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Creep Damage Evaluation of DS CM247 Nickel Base Superalloy Using Alternate Current Potential Drop Technique

机译:使用交流电势降技术评估DS CM247镍基高温合金的蠕变损伤

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摘要

The evolution of creep damage in a directionally solidified DS CM247 alloy during creep at 950 A degrees C/250 MPa has been evaluated using alternate current potential drop (ACPD) technique in which a constant alternating current was passed through the specimen and corresponding potential drop was measured. Creep tests were interrupted at different strain levels in order to examine the microstructural degradation of the alloy during creep. The creep curve of the alloy exhibited limited primary and secondary creep regimes, but extended tertiary creep regime. Microstructural examination revealed the progressive directional coarsening of gamma' precipitates i.e., rafting and widening of gamma matrix channel with accumulation of creep strain. The specimen exhibited a considerable amount of creep strain prior to fracture. Further, creep cavitation was observed only close to the fractured end of the specimens. Various factors responsible for the extended tertiary creep regime of the alloy are discussed. The potential of ACPD technique to be used as a NDE tool to monitor in service/online creep damage evaluation, has been established/demonstrated.
机译:使用交流电势降(ACPD)技术评估了定向凝固DS CM247合金在950 A / 250 MPa蠕变过程中蠕变损伤的演变,在该技术中,恒定的交流电通过样品,并且相应的电势降为测量。为了检查合金在蠕变过程中的微观结构退化,在不同的应变水平下中断了蠕变测试。合金的蠕变曲线显示出有限的一次和二次蠕变状态,但是扩展了三次蠕变状态。显微组织检查显示,γ'沉淀物逐渐进行定向粗化,即随着蠕变应变的积累,γ基质通道的漂流和加宽。样品在断裂之前表现出相当大的蠕变应变。此外,仅在试样的断裂端附近观察到蠕变空化。讨论了造成合金第三级蠕变扩展的各种因素。已经确定/展示了ACPD技术作为NDE工具来监视服务/在线蠕变损伤评估的潜力。

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