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On creep rupture prediction of polymer and FRP laminates

机译:关于聚合物和FRP层压板的蠕变断裂预测

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摘要

The development of models to predict the lifetime of polymer matrix composites, creep and fatigue, has been a great challenge over the past years. In this work an energy failure criterion is applied and assessed using published experimental data. Reiner and Weissenberg developed an energy failure criterion based on deviatoric free energy, In this theoretical model failure is part of the complete constitutive description of the material. The free energy is defined and related to the viscoelastic mechanical model. The failure criterion is defined and tested for some polymers. The experimental data for some materials at room temperature reveals some discrepancies and criterion modification is proposed. This modification is in accordance with results presented recently where the critical fracture energy was not constant but strain rate dependent. These energy based criteria are show to verify the universal relation between the creep rate and the time to failure expressed by the classical Monkman Grant relationship.
机译:预测聚合物基复合材料寿命,蠕变和疲劳的模型的开发在过去几年中一直是一个巨大的挑战。在这项工作中,应用了能量失效标准并使用已发布的实验数据进行了评估。 Reiner和Weissenberg开发了基于偏向自由能的能量破坏准则。在该理论模型中,破坏是材料完整本构描述的一部分。定义了自由能并与粘弹性力学模型有关。定义并测试了某些聚合物的失效标准。某些材料在室温下的实验数据显示出一些差异,并提出了修改标准的建议。这种修改与最近提出的结果一致,其中临界断裂能不是恒定的,而是取决于应变速率。这些基于能量的标准显示出可以验证蠕变速率与经典Monkman Grant关系表示的失效时间之间的通用关系。

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