Physical Properties Of Particle-Reinforced Particle Board And Gaba Fiber Using Pvac (Polyvinyl Acetate) Filler

None Sudarman Samad, None Ardi Basri, None Utdin Furqon Amali, None Muhammad Rahmat
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Abstract

Traditional materials are often selected and used in the construction of houses and buildings based on local knowledge that has been tested for centuries. The use of sago leaf stalks as a building material has several advantages. They are generally easy to find in tropical areas and have natural properties that allow good air circulation, thereby helping to keep the indoor temperature cool. In addition, this material is also environmentally friendly because it can decompose properly and can be renewed naturally. In an effort to preserve these cultural and traditional values, we can take several steps. First, public education and awareness about the advantages of traditional building materials need to be improved. Organizing workshops or seminars to share knowledge about the use of traditional materials and their benefits can help increase people's appreciation of these materials. The use of sago stalks as building materials can be part of cultural conservation and environmental preservation efforts. By combining traditional knowledge with modern innovation, we can create building solutions that are environmentally friendly, sustainable and maintain our cultural heritage. By using PVAc filler, this study aims to study its effect on the physical properties of the resulting composite material. Variations in the composition of the mix will enable the identification of changes in the characteristics of the composite board and efforts to obtain optimal physical properties.
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Pvac(聚醋酸乙烯酯)填料对颗粒增强刨花板和Gaba纤维物理性能的影响
传统材料通常是根据经过几个世纪考验的当地知识来选择和使用的。使用西米叶柄作为建筑材料有几个优点。它们通常很容易在热带地区找到,并且具有良好的空气循环的自然特性,从而有助于保持室内温度凉爽。此外,这种材料也很环保,因为它可以适当地分解,可以自然地更新。为了保护这些文化和传统价值,我们可以采取几个步骤。首先,需要提高公众对传统建筑材料优点的教育和认识。组织讲习班或研讨会,分享有关使用传统材料及其益处的知识,有助于提高人们对这些材料的欣赏。使用西米杆作为建筑材料可以成为文化保护和环境保护工作的一部分。通过将传统知识与现代创新相结合,我们可以创造出既环保又可持续的建筑解决方案,并维护我们的文化遗产。本研究通过使用PVAc填料,研究其对所得复合材料物理性能的影响。混合料组成的变化将能够识别复合板特性的变化,并努力获得最佳的物理性能。
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