Perluasan Kinerja Akustik Limbah Kayu Batang Kelapa Sawit Termodifikasi Bahan Formaldehida

Tetti Novalina Manik, Shaliha Shaliha, S. Siregar, Tanto Budi Santoso, I. Yahya, Mashuri Mashuri, Muhammad Zainuri, Darminto Darminto
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Abstract

Chemical modifications for waste oil palm trunks had carried out as acoustic material. This modification was conducted in two stages. Firstly, formalization with formaldehyde solution and secondly is impregnation with melamine-formaldehyde resin. Formalization was conducted in alkaline condition (pH 10) for 3 days and 5 days. Impregnation was carried out under pressure 3 bar and 5 bar and held for an hour. For completed these modification, the samples was cured at 120oC for 10 minutes and then dried at (103±2)oC to reached moisture content of less than 6%. This modification has changed the chemical structure and the morphology of wood, as shown by the FTIR and SEM results. The samples became denser, stronger and more rigid. Furthermore, the mechanical and physical properties of modified wood are also increasing. The absorption coefficient decreases with increasing formalization time and impregnation pressure. Based on trend of absorption coefficient, BKS wood can be applicated as resonant absorber with work class from A to class B and D.
油棕茎木材的声音废物改进了甲醛材料
对废油棕树干进行了化学改性,使其成为声学材料。这种修改分两个阶段进行。首先用甲醛溶液定型,然后用三聚氰胺甲醛树脂浸渍。在碱性条件下(pH 10)正规化3天和5天。浸渍在3巴和5巴压力下进行,并保持一小时。为了完成这些修饰,样品在120℃下固化10分钟,然后在(103±2)℃下干燥,使水分含量小于6%。红外光谱(FTIR)和扫描电镜(SEM)结果表明,改性改变了木材的化学结构和形貌。样品变得更致密、更坚固、更坚硬。此外,改性木材的机械和物理性能也有所提高。吸附系数随成型时间和浸渍压力的增加而减小。根据吸收系数的变化趋势,BKS木材可作为工作等级从A级到B级和D级的谐振吸收剂。
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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