首页> 外文期刊>International Journal of Fracture >Evaluation of energy release rate-based approaches for predicting delamination growth in laminated composites
【24h】

Evaluation of energy release rate-based approaches for predicting delamination growth in laminated composites

机译:评估基于能量释放速率的方法来预测层压复合材料的分层增长

获取原文
获取原文并翻译 | 示例
       

摘要

A variety of energy release rate-based approaches are evaluated for their accuracy in predicting delamination growth in unidirectional and multidirectional laminated composites. To this end, a large number of unidirectional and multidirectional laminates were tested in different bending and tension configurations. In all cases, the critical energy release rate was determined from the tests in the most accurate way possible, such as by compliance calibration or the area method of data reduction. The mode mix from the tests, however, was determined by a variety of different approaches. These data were then examined to determine whether any of the approaches yielded the result that toughness was a single-valued function of mode mix. That is, for an approach to have accurate predictive capabilities, different test geometries that are predicted to be at the same mode mix must display the same toughness. It was found that variously proposed singular field-based mode mix definitions, such as the #beta# = 0 approach or basing energy release rate components on a finite amount of crack extension, had relatively poor predictive capabilities. Conversely, an approach that used a previously developed crack tip element analysis and which decomposed the total energy release rate into non-classical components was found to have excellent predictive capabilities. It is postulated that this approach is more appropriate for many present-day laminated composites.
机译:在预测单向和多向层压复合材料中分层增长的准确性方面,评估了各种基于能量释放速率的方法。为此,在不同的弯曲和张力配置下测试了大量的单向和多向层压板。在所有情况下,临界能量释放率均以最准确的方式从测试中确定,例如通过合规性校准或数据缩减的面积方法。但是,测试中的模式混合是通过各种不同的方法确定的。然后检查这些数据,以确定是否有任何方法得出的结果是,韧性是模式混合的单值函数。也就是说,对于具有准确预测能力的方法,被预测为处于相同模式混合的不同测试几何必须显示相同的韧性。发现各种提议的基于奇异场的模式混合定义(例如#beta#= 0方法或基于有限量的裂纹扩展的能量释放速率分量)具有相对较差的预测能力。相反,发现使用先前开发的裂纹尖端元素分析并将总能量释放速率分解为非经典成分的方法具有出色的预测能力。据推测,这种方法更适合于当今许多层压复合材料。

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