首页> 外文期刊>Indian Journal of Fibre & Textile Research >Prediction of open-hole tensile strength of unidirectional flax yarn reinforced polypropylene composite by analytical and numerical models
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Prediction of open-hole tensile strength of unidirectional flax yarn reinforced polypropylene composite by analytical and numerical models

机译:解析和数值模型预测单向亚麻纱线增强聚丙烯复合材料的开孔拉伸强度

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摘要

Open-hole tensile strength of unidirectional flax yarn reinforced polypropylene composites has been predicted for different laminates with varying lay-up through analytical and numerical models. Point stress criterion (PSC), modified PSC and finite element modeling (FEM) have been applied to examine the effect of different open-hole sizes on the stress bearing capacity. The characteristic length (d(0)) of the composites has been confirmed by PSC which depends on the specimen geometry. The modified PSC has been used with stress concentration factor, notch sensitivity factor, and exponential parameter for evaluating the open-hole tensile strength. The stress distribution and the open-hole tensile strength have also been obtained by finite element simulation. The best correlations between the experimental and predicted results have been achieved from modified PSC model than with traditional PSC and FEM models.
机译:已经通过分析和数值模型预测了具有不同叠层的不同层合物的单向亚麻纱线增强聚丙烯复合材料的开孔拉伸强度。点应力准则(PSC),改进的PSC和有限元建模(FEM)已用于检验不同裸眼尺寸对应力承受能力的影响。 PSC已确定了复合材料的特征长度(d(0)),这取决于样品的几何形状。改进的PSC已与应力集中系数,缺口敏感性系数和指数参数一起用于评估裸眼抗张强度。应力分布和裸眼抗拉强度也已通过有限元模拟获得。与传统的PSC和FEM模型相比,修改后的PSC模型获得了实验结果与预测结果之间的最佳相关性。

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