Effect of Calcium Carbonate as Filler on the Physicomechanical Properties of Polypropylene Random

Afaf Chakir, Mohammed Alami, Mohammed Assouag, Othmane Noureddine, Fahed Elamarty
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Abstract

To minimize the cost of production and enhancement pipe quality, this research aims to gain insights into the physical and mechanical characteristics of high-performance polypropylene random filled with rigid inorganic calcium carbonate particles at various content levels, with a specific focus on how the toughness of PPR changes. Virgin Polypropylene Random PPR, a new material extracted from a homopolymer polypropylene, is used as a matrix with 10, 20, 30, 40, and 50 wt. % of CaCO3. The density, melt flow rate, tensile strength, tensile strain, modulus of elasticity, and hardness are used to evaluate the quality of the material. The results showed that the density, the modulus of elasticity, and the hardness increased with increasing the percentage of CaCO3. As the percentage of CaCO3 increased, the melt flow rate decreased. The tensile strength and strain increased to 28.7 MPa and 533.25%, respectively at 20 wt.% of CaCO3, with 14.8% and 6.65% reaching gains compared to the virgin PPR (25 MPa and 500%). The enhancement of the mechanical properties is thanks to the presence of stiffer and rigid particles of CaCO3 that act as a reinforcing agent. Moreover, when CaCO3 is well dispersed, it forms a strong bond with the polypropylene matrix, and facilitates the transfer of stress from the matrix to the fillers, resulting in increased stiffness. The optimum percentage of CaCO3 to add into the inner layer of extruded PPR pipes is at a composition of the filler of 20 wt. %.
填充物碳酸钙对聚丙烯无规物理力学性能的影响
为了最大限度地降低生产成本和提高管道质量,本研究旨在深入了解高性能聚丙烯无规填充不同含量的硬质无机碳酸钙颗粒的物理和机械特性,特别关注 PPR 的韧性如何变化。原生聚丙烯无规 PPR 是一种从均聚聚丙烯中提取的新材料,以 10、20、30、40 和 50 重量百分比的 CaCO3 为基体。密度、熔体流动速率、拉伸强度、拉伸应变、弹性模量和硬度被用来评估材料的质量。结果表明,密度、弹性模量和硬度随着 CaCO3 百分比的增加而增加。随着 CaCO3 百分比的增加,熔体流动速率降低。当 CaCO3 的重量百分比为 20 时,拉伸强度和应变分别增加到 28.7 兆帕和 533.25%,与原始 PPR(25 兆帕和 500%)相比,分别增加了 14.8%和 6.65%。机械性能的提高归功于 CaCO3 坚硬颗粒的存在,它们起到了增强剂的作用。此外,当 CaCO3 充分分散时,它会与聚丙烯基体形成牢固的粘结,并促进应力从基体传递到填料,从而提高刚度。在挤压成型的 PPR 管材内层中添加 CaCO3 的最佳比例是填料成分占 20%。
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