首页> 外文会议>Symposium on Thermomechanical Fatigue Behavior of Materials >Collaborative Research on Thermo-Mechanical and Isothermal Low-Cycle Fatigue Strength of Ni-Base Superalloys and Protective Coatings at Elevated Temperatures in The Society of Materials Science, Japan (JSMS)
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Collaborative Research on Thermo-Mechanical and Isothermal Low-Cycle Fatigue Strength of Ni-Base Superalloys and Protective Coatings at Elevated Temperatures in The Society of Materials Science, Japan (JSMS)

机译:日本材料科学学会高温高温合金和保护涂层热机械和等温低周疲劳强度的协作研究(JSMS)

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Results of collaborative research by "Subcommittee on Superalloys and Coatings" in The Society of Materials Science, Japan (JSMS), are presented, which cover the thermo-mechanical fatigue (TMF) and high temperature isothermal low-cycle fatigue (ILCF) strengths of Ni-Base superalloy, substrate alloys and the protective coatings. Three kinds of Ni-base Superalloys were selected as the substrate: a single crystal alloy, CMSX-4; a directionally solidified alloy, CM247LC; and a polycrystalline alloy, IN738LC. On these substrate specimens the CoNiCrAlY alloy was coated by 250 μm in thickness by low pressure plasma spraying, and then aluminized. This process was managed and undertaken by one of member companies of the Subcommittee. The round robin TMF and ILCF tests were carried out under a strain ratio of -1 at temperature ranged between 400 and 900°C. In the former the tests were performed under the out-of-phase and diamond phase conditions in which the phase difference between strain and temperature were 180° and 90°, respectively. It is shown by the round-robin tests that the TMF lives, as well as the ILCF, were strongly dependent on the substrate alloys. Many important, or noteworthy results were also found: e.g., the TMF fracture behavior of the coated specimens revealed some unique characteristics that were hardly deduced from that of the bare specimens. The effect of coating on the ILCF life was strongly dependent on the temperature. It was not reasonable, or difficult to try to estimate the TMF life of the coatings from the ILCF test results. Based on the observations on the crack initiation, propagation and the fracture surface, the effects of the substrate alloy and the coating on the TMF and ILCF lives were discussed.
机译:提出了“超合金和涂料”中的“小组委员会”的协同研究结果,介绍了日本(JSMS),涵盖了热机械疲劳(TMF)和高温等温低循环疲劳(ILCF)强度Ni基超合金,衬底合金和保护涂层。选择三种Ni碱基超合金作为基材:单晶合金,CMSX-4;定向凝固的合金,CM247LC;和多晶合金In738LC。在这些基材上,通过低压等离子体喷涂,将皮上合金的厚度涂布250μm,然后镀铝。该过程由小组委员会的成员公司进行管理和开展。循环的Robin TMF和ILCF试验在-1的应变比下在400-900℃之间的应变比进行。在前者中,测试在异相和金刚石相条件下进行,其中应变和温度之间的相位差分别为180°和90°。通过循环试验显示TMF寿命以及ILCF的循环试验强烈依赖于基材合金。还发现了许多重要的或值得注意的结果:例如,涂层标本的TMF断裂行为揭示了几乎没有从裸样本的特征的特征。涂层对ILCF寿命的影响强烈依赖于温度。从ILCF测试结果中估计涂层的TMF寿命是不合理的或难以理解的。基于对裂纹引发,繁殖和断裂表面的观察,讨论了基材合金和涂层对TMF和ILCF生命的影响。

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