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Biomimetic optimisation of branched fibre-reinforced composites in engineering by detailed analyses of biological concept generators

机译:通过对生物概念生成器的详细分析,可对工程中的支化纤维增强复合材料进行仿生优化

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The aim of this study is the biomimetic optimisation of branched fibre-reinforced composites based on the detailed analysis of biological concept generators. The methods include analyses of the functional morphology and biomechanics of arborescent monocotyledons and columnar cacti as well as measurements and modelling of mechanical properties of biomimetic fibre-reinforced composites. The key results show evidence of notch stress reduction by optimised stem-branch-attachment morphology in monocotyledons and columnar cacti. It could be shown that some of these highly interesting properties can be transferred into biomimetic fibre-reinforced composites.
机译:这项研究的目的是基于生物概念生成器的详细分析,对支化纤维增强复合材料进行仿生优化。这些方法包括分析树状单子叶植物和柱状仙人掌的功能形态和生物力学,以及对仿生纤维增强复合材料的力学性能进行测量和建模。关键结果表明,通过优化单子叶植物和柱状仙人掌的茎枝附着形态可降低缺口应力。可以证明,其中一些非常有趣的特性可以转移到仿生纤维增强复合材料中。

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