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首页> 外文期刊>Holzforschung >Changes in viscoelastic vibrational properties between compression and normal wood: roles of microfibril angle and of lignin
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Changes in viscoelastic vibrational properties between compression and normal wood: roles of microfibril angle and of lignin

机译:压缩木材与普通木材之间粘弹性振动特性的变化:微纤丝角和木质素的作用

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This study aims at better understanding the respective influ-ences of specific gravity (y), microfibril angle (MFA), and cell wall matrix polymers on viscoelastic vibrational properties of wood in the axial direction. The wide variations of properties between normal wood (NW) and compression wood (CW) are in focus. Three young bent trees (Picea abies, Pinus syl-vestris and Pinus pinaster), which recovered verticality, were sampled. Several observed differences between NW and CW were highly significant in terms of anatomical, physical (y, shrinkage, ClELab colorimetry), mechanical (compressive strength), and vibrational properties. The specific dynamic modulus of elasticity (E'/γ) decreases with increasing MFA, and Young's modulus (E') can be satisfactorily explained by y and MFA. Apparently, the type of the cell wall polymer matrix is not influential in this regard. The damping coeffi-cient (tanδ) does not depend solely on the MFA of NW and CW. The tanδ - E'/γ relationship evidences that, at equivalent E'/γ, the tand of CW is approximately 34% lower than that of NW. This observation is ascribed to the more condensed nature of CW lignins, and this is discussed in the context of previous findings in other hygrothermal and time/frequency domains. It is proposed that the lignin structure and the amount and type of extractives, which are both different in various species, are partly responsible for taxonomy-related damping characteristics.
机译:这项研究旨在更好地理解比重(y),微纤丝角(MFA)和细胞壁基质聚合物对木材在轴向方向上的粘弹性振动特性的影响。普通木材(NW)和压缩木材(CW)之间的性能差异很大。对三棵弯曲的幼树(Picea abies,Pinus syl-vestris和Pinus pinaster)进行了取样,它们恢复了垂直性。在解剖学,物理(y,收缩率,ClELab比色法),机械(抗压强度)和振动特性方面,NW和CW之间观察到的一些差异非常重要。特定的动态弹性模量(E'/γ)随着MFA的增加而降低,而y和MFA可以令人满意地解释杨氏模量(E')。显然,细胞壁聚合物基质的类型在这方面没有影响。阻尼系数(tanδ)不仅取决于NW和CW的MFA。 tanδ-E'/γ关系表明,当等当量E'/γ时,CW的链节比NW低34%。该观察结果归因于CW木质素的更浓缩性质,在其他湿热和时/频域的先前发现的背景下对此进行了讨论。提议木质素的结构以及萃取物的数量和类型在不同物种中都不同,部分原因是与分类学有关的阻尼特性。

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