首页> 外文会议>American Society for Composites technical conference >3D Progressive Failure Modeling of Drop-Weight Impact on Composite Laminates
【24h】

3D Progressive Failure Modeling of Drop-Weight Impact on Composite Laminates

机译:三维逐步故障建模对复合层压板的滴重量影响

获取原文

摘要

Composite laminates are susceptible to out-of-plane impact loads due to the lack of reinforcement in the through-thickness direction. Unlike the localized damage induced by a high velocity impact where the incident energy is dissipated near a contact area, low velocity impact damage involves multiple failure mechanisms such as matrix cracking, fiber breakage, and widespread interface delaminations. Depending on the extent of damage, significant reduction in the load-bearing capability of the structure has been observed. The prediction of composite impact damage resistance by a reliable progressive damage analysis tool is essential to reduce intensive and expensive certification tests at structural level. In this work, an enhanced explicit 3D damage model is implemented via VUMAT in Abaqus to perform a drop- weight impact simulation of a [45_4/0_4/-45_4/90_4]_s Hexply AS4/8552 composite laminate. The impact-induced damage and its extent are captured by a 3D Continuum Damage Model (CDM) coupled with an energy driven failure mechanism. The developed module provides a unified solution process for the impact response prediction followed by the residual strength prediction under compression within an explicit solver. Two examples are selected to demonstrate the capability of the progressive failure analysis under dynamic and static loading: 1) a drop-weight test; and 2) an open-hole tension test. Numerical predictions from the developed VUMAT are compared with the test data and predictions using the open source CompDam code developed by NASA.
机译:由于在贯穿厚度方向上缺乏增强,复合层压板易受平面外冲载荷的影响。与在接触面积附近发生入射能量散发的高速冲击引起的局部损坏不同,低速冲击损坏涉及多种故障机制,例如矩阵裂化,纤维破裂和广泛的接口分层。根据损坏程度,已经观察到结构的承载能力显着降低。通过可靠的渐进式损伤分析工具预测复合型损伤损伤阻力对于减少结构水平的密集和昂贵的认证测试至关重要。在这项工作中,通过ABAQUS中的VUMAT实现了增强的显式3D损伤模型,以执行[45_4 / 0_4 / -45_4 / 90_4] _S Hexply AS4 / 8552复合层压板的滴加造模。通过与能量驱动失效机制耦合的3D连续损伤模型(CDM)捕获冲击诱导的损伤及其程度。开发模块为冲击响应预测提供了统一的解决方案过程,然后在显式求解器内压缩下的残余强度预测。选择两个实例以证明动态和静态载荷下渐进式故障分析的能力:1)滴重试; 2)开放式张力测试。使用NASA开发的开源Copdam代码与测试数据和预测进行比较来自开发的VUMAT的数值预测。

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