THE EFFECTS OF r-HDPE/r-PP FORMULATION RATIO INTO MECHANICAL, THERMAL AND MORPHOLOGICAL BEHAVIOR OF r-HDPE/r-PP POLYMERIC BLENDS

J. Razak, Siti Zaleha Wahid, N. Mohamad, P. Puspitasari, R. Jaafar, P. Tutuko
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Abstract

This study has reported the effects of different formulation ratio between recycled high density polyethylene (r-HDPE) and recycled polypropylene (r-PP) into the resulted mechanical, thermal and morphological properties of r-HDPE/r-PP polymeric blends. About five (5) different formulation ratio of r-HDPE/r-PP have been prepared and tested. The best combination ratio between r-HDPE and r-PP was determined in this work. It was found that the 70/30 wt.% of r-HDPE/r-PP blend possessed an outstanding mechanical and physical strength. About 59.80% and 2.30% of positive improvement in comparison to 0/100 wt.% of r-HDPE/r-PP was achieved for both of tensile strength and hardness, respectively. Interestingly, for 70/30 wt.% of r-HDPE/r-PP blend had also experienced major increased in their elongation at break up to 473%. The fracture morphological behavior of the tested samples that were observed via SEM observation, had established the interaction between the structure and properties of produced r-HDPE/r-PP blends, especially on the miscibility state between the r-HDPE and r-PP phases. Thermal evaluation by using the DSC had confirmed the partial miscibility state due to dominant peak shifting at 120 - 140°C and obvious melting peak reduction pattern. Overall, from this study, it was found that the blending between r-HDPE and r-PP into r-HDPE/r-PP blends are feasible to improve the properties of primary phase.
r-HDPE/r-PP配比对r-HDPE/r-PP共混物力学、热学和形态行为的影响
本研究报道了再生高密度聚乙烯(r-HDPE)和再生聚丙烯(r-PP)的不同配比对r-HDPE/r-PP共混物的力学、热学和形态性能的影响。制备并测试了5种不同配比的r-HDPE/r-PP。本研究确定了r-HDPE与r-PP的最佳配比。结果表明,70% / 30% wt.%的r-HDPE/r-PP共混物具有优异的机械强度和物理强度。与0/100 wt.%的r-HDPE/r-PP相比,抗拉强度和硬度分别提高了59.80%和2.30%。有趣的是,对于70/30 wt.%的r-HDPE/r-PP共混物,其断裂伸长率也大幅提高,达到473%。通过扫描电镜观察试样的断裂形态行为,确定了生产的r-HDPE/r-PP共混物的结构和性能之间的相互作用,特别是r-HDPE和r-PP相之间的混相状态。DSC热评价证实了在120 ~ 140℃时主要峰移导致的部分混相状态和明显的熔融峰消减模式。综上所述,本研究发现将r-HDPE与r-PP共混制备r-HDPE/r-PP共混物对于改善初级相的性能是可行的。
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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