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Preparation and Properties of C/C Hollow Spheres and the Energy Absorption Capacity of the Corresponding Aluminum Syntactic Foams

机译:C / C空心球的制备与性能及相应铝句法泡沫的能量吸收能力

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摘要

The present study focuses on the preparation and characterization of lab-scale aluminum syntactic foams (ASFs) filled with hollow carbon spheres (HCSs). A new and original process for the fabrication of HCSs was explored. Firstly, expanded polystyrene beads with an average diameter of 6 mm and coated with carbon fibers/thermoset phenolic resin were produced by the “rolling ball” method. In the next step, the spheres were cured and post-cured, and then carbonized at 1050 °C under vacuum to form the HCSs. The porosity in the shell of the HCSs was decreased by increasing the number of impregnation–carbonization cycles. The aluminum syntactic foams were fabricated by casting the molten aluminum into a crucible filled with HCSs. The morphology of the hollow spheres before and after carbonization was investigated by scanning electron microscope (SEM). The compressive properties of the ASF were tested and the energy absorption capacities were calculated according to stress–strain curves. The results showed that the ASF filled with HCSs which had been treated by more cycles of impregnation–carbonization had higher energy absorption capacity. The aluminum syntactic foam absorbed 34.9 MJ/m3 (28.8 KJ/Kg) at 60% strain, which was much higher than traditional closed cell aluminum foams without particles. The HCSs have a promising future in producing a novel family of metal matrix syntactic foams.
机译:本研究侧重于填充中空碳球(HCSS)的实验室规模铝句法泡沫(ASF)的制备和表征。探讨了制作HCSS的新的和原始工艺。首先,通过“滚动球”方法产生平均直径为6mm和涂覆碳纤维/热固性酚醛树脂的膨胀聚苯乙烯珠粒。在下一步中,将球体固化并后固化,然后在真空下在1050℃下碳化以形成HCSs。通过增加浸渍碳化循环的数量来降低HCSS壳中的孔隙率。通过将熔融铝浇铸成坩埚填充用HCSs的坩埚来制造铝句法泡沫。通过扫描电子显微镜(SEM)研究了碳化前后的空心球的形态。测试ASF的压缩性能,并根据应力 - 应变曲线计算能量吸收能力。结果表明,通过更多的浸渍碳化循环处理的HCS填充HCS的ASF具有较高的能量吸收能力。铝语法泡沫吸收34.9mJ / m3(28.8kJ / kg),菌株高于传统的闭孔铝泡沫,没有颗粒。 HCSS在生产新颖的金属基质句法泡沫中具有有希望的未来。

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