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首页> 外文期刊>Journal of University of Science and Technology Beijing >Influence of hydrogen content on the behavior of grain refinement in hypereutectic aluminum-silicon alloy
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Influence of hydrogen content on the behavior of grain refinement in hypereutectic aluminum-silicon alloy

机译:氢含量对过共晶铝硅合金晶粒细化行为的影响

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摘要

Dissolved hydrogen is harmful to mechanical properties of refined hypereutectic aluminum-silicon alloys. In the present work, by using a stepped-form mold and the hydrogen-detecting instrument HYSCAN II, the relationship between the initial hydrogen content in the melt and the refinement effect on the casting of hypereutectic aluminum-silicon alloy was investigated. The experimental results show that the cooling rate, the hydrogen content and the grain refinement effect are three interactive factors. When the hydrogen content is above 0.20 mL/100 g and the cooling rate is lower than that in 50 mm-thick step, hydrogen dissolved in the alloy melt influences the grain refinement effect. With increasing the cooling rate, the critical hydrogen content increases too. It is expected that much hydrogen in the melt make the net interfacial energy larger than or equal to zero, resulting in the shielding of the particles AlP during solidification and that the critical gas content is closely related to the critical radius of embryo bubbles.
机译:溶解的氢对精制的过共晶铝硅合金的机械性能有害。在目前的工作中,通过使用阶梯形模具和氢检测仪HYSCAN II,研究了熔体中初始氢含量与过共晶铝硅合金铸造细化效果之间的关系。实验结果表明,冷却速度,氢含量和晶粒细化效果是三个相互影响的因素。当氢含量高于0.20mL / 100g并且冷却速率低于50mm厚的步骤中的冷却速率时,溶解在合金熔体中的氢影响晶粒细化效果。随着冷却速率的增加,临界氢含量也增加。可以预料的是,熔体中的大量氢会使净界面能大于或等于零,从而在固化过程中屏蔽了AlP颗粒,并且临界气体含量与胚胎气泡的临界半径密切相关。

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