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Structure of windmill palm (Trachycarpus fortunei) culm and its compressive properties

机译:风车棕榈(Trachycarpus fortunei)茎秆的结构及其抗压性能

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Windmill palm (Trachycarpus fortunei (Hook.) H. Wendl.) is a typical vascular plant containing parenchyma cells and vascular bundles. The study of palm vascular bundles and their mechanical properties is of primary importance for a better understanding of the mechanical properties of the culm of windmill palm. Various microscopic techniques were used to observe and quantify the variation in vascular bundles along the radial direction, and micromechanical testing machines were used for the determination of mechanical properties of windmill palm culm blocks and pure parenchyma cells. It was observed that the proportional area of vascular tissue and parenchyma cells increased markedly with the decrease in the proportional area of fibrous sheaths and the number density of vascular bundles along the radial direction. The same trend was also observed for the shape of the vascular bundles changing from oval to round. From the inner to the outer layers, the value of the apparent Young's modulus and compressive strength continuously increased with increase in fibrous sheath volume fraction, varying from 0.54 to 1.07 GPa, and 26.83 to 69.33 MPa, respectively. The theoretical average value of the compressive Young's modulus of the fibrous sheath was 2.74 GPa, which is similar to that of the windmill palm leaf sheath fiber. These results provide a better understanding of the compressive performance of windmill palm culm associated with its hierarchical structure.
机译:风车棕榈(Trachycarpus fortunei(Hook。)H. Wendl。)是一种典型的维管植物,其中包含实质细胞和维管束。为了更好地了解风车棕榈的机械性能,研究棕榈血管束及其机械性能至关重要。使用各种显微技术观察和量化沿径向的血管束变化,并使用微机械测试仪确定风车棕榈茎块和纯实质细胞的机械性能。观察到,随着纤维鞘的比例面积的减小和沿径向方向的血管束的数量密度的减少,血管组织和实质细胞的比例面积显着增加。对于从椭圆形变为圆形的维管束形状,也观察到了相同的趋势。从内层到外层,表观杨氏模量和抗压强度值随纤维鞘层体积分数的增加而连续增加,分别从0.54至1.07 GPa和26.83至69.33 MPa不等。纤维鞘的压缩杨氏模量的理论平均值为2.74 GPa,与风车棕榈叶鞘纤维的理论平均值相似。这些结果更好地理解了风车手掌的压缩性能及其分层结构。

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  • 来源
    《Holz als Roh- und Werkstoff》 |2020年第1期|135-142|共8页
  • 作者单位

    Int Ctr Bamboo Dept Biomaterials Beijing Cobuilt Key Lab Bamboo SFA Rattan Sci Technology No. 8 Futong Dong Dajie Wangjing Area Beijing People's Republ;

    Int Ctr Bamboo Dept Biomaterials Beijing Cobuilt Key Lab Bamboo SFA Rattan Sci Technology No. 8 Futong Dong Dajie Wangjing Area Beijing People's Republ|Res Inst Wood Ind Chinese Acad Forestry Key Lab Wood Sci Technology Natl Forestry Grassland Adm Beijing People's Republ;

    Anhui Agr Univ Sch Forestry Landscape Architecture Hefei People's Republ;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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