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Stiffness gradients in vascular bundles of the palm Washingtonia robusta

机译:棕榈华盛顿州罗布斯塔的维管束中的刚度梯度

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摘要

Palms can grow at sites exposed to high winds experiencing large dynamic wind and gust loads. Their stems represent a system of stiff fibrous elements embedded in the soft parenchymatous tissue. The proper design of the interface of the stiffening elements and the parenchyma is crucial for the functioning of the stem. The strategy of the palm to compromise between stiff fibre caps and the soft parenchymatous tissue may serve as a model system for avoiding stress discontinuities in inhomogeneous and anisotropic fibre-reinforced composite materials. We investigated the mechanical, structural and biochemical properties of the fibre caps of the palm Washingtonia robusta at different levels of hierarchy with high spatial resolution. A gradual decrease in stiffness across the fibre cap towards the surrounding parenchymatous tissue was observed. Structural adaptations at the tissue level were found in terms of changes in cell cross sections and cell wall thickness. At the cell wall level, gradients across the fibre cap were found in the degree of orientation of the microfibrils and in the lignin level and composition. The impact of these structural variations in the local material stiffness distribution is discussed.
机译:棕榈可以生长在遭受大风和阵风载荷的强风下。它们的茎代表嵌入软组织实质组织中的刚性纤维成分系统。加强元件和薄壁组织的界面的正确设计对于茎的功能至关重要。手掌在硬质纤维帽和软薄壁组织之间折衷的策略可以用作避免非均质且各向异性的纤维增强复合材料中应力不连续的模型系统。我们调查了在不同层次结构上具有高空间分辨率的华盛顿州强壮棕榈的纤维帽的机械,结构和生化特性。观察到整个纤维帽朝向周围的薄壁组织的刚度逐渐降低。根据细胞横截面和细胞壁厚度的变化发现了在组织水平的结构适应性。在细胞壁水平上,在微纤维的取向程度以及木质素水平和组成中发现了跨纤维帽的梯度。讨论了这些结构变化对局部材料刚度分布的影响。

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