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首页> 外文期刊>Wood and Fiber Science >CELL-WALL MECHANICAL PROPERTIES OF BAMBOO INVESTIGATED BY IN-SITU IMAGING NANOINDENTATION
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CELL-WALL MECHANICAL PROPERTIES OF BAMBOO INVESTIGATED BY IN-SITU IMAGING NANOINDENTATION

机译:原位成像纳米压印法研究竹的细胞壁力学性能

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A novel in-situ imaging nanoindentation technique was used to investigate the cell-wall mechanical properties of bamboo fibers and parenchyma cells. In-situ imaging confirmed neither "piling up" nor "sinking in" occurred around the indentations in thecell walls. The load-displacement curves revealed different deformation mechanisms of the cell walls when indented, respectively, in the longitudinal and transverse direction of bamboo fibers. There existed significant differences in MOE between longitudinal (16.1 GPa) and transverse direction (5.91 GPa) for the cell walls of bamboo fibers, while no differences were significant in hardness. Furthermore, the measured longitudinal MOE and hardness of parenchyma cell walls were 5.8 GPa and 0.23 GPa. Thiscorresponds to 33% and 63% of the corresponding value of bamboo fibers. It was found that the longitudinal MOE of the cells of bamboo fibers remained almost constant from the outer portion to the inner portion of bamboo culms, while hardness showed a decreasing tendency. It was concluded that the nanoindentation technique was capable of effectively characterizing the mechanical properties of bamboo at the cellular level, though it might underestimate the real longitudinal MOE of the cell walls. The results highlighted the extreme importance of locating indentations at the nano scale for the mechanical characterization of complicated natural biomaterials such as wood and bamboo.
机译:一种新颖的原位成像纳米压痕技术被用来研究竹纤维和薄壁细胞的细胞壁力学性能。原位成像证实在细胞壁的凹痕周围既没有“堆积”也没有“下沉”。当沿竹纤维的纵向和横向分别压入时,载荷-位移曲线揭示了细胞壁的不同变形机制。竹纤维的细胞壁在纵向(16.1 GPa)和横向(5.91 GPa)之间的MOE存在显着差异,而硬度没有显着差异。此外,薄壁细胞壁的纵向纵向MOE和硬度分别为5.8 GPa和0.23 GPa。这分别对应于竹纤维相应值的33%和63%。发现竹纤维的细胞的纵向MOE从竹茎的外部到内部几乎保持恒定,而硬度显示出降低的趋势。结论是,纳米压痕技术能够有效地表征竹在细胞水平上的机械性能,尽管它可能低估了细胞壁的真实纵向MOE。结果突出了在纳米尺度上定位压痕对于复杂表征天然生物材料(如木材和竹子)的机械特性的极端重要性。

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