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Non-destructive evaluation of the mechanical behaviour of chestnut wood in tension and compression parallel to grain

机译:板栗木材在平行于纹理的拉伸和压缩中的力学性能的无损评估

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摘要

The paper addresses the evaluation of strength and stiffness of chestnut wood, in tension and compression parallel to the grain, using different non-destructive techniques (ultrasounds, Resistograph and Pilodyn). Around two hundred timber specimens (divided into compression and tension tests) were tested up to failure, comprising recently sawn timber (which is now available on the market for structural purposes) and what was called old wood, obtained from structural elements belonging to ancient buildings. The possibility of predicting wood properties by application of non-destructive techniques is discussed based on simple linear regression models. Extrapolation of regression models obtained from recent cut wooden material to that obtained from old timber beams is analysed. The results show reasonable correlations between mechanical elastic properties and non-destructive techniques (ultrasounds, Resistograph and Pilodyn). New and old wood mechanical data exhibited a scattered cloud of points, implying in terms of assessment of properties of timber elements in service by regression models that these models should not be supported only on data from recently sawn wood. Therefore, models combining information from new and old wood specimens are proposed based on lower 95% confidence limits of regression lines.
机译:本文使用不同的非破坏性技术(超声波,电阻计和皮洛迪恩),对栗木在平行于谷物的拉伸和压缩中的强度和刚度进行了评估。测试了大约200个木材样品(分为压缩和拉伸测试),直到破裂为止,包括最近锯过的木材(现在在市场上可用于结构目的)和所谓的旧木材,这些木材是从古老建筑的结构元素中获得的。基于简单的线性回归模型,讨论了通过应用非破坏性技术预测木材性能的可能性。分析了从最近切割的木质材料获得的回归模型与从旧木梁获得的回归模型的外推。结果表明,机械弹性和非破坏性技术(超声波,电阻计和皮洛迪)之间存在合理的相关性。新旧木材的机械数据显示出零散的点云,这意味着通过回归模型评估使用中的木材元素的属性时,不应仅基于最近锯切的木材的数据来支持这些模型。因此,基于回归线的95%置信下限,提出了结合新旧木材样本信息的模型。

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