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Effect of mat structure on modulus of elasticity of oriented strandboard

机译:垫层结构对定向刨花板弹性模量的影响

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A model to predict bending stiffness of oriented strandboard (OSB) was tested with pilot plant experimental data. The experimental procedure developed in this study is unique in that it allows the model to be tested for extensive vertical configurations of strand angle distribution. After validation, the model was used to simulate a typical three-layer cross-oriented OSB panel with a vertical density profile and strand angle distribution measured on industrial panels. Analysis of the simulated vertical distribution of modulus of elasticity (MOE) indicated that the layers near the panel surfaces contributed much more to the effective parallel panel MOE than those close to the panel thickness center, with 80% of parallel MOE coming from the top 41% of weight and 32% of thickness. The effectiveness of methods to increase parallel bending stiffness through improving mat structure was evaluated. Increasing face/core weight ratio from 54/46 to 66/34 resulted in a 3.7% increase in simulated parallel MOE. Alignment of strands in face layers was identified having a greater potential to increase parallel MOE. Simulations with three improved strand angle distributions showed gains of 5.7, 12.0 and 19.8% in parallel MOE compared with a typical strand angle distribution of industrial OSB panels.
机译:使用中试工厂实验数据测试了预测定向刨花板(OSB)弯曲刚度的模型。在这项研究中开发的实验程序是独特的,因为它允许测试模型的钢绞线角度分布的广泛垂直配置。验证后,该模型用于模拟典型的三层交叉定向OSB面板,其垂直密度分布和在工业面板上测得的钢绞线角度分布。对模拟的弹性模量(MOE)的垂直分布的分析表明,靠近面板表面的各层对有效的平行面板MOE的贡献要大于接近面板厚度中心的那些,其中平行MOE的80%来自顶部41重量的%和厚度的32%。评估了通过改善垫子结构来增加平行弯曲刚度的方法的有效性。面部/核心重量比从54/46增加到66/34,导致模拟平行MOE增加3.7%。已确定面层中的股线对齐具有增加平行MOE的更大潜力。与工业OSB面板的典型绞合角分布相比,采用三种改进的绞合角分布进行的仿真显示,平行MOE的增益分别为5.7、12.0和19.8%。

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  • 来源
    《Wood Science and Technology 》 |2008年第3期| 197-210| 共14页
  • 作者单位

    Zhejiang Forestry University, No. 88 Huancheng North Road, Lin'an Hangzhou 311300, China Alberta Research Council, 250 Karl Clark Road, Edmonton, Alberta, Canada T6N 1E4;

    Zhejiang Forestry University, No. 88 Huancheng North Road, Lin'an Hangzhou 311300, China;

    Shunde Polytechnic, East Desheng Road, Shunde, Guangdong 528300, China;

    Alberta Research Council, 250 Karl Clark Road, Edmonton, Alberta, Canada T6N 1E4;

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