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Bending strength predictions of cross-laminated timber plates subjected to concentrated loading using 3D finite-element-based limit analysis approaches

机译:使用基于3D有限元的极限分析方法预测承受集中载荷的交叉层压木板的弯曲强度

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摘要

Cross-laminated timber (CLT) is an innovative wood product with increasing utilisations. It is well known that the orthotropic and inhomogeneous strength properties of wooden boards have a strong influence on the load bearing capacity of CLT plates, especially when the complex wood fibre distribution due to randomly occurring knots is considered. Thus, high safety factors are used in current standards and a generally accepted numerical tool for the strength prediction of CLT plates is still not available. In this paper, we combine recent advances in 3D numerical limit analysis and a knot reconstruction algorithm, where not only the bending strength of CLT plates under concentrated loading is estimated using the numerical approach, but also the scatter of strength properties resulting from the material's inhomogeneities is investigated using a stochastic approach. For the latter, data collected during the grading process of wooden boards are condensed into so-called strength profiles for single wooden boards. The limit analysis approach then allows a time-efficient simulation of a large number of randomly assembled CLT plates. The comparison of the resulting strength predictions to experiments shows good agreement with respect to both the mean load bearing capacity and the statistical scatter of strength.
机译:交叉层压木材(CLT)是一种利用率不断提高的创新性木材产品。众所周知,木板的正交各向异性和非均匀强度特性对CLT板的承载能力有很大影响,尤其是考虑到由于随机出现的结而造成的复杂木质纤维分布时。因此,在当前标准中使用了高安全系数,并且仍无法获得用于CLT板强度预测的公认数值工具。在本文中,我们结合了3D数值极限分析和结重建算法的最新进展,不仅使用数值方法估算了CLT板在集中载荷下的弯曲强度,而且还分析了材料不均匀性导致的强度特性散布使用随机方法进行调查。对于后者,在木板分级过程中收集的数据被压缩为单个木板的所谓强度分布。然后,极限分析方法可以对大量随机组装的CLT板进行时效模拟。将所得强度预测值与实验进行比较表明,在平均承载能力和强度的统计散布方面都具有良好的一致性。

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  • 来源
    《Composite Structures》 |2019年第7期|912-925|共14页
  • 作者单位

    Vienna Univ Technol, Karlspl 13-202, A-1040 Vienna, Austria;

    Vienna Univ Technol, Karlspl 13-202, A-1040 Vienna, Austria;

    Vienna Univ Technol, Karlspl 13-202, A-1040 Vienna, Austria;

    Univ Oxford, Dept Engn Sci, Parks Rd, Oxford OX1 3PJ, England;

    Vienna Univ Technol, Karlspl 13-202, A-1040 Vienna, Austria;

  • 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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