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Oxidation of Some Titanium Alloys in Air at Elevated Temperatures

机译:高温下空气中某些钛合金的氧化

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This paper presents comparative studies on the performance of two titanium alloys (Ti-6Al-1Mn, Ti-45.9Al-8Nb) in an oxidizing atmosphere at 700 °C and 800 °C. Testing procedure comprised thermogravimetric measurements at a constant temperature and in thermal cycling conditions (1-h and 20-h cycles at constant temperature followed by rapid cooling). The overall duration of the cyclic oxidation tests was up to 1000 hours. The oxidized specimens were analyzed in terms of chemical composition, phase composition, and morphology (SEM/EDS, TEM/EDS, XRD). The extent and forms of alloy degradation were evaluated on the basis of microscopic observation of specimen fractures and cross-sections. Selected specimens were examined by means of XPS, SIMS and GDS. Oxidation mechanism of Ti-46Al-8Nb was assessed a two-stage oxidation method using oxygen-18 and oxygen-16. Apparently, the oxidation of this alloy proceeded in several stages. According to XPS, already after quite short reaction time, the specimens were covered with a very thin oxide film, mainly composed of aluminum oxide (corundum). A thicker layer of titanium dioxide (rutile) developed underneath. These two layers were typical of the oxidation products formed on this alloy, even when tested in thermal cycling conditions. In general, the scale had a complex multilayer structure but it was thin and adherent. Under the continuous layer of titania, there was a fine-grained zone composed of mixed oxides. The alloy/scale interface was marked with niobium-rich precipitates embedded in a titanium-rich matrix. There were some indications of secondary processes occurring under the initial continuous oxide layers (e.g. characteristic layout of pores or voids). Thickness of inner scale layers clearly increased according to parabolic kinetics, while that of the outer compact layer (mainly TiO_2) changed only slightly. The distribution of oxygen isotopes across the scale/alloy interface indicated two-way diffusion of the reacting species - oxygen inward and metals outward diffusion. Silicon deposited on Ti-6Al-1Mn alloy positively affected scale adhesion and remarkably reduced alloy degradation rate.
机译:本文介绍了两种钛合金(Ti-6Al-1Mn,Ti-45.9Al-8Nb)在700°C和800°C的氧化气氛中的性能比较研究。测试程序包括在恒定温度和热循环条件下进行的热重测量(在恒定温度下1h和20h循环,然后快速冷却)。循环氧化测试的总持续时间长达1000小时。根据化学组成,相组成和形态(SEM / EDS,TEM / EDS,XRD)对氧化后的样品进行了分析。在显微镜观察样品断裂和横截面的基础上,评估了合金降解的程度和形式。通过XPS,SIMS和GDS检查选定的标本。利用氧18和氧16对Ti-46Al-8Nb的氧化机理进行了两阶段氧化评估。显然,这种合金的氧化过程分几个阶段进行。根据XPS的说法,经过很短的反应时间后,样品已被一层非常薄的氧化膜覆盖,该氧化膜主要由氧化铝(刚玉)组成。在其下方形成了较厚的二氧化钛(金红石)层。即使在热循环条件下进行测试,这两层也是在该合金上形成的氧化产物的典型代表。通常,水垢具有复杂的多层结构,但很薄且有附着力。在二氧化钛的连续层下面,有一个由混合氧化物组成的细颗粒区。合金/氧化皮界面以嵌入富钛基体中的富铌沉淀物为标志。有迹象表明在初始连续氧化物层下发生了二次加工(例如孔或空隙的特征性布置)。根据抛物线动力学,内部氧化皮层的厚度明显增加,而外部致密层(主要为TiO_2)的厚度仅略有变化。氧同位素在水垢/合金界面上的分布表明了反应物种的双向扩散-氧气向内扩散和金属向外扩散。沉积在Ti-6Al-1Mn合金上的硅对鳞片附着力有积极影响,并显着降低了合金的降解速度。

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