竹-菠萝纤维-椰子纤维非挥发性生物板的拉伸试验

S. Salim, T. Rihayat, S. Riskina, Nurhanifa Aidy, M. Razali, Ana Siti Nurmasyitah, Murni, Fitria, Y. Yunus
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引用次数: 0

摘要

生物板被认为在能源效率、石油消耗和碳排放方面优于从传统塑料中提取的化石燃料塑料,但在应用方面处于劣势。在提高生物板制造能力方面的任何突破都有助于减少对石油基聚合物的依赖,减少塑料废物的积累,并更好地控制环境中的二氧化碳排放。因此,本课题研究以生物纤维为基础的天然纤维材料,以达到不挥发性、抗菌性、可生物降解性和良好的硬度、冲击强度等机械强度。在这种情况下,生物板的表征也通过热重分析、光谱分析、红外变换、傅立叶和扫描电子结构形态学等技术进行
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A Tensile Test of Bio-Board Made from Bamboo - Pineapple Fiber - Coconut Fiber as Nonvolatile Material
The Bio board is considered superior to fossil fuel plastic derived from conventional plastics in terms of energy efficiency, petroleum consumption and carbon emissions, but is inferior in its application. Any breakthrough in improving bio board manufacturing capabilities can help reduce dependence on petroleumbased polymers, plastic waste accumulation and better control of CO2 emissions in the environment. Therefore, this research investigates bio fiber based natural fiber materials to achieve non-volatile, antimicrobial, biodegradability and good mechanical strength such as hardness and impact strength. In this case, bio board characterization is also carried out through techniques such as Thermo Gravimetry Analysis and Spectrofotometry Infrared Transformation Fourier and structure morphology through Scanning Electron
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