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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Structure observations related to hot tearing of Al-Cu billets produced by direct-chill casting
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Structure observations related to hot tearing of Al-Cu billets produced by direct-chill casting

机译:与直接冷铸生产的Al-Cu钢坯热撕裂有关的组织观察

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In this paper, hot cracking in Al-(1-4.5%) Cu direct-chill (DC) cast billet was investigated by means of controlled DC casting followed by structure examination. No hot cracks were found in the billets of alloys containing more than 4% Cu. The hot tear surfaces of the DC cast billets with different compositions were observed in a scanning electron microscope. The porosity fraction measurement was also performed. It was found that decreasing the copper concentration from 3 to 1 % caused a decrease in the amount of eutectic observed on the hot tear surface. Special features appeared on the hot tear surface of an Al-1% Cu alloy in which the hot tear predominantly propagated through the solid phase, i.e., bridged grain boundary. A solute-rich (eutectic) path along grain boundaries ahead of the hot-crack tip was observed in billets with hot tears, which could be an evidence of crack healing. The porosity concentrated in the center of the billet and its amount was lower in alloys with high hot tear susceptibility and in alloys not susceptible to hot tearing. Increased casting speed lead to increasing porosity.
机译:本文通过控制DC铸造,然后通过结构检查的方法研究了Al-(1-4.5%)Cu直冷(DC)铸坯的热裂纹。在含铜量超过4%的合金钢坯中未发现热裂纹。在扫描电子显微镜中观察到具有不同组成的DC铸坯的热撕表面。还进行了孔隙率测量。发现将铜浓度从3%降低到1%导致在热撕裂表面上观察到的共晶量减少。 Al-1%Cu合金的热裂表面上出现了特殊的特征,其中热裂主要通过固相(即,桥接的晶界)传播。在带有热撕裂的钢坯中观察到沿热裂纹尖端之前的晶界富集(共晶)的路径,这可能是裂纹愈合的证据。孔隙率集中在坯料的中心,并且在具有高热裂敏感性的合金中和在不易于热裂的合金中,孔隙率较低。铸造速度的提高导致孔隙率的提高。

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