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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of Ag content and drawing strain on microstructure and properties of directionally solidified Cu-Ag alloy
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Effect of Ag content and drawing strain on microstructure and properties of directionally solidified Cu-Ag alloy

机译:Ag含量和拉伸应变对定向凝固Cu-Ag合金微观结构和性能的影响

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摘要

Continuous columnar-grained Cu-Ag alloy bars containing different silver contents (6 wt%, 12 wt%, 24 wt%) with diameters of 10 mm were prepared by directional solidification technology firstly and drawn to 0.3 mm directly at room temperature without intermediate annealing in this study. With incremental Ag contents, eutectic microstructure distributed in the interdendritic region which parallel to the casting direction grew with a higher tensile strength but almost invariable elongation and electrical conductivity of the alloys. Meanwhile, the tensile strength of the alloy wires were enhanced greatly with increasing drawing strains owing to the remarkable fiber reinforcement effect, whereas the elongation and electrical conductivity decreased slowly. With the increase of drawing strains, columnar grains and eutectic phases were drawn into dense microcomposite structure, and the volume fraction of 111 texture in Cu and Ag phases increased in the three experimental alloys; while, the growth rate of 111 texture in Ag phases was lower than that in Cu phases, which is one of the main reasons for the excellent ductility of the alloys. These results may offer reference for the choice of Ag content and drawing strain, and then developing a short preparation process of Cu-Ag alloys with directional solidification + drawing (without intermediate annealing).
机译:通过定向凝固技术首先通过定向凝固技术制备含有不同银含量(6wt%,12wt%,24wt%)的连续柱状粒子的Cu-Ag合金棒,并在室温下直接拉伸至0.3mm,无中间退火在这个研究中。具有增量Ag含量,分布在与铸造方向平行的延伸强度平行的共晶区域中的共晶微观结构具有较高的拉伸强度,但几乎不变的伸长率和合金的电导率。同时,由于纤维增强效果显着的纤维增强效果,随着拉伸菌株的增加,合金线的拉伸强度大大提高,而伸长率和电导率缓慢降低。随着拉伸菌株的增加,将柱状晶粒和共晶相拉入致密的微型复合结构,以及体积分数。 111&三种实验合金中Cu和Ag阶段的纹理增加;虽然,&的生长速度111& Ag阶段的质地低于Cu相中的纹理,这是合金延展性优异延展性的主要原因之一。这些结果可以为Ag含量和拉伸菌株的选择提供参考,然后开发具有定向凝固+拉伸的Cu-Ag合金的短的制备方法(没有中间退火)。

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