提高黄麻纤维增强聚合物复合材料性能的工艺及后处理条件优化

R. Asekin, F. Tabassum, R. Shakif, M. S. Kaiser, S. R. Ahmed
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引用次数: 2

摘要

对改善黄麻纤维增强聚合物复合材料物理力学性能的工艺条件和后处理条件进行了实验研究。研究了复合材料加工过程中压力和温度的单独影响及其综合影响。然后将聚酯树脂基天然纤维复合材料样品在0到250℃的不同温度下热老化一小时。结果表明,温度诱导处理的聚合物基复合材料具有较好的力学性能。这种热处理在加工过程中,使复合材料享受固化效果,并避免不均匀的膨胀和收缩造成的部分变形。此外,当复合材料样品在125℃左右的温度下热老化时,其主要物理和机械性能得到了更多的改善。光学图像的研究表明,复合材料样品的原始颜色在100°C的时效温度下保持不变,然而,当样品的时效温度超过200°C时,复合材料的颜色和力学性能都出现了明显的热降解。通过对比室温和125℃下样品的微观结构图像,也验证了微观结构的改善,从而改善了所制备的可生物降解纤维增强复合材料的物理力学性能。对改善黄麻纤维增强聚合物复合材料物理力学性能的工艺条件和后处理条件进行了实验研究。研究了复合材料加工过程中压力和温度的单独影响及其综合影响。然后将聚酯树脂基天然纤维复合材料样品在0到250℃的不同温度下热老化一小时。结果表明,温度诱导处理的聚合物基复合材料具有较好的力学性能。这种热处理在加工过程中,使复合材料享受固化效果,并避免不均匀的膨胀和收缩造成的部分变形。此外,当复合材料样品在125℃左右的温度下热老化时,其主要物理和机械性能得到了更多的改善。光学图像的研究…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of processing and post-processing conditions for improved properties of jute-fiber reinforced polymer composites
The optimization of some processing and post-processing conditions is experimentally investigated for the improved physical and mechanical properties of a jute-fiber reinforced polymer composite. The individual effects of pressure and temperature as well as their combined effect have been investigated during processing of the composite. The polyester resin based natural fiber composite samples are then thermally aged at different temperatures ranging from 0 to 250°C for a period of one hour. The results show that temperature induced processing of the polymer based composite leads to better mechanical properties compared to the other conditions. This thermal treatment during processing allows the composite to enjoy the curing effect as well as avoid part distortion caused by uneven expansion and contraction. Furthermore, the major physical and mechanical properties are found to improve more when the composite samples are thermally aged at a temperature of around 125°C. The investigation of optical images reveals that the original color of the composite samples remains unchanged up to an ageing temperature of 100°C, however, thermal degradation of the composites becomes evident in terms of both color and mechanical properties when the samples are aged beyond 200°C. The comparison of micro structural images of the samples obtained at room temperature and 125°C also verifies the improvement of micro structures, thereby leading to improved physical and mechanical properties of the present biodegradable fiber reinforced composites.The optimization of some processing and post-processing conditions is experimentally investigated for the improved physical and mechanical properties of a jute-fiber reinforced polymer composite. The individual effects of pressure and temperature as well as their combined effect have been investigated during processing of the composite. The polyester resin based natural fiber composite samples are then thermally aged at different temperatures ranging from 0 to 250°C for a period of one hour. The results show that temperature induced processing of the polymer based composite leads to better mechanical properties compared to the other conditions. This thermal treatment during processing allows the composite to enjoy the curing effect as well as avoid part distortion caused by uneven expansion and contraction. Furthermore, the major physical and mechanical properties are found to improve more when the composite samples are thermally aged at a temperature of around 125°C. The investigation of optical images r...
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