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An extended cohesive damage model study of geometrical ratio effects on failure mechanisms of functionally graded sandwiches with multi-layered cores

机译:几何比对多层芯功能梯度三明治破坏机理的扩展内聚损伤模型研究

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摘要

An investigation of geometrical ratio effects on failure mechanisms of functionally graded sandwiches with multi-layered cores (FGSMLC) is presented in this paper. The extended cohesive damage model (ECDM) is used in detailed investigations of geometrical ratio effects on the failure mechanisms of the FGSMLC under three-point bending. The ECDM prediction shows very good agreements with previous experimental work. The ECDM prediction reveals that the FGSMLC with 8-layered graded cores shows loading capacities increased by 64% compared to the one with a homogeneous core in all investigated cases with varied spans. The FGSMLC behaves different failure modes when their geometrical ratio between the depth and the span varies. It is the first time that this investigation explores the correlation between the failure load and the geometrical ratio of the FGSMLC. This investigation provides a sustainable approach to predict detailed failure mechanisms of the FGSMLC in further research and industrial applications.
机译:本文研究了几何比率对功能梯度多层夹心三明治(FGSMLC)破坏机理的影响。扩展内聚损伤模型(ECDM)用于详细研究几何比率对三点弯曲下FGSMLC破坏机理的影响。 ECDM预测显示与先前的实验工作非常吻合。 ECDM预测表明,在所有跨度不同的情况下,具有8层渐变芯的FGSMLC与具有均质芯的FGSMLC相比,载荷能力提高了64%。当FGSMLC的深度和跨度之间的几何比率发生变化时,它们会表现出不同的失效模式。这是本研究首次探索失效载荷与FGSMLC几何比之间的相关性。这项研究为预测​​FGSMLC在进一步研究和工业应用中的详细故障机理提供了一种可持续的方法。

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