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Structure-Function Relationships in Macadamia integrifolia Seed Coats – Fundamentals of the Hierarchical Microstructure

机译:澳洲坚果种子皮的结构-功能关系-层次微观结构的基础

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摘要

The shells/coats of nuts and seeds are often very hard to crack. This is particularly the case with Macadamia seed coats, known to exhibit astoundingly high strength and toughness. We performed an extensive materials science characterization of the complex hierarchical structure of these coats, using light and scanning electron microscopy in 2D as well as microCT for 3D characterization. We differentiate nine hierarchical levels that characterize the structure ranging from the whole fruit on the macroscopic scale down to the molecular scale. From a biological viewpoint, understanding the hierarchical structure may elucidate why it is advantageous for these seed coats to be so difficult to break. From an engineering viewpoint, microstructure characterization is important for identifying features that contribute to the high strength and cracking resistance of these objects. This is essential for revealing the underlying structure-function-relationships. Such information will help us develop engineering materials and lightweight-structures with improved fracture and puncture resistance.
机译:坚果和种子的壳/皮通常很难裂开。澳洲坚果种皮尤其如此,已知它具有惊人的高强度和韧性。我们使用2D的光和扫描电子显微镜以及3D的microCT对这些涂层的复杂层次结构进行了广泛的材料科学表征。我们区分了九个层次的层次,这些层次的层次结构表征了从宏观尺度上的整个果实到分子尺度的整个结构。从生物学的角度来看,理解层次结构可以阐明为什么这些种皮很难破裂是有利的。从工程角度来看,微结构表征对于识别有助于这些物体的高强度和抗裂性的特征非常重要。这对于揭示潜在的结构-功能-关系至关重要。这些信息将有助于我们开发具有改善的抗断裂和抗穿刺性的工程材料和轻质结构。

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