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Effects of combinations of lamina grade and thickness, and span-to-depth ratios on bending properties of cross-laminated timber (CLT) floor

机译:层板等级和厚度以及跨高比的组合对交叉层压木(CLT)地板弯曲性能的影响

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The aim of this study was to investigate effects of wood species, thickness and lamina combinations, and span-to-depth ratio (R-sd) on bending strength and stiffness of cross-laminated timber (CLT) floor element. CLTs with three different thickness (90 mm, 120 mm, and 150 mm) were manufactured using two species, larch and pine. Rsd was 12:1 for shear specimens and 24:1 for bending specimens. Four-point bending test was carried out in accordance with prEN 16351. The higher density species (larch) CLT showed higher load resistance with larger span length. The load resistances of larch CLT was 1.2 times higher than pine CLT. The maximum span length of larch CLT was 1.1 times longer than pine CLT. As the thickness of CLT was increased, load resistance and span length were also increased. When the thickness of CLT was increased from 90 mm to 150 mm, load resistances was increased by approximately 308% for larch and 310% for pine, and span length was increased by approximately 90% for larch and 89% for pine. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是研究木材种类,厚度和薄层组合以及跨深比(R-sd)对交叉层压木(CLT)地板元件的弯曲强度和刚度的影响。使用落叶松和松树这两种物种制造了三种不同厚度(90毫米,120毫米和150毫米)的CLT。剪切试样的Rsd为12:1,弯曲试样的Rsd为24:1。根据prEN 16351进行了四点弯曲测试。较高密度的物种(落叶松)CLT显示出较高的抗负载能力和较大的跨度。落叶松CLT的负载电阻是松树CLT的1.2倍。落叶松CLT的最大跨度是松树CLT的1.1倍。随着CLT厚度的增加,负载电阻和跨度也随之增加。当CLT的厚度从90毫米增加到150毫米时,落叶松的抗负荷性增加了约308%,松树的抗负荷性增加了310%,落叶松的跨度长度增加了约90%,而松树则增加了89%。 (C)2019 Elsevier Ltd.保留所有权利。

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