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Design Methods for Load-bearing Elements from Cross-laminated Timber

机译:交叉层压木材承载元件的设计方法

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Cross-laminated timber is an environmentally friendly material, which possesses a decreased level of anisotropy in comparison with the solid and glued timber. Cross-laminated timber could be used for load-bearing walls and slabs of multi-storey timber buildings as well as decking structures of pedestrian and road bridges. Design methods of cross-laminated timber elements subjected to bending and compression with bending were considered. The presented methods were experimentally validated and verified by FEM. Two cross-laminated timber slabs were tested at the action of static load. Pine wood was chosen as a board's material. Freely supported beam with the span equal to 1.9 m, which was loaded by the uniformly distributed load, was a design scheme of the considered plates. The width of the plates was equal to 1 m. The considered cross-laminated timber plates were analysed by FEM method. The comparison of stresses acting in the edge fibres of the plate and the maximum vertical displacements shows that both considered methods can be used for engineering calculations. The difference between the results obtained experimentally and analytically is within the limits from 2 to 31%. The difference in results obtained by effective strength and stiffness and transformed sections methods was not significant.
机译:交叉层压木材是一种环保材料,与固体和胶合木材相比,其具有降低的各向异性水平。交叉层压木材可用于承载壁和多层木材建筑的轴承墙壁和板坯,以及行人和公路桥的装饰结构。考虑了经受弯曲和压缩的交叉层叠木材元件的设计方法。通过FEM实验验证和验证所提出的方法。在静载荷的作用下测试两个交叉层压木板。作为董事会的材料选择了松木。通过均匀分布负载装载的跨度等于1.9μm的跨度自由支撑的光束是考虑的板的设计方案。板的宽度等于1μm。通过FEM方法分析了考虑的交叉层压木板。作用在板的边缘纤维中的应力的比较和最大垂直位移表明,两者认为都可以用于工程计算。实验和分析地获得的结果之间的差异在2至31%的范围内。通过有效强度和刚度和转化的部分方法获得的结果的差异并不重要。

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