针刺香蕉纤维增强工业安全帽结构完整性评价

Jack J Kenned, C. S. Kumar, K. Sankaranarayanasamy
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引用次数: 3

摘要

本工作的目的是制造和分析一种重量轻、可回收、无毒的天然纤维增强工业安全帽。该纤维是从香蕉品种的农业废弃物假茎中提取的。采用简易针冲技术对香蕉纤维进行加工,生产出不经任何化学处理而提高力学性能的针冲非织造香蕉纤维织物。随后,在ISI(印度标准协会)认可的模具中,用通用头盔级聚酯树脂浸渍针刺香蕉纤维,制成针刺香蕉纤维头盔(npbh)。同样制备了30mm随机香蕉纤维头盔(RBFH)和玻璃纤维增强头盔(RGFH)。按ISI标准对纤维含量为10-50 wt. %的预制头盔进行了测试。结果表明,当纤维含量为40 wt. %时,各种钢盔的性能都较好。结果表明,NPBFH的减震性能为245 kgf,抗穿透性为4.75 mm,吸水率为0.61%,大大优于RBFH,与RGFH相当。该研究得出结论,npbh (40 wt. %)在工业应用中可以成为合成纤维增强头盔的潜在替代品。
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Evaluation of structural integrity of needle punched banana fiber reinforced industrial safety helmets
The purpose of this work is to fabricate and analyse a light weight, recyclable, and non-toxic natural fiber reinforced industrial safety helmet. The fibers were extracted from agro-waste pseudostem of nendran variety banana plant. A facile needle punching technique was employed on banana fibers to produce a needle punched non-woven banana fiber fabric of enhanced mechanical properties without any chemical treatment. Subsequently, the needle punched banana fibers were impregnated with general purpose helmet grade polyester resin in an ISI (Indian standards Institute) endorsed mold to fabricate a needle punched banana fiber helmet (NPBFH). Similarly, 30 mm random banana fiber helmet (RBFH) and glass fiber reinforced helmets (RGFH) were fabricated. The fabricated helmets of 10–50 wt. % fiber content were tested as per ISI standards. The results show that the better properties were achieved at 40 wt. % of fiber content for all varieties of helmets. Significantly, the results revealed that the shock absorption, penetration resistance, and water absorption of NPBFH are 245 kgf, 4.75 mm, and 0.61%, respectively, which is much better than RBFH and comparable with RGFH. This study concluded that the NPBFH (40 wt. %) can be a potential replacement of synthetic fiber reinforced helmets for industrial applications.
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