Creep and creep fatigue crack behavior of 1Cr- and 9Cr-steels

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作者
Maile, K. [1 ]
Klenk, A. [1 ]
Granacher, J. [2 ]
Schellenberg, G. [1 ]
Tramer, M. [2 ]
机构
[1] Staatliche Materialprufungsanstalt, University of Stuttgart, Pfaffenwaldring 32, DE-70569 Stuttgart, Germany
[2] Inst. for Materials Technology (IfW), Technical University of Darmstadt, Grafenstraße 2, DE-64283 Darmstadt, Germany
关键词
Chromium - Crack initiation - Crack propagation - Creep - Fatigue of materials - Fracture mechanics - High temperature effects - Martensite - Mechanical testing - Thickness measurement;
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摘要
A large database for creep crack initiation and propagation under constant load conditions is available on conventional power plant steels of types 1%Cr and 12%Cr. Modern plants are often used in the medium and peak load regime, thus the dominant loading situation in high temperature components is creep fatigue. For life assessment data about crack initiation and growth under creep fatigue loading are required. These characteristics can not be substituted by pure fatigue or creep crack data. Therefore, a comprehensive test programme was started to investigate the creep fatigue crack behaviour of a 1%CrMoNiV turbine rotor steel (30CrMoNiV 4 11) at 550°C and a new 9%CrMoVNb pipe steel (type P 9 1) at 600°C. DENT-specimen with 15 and 60 mm thickness as well as side grooved CT-specimen with 25 and 50 mm thickness have been tested to determine possible influences of geometry and thus to check the transferability of the data to components. The creep fatigue crack growth results of tests with dwell times between tH = 0.32h and 10 h lie in the scatterbands given by creep crack growth results. Nevertheless a higher crack growth rate under creep fatigue conditions can be stated. An increase in crack growth rate due to creep fatigue is clearly visible. Loading situations with frequencies higher than 1&middot10-4 Hz should be not assessed with pure creep crack results or sufficient safety margins have to be applied.
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