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Analysis of hygroscopic self-shaping wood at large scale for curved mass timber structures

机译:弯曲块状木材结构的大规模吸湿自定型木材分析

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The growing timber manufacturing industry faces challenges due to increasing geometric complexity of architectural designs. Complex and structurally efficient curved geometries are nowadays easily designed but still involve intensive manufacturing and excessive machining. We propose an efficient form-giving mechanism for large-scale curved mass timber by using bilayered wood structures capable of self-shaping by moisture content changes. The challenge lies in the requirement of profound material knowledge for analysis and prediction of the deformation in function of setup and boundary conditions. Using time- and moisture-dependent mechanical simulations, we demonstrate the contributions of different wood-specific deformation mechanisms on the self-shaping of large-scale elements. Our results outline how to address problems such as shape prediction, sharp moisture gradients, and natural variability in material parameters in light of an efficient industrial manufacturing.
机译:由于建筑设计的几何复杂性不断提高,木材制造业的发展面临挑战。如今,复杂且结构有效的弯曲几何形状易于设计,但仍需要密集的制造和过度的机加工。我们提出了一种通过使用能够通过水分含量变化而自动成型的双层木结构来为大型弯曲块状木材提供有效的成型机构。挑战在于,需要具有丰富的材料知识,才能根据设置和边界条件对变形进行分析和预测。使用依赖于时间和湿度的机械模拟,我们证明了不同木材特定的变形机制对大型元件自成形的贡献。我们的结果概述了如何根据有效的工业制造方法解决形状预测,急剧的水分梯度以及材料参数的自然变化等问题。

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