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Production of Metal Matrix Composites by the Vortex Method and Investigation of the Effect of Changing Casting Temperature on Particles Ratio of Product-Composite

机译:涡旋法制备金属基复合材料及铸造温度变化对产物-复合颗粒比影响的研究

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摘要

In this study, Al-2011 alloyed and Al_2O_3 particle-reinforced metal matrix composite (MMCs) were produced by using the Vortex method. Immediately after pouring composite to the mold and before full solidification, the porosity inside composite has decreased to accepted values by applied pressure. Product-composites were produced with approximately 8, 16, and 24 vol% Al_2O_3 particles. The effects of casting temperature were investigated on production of MMCs at targeted particle ratios. In addition, the effects of increased particle ratio to hardness were tested. According to the results of experiments,when casting temperature changes, the particle ratio of product-composite and rest-composite (the composite that remains at the bottom of pot after casting) also changes. As the difference between casting temperature and proper casting temperature grows, the difference between those rates increases. Moreover,it can be clearly seen that the increasement at composite's particle ratio also cause to an increase at hardness.
机译:在这项研究中,使用涡旋法制备了Al-2011合金和Al_2O_3颗粒增强金属基复合材料(MMC)。在将复合材料倒入模具中之后以及完全固化之前,复合材料内部的孔隙率随施加的压力立即降低到可接受的值。产生具有约8、16和24体积%的Al_2O_3颗粒的产物复合物。研究了铸造温度对目标颗粒比下MMC生产的影响。另外,测试了增加的颗粒比对硬度的影响。根据实验结果,当浇铸温度变化时,产品复合材料和剩余复合材料(浇铸后残留在锅底的复合材料)的颗粒比也会变化。随着铸造温度和适当铸造温度之间的差异增大,这些速率之间的差异也会增加。此外,可以清楚地看到,复合材料颗粒比的增加也导致硬度的增加。

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