cfrp层合材料铺层角度错位引起的面外变形(堆叠顺序对热变形的影响)

Y. Arao, J. Koyanagi, S. Takeda, Shin Utsunomwa, Niroyuki Kawada
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引用次数: 8

摘要

像望远镜这样的精密结构需要严格的几何稳定性。在使用CFRP(碳纤维增强塑料)层合板进行精密结构时,不可预测的面外变形是一个严重的问题。对称型CFRP层合板的面外变形主要是由于层合角度错位和温度变化的共同作用。本文讨论了碳纤维复合材料层合板的有效叠层顺序,以减轻层合板层合角错位引起的变形。基于层压理论进行了热变形分析。在这个分析中,随机数被添加到每一层作为铺角错位。用蒙特卡罗方法对分析结果进行了统计分析。还采用莫尔曲率圆来评价变形的P-V(峰谷)值。我们用不同的叠加顺序进行了分析。计算结果表明,对称交叉层合板的变形比其他准对称层合板大10倍。在总层数小于12层的情况下,层压板的堆叠顺序对热变形有显著影响。然而,当总层数大于24层时,堆叠顺序对热变形的影响可以忽略不计。考虑不可避免的铺层角偏差,讨论了CFRP反射镜的几何稳定性。假定CFRP反射镜在CFRP层叠板上粘贴背面结构时,可用于宽波长范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Out-of-plane deformation due to the ply angle misalignment in cfrp laminates (the effect of the stacking sequence on thermal deformation)
Strict geometrical stability is required for the precise structures like telescopes. Unpredictable out-of-plane deformation is a serious problem when we use CFRP (Carbon Fiber Reinforced Plastic) laminate to the precise structure. This out-of plane deformation of symmetrical CFRP laminate mainly arise from combination effects of ply angle misalignment and temperature change. We discussed here is effective stacking sequence of CFRP laminate that mitigate the deformation caused by the ply angle misalignment. The analysis based on laminate theory was performed to calculate the thermal deformation. In this analysis, the random numbers were added to each layers as ply angle misalignments. The analytical results were obtained statistically by Monte Carlo method. Mohr's curvature circle was also incorporated to evaluate the deformation as P-V (peak to Valley) values. We performed the analysis with various stacking sequence. It was calculated that the symmetric cross-ply laminates deformed 10 times larger than the other quasi-symmetric laminates. In the case of the total ply number is less than 12, the stacking sequence in the laminate has a significant effects on the thermal deformation. However, if the total number ply number is more than 24, effect of stacking sequence on the thermal deformation becomes negligible. We also discussed the geometrical stability of CFRP mirror by considering unavoidable ply angle misalignment. It was presumed that the CFRP mirror can be used for wide range of wave length when the back structure was attached to CFRP laminates.
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