Normal Water Effect on the Thermal and the Mechanical Properties of Jute Yarns

Youssef Ben Smail, Fatima Lmai, A. El Moumen, A. Imad
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Abstract

The production of the jute fibers and yarns in enormous amounts and their use in different fields requires an overall comprehension of the evolution of their performance during their use and before their end life. Exposing the jute yarns to the extreme environmental conditions, such as high humidity, severe weathering, severe environments, freezing environments and others can degrade the mechanical properties jute yarns. Besides, the use of these jute yarns on the appropriate applications immersed in normal water may be accelerated them to reach their end-of-life. In this work, the thermal and mechanical properties of the jute yarns immersed in normal water for different duration were evaluated. This environmental condition was selected owing to the high probability to the exposing of yarns to the immersing in normal water on outdoors which affect their performance. The thermal stability of the jute yarns was effectuated in order to explain the chemical and physical changers occurred and linked to the mechanical properties. Results show that the mechanical properties of the jute yarns degraded by along immersion in water compared to the raw one. The tensile stress and the tensile modulus are dropped by 47 % (from 52 to 28 MPa) and 46 % (from 2.28 to 1.24 GPa), respectively for the samples immersed in water along duration (9 months) compared to the raw samples. Besides, the thermal stability of the immersed samples shows that there are no significant changes except a slight high residue for the immersed ones.
普通水对黄麻纱线热性能和机械性能的影响
黄麻纤维和纱线的生产量巨大,并被广泛应用于不同领域,因此需要全面了解其在使用过程中和报废前的性能变化。将黄麻纱暴露在极端环境条件下,如高湿度、严重风化、恶劣环境、冰冻环境等,会降低黄麻纱的机械性能。此外,将这些黄麻纱浸泡在普通水中进行适当的应用可能会加速它们的使用寿命。在这项工作中,对浸泡在普通水中不同时间的黄麻纱的热性能和机械性能进行了评估。之所以选择这种环境条件,是因为纱线在室外浸泡在普通水中很可能会影响其性能。对黄麻纱的热稳定性进行了研究,以解释所发生的化学和物理变化,并将其与机械性能联系起来。结果表明,与原黄麻纱相比,黄麻纱在水中浸泡的时间越长,其机械性能越差。与原始样品相比,浸水时间长(9 个月)的样品拉伸应力和拉伸模量分别下降了 47%(从 52 兆帕降至 28 兆帕)和 46%(从 2.28 GPa 降至 1.24 GPa)。此外,浸泡样品的热稳定性显示,除了浸泡样品的残留物略高之外,没有发生明显变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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