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Analysis of wood laminated beams reinforced by natural fibres

机译:天然纤维增强木层压梁的分析

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This paper presents an analysis on the viability of the use of natural fibres, in particular sisal fibres, as a reinforcing material in wood laminate structures. The use of natural fibres associated with the manufacturing of beams, with wood from reforestation, is in accordance with current economic interests and ecological appeal. Sisal fibres have attracted attention for presenting adequate mechanical characteristics for such applications. The laminated beams used in this research were constituted by Pinus sp and were reinforced by sisal strips with a thickness of 2 mm glued by Epoxy adhesive on the bottom of the beam on the tensile region. Each lamina had the following dimensions: a width of 50 mm, a height of 20 mm and a length of 1.5 m. For the theoretical analysis of wood laminate beams three models are carried out: stress functions, classical lamination theory and the transformed section method. It was noted that the average differences between the theoretical results and experimental data are given by: 11% and 2% for normal and shear stresses respectively, and around 8%, for displacements. In conclusion, the strengthening of wood laminate beams with sisal fibres is effective in wood structural elements, in which the elastic modulus is at maximum equal to these fibres and also prevents brittle failure on critical tensile regions.
机译:本文介绍了使用天然纤维,特别是Sisal纤维的使用的可行性,作为木质层压结构中的加强材料。使用与梁的制造相关的天然纤维,具有重新造林的木材,符合当前的经济利益和生态吸引力。 Sisal纤维引起了对这种应用的充足机械特性引起了注意力。本研究中使用的层压梁由松弛Sp构成,并通过厚度为2mm的Sisal条带增强,在拉伸区域的梁的底部上通过环氧粘合剂粘合。每个椎板具有以下尺寸:宽度为50毫米,高度为20毫米,长度为1.5米。对于木层压梁的理论分析,进行了三种型号:应力功能,经典层压理论和转化的部分方法。有人指出,理论结果和实验数据之间的平均差异是:正常和剪切应力分别给出11%和2%,为位移量约为8%。总之,使用剑麻纤维的木层压梁的加强在木结构元件中是有效的,其中弹性模量在最大程度上等于这些纤维,并且还防止临界拉伸区域上的脆性失败。

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