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Oxidation and Cracking Behavior of Nickel Base Superalloys Under Bending Stress in Advanced Steam Condition Beyond 700℃

机译:700℃以上高温蒸汽条件下弯曲应力下镍基高温合金的氧化和开裂行为

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The high efficient pulverized coal fired power generation employing advanced ultra supercritical condition (A-USC) with the main steam condition beyond 700℃ in temperature has been aiming to increase its efficiency of the power generation and reduce CO2 emission. The steam condition applied to the units depends on the materials’ properties like mechanical properties, creep strength and fatigue limit in the temperature. Ni-base superalloys had been considered to be a candidate for the rotating structural materials used in high temperature section of A-USC. The oxidation in a high temperature steam environment is recognized to exhibit differently as compared with its behavior in the gas environments. In addition, cracking behavior of those alloys in these conditions is not well known. In this current investigation, four-point bending tests using Inconel 718, 617 and 625 at 750℃ in air and steam environments were performed. Surface cracks were found in Inconel 718 after four-point bending test in steam and were thought to be formed subsequent to the local separation of surface oxide layer. Cross-sectional elemental analysis showed that Nb oxide and Ti oxide were apparent adjacent to the crack. In addition, applied stress enhanced the overall oxidation rate. Stress accelerated grain boundary oxidation (SAGBO) mechanism is thought to be a possible cracking mode for the conditions.
机译:高效粉煤发电采用先进的超超临界条件(A-USC),主要蒸汽条件温度超过700℃,旨在提高其发电效率并减少CO2排放。应用于设备的蒸汽条件取决于材料的性能,例如机械性能,蠕变强度和温度疲劳极限。镍基高温合金被认为是A-USC高温段中使用的旋转结构材料的候选材料。与在气体环境中的行为相比,高温蒸汽环境中的氧化表现出不同的表现。另外,这些合金在这些条件下的开裂行为还不是众所周知的。在本次调查中,使用Inconel 718、617和625在750℃的空气和蒸汽环境中进行了四点弯曲测试。在蒸汽中进行四点弯曲测试后,Inconel 718中发现了表面裂纹,并认为是在局部分离表面氧化物层之后形成的。截面元素分析表明,在裂纹附近明显存在Nb氧化物和Ti氧化物。另外,施加的应力提高了整体氧化速率。应力加速晶界氧化(SAGBO)机制被认为是该条件下可能的开裂模式。

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