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Effects of Processing Parameters on Pore Morphology of Combustion Synthesized Al-Ni Foams

机译:工艺参数对燃烧合成的Al-Ni泡沫孔隙形态的影响

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Intermetallic (Al-Ni) foams were fabricated by a combustion reaction of the blended powder compacts consisting of nickel and aluminum. The foaming agents (titanium and B_4C powders) were added to the nickel and aluminum blended powder to produce foams with high porosity by increasing the combustion temperature. The effects of the size of elemental powders (aluminum and nickel), the powder blending ratio, the amount of foaming agent and compacting conditions on the porosity and pore morphology of the foams were investigated. The size of nickel powder was an important factor to produce foams by the combustion synthesis and it should be small enough to achieve high porosity. The size of the aluminum powder was not such an important factor. The uniform pore morphology in the foam was obtained only when the powder blending ratio was adequate. The proper addition of the foaming agent increased the porosity and the size of pores, and also stabilized the uniformity of the pore morphology. There was a threshold density of the precursor to achieve sufficient foaming. The pore diameter of a synthesized foam is increased with increasing precursor compacting temperature and pressure. An attempt was made to disperse fine ceramic particles in the foam materials. It was revealed that the addition of ceramic particles did not affect the porous structure.
机译:金属间(Al-Ni)泡沫是通过由镍和铝组成的混合粉末压块的燃烧反应而制成的。将发泡剂(钛和B_4C粉末)添加到镍和铝混合粉末中,通过提高燃烧温度来生产具有高孔隙率的泡沫。研究了元素粉末(铝和镍)的尺寸,粉末的混合比例,发泡剂的用量和压实条件对泡沫的孔隙率和孔隙形态的影响。镍粉的大小是通过燃烧合成生产泡沫的重要因素,并且应足够小以实现高孔隙率。铝粉的尺寸不是一个重要的因素。仅当粉末混合比足够时,泡沫中才能获得均匀的孔形态。适当添加发泡剂增加了孔隙率和孔的尺寸,并且还稳定了孔形态的均匀性。存在前体的阈值密度以实现足够的发泡。随着前体压实温度和压力的增加,合成泡沫的孔径增加。试图将细陶瓷颗粒分散在泡沫材料中。揭示了添加陶瓷颗粒不会影响多孔结构。

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