加热频率对二维铝合金半固态触变成形影响的实验与数值研究

N. V. Du, L. P. Minh, T. Nguyen-Quang
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引用次数: 0

摘要

本文研究了频率对铝合金加热感应过程的影响。我们的目标是通过考虑样品表面加热和冷却过程中的辐射和对流条件,从而考虑整个样品体积上温度的时空变化,来处理半固态金属成形中更普遍的感应加热问题。对圆柱形铝合金进行了室内实验,并对具有对流和辐射边界条件的二维传热方程的物理模型进行了数值求解。有趣的是,当加热频率为21-24KHz时,从中心到表面,即整个加热体积,所有样品的温度分布都非常均匀。我们还观察到,我们的样品在感应加热过程后的质量非常好,没有出现“脚象”的图案。
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Experimental and numerical studies on the effects of heating frequency in the thixoforming process for the 2D aluminum alloy semi-solid state
This paper presents a study of frequency effects on the heating induction process for aluminum alloys. Our objectives are to deal with the more general induction heating issues in the semi-solid metal forming by taking into account the conditions of radiation and convection during the heating combined with cooling process at the surface of samples, hence the spatial-temporal variation of temperature on the whole sample volume. The Lab experiment for a cylinder aluminum alloy and numerical approaches for the physical model of a 2D heat transfer equation with the boundary conditions of convection and radiation were carried on. It is interesting to find that with a smaller rank of heating frequency 21-24KHz on the aluminum alloy, the distribution of the temperature is very homogenous on all samples from the center to surface areas, i.e. on the whole heated volume. We also observed that the quality of our samples after the induction heating process was very good and the `foot elephant' pattern did not happen.
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