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New Approach to Oil Palm Trunk Core Lumber Material Properties Enhancement via Resin Impregnation

机译:通过树脂浸渍增强油棕树干芯材材料性能的新方法

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In this study, oil palm trunk core-lumber (OPTCL) producing from oil palm based plywood industries waste materials was studied using microwave drying technique for material optimization. Microwave dried oil palm trunk core part was impregnated with phenol formaldehyde resin as a matrix by using high-pressure vacuum impregnation chamber. Microwave drying optimized the drying conditions, avoided burning, shrinkage and increased the permeability of oil palm trunk (OPT). OPTCL impregnated in different times and compared with kiln dried OPTCL and rubber wood (RW). Impregnation of microwave dried core part of oil palm trunk was carried out first time. The microwave dried impregnated OPTCL exhibited higher mechanical properties as compared to microwave dried OPT. Results indicated that OPTCL impregnated for 60 min shows lower mechanical properties as compared to RW. The morphology of resin loaded oil palm trunk core cell wall or lumen ultra structure was analyzed by scanning electron microscope (SEM) and it clearly showed full penetration of resin into OPTCL cell. The mechanical properties of impregnated samples were analyzed according to BS and ASTM standards.
机译:在这项研究中,使用微波干燥技术对油棕基胶合板工业废料生产的油棕树干芯材(OPTCL)进行了优化。通过使用高压真空浸渍室,以酚醛树脂为基质浸渍微波干燥的油棕躯干芯部分。微波干燥优化了干燥条件,避免了燃烧,收缩和增加了油棕树干(OPT)的渗透性。 OPTCL在不同的时间浸渍,并与窑干OPTCL和橡胶木(RW)进行比较。首次对油棕树干的微波干燥核心部分进行浸渍。与微波干燥的OPT相比,微波干燥的浸渍的OPTCL表现出更高的机械性能。结果表明,与RW相比,浸渍60分钟的OPTCL显示出较低的机械性能。用扫描电子显微镜(SEM)分析了树脂负载的油棕树干核心细胞壁或管腔超结构的形态,清楚地表明了树脂完全渗透到OPTCL细胞中。根据BS和ASTM标准分析了浸渍样品的机械性能。

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