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Experimental Study on Viscosity and Phase Segregation of Al–Si Powders in Microsemisolid Powder Forming

机译:Al-Si粉末在微半固态粉末成型中的粘度和相分离的实验研究

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摘要

Semisolid powder forming is a promising approach for near-net shape forming of features in macro-/microscale. In this paper, viscosity and phase segregation behavior of Al–Si powders in the semisolid state were studied with back extrusion experiments. The effects of process parameters including shear rate, extrusion ratio, heating time, and precompaction pressure were analyzed using the design of experiments method. The results showed that the effects of shear rate, extrusion, ratio and heating time were statistically significant factors influencing the viscosity. The semisolid state powders showed a shear thinning behavior. Moreover, microstructure analysis of extruded parts indicated severe phase segregation during the forming process. As the extrusion opening became small (∼400 μm), the phase segregation increased. This study expanded the semisolid processing technology by exploring the use of powdered materials instead of typical bulk materials for applications in micro-/mesomanufacturing. Replacing bulk materials with powdered materials may add a new dimension to the technique by allowing tailoring of material properties.
机译:半固态粉末成型是一种在宏观/微米尺度上实现近净形状成型的有前途的方法。在本文中,通过反向挤压实验研究了Al-Si粉在半固态下的粘度和相偏析行为。采用实验方法设计分析了剪切速率,挤压比,加热时间和预压压力等工艺参数的影响。结果表明,剪切速率,挤出,比例和加热时间的影响是影响粘度的统计学显着因素。半固态粉末显示出剪切稀化行为。而且,对挤压零件的微观结构分析表明在成形过程中严重的相偏析。随着挤出口变小(〜400μm),相分离增加。这项研究通过探索使用粉末状材料代替典型的散装材料在微/中型制造中的应用,扩展了半固体加工技术。通过粉末材料的定制,可以用粉末材料代替散装材料,从而为该技术增加了新的领域。

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