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首页> 外文期刊>Arabian Journal for Science and Engineering >Experimental Investigation and Simulation of Al-Si Casting Microstructure Formation
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Experimental Investigation and Simulation of Al-Si Casting Microstructure Formation

机译:铝硅铸件组织形成的实验研究与模拟

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摘要

The aim of the present study is to investigate the influence of thermal variables on the as-cast microstructure of hypoeutectic and eutectic Al-Si alloys and to establish correlation between the solidification thermal parameters and interparticle spacing for Al-12%Si alloy during the unidirectional solidification. New relationships are suggested based on the image processing programs in order to accurately quantify the microstructure evolution. A numerical approach is developed to quantitatively determine solidification thermal variables such as growth rate (interface velocity), temperature gradient, cooling rate, and local solidification time. The experimental microstructure measurements are combined with numerical solutions using finite difference (FD) and control volume (CV) methods, and models are obtained for this structure with solidification parameters. Applying image processing program with relationships suggested in this study gives more accuracy to compute interparticle spacing compared with conventional methods. For Al-12%Si alloys, which are widely used, the dispersion of the phases must reflect both decreasing interface velocity and temperature gradient as the microstructure is examined from the chilled surface towards the riser, thus, increasing coarseness of the microstructure caused by both factors.
机译:本研究的目的是研究热变量对亚共晶和低共熔Al-Si合金铸态组织的影响,并建立Al-12%Si合金单向凝固温度参数与颗粒间间距之间的相关性。凝固。建议基于图像处理程序的新关系,以便准确地量化微观结构的演变。开发了一种数值方法来定量确定凝固热变量,例如生长速率(界面速度),温度梯度,冷却速率和局部凝固时间。使用有限差分(FD)和控制体积(CV)方法将实验性微结构测量与数值解结合,并使用凝固参数获得该结构的模型。与常规方法相比,应用具有本研究中建议的关系的图像处理程序可以更准确地计算粒子间距。对于被广泛使用的Al-12%Si合金,当检查从冷却表面到冒口的微观结构时,相的分散必须反映出界面速度和温度梯度的降低,因此,由两者引起的微观结构的粗糙度增加因素。

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