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A nonlinear viscoelastic approach to durability predictions for polymer based composite structures

机译:基于非线性粘弹性的聚合物复合材料结构耐久性预测方法

摘要

Current industry approaches for the durability assessment of metallic structures are briefly reviewed. For polymer based composite structures, it is suggested that new approaches must be adopted to include memory or viscoelastic effects which could lead to delayed failures that might not be predicted using current techniques. A durability or accelerated life assessment plan for fiber reinforced plastics (FRP) developed and documented over the last decade or so is reviewed and discussed. Limitations to the plan are outlined and suggestions to remove the limitations are given. These include the development of a finite element code to replace the previously used lamination theory code and the development of new specimen geometries to evaluate delamination failures. The new DCB model is reviewed and results are presented. Finally, it is pointed out that new procedures are needed to determine interfacial properties and current efforts underway to determine such properties are reviewed. Suggestions for additional efforts to develop a consistent and accurate durability predictive approach for FRP structures is outlined.
机译:简要回顾了用于金属结构耐久性评估的当前行业方法。对于基于聚合物的复合结构,建议必须采用新方法来包括记忆或粘弹性效应,这可能会导致延迟失效,而这可能是使用当前技术无法预测的。回顾和讨论了过去十年左右制定并记录的纤维增强塑料(FRP)的耐久性或加速寿命评估计划。概述了计划的局限性,并提出了消除局限性的建议。这些措施包括开发有限元代码以替代以前使用的层压理论代码,以及开发新的试样几何形状以评估分层失败。审查了新的DCB模型并给出了结果。最后,指出需要新的程序来确定界面性质,并且目前正在努力确定这种性质。概述了为开发用于FRP结构的一致且准确的耐久性预测方法的进一步努力的建议。

著录项

  • 作者

    Hiel C. C.; Brinson Hal F.;

  • 作者单位
  • 年度 1991
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  • 原文格式 PDF
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