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Processing and characterizations of polycarbonate/alumina nanocomposites by additive powder fed friction stir processing

机译:添加剂粉末炒搅拌加工加工和氧化铝纳米复合材料的加工和表征

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摘要

The powder fed friction stir process (FFSP) is a new and attractive solid-state manufacturing technique that enables the fabrication of polymer matrix nanocomposites (PNC). Herein, we present the fabrication of polycarbonate (PC)-based nanocomposites by in-situ injection of colloidal alumina nanoparticles (100 nm) into the plasticized polymer under stir friction of a steel tool. Microstructural features and mechanical durability of the prepared nanocomposites were studied. The mechanical properties of the processed materials including hardness, tensile strength, flexural strength, and impact energy were elaborated. The tensile strength of PNC in the longitudinal direction was-73 MPa, which was higher than the PC matrix by 109%. However, a lower bending strength (-48 MPa) compared with PC was measured. Fractographic studies determined the presence of mist patterns on flexural samples and crack growth from shrinkage holes and river patterns. The distribution of Al2O3 nanoparticles was found to improve the impact energy in both transverse and longitudinal directions by 111% (-28 kJ/m2) and 127% (32 kJ/m2), respectively. Crack deviation by the hard inclusions was found to be the mean mechanism of enhanced impact resistance.
机译:粉末供给摩擦搅拌过程(FFSP)是一种新的和有吸引力的固态制造技术,可使聚合物基质纳米复合材料(PNC)制备。在此,我们通过原位注射胶体氧化铝纳米粒子(< 100nm)进入钢工具的搅拌摩擦下的塑化聚合物中的聚碳酸酯(PC)的纳米复合材料的制备。研究了制备纳米复合材料的微观结构特征和机械耐久性。阐述了加工材料的机械性能,包括硬度,拉伸强度,弯曲强度和冲击能量。 PNC在纵向方向上的拉伸强度为-73MPa,其高于PC基质109%。然而,测量与PC相比的较低弯曲强度(-48MPa)。 Fretography研究确定了抗弯曲样品上的雾状图案的存在,并从收缩孔和河流图案中的裂纹生长。发现Al 2 O 3纳米颗粒的分布在横向和纵向方向上的影响,分别以111%(-28kJ / m 2)和127%(32kJ / m 2)改善横向和纵向。发现硬夹杂物的裂缝偏差是增强抗冲击性的平均机制。

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