碱处理对枣子颗粒废聚丙烯填充复合材料力学性能的影响

N. Lawal, A. Danladi, B. Dauda, A. Kogo, M.A. Baba, U. Busuguma
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引用次数: 0

摘要

将收集到的废枣种子还原为63µm颗粒,分别用NaOH (aq)在1、3、5、7和10%的浓度下处理。利用FTIR分析评估了化学改性的程度。采用双辊轧机复合和压缩成型工艺,制备了未处理和处理过的废聚丙烯/红枣种子颗粒(DSP)复合材料。进行了拉伸、弯曲、冲击试验和硬度(HV)测试并进行了评估。随后,利用扫描电镜对复合材料的断裂表面进行了形态学研究。在最佳浓度为10% w/v时,碱处理增强了复合材料的各项性能。拉伸强度、抗弯强度、断裂伸长率、冲击强度和硬度分别提高28.86 MPa、140 MPa、172.5%、0.92 J/m²和23.8 Hv。拉伸模量和弯曲模量随碱浓度的增加而减小。处理后复合材料断裂表面的扫描电镜显示,与未经处理的复合材料相比,填料颗粒在基体内的分散更好,没有团簇。
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The effect of alkali treatment on the mechanical properties of date seed particulates waste polypropylene filled composites
Date seeds collected as waste were reduced to 63 µm particles and treated with NaOH (aq) at 1, 3, 5, 7 and 10 %. The extent of chemical modification was assessed using FTIR analysis. The waste polypropylene (wPP)/date seed particles (DSP) composites filled with untreated and treated particles at 20 % filler loadings were fabricated using compounding and compression moulding techniques by means of two rolls mill. Tensile, flexural, impact tests and hardness (HV) were conducted and evaluated. Subsequently, a morphological study of the fractured surface of the composites was achieved using SEM. The application of alkali treatment enhanced various properties of the composites at the optimal concentration of 10 % w/v. Specifically, the tensile strength, flexural strength, elongation at break, impact strength, and hardness were improved, resulting in values of 28.86 MPa, 140 MPa, 172.5 %, 0.92 J/m², and 23.8 Hv, respectively. While tensile and flexural moduli showed a decrease with increasing alkali concentration. The SEM of the fractured surface of the treated composite revealed a better dispersion of filler particles within the matrix with no cluster seen compared to the untreated.
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