首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Effect of Microstructure on Thermo-Mechanical and Isothermal Low Cycle Fatigue Failures of a Single Crystal Ni-Base Superalloy
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Effect of Microstructure on Thermo-Mechanical and Isothermal Low Cycle Fatigue Failures of a Single Crystal Ni-Base Superalloy

机译:显微组织对单晶镍基高温合金热机械和等温低周疲劳破坏的影响

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摘要

Behavior of thermo-mechanical fatigue (TMF) failure of a single crystal Ni-base superalloy, CMSX-4, was studied and, compared with isothermal low-cycle fatigue (ILCF) of it. Strain-controlled TMF and ILCF tests of CMSX-4 were carried out under various test conditions, where the experimental variables were strain rates, strain ratio, test temperature and the range, and strain/temperature phase angle. At first it was shown from the experiments that the TMF and LCF failures associated with some noteworthy characteristics were rarely seen in the traditional pollycrystalline heat-resistant alloys. These phenomena could be explained inadequately, on the basis of the macroscopic parameters and the historical failure criteria; e.g., Manson-Coffin law and Ostergren approach. A new micromechanics model is proposed to predict the TMF and LCF lives, based on the Eshelby's theory.
机译:研究了单晶镍基高温合金CMSX-4的热机械疲劳(TMF)失效行为,并将其与等温低周疲劳(ILCF)进行了比较。在各种测试条件下进行了CMSX-4的应变控制TMF和ILCF测试,实验变量为应变速率,应变比,测试温度和范围以及应变/温度相角。首先,从实验中可以看出,在传统的多晶结晶耐热合金中,很少有TMF和LCF与某些值得注意的特性有关的破坏。根据宏观参数和历史失效标准,可能无法充分解释这些现象;例如,曼森·科芬法则和奥斯特格伦方法。基于Eshelby的理论,提出了一种新的微力学模型来预测TMF和LCF寿命。

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