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首页> 外文期刊>Metals and Materials International >Ex situ Oxidation of IN713 Turbine Blades in situ Deposited with Silica Layers during Operation of a Micro-Gas Turbine
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Ex situ Oxidation of IN713 Turbine Blades in situ Deposited with Silica Layers during Operation of a Micro-Gas Turbine

机译:在微型燃气轮机运行过程中原位沉积有二氧化硅层的IN713涡轮机叶片的异位氧化

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摘要

The long-term stability of silica layers deposited in situ on the IN713 turbine blades was investigated by surveying an ex situ thermally cycled oxidation test in air at 1050 °C. Two types of in situ coatings were prepared by burning tetraethylorthosilicate with fuel during a 100-min operation of a 13 kgrdass gas turbine. The degradation of the blades upon the oxidation test was evaluated by monitoring the weight change and by analyzing the microscopic evolution of surface oxides. One coating, characterized by a uniform and relatively thick porous coating on the pressure side, was chipped off in the early stages of the test. The other coating was ~4 um thick at the region near the root, but was too thin (and transparent) at the other parts of the blade to be rendered as protective one. However, this coating was found to be more stable towards chipping than the other coating during the oxidation test. The stability of the coatings was examined in terms of the interaction between the deposited layer and the underlying thermally grown oxide or substrate during the operation of the gas turbine.
机译:通过在1050°C的空气中进行异位热循环氧化测试,研究了就地沉积在IN713涡轮机叶片上的二氧化硅层的长期稳定性。在13 kgrdass燃气轮机100分钟运行期间,通过用燃料燃烧原硅酸四乙酯来制备两种原位涂层。通过监测重量变化并通过分析表面氧化物的微观演变来评估氧化试验时叶片的降解。在测试的早期阶段剥落了一层涂层,其特征在于压力侧上的均匀且相对较厚的多孔涂层。在根部附近的区域,另一层涂层的厚度约为4 um,但在叶片的其他部分则太薄(且透明),无法用作保护层。然而,发现该涂层在氧化测试期间比其他涂层更稳定地抗碎裂。根据在燃气轮机运行期间沉积层与下面的热生长的氧化物或基底之间的相互作用来检查涂层的稳定性。

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