Development of “Cissus quadrangularis” Composite Material with Elevated Mechanical Properties and Thermal Stability

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Gopinath Gummadavalli, Jens Schuster, Yousuf Pasha Shaik
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Abstract

The main objective of this work is to evaluate the mechanical and thermal strength of a recently developed composite made of Cissus quadrangularis fiber coupled with Polylacticacid (PLA) in comparison to other natural fibers. This study investigated three different fiber and PLA compositions—20%, 30%, and 40%, respectively used to produce a composite. In contrast, another composite with the same volume percentage was created using calcium hydroxide Ca(OH)2 to coat the fibers in order to alter their microcrystalline structure and enhance their mechanical properties. The composite was created using an injection molding procedure. Tests were performed to assess the improved properties. According to a preliminary study, the mechanical characteristics of PLA combined with treated Cissus quadrangularis fiber are increased when compared to PLA coupled with untreated Cissus quadrangularis fiber and neat PLA. Calcium hydroxide acted as a binding agent in fiber to enhance stress transmission in the matrix, increasing tensile and flexural modulus as well as toughness elongation. Further DSC analysis showed that the inclusion of the preceding components increased the glass transition temperature and melting temperature. The temperature at the beginning of deflection has risen as a result of showing how increasing HDT, fiber–matrix adhesion, and fiber content are related. The morphological analysis was performed on both untreated and chemical-treated fiber composites by using an optical microscope to see the interaction with the fiber matrix.
提高机械性能和热稳定性的“四棱草”复合材料的研制
本工作的主要目的是评价最近开发的由四角草纤维偶联聚乳酸(PLA)制成的复合材料的机械和热强度,并与其他天然纤维进行比较。本研究研究了三种不同的纤维和聚乳酸成分- 20%,30%和40%,分别用于生产复合材料。相反,另一种具有相同体积百分比的复合材料是使用氢氧化钙Ca(OH)2来涂覆纤维,以改变其微晶结构并提高其机械性能。这种复合材料是用注射成型工艺制成的。进行了测试以评估改进后的性能。初步研究表明,PLA与处理过的四角草纤维复合后的力学性能比PLA与未处理的四角草纤维和纯PLA复合后的力学性能有所提高。氢氧化钙在纤维中作为粘结剂,增强了应力在基体中的传递,提高了拉伸和弯曲模量以及韧性伸长率。进一步的DSC分析表明,上述组分的加入提高了玻璃化转变温度和熔融温度。挠曲开始时的温度升高,显示出HDT的增加、纤维-基体粘附力和纤维含量的关系。利用光学显微镜对未经处理和化学处理的纤维复合材料进行形态学分析,观察其与纤维基体的相互作用。
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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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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