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首页> 外文期刊>Wood Science and Technology >A comparison of nanoindentation cell wall hardness and Brinell wood hardness in jack pine (Pinus banksiana Lamb.)
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A comparison of nanoindentation cell wall hardness and Brinell wood hardness in jack pine (Pinus banksiana Lamb.)

机译:杰克松(Pinus bankiana Lamb。)纳米压痕细胞壁硬度和布氏硬度的比较

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摘要

Nanoindentation is a powerful tool for hardness testing on a very small scale. Since the technique was first introduced for studying wood cell wall mechanics, it has been integrated as an important tool for measuring the modulus of elasticity and hardness of wood cell walls. In this study, hardness measured with nanoindentation (nanohardness) was compared with hardness measured by the standard Brinell test method (Brinell hardness) on jack pine (Pinus banksiana Lamb.) wood. Nanoindentation was performed on both the S2 layer of the secondary cell wall and the middle lamella (ML) of early- and latewood fibers. Four annual growth rings were studied. The influence of growth ring and initial spacing on both measurements was analyzed. The relationship between Brinell hardness, nanoindentation measurements, and average ring density was also studied. Results suggest that Brinell- and nanohardness are controlled by different mechanisms and factors. The location of nanohardness measurements (i.e., S2 layer or ML) also influenced hardness differently. It was concluded that nanomeasurements are not an exact representation of wood mechanical properties conducted at the macro level because of the hierarchical structure of wood. The effect of other factors such as moisture or wood extractive content may also need consideration.
机译:纳米压痕是用于小规模硬度测试的强大工具。自从该技术首次用于研究木质细胞壁力学以来,它已被集成为测量木质细胞壁弹性模量和硬度的重要工具。在这项研究中,将用纳米压痕法测得的硬度(纳米硬度)与通过标准布氏硬度法(布氏硬度)对千斤顶松木(Pinus bankiana Lamb。)木材测得的硬度进行了比较。在二次细胞壁的S2层和早,晚木纤维的中层(ML)上均进行了纳米压痕。研究了四个年轮。分析了生长环和初始间距对这两种测量的影响。还研究了布氏硬度,纳米压痕测量值和平均环密度之间的关系。结果表明,布氏硬度和纳米硬度受不同机制和因素控制。纳米硬度测量的位置(即S2层或ML)对硬度的影响也不同。得出的结论是,由于木材的等级结构,纳米测量不能精确地表示宏观水平上木材的机械性能。还可能需要考虑其他因素(例如水分或木材提取物含量)的影响。

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  • 来源
    《Wood Science and Technology 》 |2014年第1期| 7-22| 共16页
  • 作者单位

    Departement des sciences du bois et de la foret, Universite Laval,Pavilion Gene-H.-Kruger, Quebec, QC G1K 7P4, Canada;

    Pulp, Paper and BioProducts, FPInnovations, Quebec, Canada;

    Department of Forest Products, Swedish University of Agricultural Sciences (SLU),Uppsala, Sweden;

    Department of Forest Products, Swedish University of Agricultural Sciences (SLU),Uppsala, Sweden;

    Departamento de Ingenieria en Maderas, Biomaterials and Nanotechnology Center (CBN),Universidad del Bio-Bio, Conception, Chile;

    Departamento de Ingenieria en Maderas, Biomaterials and Nanotechnology Center (CBN),Universidad del Bio-Bio, Conception, Chile;

    Natural Resources Canada, Canadian Forest Service, Canadian Wood Fibre Centre, Quebec,QC G1V 4C7, Canada;

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