The Use of Thermally Damaged Wood in Laminated Wood Beam Structures

Vladislav A. Martynov, M. Lisyatnikov, Anastasiya V. Lukina, S. Roshchina
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Abstract

This paper deals with the experimental research results of laminated wood beam structures made using lamellas produced from the pine trees, partially damaged in forest plantations. The purpose of the research has been to study the stress-strain state of laminated wood beam structures utilizing the wood damaged by the thermal exposure caused by a forest fire. Previously, the authors have carried out a significant amount of research into the physical, mechanical and strength properties of thermally damaged pine wood. They have established the dependence of the strength properties of the wood on the degree of fire damage and the wood sampling points according to the height of the stem. Prior to the experiment on the large-scale models in the “Lira 10.12” software complex, numerical studies of four series of single beams with a span of 6.0 m and a section of 140×500 mm produced from the 1st grade pine wood in the upper and lower parts of the section and from thermally damaged pine wood in the middle part of the section. A comparative analysis of the beams has been performed with varying percentages of replacement of the healthy pine wood with the one weakened by the fire along the height of the section: 76, 62, 51 and 36 %. As a result of the numerical calculation of the beams under study using the derived safety factor equaling 1.136, their actual load-bearing capacity has been determined. It has been established that a decrease in the load-bearing capacity of the СB-2 beams equals 12.2 kN, which is 16.05 % relative to the reference beam CB-5, made entirely of the 1st grade pine wood. For the CB-4 beams a decrease in the load-bearing capacity equals 7.4 kN, which is 9.74 % relative to the reference beam CB-5. The difference between the calculated and experimental breaking loads is 9.5 to 14.3 %. The introduction of the safety factor equaling 1.136 in the numerical calculation ensures sufficient convergence of the calculated and experimental data (the measurement error is 3 %). The load-bearing capacity of the reference beam СB-5, made entirely of the 1st grade pine wood, is 12.38 kN/m. For beams CB-1 to CB-4 it equals from 8.53 to 12.06 kN/m. The relative decrease in the load-bearing capacity did not exceed 31.1 to 32.5 %. It has been established that the CB-4 beam, made using 34 % of lamellas produced from thermally damaged pine wood, allows for the load-bearing capacity of 97.5 % relative to the beams made entirely of the 1st grade pine wood.
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在层压木梁结构中使用热损伤木材
本文论述了利用人工林中部分受损的松树所产薄片制作的层压木梁结构的实验研究成果。研究的目的是研究层压木梁结构的应力-应变状态,该结构使用的木材因森林火灾造成的热暴露而受损。在此之前,作者已经对热损伤松木的物理、机械和强度特性进行了大量研究。他们确定了木材强度特性与火灾损坏程度的关系,以及根据茎干高度确定的木材取样点。在对 "Lira 10.12 "软件综合体中的大型模型进行实验之前,对四组跨度为 6.0 米、截面为 140×500 毫米的单梁进行了数值研究,其中截面的上部和下部采用一级松木,截面的中部采用热损伤松木。我们对梁进行了比较分析,在梁的高度上,健康松木与受火灾影响的松木的替换比例各不相同,分别为 76%、62%、51% 和 36%:分别为 76%、62%、51% 和 36%。通过使用等于 1.136 的安全系数对所研究的横梁进行数值计算,确定了横梁的实际承重能力。结果表明,与完全由一级松木制成的 CB-5 参考梁相比,СB-2 梁的承重能力降低了 12.2 千牛,即降低了 16.05%。CB-4 梁的承重能力降低了 7.4 千牛,与 CB-5 参考梁相比降低了 9.74%。断裂荷载的计算值和实验值之间的差异为 9.5% 至 14.3%。数值计算中引入的安全系数等于 1.136,确保了计算数据和实验数据的充分收敛(测量误差为 3%)。完全由一级松木制成的参考梁 СB-5 的承重能力为 12.38 kN/m。CB-1 至 CB-4 梁的承重能力为 8.53 至 12.06 千牛/米。承重能力的相对下降幅度不超过 31.1% 至 32.5%。CB-4型横梁使用了34%的热损伤松木制成的薄片,与完全使用一级松木制成的横梁相比,其承载能力提高了97.5%。
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