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The bending-shear behaviors of steel reinforced fast-growing poplar glulam beams with different shear-span ratios

机译:具有不同剪切跨度比的钢筋快速生长杨树孔梁的弯曲剪切行为

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A new type of steel reinforced fast-growing poplar glulam beam was proposed to improve the mechanical properties of fast-growing poplar glulam beam in this paper. 8 specimens were tested by a four-point bending method. The test was considered two factors: material properties (fast-growing poplar glulam beam, steel reinforced fast-growing poplar glulam beams) and shear-span ratios (1.5, 2, 2.5, 3, 3.5, 4, 6). Test results showed that: (1) The failure mode of the fast-growing poplar glulam beam was interlam-inar shear failure. (2) When shear-span ratio (a/h) was between 3 and 6, the failure modes of the steel reinforced fast-growing poplar glulam beams were flexural failure; when shear-span ratio (a/h) was between 1.5 and 2.5, the failure modes of all steel reinforced fast-growing poplar glulam beams were interlaminar shear failure. (3) Compared with the fast-growing poplar glulam beam, the ductile coeffi-cient, the ultimate load, the ultimate displacement and the initial bending stiffness of the steel reinforced fast-growing poplar glulam beams was increased by 92%, 34.7%, 64.7% and 60.9%, respectively. (4) With the increase of a/h, the ultimate load and the initial bending stiffness of the steel reinforced fast-growing poplar glulam beams decreased gradually, while the ultimate displacement and the ductile coefficient decreased first and then increased. Finally, the theoretical model is respectively proposed to estimate the flexural and shear capacity of the steel reinforced fast-growing poplar glulam beams. (c) 2021 Elsevier Ltd. All rights reserved.
机译:提出了一种新型钢筋快速增长的杨树胶束,以改善本文快速生长的杨树胶束的力学性能。通过四点弯曲方法测试8个标本。该试验被认为是两个因素:材料性质(快速生长的杨树胶束,钢筋快速生长的杨木孔束)和剪切跨度比(1.5,2,2.5,3,3.5,4,6)。测试结果表明:(1)快速增长的杨树胶束的失效模式是Inar-Inar剪切失效。 (2)当剪切跨度比(A / H)在3到6之间时,钢的钢筋快速生长的杨树胶束的失效模式是弯曲失效;当剪切跨度比(A / H)在1.5和2.5之间时,所有钢筋混淆的快速生长杨树孔梁的故障模式都是InterlaMinar剪切失效。 (3)与快速增长的杨树胶束相比,铸模系数,最终载荷,最终位移和钢筋增强快速生长杨树胶束的初始弯曲刚度增加了92%,34.7%, 64.7%和60.9%。 (4)随着A / H的增加,钢筋增强的钢筋增强型杨木孔的最终负荷和初始弯曲刚度逐渐降低,而最终的位移和延展系数首先降低,然后增加。最后,分别提出理论模型来估计钢筋快速生长杨树胶束的弯曲和剪切容量。 (c)2021 elestvier有限公司保留所有权利。

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