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Mechanical behavior of basalt fibers in a basalt-UP composite

机译:玄武岩复合材料中玄武岩纤维的力学行为

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With the increasing interest in sustainable solutions in material design in the last decade, research on natural materials (animal, vegetal or mineral) has increased at a rapid pace. Of these materials, Basalt Fibers for composite construction provide an interesting set of mechanical properties, equal or above to those of Glass Fibers, with advantages in terms of cost effectiveness and production to vegetable based Natural Fibers. Basalt fibers offer some advantages versus current materials, it is fireproof, requires no material addition, has better mechanical properties than most types of E-Glass, and it is cheaper than Carbon Fiber. This paper studies the mechanical properties of a Basalt Fiber composite in an Unsaturated Polyester matrix produced by Resin Transfer Molding (RTM), with the composites subjected to tensile, compression, shear and flexural tests. The results aligned with the predicted values by using the mixing rule, albeit with a high coefficient of variation, which microscopic analysis confirmed to arise from production issues with RTM.
机译:在过去的十年中,可持续的解决方案日益关注材料的设计,天然的材料(动物,植物或矿物)的研究以迅猛的速度不断增加。在这些材料中,玄武岩纤维复合结构提供了一个有趣的组机械性能,在以基于植物的天然纤维的成本效益和生产方面等于或高于那些玻璃纤维的,具有优势。玄武岩纤维提供了一些优点对电流的材料,它是防火,不需要材料另外,具有更好的机械性能比大多数类型的E玻璃的,并且它比碳纤维便宜。本文研究在通过树脂传递模塑(RTM)制造的不饱和聚酯基体中的玄武岩纤维复合材料的机械性能,具有进行拉伸,压缩,剪切和弯曲试验的复合材料。结果,通过使用混合规则,尽管变异系数高,其显微分析证实从生产问题出现与RTM与预测值一致。

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