Effect of Benzoyl Chloride and Fiber Loading on Mechanical Properties and Biodegradation of Poly Lactic Acid/Sugarcane Bagasse Fibre Composites

Zubairu Zulyadain, J. M. Yelwa, Shuaibu Abdullahi, Ibrahim Umar Gwangwazo, Omolade Ojo
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Abstract

This study aimed to investigate the properties of benzoyl chloride modified and unmodified poly lactic acid and sugarcane bagasse fibre composites (PLA/SCBF), as well as the impact of chemical treatment on the mechanical and biodegradation properties of these composites. In this study, Fourier Transform Infrared (FTIR) Spectroscopy was employed to examine the benzoyl chloride modified and unmodified fibre samples. Additionally, Scanning Electron Microscope (SEM) and Thermal Gravimetric Analysis (TGA) techniques were utilised to investigate the morphology and thermal behaviour of the Poly lactic/SCBF composites. The results indicate that the use of benzoyl chloride treatment resulted in an increase in the tensile, flexural characteristics, impact strength, and hardness strength. The treatment with benzoyl chloride resulted in a reduction in both water absorption and biodegradability. The research also elucidated the impact of increasing the quantity of sugar cane bagasse on the aforementioned qualities. The addition of SCBF at higher loading resulted in a decrease in the tensile strength, biodegradability, flexural strength, and impact strength. The water absorption and hardness exhibited a positive correlation with the increase in fibre loading. The observed improvement in mechanical characteristics indicates that the treatment effectively enhanced the interfacial adhesion between SCBF and the PLA matrix. The enhancement of the interfacial adhesive forces was observed by the examination of scanning electron microscopy (SEM) micrographs. The Fourier Transform Infrared (FTIR) spectrum of the treated solvent-cast bamboo fibre (SCBF) exhibited the presence of a benzoyl group attached to the fibre, indicating successful benzoyl chloride treatment. Additionally, a modest reduction in hemicellulose content was seen following the treatment. The thermal characteristics of the modified PLA/SCBF composites were found to be enhanced based on the results obtained from the TGA-DTA analysis.
苯甲酰氯和纤维负载对聚乳酸/甘蔗渣纤维复合材料机械性能和生物降解的影响
本研究旨在调查苯甲酰氯改性和未改性聚乳酸与甘蔗渣纤维复合材料(PLA/SCBF)的特性,以及化学处理对这些复合材料的机械和生物降解特性的影响。本研究采用傅立叶变换红外光谱法(FTIR)检测苯甲酰氯改性和未改性纤维样品。此外,还利用扫描电子显微镜(SEM)和热重力分析(TGA)技术研究了聚乳酸/SCBF 复合材料的形态和热性能。结果表明,使用苯甲酰氯处理可提高拉伸、弯曲特性、冲击强度和硬度。使用苯甲酰氯处理后,吸水性和生物降解性均有所降低。研究还阐明了增加甘蔗渣数量对上述质量的影响。添加更多的 SCBF 会导致拉伸强度、生物降解性、抗弯强度和冲击强度降低。吸水性和硬度与纤维添加量的增加呈正相关。所观察到的机械特性的改善表明,这种处理方法有效地增强了 SCBF 与聚乳酸基质之间的界面粘附力。通过扫描电子显微镜(SEM)显微照片可以观察到界面粘附力的增强。经处理的溶剂铸造竹纤维(SCBF)的傅立叶变换红外光谱显示,纤维上附着有苯甲酰基,表明苯甲酰氯处理成功。此外,处理后半纤维素含量略有减少。根据 TGA-DTA 分析得出的结果,改性聚乳酸/SCBF 复合材料的热特性得到了增强。
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