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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of ceramic particle addition on the foaming behavior, cell structure and mechanical properties of P/M AlSi7 foam
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Effect of ceramic particle addition on the foaming behavior, cell structure and mechanical properties of P/M AlSi7 foam

机译:添加陶瓷颗粒对P / M AlSi7泡沫的发泡行为,泡孔结构和力学性能的影响

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摘要

The effects of SiC addition on the foaming behavior and compressive properties of AlSi7 metal foams were studied. Elemental powders of Al, Si, SiC and TiH_2 were mixed, hot compacted and foamed at temperatures between 750 and 810℃. The role of SiC volume fraction up to 10 vol.% and its particle size (3, 8 and 16 μm) was investigated. It was found that the foaming behavior of AlSi7 alloy, i.e. the maximum foam expansion and its stability, depends on the size and volume fraction of SiC particles. Increasing the amount of the ceramic particles and/or decreasing the particle size leads to less melt drainage whilst the cell structure becomes non-uniform. This is attributed to the effect of the ceramic particles on the viscosity of the aluminum melt and the cell wall thinning rate. Here, it was noticed that the effect of SiC addition is closely related to the temperature used for the foaming process. Also, a slight degradation in the mechanical properties under compressive load was observed. Better foamability with improved stability and proper mechanical properties were obtained in AlSi7-3 vol.% SiC (3 μm) precursor foamed at 810℃.
机译:研究了SiC添加对AlSi7金属泡沫的发泡行为和压缩性能的影响。将Al,Si,SiC和TiH_2元素粉末混合,热压并在750至810℃的温度下发泡。研究了SiC体积分数高达10%(体积)和其粒径(3、8和16μm)的作用。发现AlSi7合金的发泡行为,即最大泡沫膨胀及其稳定性,取决于SiC颗粒的尺寸和体积分数。增加陶瓷颗粒的量和/或减小颗粒尺寸导致较少的熔体排出,同时孔结构变得不均匀。这归因于陶瓷颗粒对铝熔体的粘度和孔壁变薄速率的影响。在此,注意到SiC添加的效果与用于发泡过程的温度密切相关。另外,观察到压缩载荷下机械性能的轻微降低。在810℃发泡的AlSi7-3体积百分比的SiC(3μm)前驱体中,具有更好的起泡性,改善的稳定性和适当的机械性能。

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