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首页> 外文期刊>Journal of Materials Science >Structural and mechanical properties of the spines from Echinocactus grusonii cactus
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Structural and mechanical properties of the spines from Echinocactus grusonii cactus

机译:刺chin仙人掌棘的结构和力学性能

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It is intuitional that most cactus spines are hard and sharp, but their structures and properties have never been systematically studied. Here, we report a comprehensive study on the microstructures and mechanical properties of spines from Echinocactus grusonii cactus for the first time by combining optic and scanning electron microscope investigations, x-ray microanalysis, as well as nanoindentation and tensile tests. It is found that the cactus spine consists of fibres with diameter of 5-15 μm and length of hundreds of micrometres and sclerified epidermis, but contains no mineralisation component as some hard substance does. The spine fibres have high crystallinity and in high alignment. Nanoindentation experiments show that the spine has much higher longitude hardness than that of bamboo reported in the literatures, although their transverse hardness is nearly identical to that of woods, crops, and bamboo. The indentation modulus of the spine cell wall is also within the same order of magnitude as woods, crops and bamboo, with detailed value similar to that of bamboo and slightly lower than that of woods and crops. The tensile strength of the dry spine is measured to be 140 MPa within the range of tensile strength of bamboo reported in the literatures. It is also found that the fresh spine has certain toughness, but the dry spine becomes brittle. The high crystallinity and high alignment of fibres in the cactus spines as well as the very small multifibrillar angle within each fibre can explain the special mechanical properties of the spines.
机译:凭直觉,大多数仙人掌的棘刺坚硬而尖锐,但是它们的结构和性质从未得到系统的研究。在这里,我们首次结合光学和扫描电子显微镜研究,X射线显微分析以及纳米压痕和拉伸试验,对刺E棘刺的显微组织和力学性能进行了全面的报道。发现仙人掌的脊柱由直径为5-15μm,长度为数百微米和硬化表皮的纤维组成,但不像某些硬质物质那样包含矿化成分。脊柱纤维具有高结晶度和高取向性。纳米压痕实验显示,尽管横向硬度与木材,农作物和竹子的横向硬度几乎相同,但脊柱的经度硬度却比文献中报道的竹子高得多。脊柱细胞壁的压痕模量也与木材,农作物和竹子处于同一数量级,其详细值与竹子的相似,但略低于木材和农作物。在文献报道的竹的抗拉强度范围内,测得干脊柱的抗拉强度为140MPa。还发现新鲜的脊柱具有一定的韧性,但是干燥的脊柱变脆。仙人掌刺中纤维的高结晶度和高排列性以及每根纤维中非常小的多原纤维角可以解释刺的特殊机械性能。

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