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All natural composite sandwich beams for structural applications

机译:全天然复合结构夹芯梁

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As part of developing an all natural composite roof for housing application, structural panels and unit beams were manufactured out of soybean oil based resin and natural fibers (flax, cellulose, pulp, recycled paper, chicken feathers) using vacuum assisted resin transfer molding (VARTM) technology. Physical and chemical investigations and mechanical testing of the beams yielded good results in line with desired structural performance. Room temperature curing of an acrylated epoxidized soybean oil (AESO) resin gave a flexural modulus of 1 GPa. Natural fiber reinforcement of 20-55 wt.% fiber increased the flexural modulus to 2-6 GPa. The same resin reinforced with woven E-glass gave a flexural modulus of 17 GPa. Using this type of composite in building construction introduces many advantages such as high strength and stiffness to weight, survivability in severe weather conditions, desired ductility, fatigue resistance, and design flexibility (three-dimensional forms, molded in place, easy to install and structure replacement). A bio-based (natural and biodegradable) matrix reinforced by natural fibers also provides an important environmental advantage, as renewable resources are used instead of petroleum-based materials. Five different structural beams were successfully manufactured and mechanically tested giving good results. Combinations of two different fibers were also introduced to give processing and strength advantages.
机译:作为开发用于房屋应用的全天然复合屋顶的一部分,结构板和单元梁使用真空辅助树脂传递模塑成型(VARTM)由大豆油基树脂和天然纤维(亚麻,纤维素,纸浆,再生纸,鸡毛)制成。 )技术。梁的物理和化学研究以及机械测试产生了符合所需结构性能的良好结果。丙烯酸化的环氧大豆油(AESO)树脂的室温固化产生的弯曲模量为1 GPa。 20-55 wt。%纤维的天然纤维增强将弯曲模量提高到2-6 GPa。用编织的电子玻璃增强的相同树脂的弯曲模量为17 GPa。在建筑结构中使用这种类型的复合材料具有许多优势,例如高强度和重量刚度,在恶劣天气条件下的生存能力,所需的延展性,抗疲劳性和设计灵活性(三维形式,模制就位,易于安装和结构化)替代)。由天然纤维增强的生物基(天然和可生物降解)基质还提供了重要的环境优势,因为使用可再生资源代替石油基材料。成功制造了五种不同的结构梁并进行了机械测试,均获得了良好的效果。还引入了两种不同纤维的组合,以提供加工和强度优势。

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