On the silicon spheroidization in Al–Si alloys

E Ogris , A Wahlen , H Lüchinger , P.J Uggowitzer
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引用次数: 206

Abstract

It is commonly known that eutectic silicon spheroidizes during a T6 solution heat treatment in Al–Si cast alloys. This spheroidization of the brittle silicon is the main reason for the good fracture elongation values in peak hardened T6 condition. As the silicon spheroidization is known as a side effect of common T6 treatment, there is little known about the influence of sole silicon spheroidization on the mechanical properties. The following paper presents fundamental aspects of the spheroidization process of eutectic silicon in Al–Si cast alloys. It is theoretically as well as experimentally found that the disintegration and spheroidization of well modified eutectic silicon is finished within minutes of exposure to temperatures above 500 °C. The application of this new silicon spheroidization treatment (SST) to thixoformed components results in outstanding fracture elongation values (up to 18%) at good yield strength level (∼230 MPa). FEM simulations of the short high temperature heat treatment confirm a short process time for successful SST even for components with notably variable wall thicknesses.

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铝硅合金中硅的球化
众所周知,在Al–Si铸造合金中,共晶硅在T6固溶热处理过程中球状化。脆性硅的这种球化是在峰值硬化T6条件下获得良好断裂伸长率的主要原因。由于硅球化是常见T6处理的副作用,因此对硅球化对机械性能的影响知之甚少。本文介绍了铝硅铸造合金中共晶硅球化过程的基本方面。理论上和实验上都发现,经过良好改性的共晶硅在暴露于500°C以上的温度下几分钟内就完成了分解和球化。将这种新的硅球化处理(SST)应用于触变成型部件,可在良好的屈服强度水平(~230MPa)下产生出色的断裂伸长率(高达18%)。短高温热处理的有限元模拟证实,即使对于壁厚显著变化的部件,成功SST的工艺时间也很短。
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