Structural characteristics and extrusion behaviour of Pb–Sn alloys in semisolid state

M. Taha, M. Suéry
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引用次数: 14

Abstract

AbstractThe extrusion behaviour of semisolid Pb–19Sn alloys has been studied on materials with conventionally solidified dendritic structures and with non-dendritic structures obtained through mechanical stirring during solidification. This stirring performed at a constant temperature above the solidus produces a semisolid slurry with approximately spherical primary particles. The volume fraction, particle size, and interparticle spacing of the primary phase decrease as the stirring temperature increases. Whereas the alloy with the non-dendritic structure (rheocast) can be extruded in the semisolid state under low extrusion forces giving a perfectly continuous rod, the alloy with the dendritic structure requires larger forces and produces a fragmented product. These experiments suggest that extrusion can be performed advantageously in the semisolid state with alloys obtained by mechanical stirring during solidification.
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半固态Pb-Sn合金的组织特征及挤压行为
摘要:研究了半固态Pb-19Sn合金在常规凝固和机械搅拌凝固条件下的枝晶组织和非枝晶组织的挤压行为。这种搅拌在固体以上的恒定温度下进行,产生具有近似球形初级颗粒的半固体浆料。随着搅拌温度的升高,初级相的体积分数、粒径和粒间间距减小。具有非枝晶结构的合金(流变铸)可以在低挤压力下挤压成半固态,从而得到完美连续的棒材,而具有枝晶结构的合金需要更大的力并产生破碎的产品。这些实验表明,在凝固过程中,机械搅拌获得的合金有利于在半固态状态下进行挤压。
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