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首页> 外文期刊>International Journal Cast Metals Research >Mechanical properties of Al-Si-Cu alloys produced by the continuous casting process with heating process
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Mechanical properties of Al-Si-Cu alloys produced by the continuous casting process with heating process

机译:连续铸造工艺采用加热过程生产的铝合金合金的力学性能

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摘要

The mechanical properties of aluminium alloys produced by the continuous cast process and heating process (heat-cast-sample) were investigated, where the aluminium alloys are heated continuously to high temperatures for 1h immediately following heated mould continuous casting (HMC) and sand gravity casting (SGC). The material strength and ductility of the aluminium alloys were irregularly altered depending on the heating temperature. The mechanical properties decreased when the heating temperature increased to 400 degrees C and were then recovered when the temperature increased to 520 degrees C. However, these properties decreased again when heated to more than 540 degrees C. The mechanical properties of the HMC-heat-cast-sample showed overall higher than those for the SGC-sample. In addition to high tensile strength, high ductility was obtained for the HMC-520 degrees C samples compared with those for the as-cast-sample. Such changes were found to be directly attributable to the different severity of precipitate; moreover the crystal orientation was unchanged even after the heating process.
机译:研究了连续铸造工艺和加热过程(热铸件)产生的铝合金的机械性能,其中铝合金连续加热至高温,在加热的模具连续铸造(HMC)和砂重力铸件之后立即加热1小时(SGC)。铝合金的材料强度和延展性根据加热温度不规则地改变。当加热温度升至400℃时,机械性能降低,然后在温度增加到520℃时回收。然而,当加热至大于540℃时,这些性能再次降低。HMC-热的机械性能铸件样本显示总体高于SGC样品的样品。除了高抗拉强度之外,与用于铸件样品的那些相比,将获得HMC-520℃样品的高延展性。发现这种变化是直接归因于沉淀的不同严重程度;此外,即使在加热过程之后,晶体取向也没有变化。

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