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Polyamides from renewable sources as matrices of short fiber reinforced biocomposites

机译:可再生来源的聚酰胺作为短纤维增强生物复合材料的基质

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摘要

At present, in production of commercially available biopolyamides, castor oil is used as one of raw materials. In this paper possibilities of processing biocomposites based on biopoly-amide (commercially delivered by Chinese company Suzhou Hipro Polymers) filled with 10 or 20 wt. % of glass, carbon or flax fibers were presented. Tensile properties (tensile strength, modulus of elasticity and elongation at break) of the composites in their conditioned state and after water soaking were discussed. As the results showed, a strong effect of reinforcement was obtained for all of the composites. The composites with glass and flax fibers have a great elongation and impact resistance. To evaluate fatigue stress of tested materials, simplified shortened Lehr's method was used. The results of this work can be used in the designing process of structural materials with varying stiffness and ability to dissipate energy depending on the expectations of the recipient.
机译:目前,在可商购的生物聚酰胺的生产中,蓖麻油用作原料之一。在本文中,可能会处理基于生物聚酰胺(由中国苏州高普聚合物公司提供)的,填充有10或20 wt%的生物聚酰胺的生物复合材料。提出了玻璃纤维,碳纤维或亚麻纤维的%。讨论了复合材料在其调节状态和水浸泡后的拉伸性能(拉伸强度,弹性模量和断裂伸长率)。结果表明,所有复合材料均具有很强的增强作用。具有玻璃纤维和亚麻纤维的复合材料具有很大的伸长率和抗冲击性。为了评估测试材料的疲劳应力,使用了简化的缩短的Lehr方法。这项工作的结果可用于结构材料的设计过程中,该结构材料具有不同的刚度和消散能量的能力,取决于接收者的期望。

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