven Composite Preforms (PWCPs) under the bias extension test is presented, based on a new instability analysis. The analysis is aimed to facilitate a better understanding of the nature of wrinkle formation in woven fabrics caused by large in-plane shear, while it accounts for the effect of fabric and process parameters on the onset of wrinkling. To this end, the mechanism of wrinkle formation in PWCPs in mesoscale is simplified and an equivalent structure composed of bars and different types of springs is proposed, mimicking the behavior of a representative PWCP element at the post-locking state. The parameters of this equivalent structure are derived based on geometric and mechanical characteristics of the PWCP. The principle of minimum total potential energy is employed to formluate the model, and experimental validation is carried out to reveal the effectiveness of the derived wrinkling prediction equation.
机译:在新的不稳定性分析的基础上,提出了在斜伸试验下平纹编织复合材料预成型件(PWCP)起皱的介观分析模型。该分析旨在更好地理解由大的平面内剪切力引起的机织织物中皱纹形成的性质,同时它考虑了织物和工艺参数对起皱的影响。为此,简化了PWCP中尺度皱纹的形成机理,并提出了一种由条和不同类型的弹簧组成的等效结构,以模仿代表性的PWCP元件在锁定后的状态。该等效结构的参数是基于PWCP的几何和机械特性得出的。采用最小总势能原理对模型进行公式化,并通过实验验证揭示了所推导的起皱预测方程的有效性。

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