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Calibration Method for Monitoring Hygro-Mechanical Reactions of Pine and Oak Wood by Acoustic Emission Nondestructive Testing

机译:通过声发射无损检测监测松木和橡木木材的Hygro机械反应的校准方法

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摘要

The main issue of wood is its sensitivity to Relative Humidity (RH) variations, affecting its dimensional stability, and thus leading to crack formations and propagations. In situ structural health monitoring campaigns imply the use of portable noninvasive techniques such as acoustic emission, used for real-time detection of energy released when cracks form and grow. This paper proposes a calibration method, i.e., acoustic emission, as an early warning tool for estimating the length of new formed cracks. The predictability of ductile and brittle fracture mechanisms based on acoustic emission features was investigated, as well as climate-induced damage effect, leading to a strain-hardening mechanism. Tensile tests were performed on specimens submitted to a 50% RH variation and coated with chemicals to limit moisture penetration through the radial surfaces. Samples were monitored for acoustic emission using a digital camera to individuate calibration curves that correlated the total emitted energy with the crack propagation, specifically during brittle fracture mechanism, since equations provide the energy to create a new surface as the crack propagates. The dynamic surface energy value was also evaluated and used to define a Locus of Equilibrium of the energy surface rate for crack initiation and arrest, as well as to experimentally demonstrate the proven fluctuation concept.
机译:木材主要问题是对相对湿度(RH)变化的敏感性,影响其尺寸稳定性,从而导致裂缝形成和传播。原位结构健康监测活动意味着使用便携式非侵入性技术,例如声学发射,用于实时检测裂缝形式和生长时释放的能量。本文提出了一种校准方法,即声发射,作为用于估计新的形成裂缝长度的预警工具。研究了基于声发射特征的延性和脆性断裂机制的可预测性,以及气候诱导的损伤效应,导致应变硬化机制。在提交50%RH变化的标本上进行拉伸试验,并涂有化学物质,以限制通过径向表面的水分渗透。使用数码相机监测用于声学发射的样品,以单独校准曲线,其将总发射能量与裂纹传播相关,特别是在脆性断裂机制期间,由于方程提供了在裂缝传播时产生新表面的能量。还评估了动态表面能值,并用于定义能量表面率平衡的轨迹,用于开采和阻止,以及实验展示经过验证的波动概念。

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