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Experimental and Numerical Analysis of Mixed I-214 Poplar/Pinus Sylvestris Laminated Timber Subjected to Bending Loadings

机译:混合I-214杨树/松树Sylvestris层压木材对弯曲载荷的实验性和数值分析

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摘要

The structural use of timber coming from fast growing and low-grade species such as poplar is one of the current challenges in the wood value chains, through the development of engineering products. In this work, a qualitative comparison of the behavior of mixed glued laminated timber made of pine in their outer layers and of poplar in their inner layers is shown and discussed. Single-species poplar and pine laminated timber have been used as control layouts. The investigation includes destructive four-point bending tests and three non-destructive methodologies: finite elements numerical model; semi-analytical model based on the Parallel Axes theorem and acoustic resonance testing. An excellent agreement between experimental and numerical results is obtained. Although few number of samples have been tested, the results indicate that the use of poplar as a low-grade species in the inner layers of the laminated timber can be a promising technology to decrease the weight of the timber maintaining the good mechanical properties of pine. Likewise, the need for the use of the shear modulus in both experimental measurements and numerical analysis is suggested, as well as the need to reformulate the vibration methodology for non-destructive grading in the case of mixed timber.
机译:来自快速生长和低级物种的木材的结构用途,如杨树是木材价值链中当前的挑战之一,通过工程产品的发展。在这项工作中,示出并讨论了在其外层和它们内层中的杨树制成的混合胶合层压木材行为的定性比较。单种杨树和杉木层压木材已被用作控制布局。调查包括破坏性的四点弯曲试验和三种非破坏性方法:有限元数值模型;基于平行轴定理和声学谐振测试的半分析模型。获得实验和数值结果之间的良好一致性。虽然已经测试了几数量的样品,结果表明,在层压木材的内层中使用杨树作为低级物种可以是有希望的技术,以降低木材的重量,保持松树的良好机械性能。同样,提出了在实验测量和数值分析中使用剪切模量的需求,以及在混合木材的情况下需要重新定制非破坏性分级的振动方法。

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