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Semisolid melt squeezing procedure for production of open-cell Al-Si foams

机译:半固态熔体挤压程序,用于生产开孔Al-Si泡沫

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Melt squeezing process in semisolid state was used for the first time for production of open-cell Al-Si foams with improved microstructural and mechanical characteristics. First a given amount of preheated NaCl particles was stirred into molten A356 alloy. Stirring continued during solidification of the slurry until reaching a given solid fraction of primary particles. The resulting mixture was pressed by a perforated piston to squeeze a controlled amount of the residual meltout. Open-cell foams were achieved by leaching the final Al-Si-NaCl composites in water. The suitable values of the NaCl particle size, pressurizing temperature, melt to salt ratio and piston pressure for production of uniform and high integrity foams were obtained to be 3400 μm, 605 ℃, 1.5:1 and 10MPa, respectively. The results showed that the semisolid processing employed could refine and modify the microstructure of the cell ligaments in the final foams. Mechanical properties of the foams such as energy absorption and fracture toughness were also improved by the semisolid processing.
机译:半固态熔体挤压工艺首次用于生产具有改善的微观结构和机械特性的开孔Al-Si泡沫。首先,将一定量的预热NaCl颗粒搅拌成熔融的A356合金。在浆料固化期间继续搅拌,直到达到给定的初级颗粒固体分数。用多孔活塞压制所得混合物,以挤压控制量的残留熔体。开孔泡沫是通过在水中浸出最终的Al-Si-NaCl复合材料而获得的。得到的NaCl粒径,加压温度,熔盐比和活塞压力的合适值分别为3400μm,605℃,1.5:1和10MPa。结果表明,采用的半固体加工可以改善和改变最终泡沫中泡孔韧带的微观结构。半固态加工还改善了泡沫的机械性能,例如能量吸收和断裂韧性。

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