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Effect of Stacking Sequence on Open-Hole Tensile Strength of Composite Laminates

机译:堆垛顺序对复合材料层压板开孔拉伸强度的影响

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The effect of a ply stacking sequence on the open-hole tensile strength of composite laminates has been investigated both numerically and experimentally. A finite element technique has been developed that includes the subcritical damage within and between the plies. It is thus able to capture, in some detail, the effects of variation in stacking sequence. All possible permutations of 0, 90, and ±45 deg plies in a quasi-isotropic layup have been analyzed. Variations in strength have been observed and explained in terms of subcritical damage development. Two stacking sequences showing different behavior were chosen for scaling in the thickness direction by increasing the ply thickness. Analysis of the first predicted a significant decrease in strength and a change in failure mode from fiber-dominated to delamination-dominated failure with increasing thickness. The second predicted no such decrease in strength or change of failure mode. Both of these stacking sequences were then tested experimentally at both thicknesses, and excellent agreement with the numerical models was obtained, both in terms of damage mode and failure stress.
机译:数值和实验研究了层板堆叠顺序对复合材料层压板开孔拉伸强度的影响。已经开发了一种有限元技术,该技术包括层内部和层​​之间的亚临界损伤。因此,它能够更详细地捕获堆叠顺序变化的影响。分析了准各向同性铺层中0、90和±45度铺层的所有可能排列。已经观察到强度的变化,并根据亚临界损伤的发展进行了解释。选择两个显示不同行为的堆叠顺序,以通过增加层厚度在厚度方向缩放。对第一个模型的分析预测,随着厚度的增加,强度将显着下降,破坏模式将从纤维为主转变为分层为主。第二个预测没有强度下降或失效模式改变。然后,对这两种堆积顺序进行了两种厚度的实验测试,无论是在破坏模式还是破坏应力方面,都与数值模型取得了很好的一致性。

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