Implementation and Characterization of a Hybrid Composite Material with Two Particles of the Same Size: Coco Shells and Palm Shells

Noah Pierre Marcel Anicet, Betene Ebanda Fabien, A. Ateba
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Abstract

This work aims to develop and characterize a hybrid composite material with two particles of the same size. As reinforcing particles, the hulls of palm nuts and coconut are chosen. Hybrid composite material composites in the form of specimens were produced by molding at 10%, 20% and 30% mass fractions in various sizes (0.63 mm, 1.25 mm and 2.5 mm). The samples were physically characterized (water absorption rate, moisture content, actual, theoretical and apparent density) and mechanical in 3-point flexion. The main results are: the highest and minimum water absorption rate is respectly 3.57% and 0.67% for respectly particle sizes 1.25 mm (sample P10C30) and 0.67% in the size of 0.63 mm (sample P10C10). The moisture content varies from 0.64 to 7.14% respectively for the P20C20 (2.5 mm) and P10C30 (2.5 mm) samples. The maximum and minimum real density are 1340,518 Kg/m3 and 1055.981 Kg/m3, for respectly the composites of particles sizes 1.25 mm (P20C10) and 0.63 mm (sample P20C20). The minimum real density is Its maximum theoretical density is 1194.949 Kg/m3 (for samples P20C10, P10C10 and P30C10); however, the minimum is 1189.966 Kg/m3 (P10C20 and P20C20). The bulk density varies from 933.28 Kg/m3 to 1176.1 Kg/m3, respectively, in sizes from 2.5 mm (P10C30) to 0.63 mm (for P10C30). As for the mechanical characteristics, the Modulus of Elasticity (MOE) varies from 25.664 GPa to 25.759 GPa, respectively, the samples P10C10 (1.25 mm) and P10C20 (2.5 mm). The MOE values describe a parabola whose peak is reached when the palm shell loads are 20%, that is to say P20C10, whatever the particle size distribution. In resilience, samples with small particles are more resilient with a maximum value of 22.49 J/cm2 and a minimum value of 4.45 J/cm2 to verify the principles of Hall-Petch's law.
可可壳和棕榈壳两种相同大小颗粒混合复合材料的实现和表征
这项工作旨在开发和表征具有相同大小的两个颗粒的混合复合材料。选用棕榈果壳和椰子壳作为补强颗粒。采用10%、20%和30%质量分数的模压法制备了不同尺寸(0.63 mm、1.25 mm和2.5 mm)的杂化复合材料试件复合材料。对样品进行了物理表征(吸水率、含水率、实际密度、理论密度和表观密度)和三点弯曲的力学特性。主要结果是:粒径为1.25 mm(样品P10C30)和粒径为0.63 mm(样品P10C10)时,吸水率最高为3.57%,吸水率最低为0.67%。P20C20 (2.5 mm)和P10C30 (2.5 mm)样品的含水率分别为0.64 ~ 7.14%。粒径为1.25 mm (P20C10)和0.63 mm(样品P20C20)的复合材料的实际密度最大值为1340 Kg/m3,最小值为1055.981 Kg/m3。最大理论密度为1194.949 Kg/m3(样品P20C10、P10C10和P30C10);然而,最低为1189.966 Kg/m3 (P10C20和P20C20)。体积密度范围为933.28 Kg/m3 ~ 1176.1 Kg/m3,尺寸范围为2.5 mm (P10C30) ~ 0.63 mm (P10C30)。力学特性方面,P10C10 (1.25 mm)和P10C20 (2.5 mm)试样的弹性模量(MOE)分别为25.664 ~ 25.759 GPa。MOE值描述了一条抛物线,当棕榈壳载荷为20%时达到峰值,即P20C10,无论粒径分布如何。在回弹性方面,颗粒小的试样回弹性更强,其最大值为22.49 J/cm2,最小值为4.45 J/cm2,验证了Hall-Petch定律的原理。
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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