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Characterization of Engineering Elastic Parameters of Oriented Strand Board (OSB) Manufactured from Poplar (Populus deltoides) StrandsUsing Ultrasonic Contact Pulse Transmission

机译:杨树(Populus Deltroi​​des)股线(杨树)股线超声波接触脉冲变速器工程弹性板(OSB)的工程弹性参数表征

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When using wood and wood-based composites, it is necessary to determine the elastic constants of these engineered materials. Oriented strand board (OSB), as structural wood based panel, plays a significant role in the building sector, but the accessibility of such elastic constants of OSB is mostly limited. For this purpose, this study aimed at determining the elastic wave velocity, stiffness and all elastic constants of OSB made from Poplar (Populus deltoides) strands using ultrasonic througha??transmission technique. Laboratory OSBs with the mean density of 760 kg/m3 were made with the average strand sizes of 0.6 mm in thickness, 120 mm in length and 30 mm in width. 8 % phenol-formaldehyde (PF) resin was used with the pressing conditions of 3.43 N/mm2, 190 ?°C and 600 s as pressure, temperature and time of pressing, respectively. The OSBs were assumed as an orthotropic model. Three modulus of elasticity (E1, E2, and E3), three shear modulus (G12, G13 and G23), and six Poissona??s ratios (v12, v21, v13, v31, v23, v32) were calculated by longitudinal, transversal and quasi-transversal waves velocities. Ultrasonically determined stiffness coefficients of OSB were investigated by representative volume elements (RVE). Therefore, the separation of scales requirement is satisfied, and the measured velocities can be applied to determine the engineering elastic parameters of the examined OSB. The results indicate that modulus of elasticity and shear modulus are in the same order of magnitude in comparison with other references, and the values of Poissona??s ratios are valid in ultrasonic range measurement. In conclusion, the ultrasonic contact pulse transmission shows great potential to determine the characterization of elastic wave velocity, stiffness and engineering elastic parameters.
机译:使用木材和木材基复合材料时,必须确定这些工程化材料的弹性常数。定向股线(OSB),作为结构木基板,在建筑物领域发挥着重要作用,但是OSB这种弹性常数的可达性大部分限制。为此目的,该研究旨在使用超声波通过传输技术确定由杨树(杨树Deltoides)链制成的弹性波速度,刚度和所有弹性常数。具有平均密度为760kg / m3的实验室OSB,厚度为0.6mm,长度为120mm,宽度为30mm。 8%酚醛 - 甲醛(PF)树脂分别用于3.43n / mm2,190°C和600秒的压制条件,分别为压力,温度和压制时间。 osb被认为是正交模型。通过纵向横向计算,三种弹性弹性(E1,E2和E3),三种剪切模量(G12,G13和G23)和6个泊陀α的比率(V12,V21,V13,V31,V23,V32)和准横向波速度。通过代表性体积元素(RVE)研究了OSB的超声确定刚度系数。因此,满足尺度要求的分离,并且可以应用测量的速度来确定所检查OSB的工程弹性参数。结果表明,与其他参考的相比,弹性和剪切模量与相同的数量级,并且泊松的比率在超声波范围测量中有效。总之,超声波接触脉冲传输显示出确定弹性波速度,刚度和工程弹性参数的表征的巨大潜力。

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