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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture >An investigation into the effect of die temperature and heat treatment on A360 properties produced by the semi-solid forming and cooling slope method
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An investigation into the effect of die temperature and heat treatment on A360 properties produced by the semi-solid forming and cooling slope method

机译:模具温度和热处理对半固态成形和冷却斜率方法产生的A360性能的影响的研究

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摘要

Forming Al alloys using the semi-solid method could largely overcome major problems of the die casting process. The cooling slope method is applied by pouring the melt on to the cooling slope to refine and spherodize it. Applying the cooling slope method in casting is relatively simple, yet financially beneficial in terms of required equipment, not to mention the fact that it is capable of producing semi-solid slurries. Parameters to be considered in this method include die temperature and heat treatment; both affecting microstructure and mechanical properties of the work piece. In this study, pouring conditions were 60° slope angle and 400 mm length. Under these conditions, the highest obtained hardness was 77 HB. Three different temperatures (25 °C, 300 °C, and 600 °C) were compared in order to obtain the most suitable microstructure. The 300 °C die temperature was found to result in the optimum microstructure. Thereafter, samples produced under the optimum die temperature were reheated in 580 °C for 5, 10, and 15 min and then immediately quenched in 25 °C water. Results indicate that samples obtained from 10 min heating had finer and more proportional microstructure, and under this condition hardness was increased from 80.6 HB to 87.1 HB.
机译:使用半固态方法成型铝合金可以极大地克服压铸工艺的主要问题。通过将熔体倒在冷却斜面上以细化和球化来应用冷却斜面方法。在铸造中应用冷却斜率方法相对简单,但是就所需设备而言在经济上是有益的,更不用说它能够生产半固态浆料的事实。该方法要考虑的参数包括模具温度和热处理;都会影响工件的微观结构和机械性能。在本研究中,倾倒条件为60°倾斜角和400 mm长。在这些条件下,获得的最高硬度为77 HB。比较了三种不同的温度(25°C,300°C和600°C),以获得最合适的微观结构。发现模具温度为300°C,可以得到最佳的显微组织。此后,将在最佳模具温度下生产的样品在580°C下重新加热5、10和15分钟,然后立即在25°C水中淬灭。结果表明,在加热10分钟后获得的样品具有更细,更成比例的微观结构,在此条件下,硬度从80.6 HB增加到87.1 HB。

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