首页> 外文会议>International Symposium on High Temperature Corrosion and Protection of Materials pt.1; 20040516-21; Les Embiez(FR) >Comparing Different Methods to Determine the Intergranular Oxidation Damage on a Nickel Based Superalioy
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Comparing Different Methods to Determine the Intergranular Oxidation Damage on a Nickel Based Superalioy

机译:比较不同方法确定镍基超高温合金晶间氧化损伤的方法

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Thin tensile specimens of alloy 718 were oxidized under synthetic air, at 1000℃ for different durations, then heat treated according to an aeronautical heat treatment (720℃-8h, 620℃-8h) before being tested on a tensile machine at room temperature. Mechanical tests were performed on sufficiently thin specimens (thickness less than 0.3 mm and a gage length equal to 200 mm) in order to highlight the influence of the damaged zone upon the global tensile behavior. It was shown that the mechanical behavior remained unaffected in terms of the flow law but a significant drop in flow stress was seen in the case of oxidized specimens. This drop was at first attributed to a reduction of the loaded section, but this reduction should then be 30 to 40% greater than the intergranular oxidation area measured by SEM or SIMS. To explain this discrepancy, the hypothesis of oxygen diffusion ahead of the intergranular oxidation front was proposed. In order to check this hypothesis, a new method based on SIMS analysis was used. Elemental concentration profiles together with imaging were obtained following a specifically designed method that allowed the sputtering from the metal to the oxide. This analysis showed that Al_2O_3 forms at the intergranular oxidation front and that no measurable dissolved oxygen is found in the alloy ahead of this front, thus invalidating the proposed hypothesis. Tensile tests on a specimen treated under vacuum at 1000℃ suggest that high-temperature heat treatment is responsible for half of the drop in mechanical properties. Finally, comparing the tensile curves of thin specimens of alloy 718 heat treated at high temperature to a standard curve is an accurate method to quantify the damages on this alloy due to the treatment.
机译:薄合金718的拉伸试样在合成空气中于1000℃氧化不同的时间,然后根据航空热处理(720℃-8h,620℃-8h)进行热处理,然后在室温下在拉伸机上进行测试。对足够薄的试样(厚度小于0.3毫米,标距长度等于200毫米)进行了机械测试,以突出损坏区域对整体拉伸性能的影响。结果表明,力学性能不受流动规律的影响,但是在氧化试样的情况下,流动应力显着下降。起初,这种下降归因于负载截面的减小,但是这种减小应比通过SEM或SIMS测量的晶间氧化面积大30%至40%。为了解释这种差异,提出了氧在晶间氧化前沿之前扩散的假设。为了检验这一假设,使用了一种基于SIMS分析的新方法。按照专门设计的方法获得元素浓度分布以及成像,该方法允许从金属溅射到氧化物。该分析表明Al_2O_3在晶间氧化前沿形成,并且在该前沿之前的合金中未发现可测的溶解氧,因此使所提出的假设无效。对在1000℃真空下处理的样品进行的拉伸试验表明,高温热处理造成了机械性能下降的一半。最后,将高温热处理过的合金718的薄试样的拉伸曲线与标准曲线进行比较,是一种精确的方法,可以量化这种处理对这种合金造成的破坏。

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