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Nondestructive Testing of Mechanical Properties of Pine Laminated Veneer Lumber

机译:松树层压板材木材机械性能的无损检测

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Laminated Veneer Lumber (LVL) panels made from pine (Pinus sylvestris L. Var. mongolica Litven.) veneers were tested for mechanical properties and prediction models in this study. Three different nondestructive testing (NDT) methods and the static bending test were conducted on the LVL. The NDT methods included the longitudinal vibration method, longitudinal transmission method and flexural vibration method. The effects of veneer thickness on the dynamic Young's modulus and the modulus of elasticity (MOE) of pine LVL with vertical load were investigated. There were four variety thickness veneers including 2.2 mm, 2.6 mm, 3.0 mm and 3.4 mm. The results showed that the dynamic Young's modulus and MOE of LVL diminished with the increase of veneer thickness, there was a strong linearity correlation between each dynamic Young's modulus and the static MOE, and the prediction models of mechanical properties can be used to predict MOE of pine LVL.
机译:由松树制成的层压板材(LVL)面板(Pinus Sylvestris L. VAR。蒙古人Litven。)在本研究中测试了机械性能和预测模型的贴件。在LVL上进行三种不同的无损检测(NDT)方法和静态弯曲试验。 NDT方法包括纵向振动方法,纵向传动方法和弯曲振动方法。研究了单板厚度对具有垂直载荷的动态杨氏模量和松性幼隙模量和弹性模量(MOE)的影响。有四个品种厚度贴面,包括2.2 mm,2.6 mm,3.0 mm和3.4 mm。结果表明,随着单板厚度的增加,LVL的动态杨氏模量和MOE减少,每个动态杨氏模量和静态MOE之间存在强的线性相关性,并且机械性能的预测模型可用于预测MOE松树lvl。

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