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Moisture-induced stresses in spruce cross-laminates

机译:云杉交叉层压板中水分引起的应力

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摘要

Eigenstresses occur in cross-laminated solid wood panels exposed to changes of moisture and are caused by hygroscopicity, volume change and orthotropy of the wood. Consequently, the shape distortions that result may reduce the serviceability and drying stresses may also cause cracks on the surface. It is the objective of this present study to determine and to describe moisture-induced stresses and to determine possibilities to reduce them. In laboratory tests, the stress state was studied by exposing panels to a single moistening step. The stresses were determined by release of strain and dynamic determination of the modulus of elasticity. Numerical simulations completed these tests. A three-dimensional material model considering elastic deformation, moisture-induced swelling and mechano-sorptive deformation was applied. The results show that the annual ring angle and pre-stresses are significant influential factors. In parameter studies, the influence of the input parameters on the results of numerical simulations was studied. The mechano-sorptive effect was found to have a strong influence on the results. Furthermore, the stiffness and coefficients of hygroexpansion of the wood affect the results of the simulations. It was concluded from the findings of this study that vertical annual rings should be applied and that horizontal annual rings should be avoided in the preparation of lamellas. Compressive pre-stresses in the outer layers may be a valid method to reduce the consequences of moisture variations but production costs and relaxation of the pre-stresses are critical factors.
机译:本征应力发生在暴露于水分变化的交叉层压实木面板中,并且是由木材的吸湿性,体积变化和正交各向异性引起的。因此,导致的形状变形可能会降低使用性,而干燥应力也可能导致表面开裂。本研究的目的是确定和描述水分引起的应力,并确定降低应力的可能性。在实验室测试中,通过将面板暴露于单个润湿步骤来研究应力状态。通过释放应变和动态确定弹性模量来确定应力。数值模拟完成了这些测试。应用了考虑弹性变形,湿气膨胀和机械吸附变形的三维材料模型。结果表明,年环角和预应力是重要的影响因素。在参数研究中,研究了输入参数对数值模拟结果的影响。发现机械吸附效果对结果有很大影响。此外,木材的刚度和湿膨胀系数会影响模拟结果。从这项研究的发现可以得出结论,在制备薄片时应采用垂直的年轮,而应避免水平的年轮。外层的压缩预应力可能是减少水分变化后果的有效方法,但生产成本和预应力的松弛是关键因素。

著录项

  • 来源
    《Engineering Structures》 |2010年第2期|600-606|共7页
  • 作者

    Thomas Gereke; Peter Niemz;

  • 作者单位

    ETH Zurich, Institute for Building Materials, Wood Physics, Schafmattstrasse 6, 8093 Zurich, Switzerland;

    ETH Zurich, Institute for Building Materials, Wood Physics, Schafmattstrasse 6, 8093 Zurich, Switzerland;

  • 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

    cross-lamination; finite element method; eigenstress; moisture; wood;

    机译:交叉层压有限元法特征应力湿气;木;

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