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Through-thickness ultrasonic characterization of wood and agricultural fiber composites.

机译:木材和农业纤维复合材料的全厚度超声表征。

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Direct contact ultrasonic transmission (UT) method was used to differentiate the effects of particle size on panel properties for oriented strandboard (OSB), redcedar particleboard (RCPB), and bagasse particleboard (BAPB). The measurements were done after conditioning samples at 50 and 70 percent relative humidity (RH) at 24 degrees C. It was found that the equilibrium moisture content (EMC) was positively related to particulate size of the respective panel types. The UT variables attenuation and root mean square voltage values varied significantly at the two EMC levels for the single-layer RCPB. Internal bond (IB) strength of a test panel type was affected by processing factors such as layering, resin content, and type of resin. The inclusion of bark in the RCPB panel had an adverse effect on IB. Ultrasonic velocity was found to be a good indicator of physical particle impediment to the propagation of stress waves in OSB and RCPB panels, but not in BAPB panels. The variable impedance was shown to be a reliable measure of tortuosity of velocity flux through the material. Minimum attenuation and maximum RMS points for RCPB, OSB, and BAPB were obtained at approximate density values 0.75, 0.9, and 1.1 g/cm3, respectively, marking the respective minimum void scattering and absorption in each panel type. For the respective panel types, the greatest transmissivity of stress wave energy occurred at these density values (the zero void densities). Beyond these densities, absolute IB appeared to diminish with density. Hence, an appropriate ultrasonic system calibration of these material factors is essential for optimizing the desired properties of these reconstituted composites in the production line.
机译:使用直接接触超声波传输(UT)方法来区分粒度对定向刨花板(OSB),红杉刨花板(RCPB)和甘蔗渣刨花板(BAPB)的面板性能的影响。在将样品在24摄氏度的50%和70%的相对湿度(RH)下调理后进行测量。发现平衡水分含量(EMC)与各个面板类型的颗粒尺寸成正相关。对于单层RCPB,UT变量的衰减和均方根电压值在两个EMC级别上有很大变化。测试面板类型的内部粘结(IB)强度受诸如分层,树脂含量和树脂类型等加工因素的影响。 RCPB面板中包含树皮对IB有不利影响。发现超声波速度是物理颗粒阻碍应力波在OSB和RCPB面板中传播的好指标,而在BAPB面板中则不是。可变阻抗被证明是通过材料的速度通量曲折性的可靠度量。 RCPB,OSB和BAPB的最小衰减和最大RMS点分别在大约0.75、0.9和1.1 g / cm3的密度值下获得,分别标记了每种面板类型的最小空隙散射和吸收。对于各个面板类型,应力波能量的最大透射率出现在这些密度值(零孔隙密度)处。除了这些密度,绝对IB似乎随密度减小。因此,对这些材料因素进行适当的超声系统校准对于优化生产线中这些重构复合材料的所需性能至关重要。

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