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Moisture-induced stresses perpendicular to grain in cross-sections of timber members exposed to different climates

机译:暴露于不同气候的木材构件横截面中垂直于谷物的水分引起的应力

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摘要

In variable humidity conditions, wood absorbs or desorbs moisture from the air. Unless the change in humidity is very slow, this will develop moisture gradients in the wood sections. These gradients will develop stresses due to constrained swelling or shrinkage strains. These stresses are named moisture-induced stresses. The present paper investigates the main parameters affecting such moisture-induced stresses, including the type of climate, the size of the timber cross-section, and the type of protective coating. A first attempt to identify moisture-induced stresses in different European climatic regions was made. For each climatic region, relative humidity and temperature histories were identified, and characteristic and mean values of yearly and daily variations were calculated. Using a finite element model implemented in Abaqus, the moisture content and stress distribution were computed on different timber cross-sections exposed to the climatic regions and protected with different types of coating. A Fickian moisture transfer model was used to compute the moisture distribution, and a mechanical model for time-dependent behaviour of wood was implemented to calculate the corresponding stress distribution. The variation of moisture was found to result in stresses of magnitudes that would probably cause cracking of wood in the perimeter of any uncoated cross-section size. The use of a protective coating, however, reduced considerably the moisture-induced stresses, and can be regarded as an effective protective measure to avoid cracking due to humidity variations. Considering European climates, Northern climates were found to result in higher surface tensile stresses than Southern climates.
机译:在变化的湿度条件下,木材吸收或解吸空气中的水分。除非湿度变化非常缓慢,否则这将在木材部分形成水分梯度。由于受限制的膨胀或收缩应变,这些梯度将产生应力。这些应力被称为水分引起的应力。本文研究了影响这种由水分引起的应力的主要参数,包括气候类型,木材横截面的大小和保护涂层的类型。进行了首次尝试来确定欧洲不同气候区域中的水分诱导的应力。对于每个气候区域,确定相对湿度和温度历史记录,并计算年和日变化的特征和平均值。使用在Abaqus中实施的有限元模型,计算了暴露于气候区域并用不同类型的涂层保护的不同木材横截面上的水分含量和应力分布。使用Fickian水分传递模型来计算水分分布,并使用木材的时间相关行为力学模型来计算相应的应力分布。发现水分的变化会导致一定程度的应力,该应力可能会导致任何未涂层横截面尺寸的周边木材开裂。然而,使用保护性涂层大大降低了水分引起的应力,并且可以被认为是避免由于湿度变化而破裂的有效保护措施。考虑到欧洲气候,发现北方气候比南方气候导致更高的表面张应力。

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  • 来源
    《Engineering Structures》 |2011年第11期|p.3071-3078|共8页
  • 作者单位

    Department of Architecture, Design and Urban Planning, University of Sassari, Palazzo del Pou Salit, Piazza Duomo 6, 07041 Alghero, Italy;

    VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Finland;

    Department of Construction Engineering and Architecture, University of Brescia, Via Branze 43,25123 Brescia, Italy;

    Department of Construction Engineering and Architecture, University of Brescia, Via Branze 43,25123 Brescia, Italy;

    VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Finland;

  • 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

    abaqus code; climatic zones; finite element analyses; moisture-induced stresses; timber structures;

    机译:abaqus代码;气候带;有限元分析水分引起的压力;木结构;

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