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Investigation of electron beam melting and refining of titanium and tantalum scrap

机译:电子束熔炼钛钽废料的研究

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摘要

In this paper obtained experimental and theoretical data for Ti and Ta electron beam melting regeneration from waste products are presented. Different technological regimes and methods are realized and the obtained results are discussed. Element analyses of the impurities' concentration of the materials before electron beam melting and refining (EBMR) and of the ingots after EBMR are compared. Statistical approach is applied for optimization of process parameters for Ti. Material losses less than 1% and oxygen concentration less than 400 ppm after EBMR of Ti scrap are achieved at 11.5-12 kW beam power and 0.09-0.14 mm/s casting velocity. The optimal process conditions and purification data for Ti refining by minimization of all impurities' concentrations and the material losses at the same time are obtained at 11.25 kW electron beam power and 0.0835 mm/s casting velocity. For the performed experiments the best purification of Ta (99.985) is obtained at 24 kW beam power and 0.029 mm/s casting velocity, the residence times on the front side of the feeding block and in the liquid metal pool are 2min and 5min, respectively.
机译:本文给出了从废品中回收钛和钽电子束的实验结果和理论数据。实现了不同的技术方案和方法,并对获得的结果进行了讨论。比较了电子束熔化和精炼(EBMR)前材料和EBMR之后的铸锭中杂质浓度的元素分析。统计方法可用于优化Ti的工艺参数。在11.5-12 kW的束功率和0.09-0.14 mm / s的铸造速度下,Ti废料的EBMR后材料损失小于1%,氧浓度小于400 ppm。通过在11.25 kW电子束功率和0.0835 mm / s的铸造速度下,通过最小化所有杂质的浓度和同时减少材料损失,获得用于提纯Ti的最佳工艺条件和纯化数据。对于进行的实验,以24 kW的束功率和0.029 mm / s的铸造速度可获得Ta(99.985)的最佳纯化,进料块前侧和液态金属池中的停留时间分别为2min和5min。 。

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