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Mechanical Properties of the Rhizome of Arundo donax L.

机译:芦竹根茎的力学特性

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The mechanical properties of rhizome segments of Arundo donax L. were studied in three dimensions: longitudinal (X), transverse-vertical (Y), transverse-horizontal (Z). Tensile, cyclic loading and torsional tests demonstrate that the distinct anisotropy found in the hollow stems is less pronounced in the rhizome. Morphological and anatomical examinations suggest that the mechanical anisotropy of the stem is caused by the arrangement parallel to the stem of the vascular bundles and sclerenchymatous fibres, embedded in lignified parenchyma. Anatomical inhomogeneity is less pronounced in the rhizome due to the short internode lengths, and predominance of nodal regions, where sclerenchymatous fibres form a complex three-dimensional arrangement embedded in unlignified starch-storing parenchyma. Cyclic loading experiments indicate viscoelastic behaviour of the rhizomatous tissues under tensile stress. Additionally, viscoelastic behaviour under torsional stress was studied. Mechanical behaviour of the rhizome under tension up to fracture is discussed with regard to the fracture surfaces, analysed by SEM.
机译:从三个方面研究了Arundo donax L.的根茎节段的力学性能:纵向(X),横向垂直(Y),横向水平(Z)。拉伸,循环载荷和扭转试验表明,在空心茎中发现的独特各向异性在根茎中不太明显。形态学和解剖学检查表明,茎的机械各向异性是由平行于血管束和硬化组织纤维的茎的排列所引起的,所述血管束和硬化组织纤维嵌入木质化的实质中。由于节间长度短,且节状区域占优势,根茎的解剖学不均匀性较不明显,其中硬皮组织纤维形成了复杂的三维排列,埋置在未木质化的贮藏淀粉的薄壁组织中。循环载荷实验表明,在拉伸应力作用下,根茎组织的粘弹性行为。此外,还研究了扭转应力下的粘弹性行为。讨论了在断裂状态下根茎在断裂状态下的力学行为,并通过SEM分析。

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