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Investigation of the Quench Sensitivity of an AlSi10Mg Alloy in Permanent Mold and High-Pressure Vacuum Die Castings

机译:AlSi10Mg合金在常压铸模和高压真空压铸件中的淬火敏感性研究

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摘要

The quench sensitivities of an AlSi10Mg alloy in permanent mold (PM) and high-pressure vacuum die (HPVD) castings were investigated with time–temperature–transformation and time–temperature–property diagrams using an interrupted quench technique. The quench-sensitive temperature range of the HPVD casting sample is 275–450 °C, and its nose temperature is 375 °C. The quench-sensitive range of the PM casting sample is 255–430 °C, and the nose temperature is 350 °C. The mechanical strength versus the cooling rate in both casting samples were predicted via a quench factor analysis and verified experimentally. The critical cooling rate of the HPVD casting sample is 20 °C/s whereas it is 17 °C/s for the PM casting sample. With a shorter critical time, higher nose temperature, and higher critical cooling rate, the HPVD casting sample exhibits a higher quench sensitivity than the PM casting sample. The differences in the quench sensitivities of the AlSi10Mg alloy due to the different casting processes is explained via the different precipitation behavior. At the nose temperature, coarse β-Mg2Si precipitates mainly precipitate along the grain boundaries in the HPVD casting sample, whereas rod-like β-Mg2Si precipitates distribute in the aluminum matrix in the PM casting.
机译:利用间断淬火技术,通过时间-温度-转变和时间-温度-特性图,研究了永久铸模(PM)和高压真空压模(HPVD)铸件中的AlSi10Mg合金的淬火敏感性。 HPVD铸件样品的淬火敏感温度范围为275–450°C,鼻温度为375°C。 PM铸件样品的淬火敏感范围为255–430°C,鼻温度为350°C。通过淬火因子分析预测并通过实验验证了两个铸件样品中的机械强度与冷却速率。 HPVD铸件的临界冷却速率为20°C / s,而PM铸件的临界冷却速率为17°C / s。临界时间较短,机头温度更高和临界冷却速率更高,HPVD铸造样品比PM铸造样品具有更高的淬火敏感性。通过不同的析出行为来解释由于铸造工艺不同而导致的AlSi10Mg合金的淬火敏感性差异。在鼻温下,粗大的β-Mg2Si析出物主要沿HPVD铸件样品中的晶界析出,而棒状的β-Mg2Si析出物则分布在PM铸件的铝基体中。

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