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Investigations on Hydrogen Content Change in Melt Aluminum During Casting under Adjusted Pressure

机译:调整压力下铸造过程中熔融铝氢含量变化的研究

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In this paper, a new low-pressure die-casting with degassing function, casting under adjusted pressure (CAP), is proposed. The working principle of CAP process is introduced in details. This paper focuses on the influences of moisture of compressed air on the hydrogen content within the melt aluminum during the cyclic vacuum-pressurizing programs for CAP process. The experimental results indicate that degassing under vacuum acts positive in refining aluminum melt. The relative moisture of compressed air exerts a significant influence on the hydrogen content of aluminum melt. After the melt aluminum is exposed to the air with a relative moisture of 85% for 90 min, the hydrogen content of the melt aluminum can get to 0.4 ml/100g/Al; while under the circumstance of CAP process, the hydrogen content is maintained between 0.05 and 0.15 ml/100g/Al depending on the moisture capacity of the air, which virtually has no more influence on the casting qualities. Under the condition of dry compressed air, the hydrogen content can be kept at a level as low as 0.05ml/100g/Al, which facilitates to obtain high air-tightness castings.
机译:本文提出了一种具有脱气功能的新的低压压铸,调节压力(盖子)下铸造。详细介绍了CAP过程的工作原理。本文重点介绍了在循环真空加压程序期间熔体铝内熔融铝内氢含量的影响。实验结果表明,真空下脱气在精炼铝熔体中作用阳性。压缩空气的相对水分对铝熔体的氢含量产生显着影响。在熔体铝暴露于空气后,相对水分为85%,熔融铝的相对水分,熔融铝的氢含量可达0.4ml / 100g / al;在盖子方法的情况下,氢含量根据空气的水分容量维持在0.05和0.15ml / 100g / Al之间,这几乎没有对铸造品质的影响。在干压缩空气的条件下,氢含量可以保持在低至0.05ml / 100g / A1的水平,这有利于获得高气密铸件。

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