首页> 外文期刊>International Journal of Fracture >Accuracy assessment of a three-dimensional, crack tip element based approach for predicting delamination growth in stiffened-skin geometries
【24h】

Accuracy assessment of a three-dimensional, crack tip element based approach for predicting delamination growth in stiffened-skin geometries

机译:基于三维裂纹尖端元素的方法的准确性评估,该方法可预测蒙皮几何中的分层增长

获取原文
获取原文并翻译 | 示例
           

摘要

Experimental observations of delamination growth in two stiffened-skin geometries are compared to predictions made using a three-dimensional crack tip element based approach. Each geometry consists of a six-ply graphite/epoxy skin co-cured to a six-ply, hat-shaped stiffener containing a preimplanted teflon delamination between the skin and stiffener at the stiffener termination point. One stiffened-skin geometry was loaded in three-point bending and the other had in-plane tension loads applied to the skin. To predict delamination growth, a three-dimensional crack tip element analysis was first performed on each geometry in order to determine the total energy release rate, G, as well as its mode I, II and III components, G_I, G_(II) and G_(III), respectively. These results were used to define a mode mix at each point along the delamination front, G_s/G, where G_s = G_(II) + G_(III). To obtain the delamination toughness, G_c, it was assumed that G_c exhibits the same dependence on G_s/G as on G_(II)/G, where the results for G_c versus G_(II)/G were taken from an earlier experimental study. Next, a comparison of the energy release rate to the toughness at each position along the delamination front was performed, and these results were scaled appropriately in order to predict the sequence of loads and corresponding locations at which the delamination will advance. The predictions were then compared to experimental results that included c-scan images of the test specimens taken at each increment of observed growth, and very good quantitative and qualitative correlations were obtained for both geometries. These results indicate the practicality of, and considerable computational savings that may be achieved by, employing crack tip element analyses for delamination growth predictions in realistic structural geometries.
机译:将在两个硬皮几何形状中分层生长的实验观察结果与使用基于三维裂纹尖端元素的方法进行的预测进行了比较。每种几何形状均由六层石墨/环氧树脂蒙皮组成,六层石墨/环氧树脂蒙皮共固化为六层帽子形加劲肋,其中在加劲肋终止点处在蒙皮和加劲肋之间包含预先植入的聚四氟乙烯分层。一种刚性的皮肤几何形状以三点弯曲方式加载,而另一种则将平面内拉伸载荷施加到皮肤上。为了预测分层的增长,首先对每种几何形状进行三维裂纹尖端元素分析,以确定总的能量释放率G及其模式I,II和III分量G_I,G_(II)和G_(III)。这些结果用于定义沿分层前沿G_s / G的每个点的模式混合,其中G_s = G_(II)+ G_(III)。为了获得分层韧性G_c,假定G_c对G_s / G的依赖性与对G_(II)/ G的依赖性相同,其中G_c对G_(II)/ G的结果取自较早的实验研究。接下来,将能量释放速率与沿分层前沿的每个位置的韧性进行比较,并对这些结果进行适当缩放,以预测载荷的顺序和分层将进行的相应位置。然后将预测结果与实验结果进行比较,实验结果包括在观察到的生长的每个增量处获取的试样的c扫描图像,并且两种几何结构都获得了很好的定量和定性相关性。这些结果表明,在实际的结构几何中,采用裂纹尖端元素分析进行​​分层增长预测是可行的,并且可以节省大量计算。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号