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Electromagnetic shaping and solidification control of Ni-base superalloys under vacuum

机译:真空下镍基高温合金的电磁成形与凝固控制

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摘要

This paper aims to introduce two novel techniques of electromagnetic confinement to process Ni-base alloys for castings and ingots with shaped cross-section. Based on systematically investigation on the distribution of magnetic and temperature fields and their coupling effect, a containerless electromagnetic shaping of aluminum alloy and superalloys samples was successfully realized by means of a specially designed apparatus with dual induction coils and dual-frequencies and by using a tailor-made crystallizer under vacuum condition. A near-net shaped turbine blade of superalloys with directionally solidified microstructure by electromagnetic soft-contact confinement technology was also obtained. The dynamic stability and profile behavior of melt and temperature gradient during electromagnetic confinement are presented.
机译:本文旨在介绍两种新颖的电磁约束技术,用于加工具有异形截面的铸件和铸锭的镍基合金。在系统研究磁场和温度场的分布及其耦合效应的基础上,通过专门设计的带有双感应线圈和双频率的设备,并使用裁缝,成功地实现了铝合金和高温合金样品的无容器电磁成型。制得的结晶器在真空条件下。通过电磁软接触约束技术,获得了具有定向凝固组织的超合金近终形涡轮叶片。给出了电磁约束过程中熔体的动态稳定性和轮廓行为以及温度梯度。

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