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Thixoforming of Hypereutectic Al/Si Automotive Pistons

机译:过共晶Al / Si汽车活塞的触变性

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For hypereutectic Al/Si alloys, one of the advantages of thixoforming in comparison with casting routes is the relatively short processing times at high temperatures and hence limited coarsening of the Si phase. Coarse silicon particles give poor mechanical properties. Here two hypereutectic Al/Si alloys (magneto-hydro-dynamically (MHD) stirred A390 from Pechiney and an extruded A390 alloy from Showa in Japan) have been thixoformed to form pistons. Opening up the die entrance to the full width of the crown made the flow into the die more uniform and helped to reduce the tendency for large pores to form due to swirling of the slurry. Die heating reduced cold shuts in the skirt (thin section) of the piston. Placing inserts into the die to make holes for the piston pins (i.e. having an obstacle in the thicker regions) evened up the flow between the thick and the thin regions in the die. Massive pores experienced in earlier shots were then eliminated. Placing ceramic material in the die entrance considerably reduced the shrinkage porosity in the crown. The use of the Showa alloy, where the globular semisolid microstructure is achieved by a solid state deformation route rather than MHD, gave reduced shrinkage porosity and eliminated macrosegregation of the eutectic and the silicon. Computer modeling has aided optimization of the die.
机译:对于过共晶Al / Si合金,触变成形与铸造路线相比的优势之一是在高温下相对较短的加工时间,从而限制了Si相的粗化。粗硅颗粒的机械性能较差。在这里,两种过共晶Al / Si合金(来自Pechiney的磁流体力学(MHD)搅拌的A390和来自日本Showa的挤压的A390合金)已经进行触变成型以形成活塞。将模头入口打开至胎冠的整个宽度,使流入模头的流更均匀,并有助于减少由于浆液的涡旋而形成大孔的趋势。模具加热减少了活塞裙部(薄部分)中的冷气。将插入物放入模具中以在活塞销上打孔(即在较厚的区域中有障碍物),使模具中较厚和较薄区域之间的流动均匀。然后消除了较早拍摄中出现的毛孔粗大的现象。将陶瓷材料放置在模头入口中可大大减少胎冠的收缩孔隙率。昭和合金的使用是通过固态变形途径而不是MHD来实现球状半固态微观结构,从而降低了收缩孔隙率并消除了共晶和硅的宏观偏析。计算机建模有助于模具的优化。

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