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Effect of Casting Temperature on Grain Size of Al-Si Alloys Refined by a Novel Grain Refiner

机译:铸造温度对新型晶粒细化剂精制Al-Si合金晶粒尺寸的影响

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The automotive industry is willing of employing a greater amount of light metals like aluminium, magnesium and titanium, in order to reduce the total weight of the cars and, consequently, fuel consumption. Even though some casting aluminium alloys are commonly employed for automotive structural applications, their mechanical performances can be improved by means of appropriate grain refining by heterogeneous nucleation. This practise is well established for wrought aluminium alloys by using Al-Ti-B master alloys but they are not effective in casting alloys due to the much higher silicon percentage (poisoning). A novel chemical composition which, actually, refines appropriately Al-Si alloys was developed at Brunei University. In this study the combined effect of casting temperature and addition of this novel grain refiner (NGR) on the microstructure of binary Al-Si alloys was considered. The addition of this NGR leads to the formation of finer primary α-Al grains, finer eutectic Al-Si intermetallics and less and smaller primary Si particles.
机译:汽车工业愿意使用大量的轻金属,例如铝,镁和钛,以减轻汽车的总重量,从而减少燃料消耗。即使某些铸造铝合金通常用于汽车结构应用,也可以通过异质成核对晶粒进行适当的细化,从而提高其机械性能。通过使用Al-Ti-B中间合金对锻造铝合金已经很好地确立了这种做法,但由于硅含量高得多(中毒),因此它们对铸造合金无效。文莱大学开发了一种新颖的化学成分,实际上可以适当地精炼Al-Si合金。在这项研究中,考虑了铸造温度和添加这种新型晶粒细化剂(NGR)对二元Al-Si合金显微组织的综合影响。这种NGR的加入导致形成较细的初生α-Al晶粒,较细的共晶Al-Si金属间化合物以及越来越少的初生Si颗粒。

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