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首页> 外文期刊>Journal of Mechanical Science and Technology >Control of surface temperature of an aluminum alloy billet by air flow during a heating process at elevated temperature
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Control of surface temperature of an aluminum alloy billet by air flow during a heating process at elevated temperature

机译:在高温加热过程中通过气流控制铝合金坯料的表面温度

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摘要

The procedure of semi-solid forming is composed of heating a billet, forming, compression holding and ejecting step. There are several methods to heat a billet during semi-solid forming process such as electric heating and induction heating. Usually in semi-solid forming process, induction heating has been adopted to achieve more uniform temperature of semi-solid material. Although induction heating is better method than any others, however, there is still difference of temperature between internal part and surface part of semi-solid material. Worse yet, in case of high liquid fraction of semi-solid material, liquid of the billet will flow down though solid of the billet still remains, which is very difficult to handle. In the present study, induction heating of the billet during thixoforging process with forced surface cooling has been performed to obtain more uniform distribution of temperature, microstructure and shape of the billet. Distribution of temperature of the billets was measured and compared with that of conventional distribution of temperature. Microscopic and macroscopic aspects of the billets were discussed according to location of the measuring points. By this new induction heating method, not only temperature distributions over the whole billet become uniform, but also control of temperature distribution between inside and outside part of the billet is possible as user's experimental intentions.
机译:半固态成型的过程包括加热坯料,成型,压缩保持和顶出步骤。在半固态成型过程中,有几种加热坯料的方法,例如电加热和感应加热。通常在半固态成型过程中,采用感应加热来使半固态材料的温度更均匀。尽管感应加热是比其他方法更好的方法,但是半固态材料的内部和表面之间仍然存在温差。更糟糕的是,在半固体物料的液体含量较高的情况下,尽管坯料中的固体仍然残留,但坯料中的液体仍会流下,这很难处理。在本研究中,在触变成形过程中通过强制表面冷却对坯料进行感应加热,以使坯料的温度,微观结构和形状得到更均匀的分布。测量坯料的温度分布并将其与常规温度分布进行比较。根据测量点的位置讨论了坯料的微观和宏观方面。通过这种新的感应加热方法,不仅可以使整个坯料上的温度分布变得均匀,而且可以根据用户的实验目的控制坯料内部和外部之间的温度分布。

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