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Mechanical and Damping Properties of Resin Transfer Moulded Jute-Carbon Hybrid Composites

机译:树脂转移模塑黄铜 - 碳复合材料的力学和阻尼性能

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摘要

Hybrid composites with carbon and natural fibres offer high modulus and strength combined with low cost and the ability to damp vibration. This study investigates carbon (CFRP), jute (NFRP) and hybrid (HFRP) fibre reinforced polymers manufactured using the resin transfer moulding process.ududTensile strength reduced with increasing injection pressure for NFRP (72.7 MPa at 4 bar, 45.5 MPa at 8 bar) and HFRP (98.4 MPa at 4 bar, 92.4 MPa at 8 bar). The tensile modulus for HFRP (15.1 GPa) was almost double that for NFRP (8.2 GPa) and one third of CFRP (44.2 GPa).ududLoss factor reduced at small strains (10−4) with increasing pressure for NFRP (0.0123 at 4 bar, 0.0112 at 8 bar) and HFRP (0.0048 at 4 bar, 0.0038 at 8 bar) but all were greater than CFRP (0.0024).ududIncreased injection pressure improved the surface properties and prevented read through of the weave pattern, NFRP (Ra = 2.15 μm at 4 bar, 1.51 μm at 8 bar) and HFRP (Ra = 1.80 μm at 4 bar, 1.42 μm at 8 bar). Hybridisation of low cost, sustainable jute with carbon fibre offers a more sustainable and economic alternative to CFRPs with excellent damping properties.
机译:具有碳和天然纤维的混合复合材料具有高模量和强度,同时具有低成本和衰减振动的能力。本研究调查了使用树脂传递模塑工艺制造的碳(CFRP),黄麻(NFRP)和杂化(HFRP)纤维增强聚合物。 ud ud NFRP的抗拉强度随注射压力的增加而降低(4bar为72.7 MPa,4bar为45.5 MPa 8 bar)和HFRP(4 bar时98.4 MPa,8 bar时92.4 MPa)。 HFRP(15.1 GPa)的拉伸模量几乎是NFRP(8.2 GPa)的两倍,是CFRP(44.2 GPa)的三分之一。 ud ud在小应变(10-4)下,随着NFRP(0.0123)压力的增加,损耗系数降低。在4 bar下为0.0112在8 bar下)和HFRP(4 bar为0.0048,在8 bar为0.0038),但都大于CFRP(0.0024)。 ud ud注射压力的增加改善了表面性能并阻止了织纹的通读,NFRP(4 bar时Ra = 2.15μm,8 bar时1.51μm)和HFRP(4 bar时Ra = 1.80μm,8 bar时1.42μm)。低成本,可持续的黄麻与碳纤维的杂交为具有出色阻尼特性的CFRP提供了更可持续,更经济的选择。

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