首页> 外文期刊>Journal of Cleaner Production >Comprehensive characterization of industrially discarded fruit fiber, Tamarindus indica L. as a potential eco-friendly bio-reinforcement for polymer composite
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Comprehensive characterization of industrially discarded fruit fiber, Tamarindus indica L. as a potential eco-friendly bio-reinforcement for polymer composite

机译:对工业废弃的水果纤维罗望子(Tamarindus indica L.)进行综合表征,将其作为聚合物复合材料的潜在生态友好型生物增强材料

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摘要

Utilizing industrially discarded bio-waste as a bio-reinforcement for polymer composite is one way to find alternate solution for harmful, conventional man-made vitreous fibers. In this work, one such agro waste, tamarind fruit fiber is tested comprehensively for its potentiality as a reinforcement in unsaturated polyester matrix to optimize the mechanical properties. 40 wt% fiber content provides optimum properties, while further addition of fiber reduces the strength due to ineffective bonding between the fiber and the matrix. This is revealed in the microscopic images of the fractured tensile specimens. The experimental results are verified and correlated with the Hirsch's and Series models and found that Hirsch's model agrees well with the experimental results. Thermal stability and aquatic properties are ascertained by the degradation temperature and the water absorption characteristics in fresh and sea water. The diffusion coefficient is found to follow pseudo-fickian behavior. Comprehensive analysis of this material confirms its applicability for light weight automotive and marine applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用工业上废弃的生物废料作为聚合物复合材料的生物增强剂,是找到有害的传统人造玻璃纤维替代解决方案的一种方法。在这项工作中,对一种这样的农业废料,罗望子果纤维进行了全面测试,以作为不饱和聚酯基质中的增强材料以优化机械性能。 40 wt%的纤维含量可提供最佳性能,而由于纤维与基体之间的无效粘合,进一步添加纤维会降低强度。这在断裂的拉伸试样的显微图像中得以揭示。实验结果经过验证,并与Hirsch模型和Series模型相关联,发现Hirsch模型与实验结果吻合良好。通过降解温度和淡水和海水中的吸水特性确定热稳定性和水生性质。发现扩散系数遵循伪菲克行为。对该材料的综合分析证实了其在轻型汽车和船舶应用中的适用性。 (C)2016 Elsevier Ltd.保留所有权利。

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