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Free edge strain concentrations in real composite laminates: Experimental-theoretical correlation

机译:实际复合材料层压板中的自由边缘应变浓度:实验理论相关性

摘要

The magnitude of the maximum shear strain at the free edge of axially loaded theta (2)/-theta(2)(s) and (+ or - theta(2) (s) composite laminates was investigated experimentally and numerically to ascertain the actual value of strain concentration in resin matrix laminates and to determine the accuracy of finite element results. Experimental results using moire interferometry show large, but finite, shear strain concentrations at the free edge of graphite-epoxy and graphite-polyimide laminates. Comparison of the experimental results with those obtained using several different finite element representations showed that a four node isoparametric finite element provided the best and most trouble free numerical results. The results indicate that the ratio of maxium shear strain at the free edge to applied axial strain varies with fiber orientation and does not exceed nine for the most critical angle which is 15 deg.
机译:实验和数值研究了轴向加载theta(2)/-theta(2)(s)和(+或-theta(2)(s)复合材料层压板自由边缘处的最大剪切应变的大小,以确定实际的树脂基层压板的应力集中值,并确定有限元结果的准确性。使用莫尔干涉仪的实验结果表明,在石墨-环氧树脂和石墨-聚酰亚胺层压板的自由边缘处,剪切应变的浓度很大,但有限。用几种不同的有限元表示法得到的结果表明,四节点等参有限元提供了最佳和最无故障的数值结果,结果表明,自由边缘的最大剪切应变与施加的轴向应变之比随纤维取向而变化。并且对于最关键的角度(15度)不超过9个。

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