首页> 外文会议>World Conference on Titanium v.4; 20030713-20030718; Hamburg; DE >A New Processing Route for Titanium Alloys by Aluminothermic Reduction of Titanium Dioxide and Refining by ESR
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A New Processing Route for Titanium Alloys by Aluminothermic Reduction of Titanium Dioxide and Refining by ESR

机译:铝热还原二氧化钛及电渣重熔提纯钛合金的新工艺路线

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In this work a thermodynamic model based on molar Al/TiO_2 ratio, CaO content in slag and energy density was created to describe aluminothermic reduction. The influence of these parameters was theoretically calculated and experimentally proofed. The high solubility of γ-TiAl for oxygen doesn't allow to produce γ-TiAl with low aluminium content and low oxygen content (below 500 ppm) at the same time. Therefore, a second reduction step with Ca is necessary. Thermodynamic calculations showed that a Ca containing CaF_2 slag is able to decrease oxygen content in γ-TiAl below 100 to 250 ppm depending on the molar slag/metal ratio and Ca content in the slag. A pilot electro slag remelting unit is used to proof these calculations. In opposite to common aluminothermic process the produced liquid metal is directly cast without contact to air into a water cooled copper mould. This eliminates the difficult process step of impacting γ-TiAl pieces to an electrode after the won ingot has been crushed.
机译:在这项工作中,建立了基于Al / TiO_2摩尔比,炉渣中CaO含量和能量密度的热力学模型来描述铝热还原。从理论上计算并通过实验证明了这些参数的影响。 γ-TiAl对氧气的高溶解度不允许同时生产低铝含量和低氧含量(低于500 ppm)的γ-TiAl。因此,需要用Ca进行第二还原步骤。热力学计算表明,取决于渣/金属的摩尔比和渣中Ca的含量,含有CaF_2渣的Ca能够将γ-TiAl中的氧含量降低至低于100至250ppm。使用中试电渣重熔装置来证明这些计算。与普通的铝热工艺相反,所生产的液态金属无需与空气接触就直接浇铸到水冷铜模中。这样消除了在将铸锭压碎后将γ-TiAl片撞击到电极上的困难处理步骤。

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