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Hot-pressing stress graded aspen veneer for laminated veneer lumber (LVL)

机译:层压单板木材(LVL)的热压应力梯度白杨单板

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Aspen (Populus tremuloides) is emerging as an important species for laminated veneer lumber (LVL) products in North America. During LVL manufacturing, both veneer stress grades and hot-pressing schedules are vital to product performance. In this study, an experimental design with four three-level variables comprising veneer moisture content (MC), veneer stress grade, platen pressure, and glue spread level was employed to investigate their effects on pressing behavior and stiffness and strength properties of LVL panels. The results show that, within the ranges studied, glue spread level and platen pressure were the two most important variables affecting the hot-pressing time needed for the innermost glueline to reach a target temperature of 105℃. The MC from the glue (mainly in the glueline) affected the rise of the innermost temperature more significantly than the MC in the veneer. Among the four variables studied, veneer stress grade and veneer MC were the two dominant variables that affect LVL stiffness and strength properties. Flatwise and edge-wise bending stiffness (MOE) and strength (MOR) of LVL panels made from higher stress grade veneers were higher compared to those made from lower stress grade veneers, but there was no direct correlation between LVL shear strength and veneer stress grade. In addition, LVL edge-wise bending stiffness had the highest veneer MC tolerance among all LVL stiffness and strength properties. Further, LVL stiffness enhancement (the ratio of LVL MOE over veneer MOE) was lower with higher stress grade veneers than with lower stress grade veneers. These findings are useful for manufacturing high-stiffness LVL for engineered applications.
机译:在北美,白杨(Populus tremuloides)逐渐成为单板层压木材(LVL)产品的重要品种。在LVL制造过程中,单板应力等级和热压时间表对产品性能至关重要。在这项研究中,采用具有四个三级变量的实验设计,包括单板含水量(MC),单板应力等级,压板压力和胶水铺展水平,以研究它们对LVL板的压制行为以及刚度和强度特性的影响。结果表明,在所研究的范围内,胶水的铺展程度和压板压力是影响最内层胶线达到目标温度105℃所需的热压时间的两个最重要的变量。与胶合板中的MC相比,胶水产生的MC(主要在胶合线中)对最内层温度的升高影响更大。在研究的四个变量中,单板应力等级和单板MC是影响LVL刚度和强度特性的两个主要变量。由较高应力等级的单板制成的LVL面板的水平和横向弯曲刚度(MOE)和强度(MOR)高于由较低应力等级的单板制成的面板,但LVL剪切强度与单板应力等级之间没有直接关系。此外,LVL边沿弯曲刚度在所有LVL刚度和强度特性中具有最高的贴面MC公差。此外,较高应力等级的薄板的LVL刚度增强(LVL MOE与薄板的MOE之比)低于较低应力等级的薄板。这些发现对于制造用于工程应用的高刚度LVL很有用。

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