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High Temperature Oxidation of Liquid Cu-Ti Alloy at 1473K

机译:1473K下液态Cu-Ti合金的高温氧化

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摘要

The kinetics of oxidation of liquid Cu-0.5mass%Ti alloy at 1473K in CO_2-CO gas mixture has been investigated by varying the oxygen potential. The pO_2 is set to be enough to oxidize Ti in liquid Cu-Ti alloy but not for the oxidation of liquid Cu. Alloy samples were taken with a quartz tube during the experiments and Ti and O contents in the samples were analyzed by inductively coupled plasma method, and infrared absorption method. The phases of the formed titanium oxide layers were consisted of several different titanium oxides and were identified by using EBSD. The oxidation rate was evaluated based on the change of the Ti content in the Cu-Ti melts. The apparent overall oxidation rate is reasonably represented by the parabolic rate law. This oxidation behaviour was well explained based on the multi-layered oxidation theory.
机译:通过改变氧势,研究了液态Cu-0.5质量%Ti合金在1473K下在CO_2-CO混合气体中的氧化动力学。将pO_2设定为足以氧化液态Cu-Ti合金中的Ti,但不足以氧化液态Cu。实验过程中用石英管采集合金样品,并采用电感耦合等离子体法和红外吸收法对样品中Ti和O含量进行分析。形成的氧化钛层的相由几种不同的氧化钛组成,并通过EBSD鉴定。根据Cu-Ti熔体中Ti含量的变化评估氧化速率。表观总氧化速率由抛物线速率定律合理表示。基于多层氧化理论很好地解释了这种氧化行为。

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