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首页> 外文期刊>Lasers in engineering >Influence of the Alloying Elements in Al-Si Alloys on the Laser Remelting Process
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Influence of the Alloying Elements in Al-Si Alloys on the Laser Remelting Process

机译:铝硅合金中合金元素对激光重熔工艺的影响

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摘要

This paper reports on the treatment of different Al-Si alloys after laser surface remelting through analysis of the changes in microstructure and hardness of a modified surface layer. On as cast samples, laser remelting of the thin surface layer was carried out with different energy inputs into the sample surface. The remelting conditions were varied by application of different laser beam power, different degrees of defocusing and different laser beam travel speeds across the sample surface. With the selected remelting conditions for the thin surface layer a sufficiently high energy input into the surface of individual samples was ensured. It varied between 165 and 477 J/mm~2. After solidification of the surface remelted layer a fine-grained microstructure was formed. Such a microstructure was found to increase the hardness of the Al-Si alloys by 20 to 50%. The variation and size of the residual stresses greatly depended on the cooling rates determined by the laser travel speeds.
机译:本文通过分析改性表面层的显微组织和硬度变化,报告了激光表面重熔后不同Al-Si合金的处理方法。在铸造样品上,以不同的能量输入到样品表面中,对薄表面层进行了激光重熔。通过施加不同的激光束功率,不同的散焦度和不同的激光束在样品表面上的行进速度,可以改变重熔条件。通过为薄表层选择重熔条件,可以确保将足够高的能量输入到各个样品的表面中。它在165至477 J / mm〜2之间变化。表面重熔层固化后,形成了细晶粒的微观结构。发现这种微观结构使Al-Si合金的硬度提高了20%至50%。残余应力的变化和大小在很大程度上取决于由激光传播速度确定的冷却速率。

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