Controlling pool depth during VAR of Alloy 718

F. Lopez, J. Beaman, R. Williamson, D. Evans
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引用次数: 1

Abstract

A longtime goal of superalloy producers has been to control the geometry of the liquid pool in solidifying ingots. Accurate pool depth control at appropriate values is expected to result in ingots free of segregation defects. This article describes an industrial VAR experiment in which a 430mm (17 in) diameter Alloy 718 electrode was melted into a 510mm (20 in) ingot. In the experiment, the depth of the liquid pool at the mid-radius was controlled to three different set-points: 137 mm (nominal), 193 mm (deep) and 118 mm (shallow). At each level, the pool depth was marked by a power cutback of several minutes. The ingot was sectioned and longitudinal slices were cut out. Analysis of the photographed ingot revealed that accurate control was obtained for both the nominal and deep pool cases, while the third one was not conclusive.
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718合金VAR时池深控制
高温合金生产商长期以来的目标是控制凝固铸锭时液池的几何形状。准确地将熔池深度控制在适当的值,可以使铸锭免于偏析缺陷。本文描述了一个工业VAR实验,其中430毫米(17英寸)直径的合金718电极被熔化成510毫米(20英寸)的铸锭。在实验中,中半径处的液池深度被控制在三个不同的设定点:137 mm(标称)、193 mm(深)和118 mm(浅)。在每一层,泳池的深度都以断电几分钟为标志。对铸锭进行切片,切出纵向薄片。对拍摄的钢锭的分析表明,在名义和深池情况下都获得了精确的控制,而第三种情况则没有定论。
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