Performance of blockboard using particle composite bagasse waste as core layer materials

Indra Mawardi, Nurdin Nurdin, Fakhriza Fakhriza, Ali Jannifar, Hanif Razak, R. Putra Jaya
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Abstract

Using wood as the core blockboard material has affected forest exploration, which causes damage to the ecosystem and the environment. The availability of large amounts of bagasse and styrofoam waste has become a potential alternative to replace wood. This study evaluates the properties of blockboards made from a composite of bagasse waste particles as the core layer, combined with thin plywood as the face layers, and styrofoam waste as the matrix for the bagasse particle composites. The blockboards were prepared through cold compression, and the effects of particles size and the ratio of particles to styrofoam on physical and mechanical properties such as density, moisture content, water resistance, bending strength, internal bond, and screw withdrawal resistance were investigated. The results demonstrated a linear improvement in both physical and mechanical properties with an increase in styrofoam content and a decrease in the particle size of bagasse. The blockboard with fine particles and 70 wt % of styrofoam exhibited the highest density of 0.59 g/cm3, moisture content of 8.54%, water absorption resistance of 33.71%, bending strength of 11.88 MPa, internal bond of 0.64 MPa, and screw withdrawal of 823.36 N. An increase in the density of the core layer was found to enhance all physical and mechanical properties of the blockboard. Consequently, the blockboard produced exhibits the potential to serve as an alternative to traditional blockboards.
使用蔗渣颗粒复合材料作为芯层材料的细木工板的性能
使用木材作为细木工板芯材影响了森林开发,对生态系统和环境造成了破坏。大量蔗渣和发泡胶废料的出现成为替代木材的潜在选择。本研究评估了以蔗渣废料颗粒为芯层、薄胶合板为面层、发泡胶废料为基质的蔗渣颗粒复合材料制成的细木工板的性能。细木工板是通过冷压缩制备的,研究了颗粒大小和颗粒与发泡苯乙烯的比例对物理和机械性能的影响,如密度、含水率、耐水性、弯曲强度、内部粘合力和螺钉抽出阻力。结果表明,随着发泡胶含量的增加和蔗渣粒径的减小,物理和机械性能都有线性改善。含有细颗粒和 70 wt % 发泡苯乙烯的细木工板的密度最高,为 0.59 g/cm3,含水率为 8.54%,吸水率为 33.71%,抗弯强度为 11.88 MPa,内部粘结力为 0.64 MPa,螺钉抽出力为 823.36 N。因此,所生产的细木工板具有替代传统细木工板的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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