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首页> 外文期刊>International Journal Cast Metals Research >Influence of variations in alloy composition on castability and process stability, Part 1: Gravity and pressure casting processes
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Influence of variations in alloy composition on castability and process stability, Part 1: Gravity and pressure casting processes

机译:合金成分变化对铸造性和工艺稳定性的影响,第1部分:重力铸造和压力铸造工艺

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摘要

The influence of variations in alloy composition on the fluidity of three different light metal alloys was investigated. The aluminium alloys AlSi9Cu3 (A380) and AlSi7Mg (A356) as well as the magnesium alloy AZ91 were cast into spiral fluidity test dies at their upper and lower compositional tolerance limits. The test results show significantly varied behaviour, which is explained by microstructural features and heat content. In alloy AlSi7Mg at the upper compositional limit the formation of intermetallic phases in the interdendritic liquid physically blocks the flow and leads to short flow length compared with the same alloy with low iron and manganese content. Alloy AlSi9Cu3 at the upper compositional limit is very close to eutectic composition and flows significantly better than the alloy at the lower tolerance limit. The intermetallic phases are formed simultaneously with the matrix during eutectic solidi fication and do not block the flow. In the magnesium alloy the intermetallic phase is incorporated in the primary magnesium phase and does not hinder the flow. A higher content of alloying elements increases the flow length owing to a higher heat content of the melt.
机译:研究了合金组成变化对三种不同轻金属合金流动性的影响。铝合金AlSi9Cu3(A380)和AlSi7Mg(A356)以及镁合金AZ91在其成分公差上限和下限下铸入螺旋流动性测试模具中。测试结果显示出明显不同的行为,这可以通过微观结构特征和热量来解释。在上限成分为AlSi7Mg的合金中,与铁和锰含量低的相同合金相比,在枝晶间液体中形成金属间相实际上会阻碍流动并导致较短的流动长度。上限成分的合金AlSi9Cu3非常接近共晶成分,其流动性明显好于下限极限的合金。在共晶凝固期间,金属间相与基体同时形成,并且不会阻塞流动。在镁合金中,金属间相结合在初级镁相中,并且不会阻碍流动。较高含量的合金元素由于熔体的较高热量而增加了流动长度。

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