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首页> 外文期刊>International Journal Cast Metals Research >Effect of Mg and Cu additions on the microstructural characteristics and tensile properties of Sr-modified Al-Si eutectic alloys
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Effect of Mg and Cu additions on the microstructural characteristics and tensile properties of Sr-modified Al-Si eutectic alloys

机译:Mg和Cu的添加对Sr改性Al-Si共晶合金显微组织和拉伸性能的影响

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The present work was performed on twenty-one alloys containing Al-11.5wt% Si, with magnesium (Mg) in the range of 0.1-0.4 wt%, and copper (Cu) in the range of 1.0-3.0 wt%. Fluidity measurements and thermal analysis for each of these alloy melts were carried out. The alloys were cast in the form of tensile test bars. The test bars were solution heat treated at a temperature of ~500℃ for 8h, then quenched in hot water (60 ℃), followed by artificial ageing at 155℃ for 5 h, and then cooling in air. The effects of Mg and Cu additions on the tensile properties, depression in the Al-Si eutectic temperature, and microstructural characteristics (Si and Cu-phase particle characteristics and morphology) have been discussed in detail. The results show that the addition of Mg decreases the fluidity and the eutectic Si temperature. While addition of Cu also decreases the eutectic temperature, the fluidity, however, is increased. The presence of Mg and Cu decreases the modifying effect of Sr on the Si particles due to an increase in the solidification time, as well as the Sr, Mg, Cu interactions that occurs as a result of these additions. Mg additions in the range of 0.1-0.4 wt% increase YS (from 22% up to 94%) and UTS (from 7% up to 52%) and decrease the percent elongation (40%) depending on the Cu content of the alloy, i.e., the higher the Cu content, the lower the increase in strength. Addition of Cu has a similar effect on YS and UTS at alloy Mg levels of 0.1 wt% only, with no effect at higher Mg values, while elongation continuously decreases. The volume fraction of Al{sub}2Cu phase increases by approximately 0.76% for every 1 wt% increase in Cu. This observation is important in the selection of the appropriate solution heat treatment regime in order to avoid incipient melting.
机译:本工作是在21种合金中进行的,这些合金包含Al-11.5wt%的Si,镁(Mg)的范围为0.1-0.4 wt%,铜(Cu)的范围为1.0-3.0 wt%。对这些合金熔体的每一个进行流动性测量和热分析。合金以拉伸测试棒的形式铸造。将测试棒在〜500℃的温度下固溶热处理8h,然后在热水(60℃)中淬火,然后在155℃下人工老化5h,然后在空气中冷却。详细讨论了添加Mg和Cu对拉伸性能,Al-Si共晶温度降低和微结构特征(Si和Cu相颗粒特征和形态)的影响。结果表明,Mg的添加降低了流动性和Si的共晶温度。尽管添加Cu也降低了共晶温度,但是增加了流动性。由于凝固时间的增加以及由于这些添加而发生的Sr,Mg,Cu相互作用,Mg和Cu的存在降低了Sr对Si颗粒的改性作用。镁的添加量在0.1-0.4 wt%范围内,取决于合金中的Cu含量,YS(从22%到94%)和UTS(从7%到52%)增加,延伸百分比(40%)降低即,Cu含量越高,强度增加越小。仅当合金的Mg含量为0.1 wt%时,Cu的添加对YS和UTS的作用相似,而在更高的Mg值下则无影响,而延伸率则持续降低。每增加1 wt%,Al {sub} 2Cu相的体积分数将增加约0.76%。为了避免初期熔化,该观察对于选择适当的固溶热处理方案很重要。

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