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Some Physical and Mechanical Properties of Medium-Density Fiberboard Made from Giant Bamboo

机译:巨型竹纤维中密度纤维板的某些物理和机械性能

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摘要

The objective of this study was to evaluate the density, density profile, water swelling and absorption, modulus of elasticity and rupture from static bending, and tensile strength of experimental medium-density fiberboards manufactured using Dendrocalamus giganteus (Munro bamboo). The fiber production was carried out through the chemo-thermo-mechanical pulping process with four different conditions. The panels were made with 10% urea formaldehyde resin based on dry weight of the fibers, 2.5% of a catalyzer (ammonium sulfate) and 2% paraffin. The results indicate that treatments with the highest alkali (NaOH) percentage, time and splinter heating temperature improved the physical properties of the panels. The root-fiber interface was evaluated through scanning electron microscopy in fracture zones, which revealed fibers with thick, inflexible walls. The panels' mechanical properties were affected due to the fiber wall characteristics and interaction with resin. Giant bamboo fiber has potential for MDF production, but other studies should be carried out.
机译:这项研究的目的是评估使用Dendrocalamus giganteus(Munro竹子)制造的实验中密度纤维板的密度,密度分布,水膨胀和吸收,弹性模量和静态弯曲引起的断裂以及拉伸强度。通过化学-热机械制浆工艺在四种不同条件下进行纤维生产。面板是由基于纤维干重的10%脲甲醛树脂,2.5%的催化剂(硫酸铵)和2%的石蜡制成的。结果表明,以最高的碱(NaOH)百分比,时间和碎片加热温度进行处理可以改善面板的物理性能。通过扫描电子显微镜对断裂区域的根纤维界面进行评估,该断裂区域显示出具有厚且不弯曲的壁的纤维。面板的机械性能由于纤维壁特性以及与树脂的相互作用而受到影响。巨型竹纤维具有生产中密度纤维板的潜力,但应进行其他研究。

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