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Inhibited coarsening of a sprayformed and extruded hypereutectic aluminium-silicon alloy in the semi-solid state

机译:半固态的喷射挤压和挤压过共晶铝硅合金的抑制粗化

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摘要

The microstructural evolution of a sprayformed and extruded hypereutectic aluminium-30% silicon-5% copper-2% magnesium alloy heated into the semi-solid state has been investigated. Liquid is formed initially by a quaternary eutectic reaction and then by a ternary melt reaction. These reactions occur relatively quickly. However, the binary Al-Si eutectic melt reaction takes a significant time – around several hours depending on the temperature. The coarsening rate constants (K) for the growth of the silicon particles are approximately 3 to 4 orders of magnitude lower than those for the majority of metal sprayformed alloys. This may be associated with difficulties in addition or removal of atoms from the low index silicon facets. Where growth does occur, agglomeration of silicon particles may play a large role, especially at higher liquid contents. Electron backscatter diffraction (EBSD) gives evidence of agglomeration, and furthermore shows that high angle silicon-silicon boundaries are not wetted with liquid.
机译:研究了喷射成形和挤压加热到半固态的过共晶铝30%硅5%铜2%镁合金的组织演变。液体首先通过四元共晶反应形成,然后通过三元熔融反应形成。这些反应相对较快地发生。但是,二元Al-Si共晶熔融反应需要花费大量时间-取决于温度,大约需要几个小时。硅颗粒生长的粗化速率常数(K)比大多数金属喷射成形合金的粗化速率常数低约3至4个数量级。这可能与从低折射率硅刻面添加或去除原子的困难有关。在确实发生生长的地方,硅颗粒的团聚可能起很大的作用,尤其是在较高的液体含量下。电子背散射衍射(EBSD)提供了聚结的证据,并且进一步表明,高角度硅-硅边界没有被液体润湿。

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  • 年度 2005
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