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首页> 外文期刊>Journal of Materials Science >Effects of thermal modification on the mechanical properties of the wood cell wall of soft wood: behavior of S2 cellulose microfibrils under tensile loading
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Effects of thermal modification on the mechanical properties of the wood cell wall of soft wood: behavior of S2 cellulose microfibrils under tensile loading

机译:热改性对软木木细胞壁的力学性能的影响:拉伸载荷下S2纤维素微纤维的行为

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摘要

This report examines the effects of thermal modification on the mechanical properties of soft wood, at the cell wall level, to clarify how micro-level behavior (cellulose) relates with macro-level behavior (bulk wood). Both level behaviors were simultaneously measured in thermally modified 5-mm-thick specimens containing annual rings under tensile loading, using synchrotron radiation XRD. Thermal modifications were performed under six sets of conditions: 2 temperature x 3 mass loss (ML). Maximum strain, maximum load, stiffness, and strain energy were obtained at both levels based on corresponding load-strain curves. Data showed that thermal modification tended to reduce the mechanical performance of both, with two exceptions: maximum cellulose strain was increased when wood had been modified at 150 degrees C, and cellulose stiffness was increased when wood had been modified at 180 degrees C (except for the ML-18% condition). The extent of those reductions differed between bulk wood and cellulose. The mechanical behavior modified at 150 degrees C suggested that properties of bulk wood are also influenced by binding elements that connect cellulose microfibrils with the surrounding matrix. When expressed in terms of cellulose-to-bulk (C/B) ratios, different properties were likewise affected by temperature and ML. The tendencies exhibited by C/B ratios of maximum strain and strain energy differed greatly by modification temperature. The C/B ratios of maximum load and stiffness showed similar trends with increasing ML under both temperature conditions although those changes differed in magnitude. Moreover, it seems that not only ML, but also the thermal modification speed, can affect the mechanical behavior of the cellulose microfibrils.
机译:本报告研究了热改性对柔软木材的机械性能的影响,在细胞壁水平上,阐明了微级行为(纤维素)如何与宏观级别行为(散装木材)相关。使用同步辐射XRD在拉伸荷载下,在含有年环的热改性的5mm厚的样本中同时测量两种水平行为。在六组条件下进行热改性:2温度x 3质量损失(m1)。基于相应的载荷 - 应变曲线,在两个级别获得最大应变,最大载荷,刚度和应变能。数据显示,热改性倾向于降低两者的机械性能,有两个例外:当木材在150℃修饰木材时,最大纤维素菌株增加,并且当木材在180℃(以外)时,纤维素刚度增加(除外) ml-18%条件)。减少的程度在散装木材和纤维素之间不同。在150摄氏度下修饰的机械行为表明,散装木材的性质也受到与周围基质的结合元件的结合元素的影响。当以纤维素到批量(C / B)比率表示时,不同的性质同样受温度和mL的影响。通过改性温度的最大应变和应变能量的C / B比率表现出的趋势。最大载荷和刚度的C / B比在温度条件下显示出类似的ML趋势,尽管这些变化的幅度不同。此外,似乎不仅m1,而且是热改性速度,可以影响纤维素微纤维的机械行为。

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  • 来源
    《Journal of Materials Science 》 |2020年第12期| 共10页
  • 作者单位

    Nagoya Univ Grad Sch Bioagr Sci Dept Forest &

    Environm Resources Sci Nagoya Aichi 4648601 Japan;

    Nagoya Univ Grad Sch Bioagr Sci Dept Forest &

    Environm Resources Sci Nagoya Aichi 4648601 Japan;

    Nagoya Univ Grad Sch Bioagr Sci Dept Forest &

    Environm Resources Sci Nagoya Aichi 4648601 Japan;

    Nagoya Univ Grad Sch Bioagr Sci Dept Forest &

    Environm Resources Sci Nagoya Aichi 4648601 Japan;

    Aichi Ctr Ind &

    Sci Technol Toyota 4700356 Japan;

    Nagoya Univ Grad Sch Bioagr Sci Dept Forest &

    Environm Resources Sci Nagoya Aichi 4648601 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
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