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NUMERICAL ANALYSIS OF THE EFFECT OF MEMBRANE PRELOADS ON THE LOW-SPEED IMPACT RESPONSE OF COMPOSITE LAMINATES

机译:膜预压对复合材料层合板低速冲击响应影响的数值分析

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This article presents a comprehensive study on the mechanical behaviour of composite laminated plates undergoing a low-speed impact of an external body while they are subjected to in-plane preloads. The effect of such preloading was investigated by means of finite-element analysis of several impact events on laminates with three different span-to-thickness ratios. Tensile and compressive preloads, both uniaxial and biaxial, were considered; in the case of compression, the impact on buckled specimens was also studied. The results obtained show that the span-to-thickness ratio is a fundamental parameter in determining the effect of initial strains. Under a tensile preload, the impact-caused peak stresses were higher than in the case of no preload, and their increment was higher in thicker laminates. Under compression, the most dangerous influence of initial stresses was found at medium span-to-thickness ratios for preloads comparable with the buckling load, whereas, in other cases, negligible or even beneficial effects were observed. These results can justify some experimental findings from the existing literature, even if they were obtained without modelling the material degradation due to damage. Also, they allow us to conclude that the explanation of other phenomena strictly related to damage, as well as an accurate prediction of the extent of damage, requires a failure model.
机译:本文对复合层压板在平面内预紧力作用下受到外部低速冲击的力学性能进行了全面的研究。通过对三种不同跨度-厚度比的层压板的几个冲击事件进行有限元分析,研究了这种预紧力的影响。考虑了单轴和双轴拉伸和压缩预紧力。在压缩的情况下,还研究了对弯曲试样的影响。获得的结果表明,跨度/厚度比是确定初始应变影响的基本参数。在拉伸预紧力下,由冲击引起的峰值应力要比没有预紧力的情况要高,并且在较厚的层压板中,其增大幅度更大。在压缩状态下,对于中等强度的跨层-厚层比,预应力与屈曲载荷相当,发现初始应力的最危险影响,而在其他情况下,观察到的影响却微乎其微甚至有益。这些结果可以证明现有文献中的一些实验结果是正确的,即使是在未对由于损坏而造成的材料降解建模的情况下获得的。此外,它们还使我们得出结论,对与损坏严格相关的其他现象的解释以及对损坏程度的准确预测,需要使用故障模型。

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