生物质资源天然纤维增强复合材料的弹道和抗冲击性能

Olatunji Oladimeji Ojo , Mesach Olujoba Olaleke , Kenneth Kanayo Alaneme , Akintunde Olurotimi Dahunsi
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引用次数: 0

摘要

植物纤维作为合成纤维和非生态友好型凯夫拉纤维、聚酰胺纤维和迪尼玛纤维的合适天然替代品日益发展,因为它们的可用性以及对最大成本节约、可持续制造和环境友好的驱动。这组纤维具有独特的特性,如相对较轻的重量,高冲击韧性,比强度和模量。考虑到世界上有大量已开发和未开发的植物纤维,将植物纤维的应用范围扩展到防御需求/抗弹道冲击仍然是一个有趣且不断发展的研究领域。本文对植物纤维增强聚合物复合材料及其多层装甲系统的弹道冲击性能进行了详细的评估。涵盖了硬正面和软装甲复合材料的弹道冲击现象,以及厚度、堆叠顺序、纤维分布、纤维体积百分比等复合材料性能对植物纤维增强复合材料冲击能吸收等弹道性能的影响。最后,对提高植物纤维增强复合材料抗弹道冲击性能的研究前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ballistic and impact resistance performance of natural fiber-reinforced composites from biomass resources
Plant fibers are increasingly evolving as suitable natural substitutes to the synthetic and non-ecofriendly Kevlar, polyamide, and Dyneema fibers due to their availability and the drive towards maximum cost saving, sustainable manufacturing, and environmental friendliness. This set of fibers offers unique characteristics like comparatively low weight, high impact toughness, specific strength, and modulus. Considering the plethora of explored and unexplored plant fibers available in the world, extending the application frontiers of plant fibers to defense needs/ballistic impact resistance has remained an interesting and growing research area. This review provides a detailed appraisal of the ballistic impact performances of plant fiber-reinforced polymeric composites together with their multilayer armour systems available in the literature. It covers the ballistic impact phenomena of hard frontal and soft armour composites as well as the impact of composite properties such as thickness, stacking sequence, fiber distribution, and fiber volume percentage on the impact energy absorption and other ballistic properties of plant-fiber-reinforced composites. Insights on possible research prospects to advance the ballistic impact resistance of plant fiber-reinforced composites are also provided in this paper.
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