Physical and mechanical behaviors of thermally modified rubberwood glulam beam under sustained cyclic loading

IF 0.8 4区 工程技术 Q3 FORESTRY Wood and Fiber Science Pub Date : 2020-07-28 DOI:10.22382/wfs-2020-028
T. Pulngern, T. Udtaranakron, K. Chanto
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Abstract

This study evaluated the effect of thermal modification on the physical and mechanical properties of rubberwood glued laminated (glulam) timber. The flexural creep property and cyclic loading behavior were also investigated. The obtained results indicated that the MC and specific gravity of thermally modified rubberwood decreased with an increase in modification temperature. Moreover, the flexural strength of the rubberwood glulam timber at modification temperatures of 180 and 220 o C was 8.57% and 46.72%, respectively, which was less than that of the control rubberwood dried at 90 o C. However, the MOE between the thermally modified rubberwood glulam timber and control specimens was not significantly changed. The flexural creep test indicated that the maximum relative creep of the thermally modified rubberwood timber equaled 0.31, which was lower than that of other natural timber and tended to decrease when increasing the stress level. Various mathematical models were also proposed, and the best-fitted model was found to be the Bailey-Norton power law model. Nevertheless, the cyclic loading results also proved that thermal modification temperature had a direct effect on the ductility index and energy dissipation of rubberwood glulam timber, but it had no significant effect on the impairment of strength.
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热改性胶木胶合木梁在持续循环荷载作用下的物理力学行为
本研究评估了热改性对胶合木物理力学性能的影响。并对其弯曲蠕变特性和循环加载行为进行了研究。结果表明,热改性橡胶木的MC和比重随改性温度的升高而降低。此外,在180℃和220℃的改性温度下,橡胶木胶合木的弯曲强度分别为8.57%和46.72%,低于在90℃干燥的对照橡胶木。然而,热改性橡胶木胶合木材和对照样品之间的MOE没有显著变化。弯曲蠕变试验表明,热改性橡胶木材的最大相对蠕变值为0.31,低于其他天然木材,并随着应力水平的增加而趋于减小。还提出了各种数学模型,发现最适合的模型是Bailey Norton幂律模型。然而,循环加载结果也证明,热改性温度对胶木-胶合木的延展性指数和能量耗散有直接影响,但对强度损伤没有显著影响。
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来源期刊
Wood and Fiber Science
Wood and Fiber Science 工程技术-材料科学:纺织
CiteScore
7.50
自引率
0.00%
发文量
23
审稿时长
>12 weeks
期刊介绍: W&FS SCIENTIFIC ARTICLES INCLUDE THESE TOPIC AREAS: -Wood and Lignocellulosic Materials- Biomaterials- Timber Structures and Engineering- Biology- Nano-technology- Natural Fiber Composites- Timber Treatment and Harvesting- Botany- Mycology- Adhesives and Bioresins- Business Management and Marketing- Operations Research. SWST members have access to all full-text electronic versions of current and past Wood and Fiber Science issues.
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