竹纤维和椰壳在水泥粘接板生产中的应用

Clariza Mae E. Andales, Lorrence M. Animas, M. Dalit, Charles William P. Noriega, Jerome Jordan F. Famadico
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摘要

每年,农业废弃物的数量增长速度都快于该国的城市化速度。来自这个国家和世界各地的人们大多不知道如何利用这些废物,并将它们回收成有用的和可持续的材料。再利用这些农业废弃物的方法之一是利用它们作为木材的替代品来制造板材产品。例如,水泥粘合板是20世纪的修复发明之一,可以作为木材产品的替代品,用于建造内墙和外墙、隔板、天花板、屋顶护套等。本研究旨在通过利用农业废弃物(如竹和椰子纤维)生产水泥粘合刨花板,为这些规模虽小但不断增长的刨花板技术的实证文献和研究做出贡献。利用实验研究设计,研究人员制作了三种不同纤维-水泥比的实验样品。这些样品经过多次测试,以确定其物理和机械性能。结果表明,纤维含量为3.2%的样品板强度最高,达到5.31 MPa,高于刨花板的标准强度。并通过了钉头拉通试验,获得了223.88 kg的最佳效果。此外,它还具有1.03%的厚度膨胀和8.58%的吸水率,这与市售刨花板相比要好得多。
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UTILIZATION OF BAMBOO FIBER AND COCONUT COIR IN THE PRODUCTION OF CEMENT--BONDED BOARD
Each year, the amount of agricultural wastes is growing faster than the rate of urbanization in the country. People from different parts of the country and the world are mostly unaware on how to utilize these wastes and recycle them into useful and sustainable materials. One of the approaches in reusing these agricultural wastes is to utilize them as a substitute for wood in the fabrication of panel products. Cement-- bonded boards, for instance, is one of those restoration inventions of the 20th century which can be an alternative to timber products in constructing internal and external walls, partitions, ceilings, roof sheathing, to name a few. This research aimed to contribute to these small but growing empirical literatures and studies on particleboard technology by to utilizing agricultural wastes such as bamboo and coconut coir fibers in the production of cement--bonded particleboards. Using an experimental research design, the researchers produced three experimental samples with three different fiber -- cement ratios. These samples underwent several tests that determined their physical and mechanical properties. Based on the results, it was found out that the sample boards with 3.2% fiber obtained the highest strength of 5.31 MPa, which was higher than the standard strength for particle boards. It also passed the nail head pull through test and obtained an optimum result of 223.88 kg. Furthermore, it also exhibited 1.03% thickness swelling and 8.58% water absorption which was way better compared to commercially available particle boards.
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