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首页> 外文期刊>European journal of wood and wood products >Viscoelastic properties of thermo-hydro-mechanically treated beech (Fagus sylvatica L.) determined using dynamic mechanical analysis
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Viscoelastic properties of thermo-hydro-mechanically treated beech (Fagus sylvatica L.) determined using dynamic mechanical analysis

机译:使用动态力学分析测定热压机械处理山毛榉木(FAGUS Sylvatica L.)的粘弹性性能

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摘要

Thermo-hydro-mechanical (THM) processing can improve the intrinsic properties of wood, produce new materials, and give desired form and function to new applications. THM treatments change the mechanical properties of wood and may change its viscoelastic properties as well. Therefore, the objective of this study was to assess the viscoelastic properties of THM-treated wood at several humidity and load levels. To explore these changes, this study applied a THM treatment to beech (Fagus sylvatica L.) wood with steam (620 kPa) and heat (170 degrees C), followed by densification and increased temperature (200 degrees C) in a hot-press, which was then cooled while under pressure. Two initial specimen thicknesses before THM treatment were used to study the difference between density ratios. Specimens were tested in a humidity-controlled dynamic mechanical analyser (DMA) to apply creep stress with different loading levels (20% and 30% of expected modulus of rupture) and relative humidity levels (30%, 50%, and 65% RH). The creep compliance/recovery response was monitored, and dynamic moduli were measured before and after the application of creep stress. The loss modulus measured was highest for specimens tested at 65% RH and lowest in specimens tested at 30% RH, which is a direct result of the viscous response of the material. Increased damping of the specimens was also observed at higher RH, which is typical for wood products due to added moisture in the cell wall acting as a plasticizer to cell wall polymers. Like previous studies, THM treatment lowered the equilibrium moisture content (EMC) of densified wood specimens, which affected their mechanical performance. THM treatment yields higher strength and lower EMC, suggesting that this product could be suitable for structural applications where their service life is in an indoor environment. THM treatment also resulted in decreased creep compliance and recovery compliance as compared to control specimens.
机译:热水机械(THM)加工可以改善木材的内在性质,产生新材料,并给出所需的形式和功能。 THM处理改变木材的机械性能,也可以改变其粘弹性。因此,本研究的目的是评估THM处理的木材的粘弹性特性,在几个湿度和载荷水平下。为了探讨这些变化,本研究将THM治疗应用于山毛榉(Fagus Sylvatica L.)木材用蒸汽(620kPa)和热(170℃),然后在热压机中致密化和温度(200摄氏度) ,然后在压力下冷却。在THM处理之前的两个初始样品厚度用于研究密度比之间的差异。在湿度控制的动态机械分析仪(DMA)中测试标本,以不同的负载水平(预期破裂模量的20%和30%)和相对湿度水平(30%,50%和65%RH)施加蠕变胁迫。监测蠕变顺应性/恢复响应,在蠕变应力施加之前和之后测量动态模量。测量测量的损耗模量对于在65%RH测试的样品中最高,并在30%RH测试的样本中最低,这是材料粘性响应的直接结果。在更高的RH下也观察到样本的增加的抑制,这对于木制品而言,由于在手中的细胞壁中添加了作为增塑剂的含水剂,这是用于细胞壁聚合物的水分。与以前的研究一样,THM处理降低了致密的木质标本的平衡水分含量(EMC),这影响了它们的机械性能。 THM处理产生更高的强度和更低的EMC,表明该产品适用于其使用寿命在室内环境中的结构应用。与对照样本相比,THM治疗也导致蠕变顺应性和恢复顺应性降低。

著录项

  • 来源
    《European journal of wood and wood products》 |2021年第2期|263-271|共9页
  • 作者单位

    InnoRenew CoE Livade 6 Izola 6310 Slovenia|Univ Primorska Andrej Marus Inst Muzejski Trg 2 Koper 6000 Slovenia;

    Forest Prod Lab Madison WI USA;

    Forest Prod Lab Madison WI USA;

    Forest Prod Lab Madison WI USA;

    Oregon State Univ Corvallis OR 97331 USA;

    InnoRenew CoE Livade 6 Izola 6310 Slovenia|Univ Primorska Andrej Marus Inst Muzejski Trg 2 Koper 6000 Slovenia;

  • 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
  • 中图分类
  • 关键词

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