首页> 外文会议>EPD congress;TMS annual meeting exhibition >INVESTIGATION OF THE EFFECTS OF SOLIDIFICATION RATE AND MELT HYDROGEN CONCENTRATION ON POROSITY FORMATION IN ALUMINUM ALLOY 2024
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INVESTIGATION OF THE EFFECTS OF SOLIDIFICATION RATE AND MELT HYDROGEN CONCENTRATION ON POROSITY FORMATION IN ALUMINUM ALLOY 2024

机译:凝固速率和熔体氢浓度对2024铝合金孔隙形成的影响的研究

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摘要

The effects of solidification rate, initial melt hydrogen concentration, and grain refining on porosity formation in aluminum alloy 2024 have been investigated with unidirectionally cooled laboratory-size ingots. The ingots were prepared from melts containing hydrogen concentration of 0.059-0.27 cm~3/100 g and solidified at 0.2-37 °C/s. As expected, the amount of porosity, average pore size, and pore number density increased with increase in melt hydrogen concentration and decrease in solidification rate. However, the effect of solidification rate was greater at the very low melt hydrogen concentration (0.059 cm~3/100 g). These results are consistent with reported effects of solidification rate and melt hydrogen content on porosity formation in other aluminum alloys. Interestingly, addition of grain refiner slightly increased the amount of porosity and the average pore size, especially at solidification rates above 1°C/s.
机译:使用单向冷却的实验室尺寸铸锭,研究了凝固速率,初始熔体氢浓度和晶粒细化对2024铝合金中孔隙形成的影响。由含氢浓度为0.059-0.27 cm〜3/100 g的熔体制备铸锭,并在0.2-37°C / s下固化。如预期的那样,孔隙率,平均孔径和孔数密度随熔体氢浓度的增加和凝固速率的降低而增加。然而,在极低的熔体氢浓度(0.059 cm〜3/100 g)下,凝固速率的影响更大。这些结果与报道的凝固速率和熔体氢含量对其他铝合金中孔隙形成的影响相一致。有趣的是,添加晶粒细化剂会略微增加孔隙率和平均孔径,特别是在高于1°C / s的凝固速率下。

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