...
首页> 外文期刊>Composite Structures >A strain-rate-dependent damage model for evaluating the low velocity impact induced damage of composite laminates
【24h】

A strain-rate-dependent damage model for evaluating the low velocity impact induced damage of composite laminates

机译:用于评估低速冲击复合材料层压板损伤的应变率相关损伤模型

获取原文
获取原文并翻译 | 示例
           

摘要

Low velocity impact (LVI) has always been a potential threaten to composite structures. This out-of-plane dynamic impact load easily leads to a dramatic increase of the strain state in the material transverse plane, which can affect the dynamic stress state and damage evolution of the composite laminate, especially for LVI with a relatively high energy. However, the strain rate effect was always neglected in existing investigations, thus introducing inevitable errors in numerical predictions for engineering practices. To accurately capture the failure process of composite laminates under LVI, a three-dimensional strain-rate-dependent damage model was proposed. This model was composed of three parts: a modified stress–strain relationship for composites under a dynamic stress state; a strain-rate-dependent progressive damage model to evaluate the intra-laminar damage; and a cohesive zone model to examine the inter-laminar delamination. LVI tests with different impact energies were conducted to provide validating data. It is shown that the numerical results from the strain-rate-dependent damage model are highly consistent with the experimental outcomes. The contact force history curves, intra- and inter-laminar damage evolution process are found to be strain rate dependent, and thus the numerical errors predicted by the strain-rate-independent damage model significantly increase with the increment of the applied impact energy, which is unacceptable in practice for LVI with relatively high impact energies.
机译:低速冲击(LVI)一直是复合结构的潜在威胁。这种平面外的动态冲击载荷很容易导致材料横向平面中的应变状态急剧增加,这可能会影响复合材料层压板的动态应力状态并破坏其演化,特别是对于能量相对较高的LVI。但是,应变率效应在现有研究中始终被忽略,从而在工程实践的数值预测中引入了不可避免的误差。为了准确地记录LVI下复合材料层合板的破坏过程,提出了三维应变率相关的损伤模型。该模型由三部分组成:动态应力状态下复合材料的修正应力-应变关系;应变速率相关的渐进损伤模型,用于评估层内损伤;以及用于检查层间分层的内聚区模型。进行了不同冲击能量的LVI测试以提供验证数据。结果表明,应变率相关损伤模型的数值结果与实验结果高度一致。发现接触力历史曲线,层内和层间损伤演化过程与应变率相关,因此,与应变率无关的损伤模型预测的数值误差随着施加的冲击能量的增加而显着增加,这对于具有相对较高冲击能量的LVI在实践中是不可接受的。

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