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METAL MATRIX COMPOSITES DIRECTIONALLY SOLIDIFIED

机译:直接固化的金属基复合材料

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摘要

The present work is focus on studying the dendritic solidification of metal matrix composites, MMCs, (using zinc-aluminum, ZA, alloys as matrix and the addition of SiC and Al_2O_3 particles). The compounds were obtained by as-cast solidification, under continuous stirring and in a second stage were directionally solidified in order to obtain different dendritic growth (columnar, equiaxed and columnar-to-equiaxed transition (CET)). The results in MMCs were compared with those obtained in directional solidification of ZA alloys, primarily with regard to structural parameters. The size and evolution of microstructure, according to the size of the MMCs particles and the variation of the thermal parameters was analyzing. In general it was found that the size of the microstructure (secondary dendritic spacing) decreases with the increase of particles in the matrix. When cooling rate increases, particle size decreases, and a higher cooling rate causes finer and more homogeneous dendrites Also, the segregation which was found in the matrix of the composites was significantly less than in the case of ZA alloys.
机译:目前的工作集中在研究金属基复合材料,MMC(使用锌铝,ZA,合金作为基体以及添加SiC和Al_2O_3颗粒)的树枝状凝固。通过铸态固化,在连续搅拌下,在第二阶段进行定向固化,以获得不同的树枝状生长(柱状,等轴和柱状-等转变(CET))。主要在结构参数方面,将MMC中的结果与ZA合金定向凝固中获得的结果进行了比较。根据MMCs颗粒的大小和热学参数的变化,对组织的大小和演化进行了分析。通常,发现随着基质中颗粒的增加,微结构的尺寸(次级树突间距)减小。当冷却速率增加时,粒度减小,并且较高的冷却速率导致更细和更均匀的枝晶。此外,在复合材料的基体中发现的偏析明显小于ZA合金的偏析。

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